Safe use and installation instructions
Install the device securely. Be careful handling the device to prevent injury and do not drop.
Equipment is intended for installation in Restricted Access Area.
Ne pas ouvrir ou modifier l'appareil. L'appareil utilise des composants conformes aux réglementations FCC et EC. La modification de l'appareil peut annuler ces certifications.
Installez l'appareil en toute sécurité. Manipulez l'appareil avec précaution pour éviter de vous blesser et ne le laissez pas tomber.
請勿打開或修改設備。 該設備使用符合FCC和CE法規的組件。 修改設備可能會使這些認證無效。
牢固地安裝設備。 小心處理設備以防止受傷,不要跌落。
設備旨在安裝在受限訪問區域。
為防止過度暴露於射頻,請與任何用戶和射頻天線保持至少 20 厘米的距離。 僅使用提供的 2dBi/2dBi 增益的雙頻天線。
牆壁或天花板安裝設備需要使用安裝板或支架。 板或支架必須是金屬結構,並且最小厚度為 1 毫米。
使用 M4x0.5mm 平頭螺釘將安裝板或安裝支架連接到機箱底部或後部的螺紋孔。 螺釘的最小長度應為 4 毫米。 超過 1.5mm 的板或支架每增加 1mm 的厚度,就增加 1mm 的螺釘長度。
5-pin Power Terminal Block Connector (Dinkle 2ESDVM-05P)
20-pin DIO/CAN/SW Terminal Block Connector (Dinkle 0159-0320)
SATA Power and Data Cables if not installed (OnLogic CBD123)
If you purchased additional items such as mounting brackets, power supplies or antennas, they will be located in the system box or within the outer shipping carton.
For more information on accessories and additional features, visit the Karbon 800 pages at:
US
EU
The serial ports on the Karbon 800 series motherboard support RS-232, RS-422 Full-Duplex, and RS-485 half-Duplex configurations. The serial port communication mode can be selected in the BIOS configuration. In addition, 5V & 12V power can be enabled on pin 9 in the same BIOS menu. Pin 9 is rated to provide 250mA of current. Refer to the for configuration instructions.
The Karbon 800 series K802 and K804 models feature two Modbay expansion slots. Each slot supports PCIe Gen 3 x2, USB 3.1 Gen 2, and USB 2.0. OnLogic offers a variety of ModBay cards including RJ45 LAN or PoE, M12 LAN or PoE, USB 3, and a carrier card with two additional mPCIe slots (1x PCIe x1 + USB 2.0 and 1x USB 2.0 + SMBUS).
The Karbon 800 series 20-Pin header provides the following interfaces: 8-bit (4-in, 4-out) Digital Input Output (DIO) or General Purpose Input Output (GPIO) with optically isolated terminals, one CAN bus connection, and an optional external power switch connection.
The DIO is optically isolated, meaning that the terminal is separated from other motherboard features for protection. The DIO terminal requires external power from a 5~48V DC source through Pin 20 with GND to Pin 19 in order to function.
The Isolated Power Supply (ISO PSU) can be a voltage source from 5~48V to interface with external digital IO. The maximum power draw from the supply should not exceed 0.6A under normal operating conditions. Individual DOut pins will be damaged by loads in excess of 150mA. The ISO PSU must be a DC Limited Power Source (LPS) power supply.
Mating power switch cables should be a twisted-pair wire with floating shield to assure proper immunity to EMI/RFI. It is recommended to keep wires at less than 3 meters in length. Any remote power switch connected between pins 1 and 2 should be momentary contact type only.
The Karbon 800 series 5-pin power input terminal offers automotive ignition sensing. The ignition sensing timing for power on and off delays can be modified through OnLogic’s microcontroller (MCU) using serial commands. These commands can be used to enable or disable the ignition sensing feature, to set the timing delay for system startup after ignition is detected, and to set the timing delay for system soft and hard shutdown after ignition is lost.
The system should always be used with the supplied 5-pin terminal block and power input should use all 4 power pins (2~5).
The system is operational from 12V~48V DC and the maximum rated current of the connector is 15A per pin. A minimum wire gauge of 16 AWG is recommended for 24V installations. Higher power or lower voltage configurations may necessitate a heavier gauge power harness to reduce power loss in the cabling. Always use a wire gauge that is rated for the operational current of your configuration.
When connecting to the mating terminal block plug, only multi-strand wire with a crimped ferrule end should be used. The terminal block screws must be torqued to the rated value (0.5 Nm).
The Karbon 800 series features up to six 2.5 GbE LAN ports. Two of these LAN ports are PoE capable using an optional onboard module. When the PoE module is installed, the two PoE ports will provide up to 32W of combined power. This power output is enough to support a single port up to 25.5W (IEEE 802.3at), two ports up to 15.4W each (IEEE 802.3af), or two ports with a combined draw up to 32W (e.g. 7W and 25W).
The Karbon 800 supports additional LAN expansion using OnLogic ModBay cards. ModBay cards can be used to add up to eight additional RJ45 LAN or PoE ports, or up to six additional M12 X-coded LAN or PoE ports. The ModBay LAN and PoE expansion cards provide 1 GbE LAN ports using dedicated Intel I210-IT network controllers for each port. Maximum ModBay PoE power output depends on the system voltage input, total system power draw, and operating temperature. Refer to the for details.
There are six USB 3.2 Gen 2 Type A ports on the Karbon 800 series. All six USB ports are capable of delivering 10 Gbps of bandwidth per port and are rated to 5V @ 900mA of power delivery per USB-IF specification. Optional ModBay cards can be used to add up to eight additional USB 3.2 Gen 2 ports. All USB ports also support USB 2.0 connectivity and have 1xM2.5x0.45 threaded hole per 2 USB ports.
There are two full-size DisplayPorts on the Karbon 800 series. Both ports support DP 1.4 at 4K 60Hz and support MST (Multi Stream Topology). An MST hub can be used to support up to four independent displays. Please refer to Intel documentation for additional Alder Lake-S display output specifications .
Two 3FF Micro-SIM card slots are available on the front panel of the Karbon 800 platform allowing native support for 4G LTE and 5G cellular modems. The SIM signals can be directed to either the mPCIe or M.2 3042/3052/2280 B-key internal expansion slots. Both SIM signals can be connected to the M.2 3042/3052/2280 B-key to support modems with SIM failover capability. This selection is controlled in BIOS. The default BIOS setting will connect SIM1 to the mPCIe and SIM2 to the M.2 3042/3052/2280 B-key. Please refer to the for additional information.
The SIM slot is a Push-Push type slot. To insert or remove the SIM card from the front panel of the Karbon platform, please use a small implement to push the card into the slot until it clicks. To remove the card, push with a small implement until the card clicks, then pull on the free end of the card to remove it.
Karbon 800 Aseries features an RTC reset button that can be accessed using a paperclip or SIM card removal tool. Be sure the system is powered off and unplugged before resetting with the button. The RTC reset button is found next to the power button.
The nominal power budget for all PoE ports on the Karbon 800 series is provided below. Note that the maximum power ouput changes depending on the Input Voltage. These values are provided for room temperature operating conditions. Increased ambient temperature will limit the maximum safe operating power for the Karbon 800 series. Please contact OnLogic for specific derating information for your installation.
This expansion slot is capable of supporting PCIe Gen 4 x4 and is routed directly to the CPU. This slot is designed to support NVMe storage drives. A full pinout table for this expansion slot is provided in Appendix C.
This expansion slot is capable of supporting PCIe Gen 4 x4 or SATA III and is routed to the chipset. This slot is designed to support NVMe or SATA storage drives. A full pinout table for this expansion slot is provided in Appendix C.
This expansion slot is capable of supporting PCIe Gen 3 x2, SATA III, USB 3.2 Gen 2, USB 2.0, and dual SIM card inputs from the external I/O. This slot is designed to support various expansion cards such as SATA storage drives and 4G LTE or 5G cellular cards. A full pinout table for this expansion slot is provided in Appendix C.
The SIM1 and SIM2 3FF Micro-SIM card slots are connected to this slot. The routing can be selected in the BIOS. The default setting routes SIM1 to the mPCIe slot and SIM2 to the M.2 B-key slot, but both SIM cards can be routed to the M.2 B-key slot to support modems with SIM failover capability. Please refer to the for more information.
This expansion slot is capable of supporting PCIe Gen 3 x1 and USB 2.0 signals. This slot is designed to support M.2 2230 Wi-Fi expansion cards. A full pinout table for this expansion slot is provided in Appendix C.
This expansion slot is capable of supporting PCIe Gen 3 x1, USB 2.0, and SIM card input from the external I/O. This slot is designed to support full-length cards. Half-length cards can be installed using an adapter. A full pinout table for this expansion slot is provided in Appendix C.
The SIM1 3FF Micro-SIM card slot is multiplexed to both the mPCIe and M.2 B-key slots. The default setting routes SIM1 to the mPCIe slot and SIM2 to the M.2 B-key slot. Please refer to the for more information.
The Karbon 800 series supports an optional discrete TPM 2.0 module. OnLogic offers a wide-temp TPM 2.0 module based on the Nuvoton NPCT750 (SKU: TPM01).
The Karbon 800 series has a PoE header which uses an optional module to enable PoE on two of the onboard 2.5 GbE LAN ports. On the two LAN models, both ports 1 and 2 will have PoE enabled. On the six LAN models, ports 2 and 3 will have PoE enabled which leaves port 1 as the AMT-enabled remote management port. Please refer to section 2.7 Networking for additional PoE output information.
The Karbon 800 series has a power header that can support up to 2A of 5V and 12V power. This header is designed for internal expansion cards that require additional power above what is provided by the expansion slots. This header is a 2.5mm Pitch 4-pin JST XH Connector, with the pinout shown below.
There are two SATA data and SATA power headers on the Karbon 800 motherboard. The data ports support SATA III 6Gbps storage devices. Each SATA power header delivers 12V and 5V output. The OnLogic CBD123 SATA data and power cable is recommended for use with these ports and 2.5” SSD storage drives.
The Karbon 800 series features one PCIe x16 connector on the motherboard. This connector is paired with OnLogic risers to support multiple PCIe configurations in the K803 and K804 models.
This riser supports a single-height PCIe Gen 4 x16 expansion card in the K803. There is one fan header on the riser as well to support the fan in the chassis. The K803 will fit PCIe cards up to 4.4” H x 9.5” L x 0.57" W (111.8 x 241.3 x 14.5 mm).
This riser supports a dual-height PCIe Gen 4 x16 expansion card in the K804. Additionally, there are six SATA power headers to support a 6x 2.5” SSD RAID array when paired with a discrete RAID adapter, and fan headers to power the internal fans in the K804 PCIe expansion bay. The K804 will fit PCIe cards up to 4.8” H x 10” L x 1.37" W (121.9 x 254 x 34.8 mm).
This riser supports two single-height PCIe Gen 4 x16 expansion cards in the K804. The slots will mechanically accept PCIe x16 cards, however each slot will only provide PCIe Gen 4 x8 lanes. K804 will automatically detect this riser and enable bifurcation of the native PCIe x16 slot on the motherboard. There are fan headers on the riser to power the internal fans in the K804 PCIe expansion bay.
The Karbon 800 series supports up to two DDR4 SO-DIMM slots rated up to 3200MHz. The system will support non-ECC memory with all CPU options and ECC memory with a Core i5 (Except i5-12400), i7 and i9 CPUs.
If you need to assemble the system’s power input connector, follow these steps to locate and wire the correct parts.
Unbox the power brick and grab the 5 pin green/black terminal block from the accessory box.
Using a flathead screwdriver, turn the two indicated screws counter-clockwise a few turns.
The metal holes at the bottom will open up.
Insert the power supply wires as shown
Turn the screws clockwise to tighten. Firmly hand tighten.
Connect the green/black terminal block to the K800. It is now ready for use. Note that the labeling on the back of the system matches the wires you just installed.
These DC levels specified are the absolute max values for the pins for function and safety of the system. The protection circuitry allows for brief transient voltages above these levels without the system turning off.
Karbon 800 supports multiple power states. The wake-up events can be configured in the MCU and BIOS. This section describes the power management functions you can perform and gives information on protection circuitry for power adapters.
The K800 can be configured to turn on automatically when DC power is connected. This is useful for power outage recovery or if the unit is mounted in a hard to reach location. You can enable Auto Power On by following the steps listed below.
Note: In future revisions the name of this setting will be changed. “Auto power ON’ under the Power tab will be the new name and location.
Power on the system and press Del a few times to access the “Front Page” menu
Choose “Setup Utility”
Navigate to Advanced > PCH-IO Configuration
Locate “State After G3”
Change it to”s0 State” to enable auto power on.
Press F10 to Save & Exit
The Karbon 800 series K802 and K804 models feature two Modbay expansion slots. Each slot supports PCIe Gen 3 x2, USB 3.1 Gen 2, and USB 2.0. OnLogic offers a variety of ModBay cards including RJ45 LAN or PoE, M12 LAN or PoE, USB 3, and a carrier card with two additional mPCIe slots.
The 4x LAN Expansion (MODBAY-4LAN01) adds additional RJ45 GbE LAN ports to the K802 and K804. This ModBay uses dedicated Intel I210-IT network controllers for each port which support speeds up to 1 Gbps.
Operating Temperature: -40~70°C
The 4x PoE Expansion (MODBAY-4POE01) adds additional RJ45 GbE PoE LAN ports to the K802 and K804. This ModBay uses dedicated Intel I210-IT network controllers for each port which support speeds up to 1 Gbps. Additionally, each port supports PoE output. The power budget for PoE is dependent on the voltage of the system power input. Refer to the for details.
