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K400 Series

K410 / K430

1- Product Overview

1.1- Introduction

The OnLogic Karbon 400 Series Industrial PC (ADPM) packs the power and advanced IoT capabilities of the latest Intel® Atom® x6000E processors (formerly Elkhart Lake) into low profile, rugged and fanless systems built for the challenges of the IoT Edge.

The OnLogic Karbon 400 Series Industrial PC (ADPM) was designed to be installed anywhere you need ultra-reliable computing power. Sensitive internal components are protected from dust, debris, chemicals, and moisture with OnLogic's integrated Hardshell™ Fanless Technology. Its rugged design, -40° to 70°C operating temperature range, 9~48 V power input, and the absence of any moving parts dramatically improve the lifespan and reliability of the system.

1.2- Safety

Safety Precautions, Safeguards & Information

Do not open and modify the device! The device complies with various national and international Safety, EMC and Environmental requirements per various standards.

Modification of the device may void certifications, warranty and/or cause possible injury to the user.

Safe use and installation instructions

Précautions et guide d’installation

Ne pas ouvrir et modifier l'appareil ! L'appareil est conforme à diverses exigences nationales et internationales en matière de sécurité, de CEM et d'environnement selon diverses normes.

La modification de l'appareil peut annuler les certifications, la garantie et/ou causer des blessures à l'utilisateur.

.

1.3- Box Contents & Accessories

Accessories

  • Terminal block kit (Power, CAN bus)

  • Rubber Feet (4)

If you purchased additional items such as mounting brackets, power supplies, or cables, they will be located in the system box or within the outer shipping carton.

For more information on accessories and additional features, you can visit the product pages here:

Karbon 400 Series Page:

Karbon 410 Page:

Karbon 430 Page:

Specification
Karbon K410
Karbon 430

Radio Specifications when equipped with INT-9260 Wifi/BT (device for indoor use)

The front power button can be used to turn on and off the Karbon system. The power button is a momentary contact button with a blue LED backlight used to display the status of the system. A single press while the system is on will initiate a graceful shutdown operation from the OS. Pressing and holding the button for 4 seconds while the system is running will cause a hard reset of the system. The system can be woken by a single press of the power button from any state.

The LED backlight will indicate the system status. A solid blue light indicates that the system is powered in the S0 state. A flashing blue light indicates the system is in the sleep state. The LED is off in S5 and deep sleep states.

A 3FF Micro-SIM card slot is present on the front panel of the Karbon 400 platform allowing native support for OnLogic cellular modules. The SIM signals can be connected to either the mPCIe or M.2 B-Key internal expansion slots. This selection is controlled in BIOS with the default BIOS setting being mPCIe. Please refer to the BIOS user manual for more information.

The SIM slot is a Push-Push type receptacle. 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.

There are two USB 2.0 Type-A ports on the front panel of the K400 platform. These ports are capable of linking at 480Mbps transfer rates.

There are two USB 3.2 Gen 2 Type A ports on the front panel of the K400 platform. These ports are capable of linking at 10Gbps transfer rates.

The K400 platform supports an optional COM DB9 add-in card (OnLogic MOD109). The serial port mode and voltage between Off/5V/12V on Pin 9 on K400 can be selected in the BIOS configuration. The serial ports support RS-232, RS-422, and RS-485 configurations. Refer to the for configuration instructions.

The K410/K430 platform supports an optional Isolated Digital I/O add-in card ().

This option allows for integration of the Karbon 400 Series with existing PLC integrations or other digital logic applications. A complete explanation of features, operating voltages, and safety information, is available in the DIO expansion information in the Add-in Modules section (2.4) of this page.

Mainboard power is applied to the Karbon 400 platform by Dinkle 2EHDRM-03P (Mating part: Dinkle: 2ESDVM-03P or equivalent 5.08mm pitch terminal plug). The system is operational from 9V~48V. The maximum rated current of the connector is 15A per pin. Use a wire gauge that is rated for the operational current. The ignition pin may be used to turn the system on when configured. The timing

is configurable through the OS, similar to K700/K300 configurations. Please see the on this page for Ignition and timing configuration. See below for on-board connector pinout.

Supports CAN 2.0 A/B at 100-1000 kbaud via the Programmable Services Engine. Messages may be sent/received through the HECI (Host Embedded Controller Interface). A command line interface utility for interfacing with the CAN device over HECI is provided, and applications can also interact with the HECI driver directly. For more information, please refer to the of this page.

The internal CAN signals are unterminated; the CAN device should be externally terminated.

  • 3-pin CAN Bus

  • Dinkle EC350V-03P terminal block

There are two LAN Ports on the K400 platform that support up to 1 Gbps link speeds over standard shielded CAT5e or CAT6 cables. The connector is the industry standard RJ45 connector. The LAN link state is shown by the two LEDs embedded within the port. The description is included below.

The PoE add-on card option enables Power over Ethernet for both LAN ports. Both ports are configured for 802.3atcapabilities. A total power budget of 36W is provided for both ports, such that two 802.3af devices may be used, with a single port connected to a 802.3at device as an additional supported configuration.

The Karbon 400 platform utilizes Intel’s Integrated processor graphics that power the onboard

DisplayPort with support for resolutions up to 4096x2304 at 60Hz. The port also supports Multi-Stream Transport (MST) which allows for triple independent display output using a certified MST hub.

The Karbon 410 and 430 both have four SMA ports for antennas on the top of the system. The Karbon 430 includes two additional SMA ports on the front of the system.

The motherboard is the same for K410 and K430.

An M.2 B-Key slot on the Karbon 400 motherboard provides support for B-Key form-factor expansion cards. Supported cards include 3042, 2242, 2260, 2280 form-factors. The B-Key connector supports PCIe Gen 3 x2, USB 3.2 5Gbps, USB 2.0, SATA Gen I (1.5Gbps), SATA Gen II (3.0Gbps), and SATA Gen III (6.0Gbps) devices.

The 3FF Micro SIM card slot is multiplexed to both the M.2 B-Key and mPCIe expansion slot. The routing can be selected in the BIOS and is set to the mPCIe slot by default. Please refer to the BIOS user manual (Appendix B) for more information.

A full pinout table for this expansion slot is provided in Appendix D.

An M.2 E-Key slot on the Karbon 400 motherboard provides support for E-Key form-factor expansion cards. Only 2230 form-factor cards are supported. The E-Key connector supports PCIe Gen 3 x1 and USB 2.0 devices. A full pinout table for this expansion slot is provided in Appendix D.