Operating Temperature: -40~70°C
The 3x M12 LAN Expansion (MODBAY-M12LAN01) adds additional M12 X-coded GbE LAN ports to the K802 and K804. This ModBay uses dedicated Intel I210-IT network controllers for each port which support speeds up to 1 Gbps.
Supported cables:
CABLE-M12-RJ45-5M (5 Meter X-coded M12 to RJ45)
CABLE-M12-RJ45-10M (10 Meter X-coded M12 to RJ45)
Operating Temperature: -40~70°C
The 3x M12 PoE Expansion (MODBAY-M12POE01) adds additional M12 X-coded GbE PoE LAN ports to the K802 and K804. This ModBay uses dedicated Intel I210-IT network controllers for each port which support speeds up to 1 Gbps. Additionally, each port supports PoE output. The power budget for PoE is dependent on the voltage of the system power input. Refer to the for details.
Supported cables:
CABLE-M12-RJ45-5M (5 Meter X-Coded RJ45 to M12)
CABLE-M12-RJ45-10M (10 Meter X-Coded RJ45 to M12)
Operating Temperature: -40~70°C
The 2x 10Gb LAN Expansion (MODBAY-10GLAN01) adds RJ45 10 GbE LAN ports to the K802 and K804. This ModBay uses a single X550 network controller which supports individual port speeds up to 10 Gbps and a maximum combined speed up to 15 Gbps across both ports.
Operating Temperature: -40~40°C
The 4x USB3 Expansion (MODBAY-4USB01) adds additional USB 3.2 Gen 2 Type-A ports to the K802 and K804. This ModBay uses two USB controllers which support individual port speeds up to 10 Gbps and a maximum combined speed up to 15 Gbps across all ports. The controllers are the ASM3142 (PCIe Gen 3 x2 to 2x USB 3.2 Gen 2) and the USB7206i (1x USB 3.2 Gen 2 to 2x USB 3.2 Gen 2). Each port is rated to 5V @ 900mA of power delivery per USB-IF specification. These ports can only wake in Modern Standby and are not active in Sleep and Hibernate system states.
Operating Temperature: -40~50°C
The 3x M12 LAN Expansion (MODBAY-M12LAN01) adds additional M12 X-coded GbE LAN ports to the K802 and K804. This ModBay uses dedicated Intel I210-IT network controllers for each port which support speeds up to 1 Gbps. Supported cables: ● CABLE-M12-RJ45-5M (5 Meter X-coded M12 to RJ45) ● CABLE-M12-RJ45-10M (10 Meter X-coded M12 to RJ45) Operating Temperature: -40~70°C
The thermal performance of the Karbon 800 was validated by loading the system to simulate expected workloads while the test system was exposed to high ambient temperatures in a thermal chamber environment. Two different workloads were considered, a 16-core 35W load and a 16-Core 65W load evaluated up to 70°C in a K801 chassis which is the worst case thermal scenario. The results were analyzed by comparing the average clock speed over the duration of the test to the expected base clock speed.
Temperature Range: -40 ~ 70°C
Step size: 10°C (except for a jump from 0°C to 30°C during both tests)
CPU, SSD, and RAM loaded
The i9-12900 CPU (65W) was able to maintain above 80% base clock speeds as defined by Intel on both the performance cores and efficiency cores up to 50°C ambient temperature. Significant throttling occurred at higher temperatures under the test workload and the CPU did not have thermal headroom for any additional turbo power.
The i9-12900T CPU (35W) was able to maintain above 100% base clock speeds as defined by Intel on both the performance cores and efficiency cores up to 70°C ambient temperature. This indicates that there was thermal headroom for turbo power over the entire 2 hour run at 70°C.
Opening the system does not void the manufacturer’s warranty, however, some precautions are necessary to avoid damaging the unit. Damage caused while opening or modifying the system internals may not be covered by the warranty.
Perform this disassembly in an area free of static discharge
Before beginning, touch a grounded metal surface to discharge your body of static electricity
Turn the unit upside down and remove the 6 screws from the bottom plate.
Pry the bottom plate off
In case the thermal pads become displaced during disassembly, a reference guide is shown below. Note that the blue film will not be present as it is removed during initial assembly.
Opening the system does not void the manufacturer’s warranty, however, some precautions are necessary to avoid damaging the unit. Damage caused while opening or modifying the system internals may not be covered by the warranty.
Perform this disassembly in an area free of static discharge
Before beginning, touch a grounded metal surface to discharge your body of static electricity
Turn the unit upside down and remove the 6 screws from the bottom plate.
Pry the bottom plate off
Unplug the SATA power and data cables (if equipped)
Grab the metal plate where shown
Lift upwards and pull towards you to remove the plate
In case the thermal pads become displaced during disassembly, a reference guide is shown below. Note that the blue film will not be present as it is removed during initial assembly.
Opening the system does not void the manufacturer’s warranty, however, some precautions are necessary to avoid damaging the unit. Damage caused while opening or modifying the system internals may not be covered by the warranty.
Perform this disassembly in an area free of static discharge
Before beginning, touch a grounded metal surface to discharge your body of static electricity
Turn the unit upside down and remove the 6 screws from the bottom plate.
Pry the bottom plate off
The internals of the system can now be accessed.
The riser card (for PCIe installation) can be difficult to install/remove. It is not recommended to remove this part, but if needed, the metal plate can be lifted upwards slightly. For example to access the RAM slots. Any damage caused while removing/installing the mid-plate is not covered by warranty.
Opening the system does not void the manufacturer’s warranty, however, some precautions are necessary to avoid damaging the unit. Damage caused while opening or modifying the system internals may not be covered by the warranty.
Perform this disassembly in an area free of static discharge
Before beginning, touch a grounded metal surface to discharge your body of static electricity
Turn the system upside down and remove the 6 Torx T8 screws from the sides.
Remove the bottom plate.
PCIe cards can be installed to the K803, and K804 expansion bays. The maximum dimensions for a PCIe card depend on the platform, and are as follows:
K803 Max PCIe Dimensions: Single slot height, 111mm H x 241mm L (4.4” H x 9.5″ L in) K804 Max PCIe Dimensions: Single OR Double slot height, 111mm H x 241mm L (4.4” H x 9.5″ L in)
Remove the retaining screw from the outside of the case.
Remove the metal slot cover.
Insert the PCIe card into the slot. Ensure it fully seats.
Loosen the screws on the brace bracket. Move the bracket so it touches the card. This will prevent it from moving.
Tighten the screws back down.
Reinstall the external mounting screw.
Card installation complete.
Remove the two exterior screws from the PCIe retention bracket.
Remove any PCIe blanks.
If you are installing a single slot card, snap them apart and reinstall 1 PCIe blank into the upper slot.
Insert the PCIe card
Ensure it clicks into the slot and the backplate slots into the system.
Connect any required PCIe 6/8 pin power connectors. Cables can be found in your accessory box. &#xNAN;Note: PCIe power board may be optional, depending on the system’s configuration.
Reinstall the retention clip and hand tighten both screws.
Reinstall the bottom cover and the process is complete.
The external fan is an optional add-on for the K700 & K800 series, which provides active cooling. This adds a 120mm case fan and moves approximately 110 CFM of airflow. The K700 and K800 series use the same external fan. It can be installed by removing the branding plate (on the top of the system) and installing the following screws:
x2 on the top (under the branding plate)
x1 on the side
The external fan uses a magnetic dust filter. The filter should be cleaned regularly. If the filter is misplaced, our replacement part SKU is FANCPD-MESH. This can be ordered by reaching out to our sales team.
Slide M.2 storage drive into slot
Gently press drive down flat and secure with M.2 screw
Apply thermal pad
The PoE kit includes the PoE modules itself, plus needed standoffs, screws, and thermal pad for the installation.
Install the standoffs. Gently hand tighten – they are fragile.
Install PoE module onto connector. Double check that the pins align.
Install 2x screws
Peel and stick thermal pad
All 2.5" SSDs that come pre-installed in Hot Swap Bays will have plastic spacers attached in order to prevent scratching or damage to the drive. Adhere the spacers included in the accessory box to new drives before installing into the Hot Swap Bay.
Linux requires Kernel 5.16 or higher to operate as expected.
Refer here for the full
( or )
(Follow our guide for )
An 8GB or larger flash drive (USB 3.0 model recommended for speed)
A PC running Windows 10 or 11
The Media Creation Tool,
Download and run the Media Creation Tool, linked above
Accept the license agreement
Click Next
Choose the “USB flash drive” option and click Next
Choose your flash drive from the list and click Next
If the drive does not show, ensure it is formatted as FAT32 or try a different drive.
The Windows 11 installer will now download from the Internet and make the flash drive bootable. This will take several minutes depending on the speed of your flash drive and Internet connection.
When the tool finishes, click Finish to close it.
Download the RAID driver (linked above)
Extract the .zip file and copy the contents to the Windows setup USB flash drive.
Safely eject the flash drive and unplug it from the PC.
Insert the flash drive into the K800
Begin by powering on the K800 and immediately press the Del key a few times to access the menu
Using the arrow keys, navigate down to “Setup Utility” and press enter
Navigate to the “Advanced” tab
Set “Expert Mode” To “Enabled”
Open the “System Agent (SA) Configuration” menu
Open the “VMD setup menu” menu
Set “Enable VMD Controller” to “Enabled”
Press F10 to Exit Saving Changes
Tap the Del key again and go back to the “Front Page” menu
Enter the “Device Manager” menu
Enter the “Intel(R) Rapid Storage Technology” Menu
Choose “Create RAID Volume”
Set the “RAID Level” to “RAID1 (Mirror)”
RAID0 is supported but generally not recommended as there is no redundancy.
Press enter on each disk and select the X to select it for RAID.
You must choose at least 2 disks and they should be of the same size/type.
Choose “Create Volume”
Creation is very quick. You will now see the RAID volume listed with status “normal”
Press F10 to save (the system will not give any feedback)
Press escape to go back to the “Front Page”
Select “Continue”
If you have not done so already, make sure the flash drive you created earlier is connected to the K800 PC.
Boot from the flash drive.
When the flash drive boots, you will be presented with this screen.
Enter the product key from the bottom of your OnLogic PC and click Next.
You can skip this step and enter it later if preferred. Click “I don’t have a product key”
If prompted (typically when you don’t enter a product key), select your version of Windows.
Accept the license agreement and click Next
Choose the option for Custom installation
Note that no storage drive will be detected at first
Click on “Load Driver”
Click “Browse”
Expand the USB drive and select the RAID driver folder you copied to the flash drive earlier.
Click OK.
Select the top option only (467F)
Click Next
After a few seconds of loading, you will be returned to the drive screen and the RAID volume will appear.
Click “Next” to format it and proceed with the installation.
The Windows installation will begin.
Refer to our for the next steps.
The microcontroller toolchain on the Karbon-800 series controls several features, among which are:
Automotive Ignition Power Sensing
CAN 2.0 A/B
Wet Contact Digital Input/Output (DIO)
Status LEDs
Microcontroller functionality is exposed via two serial ports, through which the user can send and receive CAN messages, interact with the DIO bank, and select from a number of automotive configurations. One port is dedicated to Karbon 800’s CAN bus, while the other doubles as a serial terminal for accessing the DIO interface and automotive settings. Automotive configuration settings are saved to non-volatile memory, meaning that the MCU settings will be retained after a long power-off.
Obtain the User MCU update utility here [ ] and follow the steps to flash the User MCU with the firmware above.
Obtain the Power Sequence MCU update utility here [ ] and follow the steps to flash the Power Sequence MCU with the firmware above.
The embedded microcontroller unit (MCU) is used to interface and control various aspects of the system such as CAN, DIO, and ignition sensing. To communicate with the MCU, follow the steps below for your installed OS.
Download the
Look in Device Manager and find the highest numbered USB serial device, COM5 in this example
Open Putty. Set the connection type to Serial and change COM1 to the COM # you found in the previous step. This example uses COM5.
To confirm you have the correct port open, type “help” and press enter. The help text should appear. If it does not, try a different COM port.
Use a program such as PuTTy to interface with the microcontroller (MCU). You can run the following command to install it (you will need an active internet connection for this):
sudo install putty
The MCU will typically enumerate as ttyACM0. It enumerates as a serial-interfaceable USB device. If you run into issues accessing ttyACM0, you can run the following command to identify the other port(s):
sudo dmesg | grep tty
In this example, the MCU is on ttyACM0. Open PuTTy, enter the port #, and set the connection type as “Serial”. The other settings can be left on their defaults (i.e. baudrate = 9600).
To confirm you have the correct port open, type “help” and press enter. The help text should appear. If it does not, try a different port #.
A full list of microcontroller commands be be found here in the User MCU Shell documentation here:
The ignition sense feature can be used to turn the Karbon unit on and off with a battery, or vehicle’s ignition. It can also be used in non-automotive applications using a switch instead.
An example configuration is shown below. The switch connects positive DC power to the IGN pin. The unit will turn on when power is applied to the IGN pin, and turn off when power is removed. These events have configurable delays.
Ignition sensing can be enabled and adjusted through a virtual COM connection to the system’s microcontroller (MCU). You can open this communication to the MCU using a program such as PuTTy. Refer to the above section for help accessing the MCU.
Ignition sensing simulates a power button press. In Windows, the default behavior of the power button press is to put the system into Sleep mode. You will want to change that to “Shut Down” instead.
The following shows an example configuration for automotive timings. Enter each command one by one.
For further help text, type lpmcu config
The Karbon 800 has an embedded NXP i.MX RT1050-series microcontroller that can communicate with the host processor over USB. Its features include:
Configuring the system LEDs
Reading/writing the system DIO
Using system Digital Outputs in PWM mode
Configuring system automotive settings
To provide access to these features, the MCU supports a composite USB-CDC VCOM connection (VID: 0x353F, PID: 0xA101):
Interface 0: A UART terminal supporting commands for a range of features
Interface 2: A dedicate USB serial CAN interface
C:\Users>python -m serial.tools.list_ports -v
COM15
desc: USB Serial Device (COM15)
hwid: USB VID:PID=353F:A101 SER=500100D20F3861D2 LOCATION=1-11:x.2 <--- CAN Port
COM16
desc: USB Serial Device (COM16)
hwid: USB VID:PID=353F:A101 SER=500100D20F3861D2 LOCATION=1-11:x.0 <--- UART Port
The MCU shell is a fully-featured virtual UART shell exposed over the MCU’s first USB CDC-ACM interface. This shell supports both command history and line editing, and can optionally serve as an output target for driver log messages. For a complete command reference see, the .
In order to support over-the-air firmware updates, the K800 has a two stage bootloader; a ROM bootloader, that can be started with physical access to the system, and a USB bootloader that supports updates from the OS. Entering the ROM Bootloader (manual): 1. Detach the K800 system from wall power 2. Use a paper clip to depress the settings switch located above the front USB 3.0 ports 3. With the switch held down, re-attach system power 4. The MCU should now boot into the NXP ROM bootloader Entering the USB Bootloader (manual): 1. Boot the K800 to the operating system 2. Use a paper clip to depress the settings switch located above the front USB 3.0 ports 3. With the switch held down, send the ‘reset’ command to the MCU’s UART port 4. The MCU should now boot into the second stage USB bootloader
The Karbon 800 series 20-Pin header provides the following interfaces: 8-bit (4-in, 4-out) Digital Input Output (DIO) or General Purpose Input Output (GPIO) with optically isolated terminals, one CAN bus connection, and an optional external power switch connection. The DIO is optically isolated, meaning that the terminal is separated from other motherboard features for protection. The DIO terminal requires external power from a 5~48V DC source through Pin 20 with GND to Pin 19 in order to function. The Isolated Power Supply (ISO PSU) can be a voltage source from 5~48V to interface with external digital IO. The maximum power draw from the supply should not exceed 0.6A under normal operating conditions. Individual DOut pins will be damaged by loads in excess of 150mA. The ISO PSU must be a DC Limited Power Source (LPS) power supply. Mating power switch cables should be a twisted-pair wire with floating shield to assure proper immunity to EMI/RFI. It is recommended to keep wires at less than 3 meters in length. Any remote power switch connected between pins 1 and 2 should be momentary contact type only.
Connection Diagrams
Examples:
All digital inputs/outputs support reading the current logical state of the pin. Digital outputs additionally support setting the output state of the pin, and digital inputs support reporting the transition count of the pin (both edges). The K800 also support configuring digital outputs as PWMs, and configuring the PWM output’s pulse and duty cycle. For a additional command reference see, the . The DIO can also be changed to Byte Mode as documented below.
# Turn on LED 0 output
uart:~$ dio set LED0 0 true
# Check the state of Digital Input 0
uart:~$: dio get DIO0 input 0
While the microcontroller shell is intended for human interaction, it can be used to programmatically control the MCU. To avoid a number of pitfalls when doing so, observe the following best practices:
On Linux, use the symlinked device nodes inside /dev/serial/by-id instead of hardcoding /dev/ttyACMx device names. /dev/ttyACMx numbering is
unstable; /dev/serial/by-id/usb-OnLogic_<device>-if00 will reliably point to the terminal interface.
Byte Mode
When using byte mode, DIO commands are sent in the form of command packets, and each command will receive a status (and optional data) as a response.
The command header is eight bytes in length:
All command headers must indicate the type of data to follow, by setting the command kind:
Each command sent will recieve a response from the microcontroller. This response may contain data, but can always be examined to determine if the command succeeded.
The DIO command format is as follows:
The digital IO command supports the following actions:
The Karbon 800 has an on-board CAN (Controller Area Network) 2.0 A/B interface. In general, the CAN bus consists of two main signal lines, CAN High and CAN Low. CAN High is biased at a high voltage potential of ~3.5 Volts and CAN Low is biased at a low voltage potential of ~1.5 Volts. The nominal voltage measured between the two signal lines is ~2.5 Volts, serving as a reliable indicator of the K800 CAN bus operational status. Additionally, the CAN bus operates in two states: dominant and recessive. Dominance is represented by logic level 0 and recessive is represented by logic level 1. The K800 CAN interface supports configurable bitrates from 100k – 1M and two message parsing modes: slcan and std.
slcan: an abbreviation for serial line can, is a virtualizing protocol used to transmit CAN messages over serial communication. This bridges the gap between the operating system and the unique differential signaling utilized in the CAN protocol. slcan makes the CAN bus appear as a network interface on the operating system, and can be even be identified as such when looking through the kernel buffer on Ubuntu via
Specifically, the K800 supports the following bitrates using slcan interface:
std: CAN bus send and receive messages are communicated in their native CAN format. This allows for direct low-level communication between the in-system K800 microcontroller and CAN-compatible devices. The std method of operating the CAN bus can be used without the need for intermediate serialization to communicate with an operating system.
Further details about the CAN bus can be found in the provided resources:
This section describes the physical connection and software configuration needed to set up the K80X platform as a CAN controller in either the Microsoft Windows or Ubuntu Linux based operating systems. Example programs are written in both Python (for both Windows and Linux) and Bash (for Linux).
Materials Required:
Hookup or twisted pair wires
120 Ohm termination resistors (depending on the CAN setup)
CAN member devices compliant with CAN 2.0 A/B. In our example we will use a second K80X to act as the endpoint device.
Example Network Implementation:
Diagram of a simplified CAN bus network. The figure above shows: 1) Two termination resistors at each end of the bus, 2) required endpoints of the bus acting as either transmitters or receivers, 3) High and Low CAN bus lines, and 4) additional (optional) network members connected on the same signal lines.
Operation Instructions:
The use of the K800 CAN bus can be achieved in four steps.
Step 1: Locate CAN High and CAN Low terminals on the 20-Pin header next to the system power button.
Step 2: Connect CAN Low, CAN High, and (commonly used) ground wires to their designated locations using the Dinkle 0159-0320 20 pin connector. Additionally, bridge CAN Low and CAN High terminals with the proper termination resistor (120 Ohm in this example).
Step 3: Configure the second K80X system with the same wiring connecting the CAN High and Can Low signals of each system. Ensure a second 120 Ohm resistor is used as close as possible to the second K80X 20 Pin connector.
Step 4: Activate the software interface to operate the CAN bus.
The GitHub repository here:
Provides two utilities with instructions on controlling CAN bus parameters and sending/receiving CAN data in the code comments. Both the software utilities use slcan as the interface to communicate with the CAN bus. The installation commands for required dependencies are included in the header comments of each respective code file.
Python3 CAN Utility [Ubuntu and Windows Compatible] :
Usage on Windows:
Usage on Linux:
NOTE: Run the Python CAN utility with sudo privileges on Ubuntu.
Output of —help flag for the Python command line argument:
Examples in:
Windows:
Linux:
Bash Script Utility [Ubuntu Compatible Only] :
1. First, set permissions to be executable by user who owns the file:
2. Then run the executable using:
Examples:
Two channels, a blue channel representing CAN High and orange representing CAN Low. Both CAN High and CAN Low will default to a 2.5 nominal voltage in the absence of a signal. This is useful for debugging if there is uncertainty whether the signal is properly broadcasting.
[Optional] If the LED flags are active in either the Python script or the Bash script, the onboard LEDs on the K800 will turn on and off before and after each CAN session, respectively.
Sample Program Outputs:
Initializing output from: sudo python3 k800_can_utility.py -m r -b 100 -l on. This indicates the proper eMCU Port location, Hardware ID, and Device.
Terminal output of ‘receive mode’ using the Python utility through the command: &#xNAN;sudo python3 k800_can_utility.py -m r -b 100 -l on
Terminal output of ‘send mode’ using the Python utility through the command: &#xNAN;sudo python3 k800_can_utility.py -m s -b 100 -l on
Do not open or modify the device. The device uses components that comply with FCC and CE regulations. Modification of the device may void these certifications.
If the K800 fails to power on or is otherwise unresponsive, a CMOS reset may help. Follow the procedure outlined below to clear the CMOS.
Unplug the system completely – remove power and all peripherals
Use a long, thin tool, such as a straighten a paperclip
Locate the unlabeled CMOS reset hole next to the HDD LED
Reconnect the system and turn it back on.
Do not touch the system for 2 minutes. It may reboot several times while it reconfigures the CMOS.
If successful, the unit should boot back up and run normally. It is now ready to use again. If the unit is still not responsive, reboot it one more time and then contact OnLogic Tech Support.
The system supports Fast Boot, which is a configurable BIOS setting. With Fast Boot enabled, the unit will disable booting to Network, Optical, and USB/removable drives. Video and USB devices (such as keyboards) will not initialize until the OS loads. This can make it difficult to reinstall an OS, or change any BIOS settings, and make the BIOS harder to access. To enter the BIOS follow the steps below for your specific OS.
Windows
From the Start Menu, hold Shift and click Restart to access the Recovery screen, then go to “Advanced” and select “UEFI Firmware Settings”. The system will reboot and allow access in the the BIOS. You may need to repeatedly press DEL/F2 keys while the system is rebooting.
Linux
From Terminal, run the following command:
systemctl reboot --firmware-setup
This will trigger the system to reboot and allow access into the the BIOS. You may need to repeatedly press DEL/F2 keys while the system is rebooting.
Once you’ve accessed the BIOS, you can find the Fast Boot setting under the Boot tab.
K800 series systems outfitted with the 10Gb Modbay (MODBAY-10GLAN01) may experience issues while in use, causing the ports to crash and become unusable. To fix this issue, download this file and follow the Update Instructions. &#xNAN;Note that the system must be booted into a Windows environment for this Update. A temporary Windows installation can be used on the system, or the unit(s) can be returned to OnLogic. Contact OnLogic Tech Support for RMA details. &#xNAN;Orders shipped after 11/20/2023 already have this update applied
If you have a 10 Gb Modbay installed in your system, and it is not operating at full speed, you may need to update the ethernet controller firmware. It should be at least version 3.6 or higher.
There are different update steps depending on if you’re running Windows or Linux. Download the relevant steps and follow the steps in the downloaded file:
To resolve issues with CAN bus access on the K800 system, update to microcontroller firmware version 1.3.2+2 or higher .
The computer system was evaluated for medical, IT equipment, automotive, maritime and railway EMC standards as a class A device. The computer complies with the relevant IT equipment directives for the CE mark. Modification of the system may void the certifications. Testing includes: EN 55032, EN 55035, EN 60601-1, EN 62368-1, EN 60950-1, EN 50121-3-2, EN 60945 and UN Regulation No. 10 ISO 17650-2 & ISO 7637-2.
This device complies with part 15 of the FCC rules as a Class A device. Operation is subject to the following two conditions: (1) this device may not cause harmful interference and (2) this device must accept any interference received, including interference that may cause undesired operation.
This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device.
Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes: (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement.
CAN ICES-003(A) / NMB-003(A)
The computer system was evaluated for medical, IT equipment, automotive, maritime and railway EMC standards as a class A device. The computer complies with the relevant IT equipment directives for the UKCA mark.
This is a Class A product based on the standard of the Voluntary Control Council for Interference (VCCI). If this equipment is used in a domestic environment, radio interference may occur, in which case the user may be required to take corrective actions.
For the latest security advisories concerning OnLogic products, including vulnerability disclosures and necessary updates, please refer to our official Security Advisories page. It is recommended to regularly check this resource for critical security information.
Input voltage monitoring
RTOS Capabilities
Managing the system CAN interface
stty -F /dev/serial/by-id/<device> -echo beforeinteracting with the shell. Most serial libraries (pyserial, serialport-rs, etc.) will automatically disable this flag.
When sending a command, precede it with a ‘\x03’ byte to clear the terminal’s line buffer and ensure that the command is interpreted correctly. Follow the command with a ‘\r’ or ‘\n’ character to execute the command.
Send less than 64 bytes at a time. To send longer commands, explicitly flush the port’s output buffer in between each block of 64 bytes.
To protect against excessive RF exposure, maintain at least 20cm from any user and the RF antennas. Only use provided dual band antennas of 2dBi/2dBi gain.
Wall or ceiling mounting device requires use of a mounting plate or bracket. The plate or bracket must be of metal construction and have a minimum thickness of 1mm.
Use M4x0.5mm Flat Head screws to attach mounting plate or mounting brackets to threaded holes on bottom or rear of chassis. Screws should be a minimum length of 4mm. Add 1mm of screw length for every mm of additional thickness of plate or bracket beyond 1.5mm.
Caution, Hot Surface! It is normal for the unit to heat up and be hot to touch. Do not touch the heatsink area or back enclosure during operation and up to 30 minutes after shutdown allowing the unit to cool down.
Safe operating temperature and non-condensing humidity ratings must be adhered to, please refer to the specifications table for safe operating temperature and humidity ratings.
Safe Storage temperature must be adhered to, please refer to the specifications table for safe storage temperature ratings.
Keep the device away from liquids and flammable materials.
Do not clean the device with liquids. The chassis can be cleaned with a cloth.
Allow at least 2 inches of space around all sides of the device for proper cooling. If the device is mounted to a vertical surface then recommended device orientation is so that heatsink fins allow air to rise unobstructed. Alternative orientations may result in reduced operational temperature range.
This device is intended for indoor operation only.
Use UL Listed external power supply with rated output 24-36Vdc.