A mPCIe slot is present on the Karbon 400 motherboard to allow support for mini-PCIe form-factor expansion cards. Full length cards and half-length cards (with an adapter) are supported. The mPCIe connector supports PCIe Gen 3 x1 and USB 2.0 devices. A full pinout table for this expansion slot is provided in Appendix D.

The 3FF Micro-SIM card slot is multiplexed to both the M.2 B-Key and mPCIe expansion slot. The routing can be selected in the BIOS and is set to the mPCIe slot by default. Please refer to the BIOS user manual (Appendix B) for more information.

Karbon 400 has two onboard DDR4 SO-DIMM slots:

  • Maximum Capacity: 32GB DDR4-3200 total using two 16GB SO-DIMM modules

  • Channel configuration: 1 DIMM Per Channel (DPC) - 2 Channels

  • In Band ECC Support (IBECC)

The snap dome tact switch behind the power button on the Karbon 400 motherboard may be used to clear the CMOS settings in the BIOS. Remove external power to the system before clearing the CMOS. Removing the RTC battery is not an accepted method for clearing BIOS settings.

If the BIOS needs to be updated, please refer to Appendix B for reflashing instructions.

The on-board power switch header can be used to control the power state of the Karbon 400 platform in parallel with the front panel power button. Mating power switch cables should be a twisted-pair wire with floating shield to assure proper immunity to EMI/RFI. The mating connector is a standard 2.54mm female header. It is recommended to keep wires at less than 3 meters in length. Switches must be momentary contact type only.

The RTC battery on the Karbon 400 platform is used to retain BIOS CMOS settings and maintain the real-time clock for the system. If the RTC battery is low, CMOS settings will not be retained and you may receive an alert in the operating system. Replacement batteries should be a UL listed type CR2032 3V cell.

Karbon 400 features an onboard TPM (Trusted Platform Module) header. It supports OnLogic’s wide-temperature TPM 2.0 module (OnLogic TPM01). This gives the option to have a dedicated secure module to secure the system through cryptographic keys.

An onboard connector is provided for power to internal expansion cards. The connector is a JST 2.0mm PH series connector (pn: B4B-PH-K-S). A suitable mating connector from the same series should be used. The Pinout is provided below. The maximum operating current per pin is 2A. The header is only powered while the system is in the S0 operating state.

The Karbon 430 system supports an additional daughter board for additional high speed storage and connectivity options. The daughter board is pictured below.

The upper B-Key slot is provided to allow support for B-Key form-factor PCIe and USB expansion cards. Supported cards include 3042, 3052, 2260, 2280 form-factors. The B-Key connector on the Karbon expansion card supports PCIe Gen 3 x1, USB 3.2 5Gbps, USB 2.0 devices. B-Key SATA drives are not electrically compatible with this slot.

There are two 3FF SIM slots on the daughter board to support networking capabilities. One SIM slot is externally accessible, with the other accessed on the bottom of the HSIO card.

The lower B-Key slot is provided to allow support for B-Key form-factor PCIe and USB expansion cards. Supported cards include 2042, 2260, and 2280 form-factors. The B-Key connector on the Karbon 400 expansion card supports PCIe Gen 3 x1, USB 3.2 5Gbps, USB 2.0 devices. B-Key SATA drives are not electrically compatible with this port.

The externally accessible 3FF SIM 1 slot is provided for networking capabilities on the B-Key 1 slot.

The internally accessible 3FF SIM 2 slot is provided for networking capabilities on the B-Key 1 slot. This slot is on the bottom side of the Expansion card and is only accessible by removing the daughterboard from the chassis.

The RTC battery on the Karbon 400 expansion card is provided for redundancy with the main CMOS battery to retain BIOS CMOS settings and maintain the real-time clock for the system. If the RTC battery is low, CMOS settings will not be retained and you may receive an alert in the operating system. Replacement batteries should be a UL listed type CR2032 3V cell.

The power consumption of the K410 and K430 was measured for various system configurations, workloads, and power states at both 9V and 48V system input voltages. Tests were performed using Burnintest v9.0 build 1012 to stress system components with and without graphics enabled. The build configurations and power consumption are listed in the tables below.

The configurations below are using representative samples of internal devices, the specific components mentioned below may vary from the devices provided by OnLogic. The power consumption for each system configuration is recorded below.

The specified DC levels are the absolute maximum values for function and safety of the system. The protection circuitry allows for brief transient voltages above these levels without the system turning off or being damaged. A transient voltage suppressor on the power input allows momentary excursions above stated limits.

The Karbon 400 platform enables a unique low power state for use in automotive or battery powered applications. When enabled, the total power draw for the system is less than 10mA, making this solution ideal for systems requiring ultra-low quiescent power draw. This setting must be enabled from the OS similar to ignition settings. The system may be woken by either the power button or the ignition pin.

The Karbon 400 platform supports multiple power states. The wake-up events can be configured in the BIOS. This section describes the supported power management functions and gives information on protection circuitry for power adapters.

The system 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.

  • Power on the system and immediately press the Del key a few times until you see the “Front Page” menu

  • Arrow down and choose “Setup Utility” by pressing enter

  • Under the advanced tab, open the “RC Advanced Menu”

  • Open the “PCH-IO Configuration” menu

  • The auto power on setting is called “State After G3”.

  • Set it to S0 State to enable auto power on

  • Set it to S5 State to disable auto power on

  • Press F10 to save and exit. Then you are all set.

The thermal performance of the Karbon 400 platform was validated by loading the system to simulate workloads in excess of expected workloads. That is to say, the system was loaded to run at its full rated TDP (12W) while also simultaneously stressing memory and storage at different set points across the system's rated operating temperature range for hours on end. System performance was reviewed to look for any indication of performance issues or for components operating outside of their rated temperature range. Samples of data collected during one of these thermal evaluations for this platform are shown below. The sample data was collected during a test of the K410 chassis with the x6425E processor, 64 GB of DDR4 RAM and an NVMe storage drive. Of note in these results is the fact that no significant drops (10% or more) were observed in core frequency or package power.

There were no indications of any throttling in the system throughout the entirety of the test.

All dimensions are shown in millimeters.

Step 1: Attach wall mounting brackets to the chassis using the provided screws. To assemble, locate the four holes in the chassis that line up to the two countersunk holes in each wall mount bracket.

Screw type: M3x0.5 FH 120 Degree

Length: 4 mm

Step 2: Take care to ensure that the brackets are oriented correctly and that the part of the brackets in contact with the mounting surface is positioned away from the system to ensure a small air gap is maintained between the mounting surface and the system. Install the four supplied screws.