Wiring methods used for the connection of the equipment to the mains supply shall be in accordance with the National Electrical Code, NFPA 70, and the Canadian Electrical Code, Part I, CSA C22.1.
Allow ample space for terminal block wiring connections such that the wires do not bend and are protected from accidental damage.
Install the device only with shielded network cables.
Only use SAE approved cables for automotive installation.
The installer should be experienced in aftermarket installation and familiar with general practices for installing electronics devices in vehicles.
The device should not be installed in the driver’s area of a vehicle.
The device should be mounted in accordance with accepted aftermarket practices and materials for vehicle installation.
Only use UL Listed connectors for connection to automotive fuse panels.
Radio device is not intended for emergency service use.
Service and repair of the device must be done by qualified service personnel. This includes, but is not limited to, replacement of the CMOS battery. Replacement CMOS battery must be of the same type as the original.
Proper disposal of CMOS battery must comply with local governance.
Product must only be connected to a certified router, switch or similar network equipment
Product is intended for indoor use only.
Product cannot be connected to the public network.\
WARNING: There is danger of explosion if the CMOS battery is replaced incorrectly. Disposal of battery into fire or a hot oven, or mechanically crushing or cutting of a battery can result in an explosion.
Pour vous protéger contre une exposition RF excessive, maintenez au moins 20 cm de tout utilisateur et des antennes RF. Utilisez uniquement les antennes double bande fournies avec un gain de 2 dBi/2 dBi.
Le dispositif de montage au mur ou au plafond nécessite l'utilisation d'une plaque ou d'un support de montage. La plaque ou le support doit être en métal et avoir une épaisseur minimale de 1 mm.
Utilisez des vis à tête plate M4x0,5 mm pour fixer la plaque de montage ou les supports de montage aux trous filetés au bas ou à l'arrière du châssis. Les vis doivent avoir une longueur minimale de 4 mm. Ajoutez 1 mm de longueur de vis pour chaque mm d'épaisseur supplémentaire de plaque ou de support au-delà de 1,5 mm.
La température ambiante de fonctionnement doit être comprise entre 0 °C et 45 °C avec une humidité relative sans condensation de 10 à 90 %.
L'appareil peut être stocké à des températures comprises entre -10 °C et 85 °C.
Gardez l'appareil à l'écart des liquides et des matériaux inflammables.
Ne nettoyez pas l'appareil avec des liquides. Le châssis peut être nettoyé avec un chiffon.
Laissez au moins 2 pouces d'espace autour de tous les côtés de l'appareil pour un refroidissement correct. Si l'appareil est monté sur une surface verticale, l'orientation recommandée de l'appareil est de sorte que les ailettes du dissipateur thermique permettent à l'air de monter sans obstruction. Des orientations alternatives peuvent entraîner une plage de températures de fonctionnement réduite..
Cet appareil est destiné à une utilisation en intérieur uniquement.
Utilisez une alimentation externe homologuée UL avec une sortie nominale de 24 à 36 Vdc.
Les méthodes de câblage utilisées pour le raccordement de l'équipement à l'alimentation secteur doivent être conformes au Code national de l'électricité, NFPA 70, et au Code canadien de l'électricité, Partie I, CSA C22.1.
Prévoyez suffisamment d'espace pour les connexions de câblage du bornier afin que les fils ne se plient pas et soient protégés contre les dommages accidentels.
Installez l'appareil uniquement avec des câbles réseau blindés.
Utilisez uniquement des câbles approuvés par SAE pour une installation automobile.
L'installateur doit avoir de l'expérience dans l'installation du marché secondaire et être familiarisé avec les pratiques générales d'installation d'appareils électroniques dans les véhicules.
L'appareil ne doit pas être installé dans le poste de conduite d'un véhicule.
L'appareil doit être monté conformément aux pratiques acceptées du marché secondaire et aux matériaux d'installation du véhicule.
Utilisez uniquement des connecteurs répertoriés UL pour la connexion aux panneaux de fusibles automobiles.
L'appareil radio n'est pas destiné aux services d'urgence.
L'entretien et la réparation de l'appareil doivent être effectués par un personnel qualifié. Cela inclut, mais sans s'y limiter, le remplacement de la batterie CMOS. La batterie CMOS de remplacement doit être du même type que celle d'origine.
L'élimination appropriée de la batterie CMOS doit être conforme à la gouvernance locale.
Le produit doit uniquement être connecté à un commutateur de routeur.
Le produit est destiné à une utilisation en intérieur uniquement.
Le produit ne peut pas être connecté au réseau public.
ATTENTION: Il existe un risque d'explosion si la pile CMOS n'est pas remplacée correctement. L'élimination de la batterie dans le feu ou dans un four chaud, ou l'écrasement ou le découpage mécanique d'une batterie peut entraîner une explosion.
環境工作溫度必須在 0 °C 至 45 °C 之間,非冷凝相對濕度為 10-90%。
該設備可在 -10 °C 至 85 °C 的溫度下儲存。
使設備遠離液體和易燃材料。
請勿使用液體清潔設備。 機箱可以用布清潔。
在設備四周留出至少 2 英寸的空間,以便適當冷卻。 如果設備安裝在垂直表面上,則推薦的設備方向是散熱片允許空氣暢通無阻地上升。 替代方向可能會導致工作溫度範圍減小。
該設備僅適用於室內操作。
使用額定輸出為 24-36Vdc 的 UL 認證外部電源。
用於將設備連接到主電源的接線方法應符合國家電氣規範 NFPA 70 和加拿大電氣規範第 I 部分 CSA C22.1。
為端子塊接線連接留出足夠的空間,以使電線不會彎曲並防止意外損壞。
僅使用屏蔽網線安裝設備。
僅使用 SAE 批准的電纜進行汽車安裝。
安裝人員應具有售後安裝經驗並熟悉在車輛中安裝電子設備的一般做法。
該設備不應安裝在車輛的駕駛員區域。
該設備應按照公認的售後市場慣例和車輛安裝材料進行安裝。
僅使用 UL 列名的連接器連接汽車保險絲板。
無線電設備不適用於緊急服務。
設備的維護和修理必須由合格的服務人員進行。 這包括但不限於更換 CMOS 電池。 更換的 CMOS 電池必須與原裝電池的類型相同。
CMOS 電池的正確處置必須遵守當地的管理規定。
產品只能連接到路由器交換機。
產品僅供室內使用。
產品無法連接到公共網絡。
警告:如果 CMOS 電池更換不正確,有爆炸的危險。 將電池丟入火中或熱烘箱中,或以機械方式壓碎或切割電池都可能導致爆炸。
警語(本體及說明書):須以中文標示。
Variants
K801 - High-Performance Rugged Low-Profile Computer
K802 - High-Performance Rugged Computer w/ModBay
K803 - High-Performance Rugged Computer w/PCIe
K804 - High-Performance Rugged Computer w/ModBay & PCIe
Processor
Intel 12th Gen Alder Lake-S (LGA1700)
Core i3, i5, i7 & i9 up to 16-core 24-thread
Memory
2x DDR4-2666 SO-DIMM up to 64GB total (non-ECC or ECC)
FCC 47 CFR Part 15 Subpart B (Class A)
EN 60950-1 & EN 62368-1
CISPR 32/EN 55032
CISPR 35/EN 55035
Radio Equipment Directive (2014/53/EU)
RoHS 3 (2015/863/EU)
WEEE Directive (2012/19/EU)
1
WAKE#
3.3V
2
3
12v
802.3at Type II
802.3at Type II
802.3at Type II
Item
Description
A1
Power button
A2
Audio Jack
A3
8-bit Isolated DIO (4-in, 4-out), CAN bus, External Switch
B017
B005
v1.3.1.2
– CAN bus fixes: Fully reset CAN peripheral when bus is opened, fixes unresponsive interfaces
Microcontroller Version
Changelog
Link
v2.1.6
– Ignition Fixes
lpmcu config automotive-mode true
Enables automotive mode
Command:
lpmcu config startup-timer [X]
Example:
lpmcu config startup-timer 10
Effect: turn on X seconds after IGN pin receives power Example: turn on 10 seconds after IGN pin receives power
Command:
lpmcu config hard-off-timer [X]
Example:
lpmcu config hard-off-timer 60
Effect: force shutdown system after X seconds (failsafe to protect battery) Example: force shutdown system after 60 seconds (failsafe to protect battery)
0
The message ‘start of frame’ byte.
Must be 0x01, or the message will be rejected. For non request/response frames, it is instead set as 0x02
1
Indicates the kind of command transmitted
Must be one of the Valid Command Kinds
DIO
0x00
8 bytes
Commands that get and set the state of MCU controlled digital IO banks
CAN
Success
0x0000
The last command was processed successfully
Invalid Device
0x0001
The device indicated by the command exceeded the number of devices available to the system
0
The DIO action to perform on the device
Must be one of DIO Actions
1
The bank of digital IO to target, or the number of devices
Must be between 0 and the number of DIO banks available on the platform
Get
0x00
Read the state and count of an input, or just the state of an output
Set
0x01
Set the logical state of a digital output
sudo dmesg10 20 50 100 125 250 500 800 1000 Kbits/spython k800_can_utility.py [-h] [-m {s,r}] [-b {10,20,50,100,125,250,500,750,1000}] [-l {off,on}]sudo python3 k800_can_utility.py [-h] [-m {s,r}] [-b {10,20,50,100,125,250,500,750,1000}] [-l {off,on}]python k800_can_utility.py --help
usage: k800_can_utility.py [-h] [-m {s,r}] [-b {10,20,50,100,125,250,500,750,1000}] [-l {off,on}]
K800 CAN Bus Utility
options:
-h, --help show this help message and exit
-m {s,r}, --mode {s,r
send (s) or receive (r): send generated data or continually receive
-b {10,20,50,100,125,250,500,750,1000}, --bitrate {10,20,50,100,125,250,500,750,1000}
CAN bus baudrate in kbps (ranges allowed by slcan: [10, 20, 50, 100, 125, 250, 500, 750, 1000]
-l {off,on}, --leds {off,on}
Incorporate LED check functionality in program
python k800_can_utility.py -m s -b 500 -l on
python k800_can_utility.py -m rsudo python3 k800_can_utility.py -m r -b 1000 -l off
sudo python3 k800_can_utility.py -m schmod u+x k800_can_utility.sh./k800_can_utility.sh {s|r} <bit_rate> <led>./k800_can_utility.sh s 100 off
./k800_can_utility.sh r 20 on
./k800_can_utility.sh r # Uses default bit_rate and no LED checkThe K800 can be configured with optional PoE hardware, adding PoE functionality to existing ports, or adding additional PoE ports. Check your configuration to see if your unit has PoE installed.
The optional PoE module supports the 802.3at standard @ up to 25.5 watts per port.
PoE can be added to the native Ethernet ports on either ports 1 & 2 (on the x2 LAN models), or ports 2 & 3 (on the x6 LAN models). Additional ports may be added with the Karbon Modbay cards. K800 series 2-LAN model:
K800 series 6-LAN model:
For security purposes, the K800 requires a BIOS Administrator/Supervisor Password to be established before Secure Boot settings become editable. If the Secure Boot options appear grayed out, please set an administrator password first, save changes, and restart the system back into the BIOS.
The K800 series can be configured with an internal modem, the . If configured with a SIM card, this would be installed internally, directly on the modem. However the modem can be configured to use the external SIM slots to allow easier switching by users. It is recommended to configure the following BIOS setting to enable both external SIM slots:
Setup Utility -> Advanced page -> PCH-IO -> OnLogic Feature Configuration -> SIM Card Muxing -> Set to “Mode 4“ Make sure to Save & Reset via the F10 function key or through the Exit page.
The K800 series can be configured with a GPU. For some customers this is used to drive multiple high-resolution displays, and the video output will automatically output through the GPU. However in some cases you may want to use the GPU for specific computational applications, and use the integrated DisplayPorts. To enable this option, you will want to change the “Primary Display” output in the BIOS. Navigate to:
Setup Utility -> Advanced page -> Set “Expert Mode” to Enabled Then go to: Setup Utility -> Advanced -> System Agent (SA) Configuration -> Graphics Configuration -> Primary Display -> Change to “IGFX” Make sure to Save & Reset via the F10 function key or through the Exit page.

Chipset
Intel W680
Integrated Graphics
Intel UHD Graphics 730 (i3) or 770 (i5, i7, i9)
Front I/O
4x USB 3.2 Gen 2 Type-A 2xM2.5x0.45 threaded hole
2x Serial RS-232/422/485
20-pin GPIO terminal block (DIO, CAN bus, Ext. switch)
1x 3.5 mm audio jack
2x 3FF Mini-SIM slots
1x External fan connector
2x Hot-swap drive bays (optional, K802 & K804)
8x Status LEDs
1x Power button
Back I/O
2x or 6x 2.5 GbE LAN (optional 2x PoE)
2x USB 3.2 Gen 2 Type-A with 1x M2.5x0.45 threaded hole
2x DisplayPort (full-size, DP 1.4, DP++, HDMI 1.4)
2x ModBay expansion slots (K802 & K804)
5-pin Power input
Expansion & Storage
1x M.2 2280 M-key (PCIe Gen 4 x4)
1x M.2 2280 M-key (PCIe Gen 4 x4, SATA)
1x M.2 3042/3052/2280 B-key (PCIe x2, SATA, USB 3.0, USB 2.0)
1x M.2 2230 E-key (Wi-Fi) (PCIe x1, USB 2.0)
1x mPCIe (PCIe x1, USB 2.0)
1x PCIe Gen 4 x16 slot (K803 & K804)
2x 2.5" SATA SSD/HDD drives 0-15mm max (hot-swap optional, 7-9.5mm max) (1x K803, 2x K802 & K804)
K804 Options:
1) 1x PCIe x16 in x16 PCIe slot with dual slot height (4.4" H x 9.5" L)
2) 2x PCIe x16 (8 lanes each) with single slot height (4.4" H x 9.5" L)
K803:
1x PCIe x16 in x16 PCIe slot with single slot height (4.4" H x 9.5" L)
Special Features
User-Programmable OnLogic Microcontroller (MCU)
Automotive Ignition Power Sensing
Optional TPM 2.0 module (Nuvoton NPCT750)
Operating Systems
Windows 11
LAN Controllers
1x Intel I225-LM with AMT support
1x or 5x Intel I225-IT
Voltage Input
12 ~ 48V DC up to 30A (19 ~ 48V DC with PCIe expansion over 75W)
Dimensions
K801 = 240 x 60 x 267mm (9.45 x 2.36 x 10.51")
K802 & K803 = 240 x 82 x 267mm (9.45 x 3.23 x 10.51")
K804 = 240 x 143 x 267mm (9.45 x 5.63 x 10.51")
Mounting
Wall Mount
Wall Mount with Vibration Isolation
DIN Rail Mount
Operating Temperature
-40°C ~ 70°C (35W TDP CPU)
-40°C ~ 50°C (65W TDP CPU)
Storage Temperature
-40°C ~ 85°C
Operating Humidity
10~95% relative, non-condensing
Storage Humidity
0~95% relative, non-condensing
Shock & Vibration
Shock: Tested according to IEC 60068-2-27 and MIL-STD-810H
Vibration: Tested according to IEC 60068-2-64 and MIL-STD-810H
IEC 60068-2-27
IEC 60068-2-64
MIL-STD-810H
Power Immunity According to E-Mark ISO 7637-2 & ISO 16750-2
EN 50121-3-2
IEC 60601-1-2, 4th ed.
EN 60945, 4th ed.
NC
GND
4
5
NC
1.5V
6
7
CLKREQ#
UIM_PWR
8
9
GND
UIM_DATA
10
11
REFCLK-
UIM_CLK
12
13
REFCLK+
UIM_RESET
14
15
GND
UIM_SPU
16
KEY
KEY
17
NC
GND
18
19
NC
W_DISABLE1#
20
21
GND
PERST#
22
23
PERn0
3.3V
24
25
PERp0
GND
26
27
GND
1.5V
28
29
GND
SMB_CLK
30
31
PETn0
SMB_DATA
32
33
PETp0
GND
34
35
GND
USB 2.0_D-
36
37
GND
USB 2.0_D+
38
39
3.3V
GND
40
41
3.3V
NC
42
43
GND
NC
44
45
NC
NC
46
47
NC
1.5V
48
49
NC
GND
50
51
W_DISABLE2#
3.3V
52
Maximum of 100W distributed across all ports
24v
802.3at Type II
802.3at Type II
802.3at Type II
Maximum of 200W distributed across all ports
36-48v
802.3at Type II
802.3at Type II
802.3at Type II
Maximum of 275W distributed across all ports
Notes
Combined power <30W
A4
COM RS-232/422/485 ports (2x)
A5
USB 3.2 Gen 2 Type-A ports (4x)
A6
3FF Mini-SIM slots (2x)
A7
External fan header
A8
5-pin Power input with ignition sense
A9
Auxiliary power for GPU Power card
A10
DisplayPorts (2x)
A11
2.5 GbE LAN ports (2x or 6x)
A12
USB 3.2 Gen 2 Type-A ports (2x)
A13
PCIe Gen 4.0 x16 connector
A14
PCIe Aux power and fan control header
A15
CMOS battery
A16
TPM header
A17
Onboard PoE header
A18
SATA III ports (2x)
A19
M.2 2280 M-key (PCIe Gen 4 x4)
A20
ModBay connectors (2x)
A21
SATA power headers (2x)
A22
4-pin Aux power expansion (12V, 5V)
A23
mPCIe slot (PCIe Gen 3 x1, USB 2.0)
A24
DDR4 SO-DIMM slots (2x)
A25
M.2 2280 M-key slot (PCIe Gen 4 x4, SATA)
A26
M.2 2230 E-key slot (PCIe Gen 3 x1, USB 2.0)
A27
M.2 3042/3052/2280 B-key slot (PCIe Gen 3 x2, USB 3.0, USB 2.0)
Command:
lpmcu config soft-off-timer [X]
Example:
lpmcu config soft-off-timer 20
Effect: shutdown X seconds after IGN pin loses power Example: shutdown 20 seconds after IGN pin loses power
2 – 3
The status of the last command
Should be zero when sending a command, one of Status Codes when receiving
4
The length of the transfered command data
Must be less than 56, and equal to the length of the command body in bytes
5-7
Reserved
Must be 0x00
0x01
6 bytes
Sideband configuration and reporting for CAN devices
Reset
0x02
0 bytes
Causes a cold-reset of the microcontroller
Version
0x03
8 bytes
Reports the firmware version of the running application image
Ignition
0x04
10 bytes
Configures automotive and power features on supported devices
Disable
0x05
0 bytes
Disables byte processing of incoming data, and returns to an interactive shell
Unbound Device
0x0002
The device targetted exists, but the MCU was unable to attach to and communicate with it
DIO – Invalid Pin
0x0003
The target pin exceeded the number of inputs or outputs actually present
DIO – Pin Read Failed
0x0004
Reading the state of the targetted pin failed for an unknown reason
DIO – Pin Write Faield
0x0005
Writing the state of the targetted pin failed for an unknown reason
DIO – Set Mode Unsupported
0x0006
Setting the DIO mode to push-pull or sink-source is not supported
Invalid Command
0x0007
The subcommand requested was outside of the valid range for the message kind
Bad Message Kind
0x0008
The message kind was not one of Valid Command Kinds
Version – Read Failed
0x0009
Reading the application version failed for an unknown reason
2
The pin index to get or set
The output pin index starts at 0, the input index starts at 0 + n-outputs
3
The current state of the pin (if read), or the state to set (if written), or the mode to set (mode 0=sourcing, mode 1=sinking)
0 or 1
4 – 7
The edge-count of the pin, or the number of inputs/outputs
0 – MAX_UNSIGNED_INT (u32)
Set Count
0x02
Set the edge count of a digital input to the passed value
Set Mode
0x03
Switch between sink-source and open-collector drive mode on supported hardware
Num Devices
0x04
Reports the number of DIO banks available on the device
Num Outputs
0x05
Reports the number of outputs available to the indicated device
Num Inputs
0x06
Reports the number of inputs available to the indicated device






































































































































NOTE: To enter the BIOS on Karbon 800 systems, hold the ‘Delete’ key on your keyboard during boot.
Boot Manager
Type
Menu
Device Management
Boot From File
Administer Secure Boot
Setup Utility
Intel(R) Management Engine BIOS Extension
System Memory Speed
Cache RAM
Total Memory
CPUID
CPU Speed
CPU Stepping
Atom Core/Core Information
Total Processor Count
Microcode Revision
GT Info
SMX/TXT
PCH Rev / SKU
GOP Ver
EC Ver
Fab ID
Intel ME Version / SKU
LAN PHY Revision
Language
System Time
System Date
Numlock
Serial ATA Port X
Platform Trust Technology
ACPI Settings
FACP - RTC S4 Wakeup
APIC - IO APIC Mode
ACPI Version
Enable ACPI Auto Configuration
Enable Hibernation
PTID Support
PECI Access Method
ACPI S3 Support
Native PCIE Enable
Native ASPM
BDAT ACPI Table
ACPI Debug
D3 Setting for Storage
Low Power S0 Idle Capability
PUIS Enable
SSDT table from file
PCI Delay Optimization
MSI enabled
CNVi CRF Present
CNVi Mode
RFI Mitigation
CoExistence Manager
IMR Configuration
USB Configuration
Security Configuration
HD Audio Configuration
THC Configuration
ISH Configuration
Pch Thermal Throttling Control
PCH LAN Controller
Foxville I225 LAN Controller
Foxville I225 Wake on LAN Support
EFI Network
DeepSx Power Policies
Wake on WLAN and BT Enable
State After G3
Enable TCO Timer
xDCI Support
USB PDO Programming
USB Overcurrent
USB Overcurrent Lock
USB Audio Offload
Enable HSII on xHCI
USB Port Disable Override
RTC Memory Lock
BIOS Lock
Force unlock on all GPIO pads
HD Audio
Audio DSP
Audio DSP Compliance Mode
HDA Link
DMIC #0
DMIC #1
SSP #0
SSP #1
SSP #2
SSP #3
SSP #4
SSP #5
SNDW #1
SNDW #2
SNDW #3
SNDW #4
HD Audio Advanced Configuration
HD Audio DSP Features Configuration
HD Audio Advanced Configuration
iDisplay Audio Disconnect
Codec Sx Wake Capability
PME Enable
HD Audio Link Frequency
iDisplay Audio Link Frequency
iDisplay Audio Link T-Mode
Autonomous Clock Stop SNDW #1
Autonomous Clock Stop SNDW #2
Autonomous Clock Stop SNDW #3
Autonomous Clock Stop SNDW #4
Data On Active on Interval Select SNDW #1
Data On Active on Interval Select SNDW #2
Data On Active on Interval Select SNDW #3
Data On Active on Interval Select SNDW #4
Data On Delay Select SNDW #1
Data On Delay Select SNDW #2
Data On Delay Select SNDW #3
Data On Delay Select SNDW #4
HD Audio DSP Features Configuration
Dmic Mono 38.4MHz
Dmic Stereo 38.4MHz
Dmic Quad 38.4MHz
Dmic Mono 24MHz
Dmic Stereo 24MHz
Dmic Quad 24MHz
Bluetooth 38.4MHz
Bluetooth 24MHz
I2S ALC274 38.4MHz
I2S ALC274 24MHz
I2S Codec Select
I2S Codec Bus Number
WoV (Wake on Voice)
Bluetooth Sideband
BT Intel HFP
BT Intel A2DP
Codec based VAD
DSP based speech
Voice Activity Detection
Waves Post-process
DTS
Intel SST Speech
Dolby
Waves Pre-process
Audyssey
Maxim Smart AMP
ForteMedia SAMSoft
Sound Research IP
Conexant Pre-Process
Conexant Smart Amp
Realtek Post-Process
Realtek Smart Amp
Icepower IP MFX sub module
Icepower IP EFX sub module
Icepower IP SFX sub module
Voice Preprocessing
Acoustic Context Awareness (ACA)
Custom Module ‘Alpha’
Custom Module ‘Beta’
Custom Module ‘Gamma’
THC Configuration
ISH Controller
Thermal Throttling Level
DMI Thermal Setting
SATA Thermal Setting
ME Firmware Versin
ME Firmware Mode
ME Firmware SKU
ME Firmware Status 1
ME Firmware Status 2
ME Firmware Status 3
ME Firmware Status 4
ME Firmware Status 5
ME Firmware Status 6
ME State
Manageability Features State
AMT BIOS Features
AMT Configuration
ME Unconfic on RTC Clear
Comms Hub Support
JHI Support
Core Bios Done Message
Firmware Update Configuration
PTT Configuration
FIPS Configuration
Unique Platform Id Configuration
ME Debug Configuration
Anti-Rollback SVN Configuration
Extend CSME Measurement to TPM-PCR
USB Provisioning of AMT
MAC Pass Through
Activate Remote Assistance Process
Unconfigure ME
ASF Configuration
Secure Erase Configuration
One Click Recovery (OCR) Configuration
ASF Configuration
PET Progress
Watchdog
OS Timer
BIOS Timer
ASF Sensors Table
Secure Erase Configuration
Secure Erase mode
Force Secure Erase
One Click Recovery(OCR) Configuration
OCR Https Boot
OCR PBA Boot
OCR Windows Recovery Boot
OCR Disable Secure Boot
Me FW Image Re-Flash
FW Update
PTT Configuration
FIPS Mode Select
Current FIPS mode
Crypto driver FIPS version
OEM Platform Id
CSME Platform Id
HECI Timeouts
SMBIOS type 130 OEM capabilities
BIOS Reflash Capability State
BIOS Boot to Setup Capability State
BIOS Pause Before Booting Capability State
BIOS Secure Boot Capability Exposure to FW State
vPro TBT Dock Support
Minimal Allowed Anti-Rollback SVN
Executing Anti-Rollback SVN
Enable All Thermal Functions
CPU Thermal Configuration
Platform Thermal Configuration
Intel(R) Dynamic Tuning Technology Configuration
Hardware Health Monitor
Current Tcc Activation Offset
Tcc Activation Offset
Tcc Offset Time Window
Tcc Offset Clamp Enable
Tcc Offset Lock Enable
Bi-directional PROCHOT#
Disable PROCHOT# Output
Disable VR Thermal Alert
PROCHOT Response
PROCHOT Lock
ACPI T States
Critical Trip Point
Active Trip Point 0
Active Trip Point 0 Fan Speed
Active Trip Point 1
Active Trip Point 1 Fan Speed
Passive Trip Point
Passive TC1 Value
Passive TC2 Value
Passive TSP Value
Active Trip Points
Passive Trip Points
Critical Trip Points
PCH Temp Read
CPU Energy Read
CPU Temp Read
Alert Enable Lock
CPU Temp
CPU Fan Speed
Intel(R) Dynamic Tuning Technology
INT3400 Device
Processor Thermal Device
PPCC Step Size
Intel(R) Dynamic Tuning Technology Configuration
FAN1 Device
FAN2 Device
FAN3 Device
Charger Participant
Power Participant
Battery Participant
PCH FIVR Participant
Sensor Device 1
Sensor Device 2
Sensor Device 3
Sensor Device 4
Sensor Device 5
Charging Method
Scan Matrix Keyboard Support
Power Loss Notification Feature
Device password support
Pmic Vcc IO Level
Pmic Vddq Level
CSC Pmic NVM Update Support
Pmic NVM Write Lock Support
Enable FFU Support
HID Event Filter Driver
System Time and Alarm Source
Enable PowerMeter
Aux Rail Budget (Watt)
System Firmware Update Config
VTIO
Restore Setup Default
Skip Power Check
Enable VTIO Support
BCLK Frequency
SIM Card Muxing
LAN 1 to LAN 2
LAN 3 to LAN 6
I/O Configuration Port
UART Port 1 Configuration
UART Port 2 Configuration
Fan Control
Hardware Monitor
UART Port 1
Base I/O Address
Interrupt
Sharing IRQ
Interrupt Polarity
Interrupt Mode
Peripheral Type
Clock Source
128 Bytes FIFO
COM1 Mode Selection
PWR_EN
PWR_SEL
UART Port 2
Base I/O Address
Interrupt
Sharing IRQ
Interrupt Polarity
Interrupt Mode
Peripheral Type
Clock Source
128 Bytes FIFO
COM1 Mode Selection
PWR_EN
PWR_SEL
CPUFANIN
Mode
PWM/DC Output
Output Buffer Type
PWM Duty Cycle (%)
AUXFANIN2
Mode
PWM/DC Output
Output Buffer Type
PWM Duty Cycle (%)
Refresh Cycle
VIN0
AVSB
3VCC
VHIF
3VSB
VBAT
VTT
SYSTIN
CPUTIN
AUXTIN
CPUFANIN
AUXFANIN2
Current TPM Device
TPM State
TPM Active PCR Hash Algorithm
TPM Hardware Supported Hash Algorithm
BIOS Supported Hash Algorithm
TrEE Protocol Version
TPM Availability
TPM Operation
Clear TPM
Set Supervisor Password
Boot Type
Quick Boot
Quiet Boot
Network Stack
PXE Boot Capability
Add Boot Options
USB Boot
UEFI OS Fast Boot
USB Hot Key Support
Timeout
EFI
Note: The EFI boot order configuration in this menu can only be changed if the Add Boot Options option above is set to First or Last.