Step 3: Fasten system to the mounting surface (hardware not provided). The mounting bracket systems are required to secure 3x the hanging weight of the computer system. The mating substrate must be capable of maintaining the same rating.

Step 1: Attach DIN Clip to the back of the chassis using the provided screws. To assemble, locate the two holes in the back of the chassis that line up to the two countersunk holes on the DIN clip.

Screw type: M3x0.5 FH 120 Degree

Length: 6 mm

Step 2: The orientation of the DIN clip is interchangeable between the two options. Determine the preferred orientation of the system and install the screws to the DIN clip accordingly.

Step 3: Install the system onto a DIN rail in the desired location.

Step 1: Attach wall mounting brackets to the chassis using the provided screws. To assemble, locate the four holes in the chassis that line up to the two countersunk holes in each wall mount bracket.

Screw type: M3x0.5 FH 120 Degree

Length: 4 mm

Step 2: Take care to ensure that the brackets are oriented correctly and that the part of the brackets in contact with the mounting surface is positioned away from the system to ensure a small air gap is maintained between the mounting surface and the system. Install the four supplied screws.

Step 3: Take the two plastic DIN clips and align the two outer holes with the two outer holes in the middle of each of the wall mount brackets.

Screw type: M3x0.5 PH

Length: 6 mm

Step 4: The orientation of the DIN clips is interchangeable between the two options. Determine the preferred orientation of the system and install the screws to the DIN clips accordingly.

Step 1: Attach VESA mounting plate to the chassis using the provided screws. Align the four holes on the VESA mounting plate with the corresponding holes on the chassis bottom.

Screw type: M3x0.5 FH 120 Degree

Length: 4 mm

Step 2: Attach system to a corresponding VESA MIS-D 75 or MIS-D 100 mounting pattern using the supplied M4x0.7 slotted standoffs

Opening the system does not void the warranty, however, some precautions are necessary to avoid damaging the unit. Any damaged caused will not be covered by 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

  • Remove the 4 Torx T8 screws from the bottom of the chassis

  • Use a small flathead screwdriver to pry the bottom plate off using the notch.

  • If the unit has one of the K430 expansion modules, remove the 4 screws from the midplate and lift it straight out.

  • If the system has the optional x2 LAN expansion board, remove the x2 additional screws as well.

  • The internals of the system are now accessible.

See the full here.

Version
Release Date
Link
Release Notes

Version
Release Date
Link
Release Notes

*Note that these drivers require BIOS version A070 or newer. It is recommended to update to the latest BIOS version listed above.

Version
Release Date
Link
Release Notes

To make the PSE on the K400 system work, we will need to install the PSE driver on the system. The PSE driver is included in the K400 driver package, you can download the package from our Drivers & Downloads section above.

If the PSE driver is not installed, you will find a “Base SystemDevice” with exclamation mark in Device Manager

  • Click the “Update Driver” button in Driver tab,

  • Then follow the instructions on screen to install the driver.

  • Select “Browse my computer for drivers”

After clicking on the “OK” button, the driver will be installed.

Then the PSE driver is installed now.

We will need to install the VS2022 build tools to compile the PSE sample code. You can install the build tool from

After downloading the installer, install the “Desktop development with C++” option. Then you can build the PSE sample project using cmake from the Visual Studio developer command prompt.

We are ready to compile the PSE sample code. The PSE sample code is available below. Please download it and unzip to the local driver, then run “x86 Native Tools Command Prompt for VS 2022” as Administrator from the start menu.

In the command prompt, navigate to the PSE source code folder and run the following command to build,

After build finished, you can find the executable file in <work directory>\build\src\Debug\

The PSE sample code provides examples to use the DIO, CAN, and Automotive features on the system.

This PSE sample code demonstrates how to manipulate the DIO interface from C language in Windows 10 environment. You can download the sample C code from here:

To integrate the PSE function in your own application, you will need to add pse.c (located under /pse_examples/src/win) in your project. Then include pse.h in your source code.

pse.c provides APIs to connect and help to communicate to the PSE engine. The basic work flow is very simple as following diagram,

See our How-To

The ignition sense feature can be used to turn the Karbon unit on and off with a vehicle’s ignition. It can also be used in non-automotive applications using a switch instead.

An example configuration is shown below for Windows. 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.

  • Download the control application from the

  • Run Command Prompt as administrator

  • Navigate to the directory where you put the control application.

  • Example: In this picture, the HWC file is saved to the Desktop. Navigating there allows access to the file.

  • Once you have navigated to the directory that the HWC file is located, execute the following commands in order:

Change Windows Settings

  • 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.

  • Windows “fast startup” will interfere with ignition sensing, so this should be disabled.

  • Power down the system and you can turn it back on by connecting positive power to the IGN pin. This will give you a basic ignition timings setup with 10 second delays. Reference the table below for customizations.

hwc ign set command -v value

hwc ign get command

The Karbon K410 and K430 series systems offer CAN bus and (optionally) isolated DIO (Digital Input/Output) support. This functionality is through the processor’s supporting ARM microcontroller, known as the Programmable Services Engine (PSE).

The PSE is isolated from the core processor, runs its own OS (), but can be sent messages over the system’s Host Embedded Controller Interface (or HECI). The Zephyr OS is transparent to the user. This interface may be used to send and receive CAN messages alongside setting and reading the Digital IO. Note: Packages such as SocketCAN are not supported.

Requirements: A K410 or K430 with Windows and the latest HECI driver. The HECI Windows driver is provided and supported by Intel, and will be preinstalled on K410 units purchased with Windows. If Windows is installed by the user, the driver is included with our driver package linked at the top of this page.

Note: We recommend you update to the latest BIOS version for the best compatibility with this application.

  1. Download the K410’s hardware control

  2. Open a command window, and navigate to the location of the downloaded file.

    1. Press the Windows Key + R

The (optional) digital input/output (DIO) expansion adds up to eight digital inputs and outputs to the system, and an additional CAN port. It also optionally provides support for pulse width modulation (PWM) on three of the eight digital output pins, and support for using a quadrature encoder peripheral (QEP) in place of the first and/or second group of three digital inputs.

See for information about C sample code and a reference on command packing and communication.

The HECI interface uses packed structures to send data between the host and PSE. Specific type structures are provided in the sample code, but an outline of the message format is available below:

If the system fails to power on or output video, clearing the CMOS can often help. To clear the CMOS, the system needs to be opened and an internal switch needs to be pressed.

Opening the system does not void the warranty, however, some precautions are necessary to avoid damaging the unit. Any damaged caused will not be covered by 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

  • Power off and unplug the system. Disconnect all ports.