In this menu, you set which devices the system can boot to, as well as change the order in which it attempts to boot. Highlight a boot device and press Enter to enable or disable booting to it. Use the F5 and F6 keys to move the boot device up and down the list.
Exit Saving Changes
Save Change Without Exit
Exit Discarding Changes
Load Optimal Defaults
Load Custom Defaults
Save Custom Defaults
Discard Changes
RAID (Redundant Array of Independent Disks) is a technology used to stitch multiple storage drives together into a single volume for a variety of purposes. The Intel W680 chipset on the Karbon 800 platform features Intel Rapid Storage Technology (RST), an integrated firmware-level RAID utility for SATA and NVMe disks. Intel RST on Alder Lake chipsets is only supported in Windows; Linux users will need to use a dedicated hardware RAID solution or a software-level RAID utility such as mdadm.
Because the RAID volumes are maintained at the firmware level, the disks in an array do not need to match perfectly. However, the timing parameters of all disks in a certain array, such as write speed, will be limited by the chipset to the lowest value among those disks.
On the Karbon platform, the M.2 B-Key, both M.2 M-Key, and both cabled SATA connectors can be configured in RAID arrays.
Different types of RAID arrays are referred to as “levels”. Intel RST on the Helix platform supports four RAID levels:
RAID 0 (Striped): In a RAID 0 array, data written to the volume is split between two or more disks. Each disk’s storage space is divided into blocks, the size of which can be set by the user. When writing data to the volume, the SATA controller will rotate block-by-block between the disks. This methodology can provide noticeable improvements to read and write speeds; however, if one disk in a RAID 0 array fails, the data on the entire volume will be lost.
RAID 1 (Mirrored): In a RAID 1 array, the SATA controller mirrors all data between two or more disks. The primary benefit of this methodology is that if a drive in the array is disconnected or fails altogether, the volume will continue to function as normal. If an OS is installed on the volume, it will not be interrupted by a failing drive. A drive can then be reconnected or replaced, at which time the SATA controller will rebuild the volume (note that the rebuild process can take several hours or even days for larger volumes). This RAID configuration has no noticeable effect on write speeds but typically improves read speeds, as the system can read from multiple disks simultaneously.
RAID 5 (Striped with Parity): A RAID 5 array functions similarly to a RAID 0 array in that it stripes data across multiple disks; however, for each set of blocks, it also writes a block of parity data that can be used to recover a block on another disk if it loses that data. Thus, you can achieve some of the performance gains of a RAID 0 array while being able to withstand a single disk failure. This methodology requires at least three disks.
RAID 10 (Striped and Mirrored): A RAID 10 array combines two RAID 1 arrays in a RAID 0 array. This allows you to achieve the performance gains of a RAID 0 array while still maintaining the fault tolerance of a RAID 1 array. Data is striped between the two RAID 1 volumes, which are able to withstand and rebuild after a failed disk. This methodology requires at least four disks. This RAID level is also sometimes referred to as RAID 1+0.
Recovery: Intel Rapid Recovery Technology creates a special RAID 1 array where instead of two equivalent disks, one disk is designated the “primary” and the other the “secondary”. Data is written to the primary drive, then copied to the secondary drive as a backup. This allows you to decide if you would like the mirroring to occur continuously or only on request; in addition, the time it takes to rebuild the array after a disk failure is decreased. However, the read speed improvements of a typical RAID 1 array are not seen here, as the SATA controller will typically only read from the primary drive.
Note: Creating a new RAID array will erase all filesystems and data on all the disks used.
From the main menu, select “Device Management”. You will be greeted with the Device Manager options pictured below. Select “Intel(R) Rapid Storage Technology” to continue.
Note: The Intel(R) Rapid Storage Technology menu will only appear if you have set the SATA Mode Selection option to Intel RST Premium With Intel Optane System Acceleration. This option is located in the main BIOS setup under Advanced > PCH-IO Configuration > SATA And RST Configuration.
This menu will list all existing RAID arrays, as well as all SATA disks that are not currently in an array. Select “Create RAID Volume” to continue.
The following menu will give you the option to specify the name of your RAID volume, the RAID level of the configuration, and which disks will become part of the array. Begin by specifying the name of the volume if desired and selecting a RAID Level.
Then, select which SATA disks will be used to create the array. Note that any disks being used in a different RAID array will not be selectable. If you are creating an array with the RAID level “Recovery”, you will need to select which drive is the primary (M) and which is the secondary (R).
For RAID 0, 5, and 10 configurations, you can specify the strip size if desired. The strip size options vary depending on the RAID level of the configuration. In addition, you can set the capacity of the volume if you would like it smaller than the maximum available. If you are creating a “Recovery” array, you can also select if the slave drive is synchronized with the master continuously or only on request.
Select “Create Volume” to return to the Device Manager menu. You should now see your new volume listed in the menu; hit F10 to save your new settings and Escape to return to the main BIOS menu.
Your RAID array is now created and ready for use.
The latest BIOS updates are available within the .
Default Value
<Enabled>
Default Value
<Auto Detection>
Default Value
<S0 State>
Default Value
<24 MHz>
Default Value
<96 MHz>
Default Value
<8T Mode>
Default Value
<Windows 10 Voice Activation>
Default Value
<119 C (POR)>
Default Value
<71 C>
Default Value
<100>
Default Value
<55 C>
Default Value
<75>
Default Value
<95 C>
Default Value
<SA Thermal Device>
Default Value
<0.5 Watts>
Default Value
<Mode 3>
Default Value
<38Fh>
Default Value
<IRQ4>
Default Value
<Exclusive>
Default Value
<Active-High>
Default Value
<Edge-Triggered>
Default Value
<RS232>
Default Value
<1.8462 MHz>
Default Value
<Pure RS-232>
Default Value
<5V>
Default Value
<28FH>
Default Value
<IRQ3>
Default Value
<Exclusive>
Default Value
<Active-High>
Default Value
<Edge-Triggered>
Default Value
<RS232>
Default Value
<1.8462 MHz>
Default Value
<Pure RS-232>
Default Value
<5V>
Default Value
<Manual>
Default Value
<PWM Duty Cycle (%)>
Default Value
<Open-Drain>
Default Value
50
Default Value
<Manual>
Default Value
<PWM Duty Cycle (%)>
Default Value
<Open-Drain>
Default Value
<Open-Drain>
Default Value
1.1
Default Value
Available
Default Value
No Operation
Default Value
<UEFI Boot Type>
Default Value
Disabled
Default Value
<Auto>
BIOS Page
Front Page
Description
Opens the list of detected bootable devices, allowing you to manually select a device to boot, such as an OS or PXE
Type
Menu
BIOS Page
Front Page
Description
Opens the Device Manager menu which includes a configuration menu for Intel Rapid Storage Technology and a Network Device List (if RST and Network Stack are enabled)
Type
Menu
BIOS Page
Front Page
Description
Allows you to boot from a UEFI bootable file
Type
Menu
BIOS Page
Front Page
Description
Opens the Secure Boot configuration menu
Type
Menu
BIOS Page
Front Page
Description
Opens the primary BIOS configuration menu referenced in sections 2 through 6 of this manual
Type
Menu
BIOS Page
Front Page
Description
Opens the Intel Management Engine BIOS Extension (MEBx) configuration interface
Type
Information
BIOS Page
Main Page
Description
Displays current memory transfer rates
Type
Information
BIOS Page
Main Page
Description
Displays total amount of Cache RAM available on the CPU
Type
Information
BIOS Page
Main Page
Description
Displays the total amount of System RAM
Type
Information
BIOS Page
Main Page
Description
Displays CPUID of the processor installed
Type
Information
BIOS Page
Main Page
Description
Displays base frequency of installed CPU
Type
Information
BIOS Page
Main Page
Description
Displays the silicon and metal revision of the CPU
Type
Information
BIOS Page
Main Page
Description
Displays L1 Cache sizes, L1 Instruction Sizes, L2 Cache, and L3 Cache for both Efficient (Atom) and Performance cores
Type
Information
BIOS Page
Main Page
Description
Displays the total Core(s) and Thread(s) available on the CPU and separates them from Atom and Performance Cores
Type
Information
BIOS Page
Main Page
Description
Displays the revision of Microcode being used in the BIOS
Type
Information
BIOS Page
Main Page
Description
Displays the information about the iGPU on the CPU
Type
Information
BIOS Page
Main Page
Description
Displays whether the CPU supports SMX (Safer Mode Extensions) or TXT (Trusted Execution Technology)
Type
Information
BIOS Page
Main Page
Description
Displays the onboard chipset as well as it’s silicon and metal layer revision/step
Type
Information
BIOS Page
Main Page
Description
Displays the GOP Version used by the BIOS
Type
Information
BIOS Page
Main Page
Description
Displays the version of the EC (Embedded Controller) used (N/A on K800 series)
Type
Information
BIOS Page
Main Page
Description
Displays the FAB ID embedded in the BIOS (0 for K800 series)
Type
Information
BIOS Page
Main Page
Description
Displays the ME Version and SKU (Corporate on K800 series)
Type
Information
BIOS Page
Main Page
Description
Displays the LAN PHY Revision (K800 series does not use integrated PHY, will display N/A)
Type
Configurable Setting
BIOS Page
Main Page
Description
Allows BIOS Language to be selected
Type
Information
BIOS Page
Main Page
Description
Displays the time in HH:MM:SS. Valid range is from 0 to 23, 0 to 59, 0 to 59. Use +/- to increase/decrease
Type
Information
BIOS Page
Main Page
Description
Displays the date in MM:DD:YYYY. Valid range is from 1 to 12, 1 to 31, 2000 to 2099. Use +/- to increase/decrease
Type
Configurable Setting
BIOS Page
Advanced Page > Boot Configuration
Description
Sets state of Num Lock key when system is booted
Default Value
Off
Type
Information
BIOS Page
Advanced Page > SATA Configuration
Description
Displays model number of device installed in each SATA Port
Type
Information
BIOS Page
Advanced Page > Chipset Configuration (Intel PTT)
Description
Enables or Disables Intel Platform Trust Technology (PTT).
Default Value
Enabled
Type
Sub-Menu
BIOS Page
Advanced Page > ACPI Table/Features Control
Description
Opens ACPI Settings Menu
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control
Description
Enables or Disables FACP S4 Wakeup via the RTC
Default Value
Enabled
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control
Description
Enables or disables IO APIC Mode
Default Value
Enabled
Type
Information
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Displays the current ACPI Version
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables ACPI Auto Configuration
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables Hibernation support
Default Value
[X] (Enabled)
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables PTID support
Default Value
[X] (Enabled)
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
PECI Access Method select between Direct I/O or ACPI
Default Value
<Direct I/O>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or disables Sleep ACPI S3 support
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enable or disable Native PCIe Control
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables Native Active State Power Management (ASPM)
Possible Values
<Auto>
<Enabled - OS Controlled ASPM>
<Disabled - BIOS Controlled ASPM>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables Native Active State Power Management (ASPM)
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables ACPI Debug
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables RTD3 support for Storage. PCIe Storage PEP constraint needs to be set as D0/F1 under ACPI Settings > PEP PCie Storage when this setup is Disabled/D3Hot
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enable or Disable ACPI Lower Power S0 Idle Capability (mutually exclusive with Smart Connect). While this is enabled, it also disables 8254 timer for SLP_S0 support.
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enables or Disables Native Active State Power Management (ASPM)
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enable or Disable ACPI Lower Power S0 Idle Capability (mutually exclusive with Smart Connect). While this is enabled, it also disables 8254 timer for SLP_S0 support.
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
Enable or Disable ACPI additions for Firmware latency optimizations
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Advanced Page > ACPI Table/Features Control > ACPI Settings
Description
When disabled, MSI support is disabled in FADT
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > Connectivity Configuration
Description
Displays whether a CNVi module is present (Not supported on K800 series)
Type
Configurable Setting
BIOS Page
Advanced Page > Connectivity Configuration
Description
Configures CNVi Connectivity
Possible Values
<Auto Detection> if a discrete solution is discovered, it will be enabled by default
<Disable Integrated> Disables Integrated solution
(Not supported on K800 series)
Type
Configurable Setting
BIOS Page
Advanced Page > Connectivity Configuration
Description
Enables or Disables RFI Mitigation for DDR-RFIM
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Advanced Page > Connectivity Configuration
Description
Enables or disables CoExistence Manager
(Not supported on K800 series)
Default Value
<Disabled>
Type
Sub-Menu
BIOS Page
Advanced Page > PCIE Configuration
Description
Opens up IMR Configuration - K800 does not support this and leads to a blank menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens USB Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens Security Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens HD Audio Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens THC Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens ISH (Intel Sensor Hub) Settings Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO
Description
Opens PCH Thermal Throttling Control Settings Menu
Type
Information
BIOS Page
Advanced Page > PCH-IO
Description
Displays status of PCH LAN Controller. K800 does not use internal PCH controller, and therefore has the GbE Region Disabled
Default Value
<No GbE Region>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Displays status of the i225-LM LAN Controller (LAN1)
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Enables or disables Wake on LAN Support
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Enables/Disables EFI Network support for onboard LAN
Default Value
<Onboard NIC>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Enables or disables DeepSx or Deep Sleep/Ultra Low power states
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Enables or disables Wake on WLAN and BT Enable for CNVi cards (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO
Description
Defines the state after entering a G3 state (Power unplugged from system entirely)
Possible Values
<S0 State>
<S5 State>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Enables or Disables xDCI Support for USB OTG (Not supported on K800 Series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Select ‘Enabled’ if Port Disable Override functionality is used
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Enables or Disables overcurrent notifications in the Operating systems
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Select ‘Enabled’ if Overcurrent functionality is used. Enabling this will make xHCI controller consume the Overcurrent mapping data
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Enables or Disables USB Audio Offloading
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Enable or Disable HSII feature. It may lead to increased power consumption
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > USB Configuration
Description
Enables or Disables override capabilities on USB Ports
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Security Configuration
Description
Enables or Disables RTC Memory Lock
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Security Configuration
Description
Enables or Disables BIOS Lock
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Security Configuration
Description
Enables or Disables forcing all GPIO pads to be in an unlocked state
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables the onboard audio (ALC888)
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables the Audio DSP
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Selects the audio DSP, default is HD Audio Inbox for Windows/Intel Smart Sound Technology
Default Value
<UAA (HDA Inbox/IntelSST)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or Disables the HD Audio Link
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables DMIC #0 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables DMIC #1 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #0 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #1 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #2 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #3 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #4 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SSP #5 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SNDW #1 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SNDW #2 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SNDW #3 (Not supported on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Enables or disables SNDW #4 (Not supported on K800 series)
Default Value
<Disabled>
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Opens HD Audio Advanced Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration
Description
Opens HD Audio DSP Features Configuration
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables iDisplay Audio Connect
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Codec Sx Wake Capabilities
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables PME (Power Management Event) wake of HD Audio Controller during POST
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Selects clock frequency for HD Audio Link - OnLogic has only validated 24MHz functionality. Changing this setting may impact performance/functionality
Possible Values
<6 MHz>
<12 MHz>
<24 MHz>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Selects clock frequency for iDisplay Audio Link
Possible Values
<48 MHz>
<96 MHz>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Selects iDisplay Audio Link T-Mode
Possible Values
<1T Mode>
<2T Mode>
<4T Mode>
<8T Mode>
<16T Mode>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Autonomous Clock Stop on SNDW #1 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Autonomous Clock Stop on SNDW #2 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Autonomous Clock Stop on SNDW #3 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Autonomous Clock Stop on SNDW #1 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Active on Interval Select SNDW #1 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Active on Interval Select SNDW #2 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Active on Interval Select SNDW #3 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Active on Interval Select SNDW #4 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Delay Select for SNDW #1 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Delay Select for SNDW #2 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Delay Select for SNDW #3 (Not supported by K800)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Data On Delay Select for SNDW #4 (Not supported by K800)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Mono 38.4MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Stereo 38.4MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Stereo 38.4MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Mono 24MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Stereo 24MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Dmic Quad 24MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Bluetooth 38.4MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the Bluetooth 24MHz audio
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the I2S ALC274 38.4MHz audio (K800 Series uses ALC888)
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the I2S ALC274 24MHz audio (K800 Series uses ALC888)
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the I2S Codec selection
Type
Information
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio DSP Features Configuration
Description
Displays the status of the I2S Codec Bus Number (K800 uses HDA not I2S bus)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Wake on Voice functionality
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Bluetooth Sideband
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Bluetooth Intel HFP
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Bluetooth Intel A2DP
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables codec based VAD
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables DSP based speech
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables DSP based speech
<Intel Wake on Voice>
<Windows 10 Voice Activation>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Waves Post-process
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables DTS
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Intel SST Speech
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Dolby
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Waves Pre-process
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Audyssey
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Maxim Smart AMP
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables ForteMedia SAMSoft
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Sound Research IP
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Conexant Pre-Process
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Conexant Smart Amp
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Realtek Post-Process
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Realtek Smart Amp
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Icepower IP MFX sub module
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Icepower IP EFX sub module
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Icepower IP SFX sub module
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Voice Preprocessing
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Acoustic Context Awareness (ACA)
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Custom Module ‘Alpha’
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Custom Module ‘Beta’
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Custom Module ‘Gamma’
Default Value
[ ] (Disabled)
Type
Information
BIOS Page
Advanced Page > PCH-IO > THC Configuration
Description
THC (Touch Host Controller) Configuration is not Available on K800 Series
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > HD Audio Configuration > HD Audio Subsystem Advanced Configuration Settings
Description
Enables or Disables Intel Sensor Hub (Not used on K800 Series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Pch Thermal Throttling Control
Description
Decide whether to use suggested settings, or set to manual settings
Default Value
<Suggested Setting>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Pch Thermal Throttling Control
Description
Decide whether to use suggested settings, or set to manual settings
Default Value
<Suggested Setting>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Pch Thermal Throttling Control
Description
Decide whether to use suggested settings, or set to manual settings
Default Value
<Suggested Setting>
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Version
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Mode
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware SKU
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 1
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 2
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 3
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 4
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 5
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the Intel Management Engine Firmware Status 6
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the status of the Management Engine
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the status of the Management Engine Manageability Features state
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Displays the status of the AMT BIOS Features
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens AMT Configuration Sub-Menu
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Enables or disables unconfiguration upon RTC Clear
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Enables or disables Comms Hub Support
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Enables or disables JHI Support
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Enables or disables Core Bios Done Message
Default Value
<Enabled>
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens Firmware Update Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens PTT Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens PTT FIPS Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens Unique Platform Id Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens ME Debug Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Opens Anti-Rollback SVN Configuration Sub-Menu
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration
Description
Enables or disables Extending CSME Measurement to TPM-PCR
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Enables or disables USB Provisioning of AMT
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Enables or disables MAC Pass Through on the AMT enabled port (i225-LM/LAN1)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Enables or disables Remote Assistance Process
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Unconfigures the current Management Engine settings
Default Value
[ ] (Disabled)
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Opens ASF (Alert Standard Format) Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Opens Secure Erase Configuration Sub-Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Opens Secure Erase Configuration Sub-Menu
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > ASF Configuration
Description
Enable/Disable PET Events Progress to receive PET Events
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > ASF Configuration
Description
Enable/Disable Watchdog
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > ASF Configuration
Description
Set the OS Timer for the Watchdog
Default Value
[0]
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > ASF Configuration
Description
Set the BIOS Timer for the Watchdog
Default Value
[0]
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > ASF Configuration
Description
Display the ASF (Alert Sensor Format) Sensors Table
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > Secure Erase Configuration
Description
Define the secure erase mode - Either Simulated or Real
Default Value
<Simulated>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > Secure Erase Configuration
Description
Enable/Disable Force Secure Erase
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > One Click Recovery(OCR) Configuration
Description
Enable/Disable One Click Recovery Https Boot
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > One Click Recovery(OCR) Configuration
Description
Enable/Disable One Click Recovery PBA Boot
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > One Click Recovery(OCR) Configuration
Description
Enable/Disable One Click Recovery Windows Recovery Boot
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > One Click Recovery(OCR) Configuration
Description
Enable/Disable One Click Recovery Windows Boot
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > Firmware Update Configuration
Description
Enable/Disable Me FW Image Re-Flash Function
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration > Firmware Update Configuration
Description
Enable/Disable Me FW Update
Default Value
<Enabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > PTT Configuration
Description
Displays the status of PTT
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > FIPS Configuration
Description
FIPS Mode Configuration
Default Value
<Enabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > FIPS Configuration
Description
Displays the status of the current FIPS mode
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > FIPS Configuration
Description
Displays the Crypto driver FIPS version
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > Unique Platform Id Configuration
Description
Displays the OEM Platform ID
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > Unique Platform Id Configuration
Description
Displays the OEM CSME Platform ID
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration
Description
Enable/Disable HECI Send/Receive Timeouts
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration > SMBIOS type 130 OEM Capabilities
Description
Enable BIOS Reflash Capabilities
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration > SMBIOS type 130 OEM Capabilities
Description
Enable BIOS capabilities to boot to setup
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration > SMBIOS type 130 OEM Capabilities
Description
Enable the BIOS to pause before booting to capability states
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration > SMBIOS type 130 OEM Capabilities
Description
Enable or Disabled BIOS Secure Boot Capability Exposure to FW State
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > ME Debug Configuration > SMBIOS type 130 OEM Capabilities
Description
Enable or Disable vPro Support over a Thunderbolt Dock (K800 does not support Thunderbolt)
Default Value
[X] (Enabled)
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > Anti-Rollback SVN Configuration
Description
Displays the minimum amount of allowed (SVN) Serial Version Number Anti-Rollbacks
Type
Information
BIOS Page
Advanced Page > PCH-IO > PCH-FW Configuration > Anti-Rollback SVN Configuration
Description
Displays the amount of allowed (SVN) Serial Version Number Anti-Rollbacks
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration
Description
Enables or Disables thermal functions of the K800
Default Value
<Enabled>
Type
Sub-Menu
BIOS Page
Advanced Page > Thermal Configuration
Description
Opens CPU Thermal Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > Thermal Configuration
Description
Opens Platform Thermal Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > Thermal Configuration
Description
Opens Intel(R) Dynamic Tuning Technology Configuration Menu
Type
Sub-Menu
BIOS Page
Advanced Page > Thermal Configuration
Description
Opens Hardware Health Monitor Menu
Type
Information
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Displays the current TCC Activation Offset
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Allows setting of Tcc Activation Offset
Default Value
[0]
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Allows setting the time window for Tcc Offset
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the Tcc Offset Clamp
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the Tcc Lock Clamp
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables Bi-Directional PROCHOT#
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the PROCHOT# output
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the VR Thermal Alert
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the PROCHOT Response
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the PROCHOT Lock
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > Thermal Configuration > CPU Thermal Configuration
Description
Enables or Disables the ACPI T-States
Default Value
[ ] (Disabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value controls the temperature of the ACPI Critical Trip Point - the point in which the OS will shut the system off.