  • Use a small flathead screwdriver to pry the bottom plate off using the notch.

  • Locate the golden clear CMOS button

  • Hold down the clear button for 30 seconds.

  • Re-assemble the system. Do not over tighten the screws.

  • Re-connect the system and power it on.

  • Do not touch it for 2 minutes. Wait and see if it outputs video.

After updating to BIOS version A074 or later, Windows may display a Bluescreen error with message “SYSTEM_THREAD_EXCEPTION_NOT_HANDLED”. You will need to adjust the BIOS settings to make it work. Go into the BIOS and change the following x2 options

  1. Advanced -> Expert mode -> Enabled

  2. Advanced -> RC advanced menu -> PCH-IO Configuration -> PinCntrl Driver GPIO Scheme -> Disabled

Press F10 to save the BIOS settings and reboot. If the OS is able to recover, it should boot up. If not, you may need to .

If you are having issues with Ubuntu randomly crashing, taking several minutes to boot up, or an issue with not fully turning off, try Enabling the PinCntrl Driver GPIO Scheme:

  1. Access the BIOS by pressing DEL while the system is booting up

  2. Enable Expert Mode under Advanced

  3. Enable Pin Control Driver GPIO Scheme: Advanced/ RC AdvancedMenu/ PCH-IO Configuration/ PinCntrl Driver GPIO Scheme -> Enable

Category:
Hardware / PCB

For all PCB revisions (5R1-5R5), the SIM slot connects the digital and chassis ground planes, removing isolation between the two. Under normal operating conditions, the function of the motherboard should not be affected.

Customers who rely on chassis ground isolation are recommended to isolate the chassis from earth ground externally.

Steps to mitigate the issue will be taken in PCB B01-00005R6 by eliminating the short. The changes are present in F01-x0005R6.

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 included: EN 55032, EN 55035, EN 60601-1, EN 62368-1, EN 50121-3-2, and UN Regulation No. 10 ISO 17650-2.

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.

IR-1: M.2 Radio Modules with WDISABLE pins will be forced into Airplane Mode.

  • Resolution: A Windows-specific software workaround is available to customers upon request. Please reach out to Tech Support to inquire about options.

Memory

2 SO-DIMM DDR4 3200 up to 32GB total with IBECC support

2 SO-DIMM DDR4 3200 up to 32GB total with IBECC support

LAN Controller

2 Intel I210-IT

2 Intel I210-IT

Motherboard Expansion

M.2 3042/2260/80 B-key (PCIe x2, USB 2.0, SATA, SIM)

M.2 2230 E-key (Wi-Fi) (PCIe x1, USB 2.0)

mPCIe (PCIe x1, USB 2.0, SATA, SIM)

M.2 3042/2260/80 B-key (PCIe x2, USB 2.0, SATA, SIM)

M.2 2230 E-key (Wi-Fi) (PCIe x1, USB 2.0)

mPCIe (PCIe x1, USB 2.0, SATA, SIM)

Motherboard I/O

2 GbE LAN (optional 2 PoE using module)

2 USB 3.2 Gen 2 Type-A

2 USB 2.0 Type-A

1 DisplayPort (DP 1.4 & HDMI 2.0b)

3-pin CAN bus

3-pin Power input

1 Power button

1 3FF Micro-SIM (mapped to motherboard mPCIe and M.2)

8 LED array (Power, Storage, Ignition, Watchdog, 4 User Configurable)

2 GbE LAN (optional 2 PoE using module)

2 USB 3.2 Gen 2 Type-A

2 USB 2.0 Type-A

1 DisplayPort (DP 1.4 & HDMI 2.0b)

3-pin CAN bus

3-pin Power input

1 Power button

1 3FF Micro-SIM (mapped to motherboard mPCIe and M.2)

8 LED array (Power, Storage, Ignition, Watchdog, 4 User Configurable)

Motherboard Headers

TPM 2.0 module header

PoE module header

DC power header

RTC battery holder

TPM 2.0 module header

PoE module header

DC power header

RTC battery holder

Daughterboard Expansion

N/A

M.2 3042/52/2260/80 B-key (PCIe x1, USB 3.0, USB 2.0, SIM)

M.2 2242/60/80 B-key (PCIe x1, USB 3.0, USB 2.0)

Daughterboard I/O

N/A

3FF Micro-SIM (mapped to M.2 3042/52)

Daughterboard Headers

N/A

3FF Micro-SIM (mapped to M.2 3042/52)

Voltage Input

9~48 VDC (3-pin Terminal Block with IGN pin)

9~48 VDC (3-pin Terminal Block with IGN pin)

Power Protections

Reverse Power Input Protection

Over Voltage Protection (52.8V)

ESD Protection (15kV Air, 8kV Contact)

Chassis Grounding Nut

Reverse Power Input Protection

Over Voltage Protection (52.8V)

ESD Protection (15kV Air, 8kV Contact)

Chassis Grounding Nut

OS Support

Windows IoT Enterprise

Windows IoT Enterprise

Special Features

Automotive Power with Ignition Sensing

Watchdog Timer

PTT and Secure Boot in BIOS

Automotive Power with Ignition Sensing

Watchdog Timer

PTT and Secure Boot in BIOS

Mounting

Wall, DIN rail, VESA

Wall, DIN rail, VESA

Temperature

-40~70°C, Operating

-40~85°C, Storage

-40~70°C, Operating

-40~85°C, Storage

Humidity

10~95% non-condensing, Operating

0~95% non-condensing, Storage

10~95% non-condensing, Operating

0~95% non-condensing, Storage

Shock

Tested according to IEC 60068-2-27 and MIL-STD-810H Method 516.6

Tested according to IEC 60068-2-27 and MIL-STD-810H Method 516.6

Vibration

Tested according to IEC 60068-2-64 and MIL-STD-810H Method 514.6

Tested according to IEC 60068-2-64 and MIL-STD-810H Method 514.6

Regulatory Certifications

FCC part 15b (Class A), CE, VCCI, RCM

Meets requirements of CE Directives for I.T.E. (EMC 2014/30/EU, ErP 2009/125/EC, Low Voltage 2014/35/EU, Radio Equipment 2014/53/EU, RoHS 3 EU 2015/863, WEEE 2002/96/EC)

Meets requirements of IEC 60601-1-2:2014 Medical Electrical Equipment

Meets requirements of E-Mark (UNECE Reg. 10, latest revision)

Meets requirements of EN 50155 (via testing to EN 50121-3-2)

Meets requirements of IEC 60945 Ed. 4 Maritime Navigation and Radiocommunication Equipment and Systems

Meets requirements of IEC 62368-1 Audio/Video, Information And Communication Technology Equipment - Part 1: Safety Requirements

FCC part 15b (Class A), CE, VCCI, RCM

Meets requirements of CE Directives for I.T.E. (EMC 2014/30/EU, ErP 2009/125/EC, Low Voltage 2014/35/EU, Radio Equipment 2014/53/EU, RoHS 3 EU 2015/863, WEEE 2002/96/EC)

Meets requirements of IEC 60601-1-2:2014 Medical Electrical Equipment

Meets requirements of E-Mark (UNECE Reg. 10, latest revision)

Meets requirements of EN 50155 (via testing to EN 50121-3-2)

Meets requirements of IEC 60945 Ed. 4 Maritime Navigation and Radiocommunication Equipment and Systems

Meets requirements of IEC 62368-1 Audio/Video, Information And Communication Technology Equipment - Part 1: Safety Requirements

Type of Modulation

2.4GHz: DSSS/OFDM/FHSS 5 GHz: OFDM

Type of Antenna

Reference antenna is PIFA type (2dBi/2dBi gain)

Modes of operation

Duplex (Tx/Rx)

Duty cycle (access protocol)

As In: IEEE 802.11 a/b/g/n/ac

Version of firmware/software

Software Intel PROSet/Wireless WiFi Softwar 20..x and following versions for WIFI/BT

Antenna Specifications

PIF (2dBi / 2dBi Gain for 2.4 and 5GHz) RP-SMA connector

A074

12/01/2023

A063

11/12/2021

Manufacturability update

Includes updated PSE drivers.

Click on the “Browse” button and navigate to the extracted drivers folder
  • Select the top level folder

  • startup-timer

    The delay between IGN power being applied and the unit turning on

    1-2147483647 (seconds)

    shutdown-timer

    The delay before Windows is shut down when IGN power is cut

    1-2147483647 (seconds)

    hard-off-timer

    After the shutdown timer has completed, power will be fully cut after X number of seconds. This is useful in case the system freezes at shutdown.

    1-2147483647 (seconds)

    low-voltage-timer

    The low voltage shutdown can be delayed by X number of seconds. A value of at least 10 is recommended to avoid voltage drop related shutdowns – i.e. when the engine is started.

    30-2147483647 (seconds)

    shutdown-voltage

    The unit can shut itself down when a certain low voltage threshold is reached. This helps prevent over discharging a battery. (1150 => 11.5V)

    600-4700 (centi-volts)

    system-voltage

    This command reports the current voltage value that the system is running on. The output will read in this format: “cvl 1202”, which means the Current Voltage Level is 1202 cV (centivolts), or 12.02 volts.

    0-4700 (centivolts)

    Type cmd.exe and hit Enter
  • In the window that opens navigate to the download location:

    1. e.g. cd C:\User\Username\Downloads

  • Display the built-in help text:

    1. hwc.exe --help

  • 10 – 25

    Packed ‘argument’ for a given command. Format depends on the command identifier.

    26 – 31

    Status of last command

    32 – 39

    Data format of body: 0: Raw data 1: Version information 2: CAN message 4: DIO message 7: ASCII String

    40 – 168

    Body of message data, usually in the form of another packed structure.

    Remove the 4 Torx T8 screws from the bottom of the chassis
    If not, contact OnLogic tech support for an RMA using the button on the right sidebar. >
    Press F10 to Save & Exit

    Severity:

    Low

    DIN Rail Mounting Update

    05/24/2022

    Sim Card Update > cellular modules

    02/09/2023

    Removed CEC Support

    06/23/2023

    Added ‘Wi-fi’ following ‘E-key’ & corrected series link

    07/21/2023

    Care must be taken handling the device to prevent injury to self or possibility of damaging the unit.
  • Read the entire manual before using the product.

  • Install the device securely per users manual instructions.

  • 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 OnLogic mounting plate or bracket.

  • Use M3x0.5mm Flat Head screws to attach mounting plate or mounting brackets to threaded holes on bottom 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 enclosure during operation and 30 minutes after shutdown allowing the unit to cool down.

  • Ambient operating temperature must be between -40 °C to 70 °C with a non-condensing relative humidity of 10-95%.

  • The device can be stored at temperatures between -10 °C to 85 °C. Note: Unit must be stabilized within operating temperature before use, minimum 3HR.

  • Keep the device away from liquids and flammable materials. Not to be installed in a hazardous environment.

  • Do not clean the device with liquids. The chassis can be cleaned with a dry cloth or duster only. To prevent injury to self and/or damage to the device the unit must be powered down and all connecting power and other peripherals shall be disconnected prior to cleaning.

  • Allow adequate space around all sides of the device for proper cooling and to not exceed its maximum operating temperature limit. If the device is mounted to a vertical surface then recommended device orientation is such 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.

  • Caution, Risk of Electric Shock! Unit is powered by low voltage DC (Direct Current) only! Do not connect AC (Alternating Current) into the device!

  • To power the device use only UL ITE Listed external power supplies with DC output of 12-24VDC, see specs for details.

  • 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.

  • The installer should be experienced in aftermarket installation and familiar with general practices for installing electronics.

  • 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.

  • This equipment is not suitable for use in locations where children are likely to be present.\

  • 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

    Des précautions doivent être prises lors de la manipulation de l'appareil pour éviter de se blesser ou d'endommager l'appareil.
  • Lisez l'intégralité du manuel avant d'utiliser le produit.

  • Installez l'appareil en toute sécurité selon les instructions du manuel de l'utilisateur.

  • 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 mural 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.

  • Attention surface chaude! Il est normal que l'appareil chauffe et soit chaud au toucher. Ne touchez pas la zone du dissipateur thermique ou le boîtier pendant le fonctionnement et 30 minutes après l'arrêt pour permettre à l'unité de refroidir.

  • La température ambiante de fonctionnement doit être comprise entre 0 °C et 40 °C avec une humidité relative sans condensation de 10 à 85 %.

  • L'appareil peut être stocké à des températures comprises entre -10 °C et 85 °C. Remarque : L'unité doit être stabilisée à la température de fonctionnement avant utilisation, minimum 3 heures.

  • Gardez l'appareil à l'écart des liquides et des matériaux inflammables. Ne pas installer dans un environnement dangereux.

  • Ne nettoyez pas l'appareil avec des liquides. Le châssis peut être nettoyé uniquement avec un chiffon sec ou un plumeau. Pour éviter de se blesser et/ou d'endommager l'appareil, l'appareil doit être éteint et toutes les alimentations et autres périphériques doivent être déconnectés avant le nettoyage.

  • Prévoyez un espace suffisant autour de tous les côtés de l'appareil pour un refroidissement correct et pour ne pas dépasser sa limite de température de fonctionnement maximale. Si l'appareil est monté sur une surface verticale, l'orientation recommandée de l'appareil est telle 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.

  • Attention, risque de choc électrique ! L'unité est alimentée uniquement par une basse tension CC (courant continu) ! Ne connectez pas le courant alternatif (courant alternatif) à l'appareil !

  • Pour alimenter l'appareil, utilisez uniquement des alimentations externes répertoriées UL ITE avec une sortie CC de 12-24 VCC, voir les spécifications pour plus de détails.

  • 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.

  • L'installateur doit avoir de l'expérience dans l'installation de pièces de rechange et être familiarisé avec les pratiques générales d'installation de composants électroniques.

  • 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 routeur, un commutateur ou un équipement réseau similaire certifié

  • Le produit est destiné à une utilisation en intérieur uniquement.

  • Le produit ne peut pas être connecté au réseau public.

  • Cet équipement n'est pas adapté à une utilisation dans des endroits où des enfants sont susceptibles d'être présents.

  • 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.

    Dimensions

    180 x 123 x 50 mm

    180 x 123 x 60 mm

    CPU

    Intel Atom x6211E (2 core, 2 thread, 1.3~3.0 GHz, 6W)

    Intel Atom x6425E (4 core, 4 thread, 2.0~3.0 GHz, 12W)

    Intel Atom x6211E (2 core, 2 thread, 1.3~3.0 GHz, 6W)

    Intel Atom x6425E (4 core, 4 thread, 2.0~3.0 GHz, 12W)

    Frequency Bands

    2.4GHz and 5GHz bands

    Operating Frequency

    2400 - 2485 MHz 5150 - 5250 MHz, 5250 - 5350 MHz 5470 - 5725 MHz, 5725 - 5878 MHz

    Channel spacing / Bandwidth

    2.4GHz: 802.11b/g/n; 5 MHz / BT: 1MHz Bandwidth: 20 MHz / 40 MHz 5 GHz: 802.11a/n/ac: 20, 40, 80, 160 MHz

    RF output power

    20dBm (2400-2485 MHz) IEEE 802.11b/g/n& BT 10dBm (2400-2485 MHz) BLE 23dBm (5150-5725 MHz) IEEE 802.11a/n/ac 13.98 dBm (5725-5875MHz) IEEE 802.11a/n/ac

    A077

    03/07/2024

    Download BIOS

    Fixes PSE feature troubles from 1.76 and enables 2x COM capability. Includes regular stability improvements.

    A076

    Windows 10

    10/11/2023

    Download Drivers

    Includes updated PSE drivers.

    Windows 11

    v1.2.1

    10/11/2023

    Download HWC

    Fixes issue with Version-Check warning. * Note that the CAN baudrate is fixed at 1M. Please see our C-Based PSE-Examples for setting the baudrate programmatically.

    mkdir build && cd build
    
    cmake -A Win32 ..
    
    cmake --build .
    hwc ign set ignition-sense -v 1
    hwc ign set low-power-mode -v 1
    hwc ign set shutdown-timer -v 10
    hwc ign set startup-timer -v 10
    hwc ign set hard-off-timer -v 3000

    Command

    Description

    Possible Values

    ignition-sense

    Enables or disables ignition sense

    0=off, 1=on

    low-power-mode

    Reduces idle power consumption (recommended on when ignition sense is used)

    Bits

    Description

    0 – 7

    HECI Command Identifier: 0x01: System Information: 0x02: Digital IO 0x04: Can Bus

    8

    Set as ‘1’ if this message is a response from the PSE

    9

    Set as ‘1’ if this message contains a valid data body

    SKU(s) Affected:

    K410, K430

    Revision(s) Affected:

    B01-00005R(1-5)

    Revision Resolved:

    B01-00005R6

    Revision

    Date

    First release of K400 manual

    09/16/2021

    Update including radio transmitter info, VCCI, RF, and Safety info

    1/25/2022

    Updated DIO Link

    05/04/2022

    1.4- Product Specifications

    2- Technical Specifications

    2.1- I/O Definitions

    Front I/O Definition

    Power Button & LED

    SIM Card

    USB 2.0

    USB 3.2

    ModBay COM Expansion

    ModBay DIO Expansion

    LED Functionality

    Bottom I/O Definition

    3-Pin Terminal Power Connector

    CAN Bus

    LAN 1 & 2

    DisplayPort

    Front I/O Definition

    Antenna SMA Ports

    Expansion Port Pinout

    M.2 B-Key

    M.2 E-Key

    mPCIe

    2.2- Motherboard Connectors

    M.2 B-Key

    M.2 E-Key

    mPCIe

    SO-DIMM1 & SO-DIMM2

    RTC RESET

    BIOS EEPROM

    Power Switch Header

    RTC Battery Header

    TPM header

    Onboard Power Header

    High Speed Daughter Board

    M.2 B-Key 1

    M.2 B-Key 2

    SIM 1

    SIM 2

    RTC Battery

    2.3- Power Management

    Average Power Consumption

    Protection Circuitry

    Wake-Up Events

    Auto Power On

    2.4- Thermal Results

    2.5- Block Diagram

    3- Installation & Mechanical

    3.1- Dimensions

    Karbon 410 Dimensions

    Karbon 430 Dimensions

    3.2- Mounting

    Wall Mounting (MTW101)

    DIN Rail Mounting - Edge (MTD103)

    DIN Rail Mounting - Bottom (MTD102)

    VESA Mounting (VMPL-1056)

    3.3- Internal Access

    3.4- CAD Files

    4- Software & Firmware

    4.1- BIOS

    BIOS Updates

    4.2- Drivers & Downloads

    Drivers

    Hardware Control Application (HWC)

    4.3- Features & Configuration

    Installing the PSE Driver on Windows 10

    Installing the build tool

    Building

    Using the PSE

    Sample C Code

    Integration

    Using the K400 PSE with Ubuntu for Intel IoT

    4.4- MCU Documentation

    Automotive Ignition Timings

    Feature Overview

    Enabling and controlling ignition sense

    Ignition Sensing Commands

    DIO and CAN

    Quickstart

    DIO Examples

    Application Integration

    HECI Interface Packed Structures

    5- Support & Compliance

    5.1- Troubleshooting & FAQ

    Motherboard Reset (Clear CMOS)

    Windows Bluescreen after BIOS update

    Ubuntu boots up slowly / doesn’t turn off completely

    Digital and Chassis Ground Not Isolated

    Overview

    Description

    Resolution

    5.2- Regulatory

    CE

    FCC Statement

    ISED (Innovation, Science and Economic Development Canada)

    UKCA

    VCCI

    Download Documents

    5.3- Security Advisory

    5.3- Appendices

    Revision History

    Errata

    https://www.onlogic.com/computers/rugged/karbon-400/
    https://www.onlogic.com/k410/
    https://www.onlogic.com/k430/
    BIOS manual
    OnLogic MOD110
    Power Management section
    Add-in Modules section
    BIOS Manual
    Changelog
    https://visualstudio.microsoft.com/downloads/?q=build+tools#build-tools-for-visual-studio-2022
    Download Sample C Code
    PSE Configuration (Ubuntu)
    link above
    Zephyr RTOS
    command line application.
    MOD110
    Using the K400 PSE with Ubuntu
    reinstall the Windows OS
    Access Security Advisories
    K410 All Mounting.STEP
    29MB
    Open
    K430 All Mounting.STEP
    37MB
    Open
    Maritime Attestation of Compliance.pdf
    PDF · 252KB
    Open
    TAA Compliance.pdf
    PDF · 119KB
    Open

    05/16/2024

    06/18/2025

    0=off, 1=on

    Download BIOS
    Download BIOS
    Download BIOS
    Download Drivers

    K410 / K430 BIOS Manual

    NOTE: To enter the BIOS on Karbon systems, hold the ‘Delete’ key on your keyboard during boot.

    1- Front Page

    Boot Manager

    Type

    Device Management

    Boot From File

    Administer Secure Boot

    Setup Utility

    InsydeH2O Version

    Build Date

    Processor Type

    Total Memory

    Channel A

    Channel B

    System Memory Speed

    Language

    System Time

    System Date

    Platform Information

    Expert Mode

    Numlock

    Rotate Screen

    USB BIOS Support

    Platform Trust Technology

    FACP - RTC S4 Wakeup

    Wake on USB from S5

    Wake on USB Wait Time

    Enable ACPI Auto Configuration

    Enable Hibernation

    PTID Support

    PECI Access Method

    ACPI S3 Support

    Native PCIE Enabled

    Native ASPM

    BDAT ACPI Table Support

    Low Power S0 Idle Capability

    SSDT Table From File

    PCI Delay Optimization

    MSI Enabled

    CPU Flex Ratio Settings

    Hardware Prefetcher

    Adjacent Cache Line Prefetch

    PECI

    Boot Performance Mode

    Intel SpeedStep

    Platform PL1 Enable

    Platform PL2 Enable

    Energy Performance Gain

    Energy Efficient Turbo

    Maximum GT Frequency

    Disable Turbo GT Frequency

    Intel TCC Mode

    IO Fabric Low Latency

    GT CLOS

    Max TOLUD

    VT-d

    DMA Control Guarantee

    IGD VTD Enable

    IOP VTD Enable

    Cpu CrashLog

    GNA Device

    CRID Support

    Above 4G MMIO BIOS Assignment

    Skip Scanning of External Gfx Card

    Internal Graphics

    GTT Size

    Aperture Size

    PSMI Support

    DVMT Pre-Allocated

    DVMT Total Gfx Mem

    DiSM Size

    VDD Enable

    PM Support

    PAVP Enable

    Cdynmax Clamping Enable

    Skip Full CD Clock Init

    EFI Network

    WWAN Device Wake GPIO

    Wake on WLAN and BT Enable

    PXE ROM

    State After G3

    Enable TCO Timer

    Enable Timed GPIO0

    DMI Link ASPM Control

    Port8xh Decode

    PCI Express Root Port

    ASPM

    PCIE Speed

    Detect Timeout

    SATA Controller(s)

    SATA Mode Selection

    SATA Ports Multiplier

    SATA Speed

    Aggressive LPM Support

    Port X

    Hot Plug

    xDCI Support

    USB2 PHY Sus Well Power Gating

    USB3 Link Speed Selection

    USB Overcurrent

    USB Overcurrent Lock

    USB Port Disable Override

    USB Device/Host Mode Override

    USB UCSI ACPI Device

    RTC Memory Lock

    BIOS Lock

    Force Unlock on All GPIO Pads

    Device Controller

    UARTX Hardware Flow Control

    UARTX DMA Enable

    UARTX Power Gating

    PSE Controller

    Log Output Channel

    Shell

    Eclite

    OOB

    ME Firmware Version

    ME Firmware Mode

    ME Firmware SKU

    ME Firmware Status 1

    ME Firmware Status 2

    ME State

    Comms Hub Support

    JHI Support

    Core BIOS Done Message

    HECI Timeouts

    ME Firmware Re-Flash

    FW Update

    3.6.16 - PTT Configuration

    PTT Capability / State

    FIPS Mode Select

    Current FIPS Mode

    Crypto Driver FIPS Version

    3.6.18 - Anti-Rollback SVN Configuration

    Automatic HW-Enforced Anti-Rollback SVN

    Set HW-Enforced Anti-Rollback for Current SVN

    Minimal Allowed Anti-Rollback SVN

    Executing Anti-Rollback SVN

    Automatic OEM Key Revocation

    Invoke OEM Key Revocation

    3.6.20 - Thermal Configuration

    Enable All Thermal Functions

    DTS SMM

    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

    3.6.22 - Platform Thermal Configuration

    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

    Active Trip Points

    PCH Temp Read

    CPU Energy Read

    CPU Temp Read

    Alert Enable Lock

    CPU Temp

    CPU Fan Speed

    3.6.23 - ACPI D3Cold Settings

    ACPI D3Cold Support

    H2OUVE Support

    Low Power Enable

    3.7.1 - 2x COM Daughter Card

    COMx Mode Selection

    COMx Slew Rate

    3.7.2 - Lan Dev Off

    LAN x Dev Off

    3.7.3 - CAN/DIO Daughter Card

    PWMx

    QEPx

    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

    Wake on PME

    Auto Wake on S5

    S5 Long Run Test

    Boot Type

    Network Stack

    PXE Boot Capability

    Add Boot Options

    USB Boot

    UEFI OS Fast Boot

    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

    The latest BIOS updates are available on the page.

    Default Value

    Auto

    Default Value

    Auto

    Default Value

    Enabled

    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

    1

    Default Value

    5

    Default Value

    10

    Default Value

    65%

    Default Value

    1.1

    Default Value

    Available

    Default Value

    No Operation

    Default Value

    UEFI Boot Type

    Default Value

    Disabled

    Default Value

    Auto

    Menu

    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

    Information

    BIOS Page

    Main Page

    Description

    Displays current system BIOS version

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays the BIOS build date in MM/DD/YYYY

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays model number of installed CPU

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays total capacity of all memory installed in system

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays capacity of memory installed in Channel A

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays capacity of memory installed in Channel B

    Type

    Information

    BIOS Page

    Main Page

    Description

    Displays base frequency of installed memory

    Type

    Information

    BIOS Page

    Main Page

    Description

    Selects the current default language used by the BIOS

    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

    Subsection

    BIOS Page

    Main Page

    Description

    Contains detailed information about the system processor, pch, and firmware component versions.

    Type

    Configurable Setting

    BIOS Page

    Advanced

    Description

    Expose additional BIOS configuration options.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > Boot Configuration

    Description

    Sets state of Num Lock key when system is booted

    Default Value

    Off

    Type

    Configurable Setting

    BIOS Page

    Advanced > Boot Configuration

    Description

    Rotate the screen 90 or 270 degrees clockwise

    Default Value

    Off

    Type

    Configurable Setting

    BIOS Page

    Advanced > USB Configuration

    Description

    Set USB BIOS Support as disabled, enabled, or UEFI only

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > Chipset Configuration

    Description

    Enables or Disables Intel Platform Trust Technology

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > ACPI Table/Features Control

    Description

    Enables or disables the ability to use the RTC to wake from S4

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > SFB Chipset Feature

    Description

    Enable/Disable Wake on USB from S5 state

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > SFB Chipset Feature

    Description

    Wait Time for USB re-enumeration during S5 state. Select from 5 - 60 seconds.

    Default Value

    5

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Enables or Disables BIOS ACPI Auto Configuration.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Enables or Disables System ability to Hibernate (OS/S4 Sleep State). This option may not be effective with some OSs.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    PTID Support will be loaded if enabled.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Set PECI access method as either Direct I/O or ACPI

    Default Value

    Direct I/O

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Enables or Disables ACPI S3 support

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Configure support for native PCIE

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Auto: Automatically select between enabling/disabling Native ASPM

    Enabled: OS Controlled ASPM

    Disabled: BIOS Controlled ASPM

    Default Value

    Auto

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Enables support for the BDAT ACPI table

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Enable ACPI Lower Power S0 Idle Capability (Mutually exclusive with Smart connect). While this is enabled, it also disables the 8254 timer for SLP_S0 support.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Generate SSDT table from its file

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    Experimental ACPI additions for FW latency optimization

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > ACPI Settings

    Description

    When disabled, MSU support is disabled in FADT

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > CPU Configuration

    Description

    CPU flex ratio value. It must fall between the Max Efficiency Ratio (LFM) and the Maximum non-turbo ratio set by hardware (HFM).

    Default Value

    20

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > CPU Configuration

    Description

    Turn on/off the MLC streamer prefetcher.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > CPU Configuration

    Description

    Turn on/off prefetching of adjacent cache lines.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > CPU Configuration

    Description

    Turn on/off PECI.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Select the performance state that the BIOS will set starting from the reset vector.

    Default Value

    Max Non-Turbo Performance

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Allows more than two frequency ranges to be supported.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Enable/Disable Platform Power Limit 1 programming. If this option is enabled, it activates the PL1 value to be used by the processor to limit the average power of a given time window.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Enable/Disable Platform Power Limit 2 programming. If this option is disabled, BIOS will program the default values for Platform Power Limit 2.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Enable/Disable energy performance gain

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > CPU - Power Management Control

    Description

    Enable/Disable Energy Efficient Turbo Feature. This feature will opportunistically lower the turbo frequency to increase efficiency. Recommended only to disable in overclocking situations where turbo frequency must remain constant. Otherwise, leave enabled.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > GT - Power Management Control

    Description

    Automatically updated GT max frequency

    Default Value

    Default Max Frequency

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Power & Performance > GT - Power Management Control

    Description

    Set as ‘Disabled’ to prevent limiting GT frequency

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Intel(R) Time Coordinated Computing

    Description

    Enable or Disable Intel(R) TCC mode. When enabled, this will modify system settings to improve real-time performance. The full list of settings and their current state are displayed below when Intel(R) TCC mode is enabled.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Intel(R) Time Coordinated Computing

    Description

    Enable or Disable IO Fabric Low Latency. This will turn off some power management in the PCH IO fabrics. This option provides the most aggressive IO Fabric performance setting. S3 state is NOT supported.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Intel(R) Time Coordinated Computing

    Description

    Enable or Disable Graphics Technology(GT) Class of Service. Enable will reduce Gfx LLC allocation to minimize impact of Gfx workload on LLC

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > Memory Configuration

    Description

    Maximum Value of TOLUD. Dynamic assignment would adjust TOLUD automatically based on largest MMIO length of installed graphic controller

    Default Value

    Dynamic

    Type

    Info

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    If the system supports VT-d capabilities

    Type

    Configurable Setting (Locked)

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Program the state of the DMA_CONTROL_GUARANTEE bit

    Default Value

    Disabled

    Type

    Configurable Setting (Locked)

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable/Disable IGD VTD

    Default Value

    Enabled

    Type

    Configurable Setting (Locked)

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable/Disable IOP VTD

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable or disabled the CPU CrashLog on Device 10

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable/Disable the SA GNA device

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable/Disable SA CRID and TCSS CRID control for Intel SIPP

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration

    Description

    Enable/Disable above 4GB MemoryMappedIO BIOS assignment. This is enabled automatically when Aperture Size is set to 2048MB.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    If Enabled, the BIOS will not scan for External Gfx Card on PEG and PCH PCIE Ports

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Force the Internal Graphics enable state. Setting this to disabled without an external graphics card will prevent display output.

    Default Value

    Auto

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Set the GTT size to 2, 4, or 8 MB

    Default Value

    8MB

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Select the Aperture Size. Above 4GB MMIO BIOS assignment is automatically enabled when selecting 2048MB aperture. To use this feature, please disable CSM Support.

    Default Value

    256MB

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enable/Disable PSMI Support.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Select DVMT 5.0 Pre-Allocated (Fixed) Graphics Memory size used by the Internal Graphics Device.

    Default Value

    60M

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Select DVMT5.0 Total Graphic Memory size used by the Internal Graphics Device.

    Default Value

    256M

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    DiSM Size for 2LM Sku.

    Default Value

    0GB

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enable/Disable forcing of VDD in the BIOS

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enable/Disable PM support

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enable/Disable PAVP

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enable/Disable Cdynmax Clamping

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > System Agent (SA) Configuration > Graphics Configuration

    Description

    