Possible Values
<15 C>
<23 C>
<31 C>
<39 C>
<47 C>
<55 C>
<63 C>
<71 C>
<79 C>
<87 C> <95 C>
<100 C>
<111 C>
<119 C (POR)>
<127 C>
<130 C>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value controls the temperature of the ACPI Active Trip Point 0 - the point in which the OS will turn the processor fan on Active Trip Point 0 Fan Speed
Possible Values
<Disabled>
<15 C>
<23 C>
<31 C>
<39 C>
<47 C>
<55 C>
<63 C>
<71 C>
<79 C>
<87 C> <95 C>
<100 C>
<111 C>
<119 C (POR)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Active Trip Point 0 Fan Speed in percentage. Value must be between 0 (Fan off) - 100 (Max fan speed). This is the speed at which the fan will run when the Active Trip Point 0 threshold is met
Possible Values
Any value between 0 and 100
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value controls the temperature of the ACPI Active Trip Point 0 - the point in which the OS will turn the processor fan on Active Trip Point 1 Fan Speed
Possible Values
<Disabled>
<15 C>
<23 C>
<31 C>
<39 C>
<47 C>
<55 C>
<63 C>
<71 C>
<79 C>
<87 C> <95 C>
<100 C>
<111 C>
<119 C (POR)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Active Trip Point 0 Fan Speed in percentage. Value must be between 0 (Fan off) - 100 (Max fan speed). This is the speed at which the fan will run when the Active Trip Point 1 threshold is met
Possible Values
Any value between 0 and 100
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value controls the temperature of the ACPI Passive Trip Point -the point in which the OS will begin throttling the processor
<Disabled>
<15 C>
<23 C>
<31 C>
<39 C>
<47 C>
<55 C>
<63 C>
<71 C>
<79 C>
<87 C> <95 C>
<100 C>
<111 C>
<119 C (POR)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value sets the TC1 value for the ACPI Passive Cooling Formula. Range 1-16
Default Value
[1]
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This value sets the TC2 value for the ACPI Passive Cooling Formula. Range 1-16
Default Value
[5]
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
This item sets the TSP value for the ACPI Passive Cooling Formula. It represents in tenths of a second how often the OS will read the temperature when passive cooling is enabled. Range 2-32
Default Value
[10]
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables the Active Trip Points
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables the Passive Trip Points
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables the Passive Trip Points
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables temperature reading of the PCH
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables CPU Energy Read
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables temperature reading of the CPU
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Enables or Disables the Alert Enable Lock
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Displays the current CPU Temperature
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Platform Thermal Configuration
Description
Displays the current CPU Fan Duty Cycle
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enables or Disables Intel(R) DTT
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enables or Disables Intel3400 device
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or Disable Processor Thermal Device
Possible Values
<Disabled>
<SA Thermal Device>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Sets the PPCC Step Size (Step size for Turbo power limit (RAPL) control)
<0.5 Watts>
<1.0 Watts>
<1.5 Watts>
<2.0 Watts>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Allows you to select the configuration of Intel(R) DTT
Default Value
[0]
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Status of FAN1 device
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Status of FAN2 device
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Status of FAN3 device
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable charger participant (Not available on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Power participant (Not available on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Battery participant (Not available on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable PCH FIVR participant (Not available on K800 series)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Sensor Device 1 (Not available on K800 series)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Sensor Device 2 (Not available on K800 series)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Sensor Device 3 (Not available on K800 series)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Sensor Device 4 (Not available on K800 series)
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > PCH-IO > Thermal Configuration > Intel(R) Dynamic Tuning Technology Configuration
Description
Enable or disable Sensor Device 5 (Not available on K800 series)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Define the charing method (Not available on K800 Series)
Default Value
<Normal Charging>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Enable or Disable Scan Matrix Keyboard Support
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Define the Power Loss Notification Feature
Default Value
<Default>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Enable or disable device password support
Default Value
[X] (Enabled)
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Define the PMIC VCC IO Level (K800 does not use a PMIC)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Define the PMIC VDDQ Level (K800 does not use a PMIC)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Ability to update PMIC NVM (K800 does not use a PMIC)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Ability to update PMIC NVM (K800 does not use a PMIC)
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Enable FFU Support
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Enables the HID Event Filter Driver
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Defines the System Time and Alarm Source
Default Value
<ACPI Time and Alarm Device>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Enables or disables PowerMeter
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Defines the power budget for the VCCAUX power rail. Setting this to any lower than 6 may lead to abnormal system behavior
Default Value
[6]
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Opens System Firmware Update Config Menu
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > Platform Settings
Description
Opens the VTIO Menu
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings > System Firmware Update Config
Description
When enabled resets the systems BIOS settings
Default Value
<Disabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings > System Firmware Update Config
Description
Skips the power check during POST
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > Platform Settings > VTIO
Description
Enables VTIO Support
Default Value
<Disabled>
Type
Information
BIOS Page
Advanced Page > CPU - BCLK Clock Settings
Description
Displays the BCLK frequency of the system
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > OnLogic Feature Configuration
Description
Enables VTIO Support
Possible Values
<Mode 1> - UIM1 to mPCIe, UIM2 to B-Key
<Mode 2> - UIM1 to B-Key, UIM2 to mPCIe
<Mode 3> - UIM1 & UIM2 to B-Key <Mode 4> - UIM1 & UIM2 to mPCIe
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > OnLogic Feature Configuration
Description
Enables LAN 1 and LAN 2
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > OnLogic Feature Configuration
Description
Enables LAN 3, LAN 4, LAN 5, and LAN 6
Default Value
<Enabled>
Type
Information
BIOS Page
Advanced Page > SIO NCT5525D
Description
Displays memory location of the SIO
Type
Sub-Menu
BIOS Page
Advanced Page > SIO NCT5525D
Description
Opens the configuration menu for UART Port 1
Type
Sub-Menu
BIOS Page
Advanced Page > SIO NCT5525D
Description
Opens the configuration menu for UART Port 2
Type
Sub-Menu
BIOS Page
Advanced Page > SIO NCT5525D
Description
Opens the Fan Control Menu
Type
Sub-Menu
BIOS Page
Advanced Page > SIO NCT5525D
Description
Opens the Hardware Monitor Menu
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Enables or disables UART Port 1
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Base I/O Address for UART Port 1
Possible Values
<3F8h>
<2F8h>
<3E8h>
<2E8h>
<338h>
<228h>
<220h>
<238h>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Interrupt for UART Port 1
Possible Values
<IRQ3>
<IRQ4>
<IRQ5>
<IRQ6>
<IRQ7>
<IRQ10>
<IRQ11>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines IRQ Exclusivity for UART Port 1
Possible Values
<Shared>
<Exclusive>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Interrupt Polarity for UART Port 1
Possible Values
<Active-High>
<Active-Low>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Interrupt Mode for UART Port 1
Possible Values
<Level-Triggered>
<Edge-Triggered>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Peripheral Type for UART Port 1
Possible Values
<RS232>
<RS485>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the frequency of the clock source
Possible Values
<1.8462 MHz>
<2 MHZ>
<24 MHz>
<14.769 MHz>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Enables or Disable 128 Byte FIFO
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the mode the transceiver for COM1 will transmit in
Possible Values
<Low Power Shutdown>
<Pure RS-232>
<RS-485 Half Duplex (TX ENABLE Low Active)>
<RS-485 Half Duplex (TX ENABLE High Active)>
<RS-485 Half Duplex (Terminated)>
<RS-422 Full Duplex>
<Pure RS-232 (co-exists with RS485)>
<RS-422 Full Duplex (Terminated)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Enable the power output on Pin 9 Ring Indicator
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 1 Configuration
Description
Defines the Voltage on Pin 9 Ring Indicator
Possible Values
<5V>
<12V>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Enables or disables UART Port 2
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Base I/O Address for UART Port 2
Possible Values
<3F8h>
<2F8h>
<3E8h>
<2E8h>
<338h>
<228h>
<220h>
<238h>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Interrupt for UART Port 2
Possible Values
<IRQ3>
<IRQ4>
<IRQ5>
<IRQ6>
<IRQ7>
<IRQ10>
<IRQ11>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines IRQ Exclusivity for UART Port 2
Possible Values
<Shared>
<Exclusive>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Interrupt Polarity for UART Port 2
Possible Values
<Active-High>
<Active-Low>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Interrupt Mode for UART Port 2
Possible Values
<Level-Triggered>
<Edge-Triggered>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Peripheral Type for UART Port 2
Possible Values
<RS232>
<RS485>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the frequency of the clock source
Possible Values
<1.8462 MHz>
<2 MHZ>
<24 MHz>
<14.769 MHz>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Enables or Disable 128 Byte FIFO
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the mode the transceiver for COM1 will transmit in
Possible Values
<Low Power Shutdown>
<Pure RS-232>
<RS-485 Half Duplex (TX ENABLE Low Active)>
<RS-485 Half Duplex (TX ENABLE High Active)>
<RS-485 Half Duplex (Terminated)>
<RS-422 Full Duplex>
<Pure RS-232 (co-exists with RS485)>
<RS-422 Full Duplex (Terminated)>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Enable the power output on Pin 9 Ring Indicator
Default Value
<Enabled>
Type
Configurable
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > UART Port 2 Configuration
Description
Defines the Voltage on Pin 9 Ring Indicator
Possible Values
<5V>
<12V>
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Displays the status of CPUFANIN (The external fan on the K800)
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Defines the Mode the Fan can operate
Possible Values
<Manual>
<Thermal Cruise>
<Speed Cruise>
<Smart Fan IV>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the fan in PWM or DC mode
Possible Values
<PWM Duty Cycle (%)>
<DC Voltage (%)>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the output buffer type
Possible Values
<Open-Drain>
<Push-Pull>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the Duty Cycle for the external fan header on the K800
Possible Values
Any value between 0 and 100
Type
Sub-Menu
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Displays the status of AUXFANIN2 (Fan control on Riser cards featured on K803 and K804)
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Defines the Mode the Fan can operate (Fan control on Riser cards featured on K803 and K804)
Possible Values
<Manual>
<Thermal Cruise>
<Speed Cruise>
<Smart Fan IV>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the fan in PWM or DC mode (Fan control on Riser cards featured on K803 and K804)
Possible Values
<PWM Duty Cycle (%)>
<DC Voltage (%)>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the output buffer type (Fan control on Riser cards featured on K803 and K804)
Possible Values
<Open-Drain>
<Push-Pull>
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Fan Control
Description
Sets the Duty Cycle for the fan control on Riser cards featured on K803 and K804
Possible Values
Any value between 0 and 100
Type
Configurable Setting
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Sets the refresh rate for sensors to be updated
Default Value
[1]
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the 12V rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the 3.3V auxiliary Standby rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the 3.3V rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the 1.8V rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the 3.3V standby rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the CMOS battery
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured Voltage on the VTT Power Rail
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured temperature on the chipset
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the measured temperature on the CPU
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Reserved for future thermal sensing
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the CPU Fan Speed (Located on the I/O of the K800)
Type
Information
BIOS Page
Advanced Page > PCH-IO > SIO NCT5525D > Hardware Monitor
Description
Displays the Fan Speed on the risers for K803 and K804
Type
Information
BIOS Page
Security Page
Description
Displays current TPM device
Type
Information
BIOS Page
Security Page
Description
Displays current TPM state
Type
Information
BIOS Page
Security Page
Description
Displays active PCR hash algorithm
Type
Information
BIOS Page
Security Page
Description
Displays hardware supported hash algorithm
Type
Information
BIOS Page
Security Page
Description
Displays BIOS supported hash algorithm
Type
Configurable Setting
BIOS Page
Security Page
Description
Sets the TrEE Protocol Version: 1.0 or 1.1. Possible values: 1.1, 1.0. Default value: 1.1
Possible Values
1.1, 1.0
Type
Configurable Setting
BIOS Page
Security Page
Description
Enables or Disables the TPM hardware
Possible Values
Available (enabled), Hidden (disabled)
Type
Configurable Setting
BIOS Page
Security Page
Description
Sets the TPM2 operation state
Possible Values
- No Operation
- Enable
- SetPCRBanks(Algorithm)
- LogAllDigests
- SetPPRequiredForClear_True
- SetPPRequiredForClear_False
- SetPPRequiredForTurnOn_False
- SetPPRequiredForTurnOn_True
- SetPPRequiredForTurnOff_False
- SetPPRequiredForTurnOff_True
- SetPPRequiredForChangePCRs_False
- SetPPRequriedForChangePCRs_True
- SetPPRequiredForChangeEPS_False
- SetPPRequiredForChangeEPS_True
- ChangeEPS
Type
Configurable Setting
BIOS Page
Security Page
Description
Enables or Disables clearing TPM user data such as passwords, certificates, and keys
Default Value
[ ] (disabled)
Type
Configurable Setting
BIOS Page
Security Page
Description
Sets or Changes the supervisor password
Note: The password must be more than one character in length
Type
Configurable Setting
BIOS Page
Boot Page
Description
Sets the boot mode
Possible Values
UEFI Boot Type
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables Quick Boot
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables Quiet Boot
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables the onboard NICs before UEFI handoff
Default value: Disabled
Default Value
Disabled
Type
Configurable Setting
BIOS Page
Boot Page
Description
Sets the PXE Boot mode
Note: This setting is unavailable unless Network Stack is Enabled
Possible Values
- Disabled
- UEFI: IPv4
- UEFI: IPv6
- UEFI: IPv4/IPv6
Type
Configurable Setting
BIOS Page
Boot Page
Description
Sets which device in the boot order list the system will attempt to boot first and the direction it will move through the list (see section 5.1 below)
Possible Values
- Auto (boot order is not configurable, uses the system default)
- First (system moves through the boot order list top to bottom)
- Last (system moves through the boot order list bottom to top)
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables booting from USB devices
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables Fast Boot mode. When enabled, the BIOS will not initialize the keyboard during boot or watch for the BIOS menu keypress
Default Value
<Disabled>
Type
Configurable Setting
BIOS Page
Boot Page
Description
Enables or Disables USB Hot Key Support
Default Value
<Enabled>
Type
Configurable Setting
BIOS Page
Boot Page
Description
The number of seconds that the firmware will wait before booting the original default boot selection
Default Value
[0]
Type
Sub-Menu
BIOS Page
Boot Page
Description
Opens the EFI Boot Order sub-menu (see section 5.1 below)
Type
Exit Mode
BIOS Page
Exit Page
Description
Saves your changes and exits the BIOS setup menu
Type
Exit Mode
BIOS Page
Exit Page
Description
Saves your changes, but does not exit the BIOS setup menu
Type
Selectable
BIOS Page
Exit Page
Description
Exits the BIOS setup menu without saving your changes
Type
Selectable
BIOS Page
Exit Page
Description
Loads the firmware’s optimal default settings
Type
Selectable
BIOS Page
Exit Page
Description
Loads user-specified set of default settings
Type
Selectable
BIOS Page
Exit Page
Description
Saves current settings as user-specified set
Type
Selectable
BIOS Page
Exit Page
Description
Discards all changes, but does not exit the BIOS setup menu




















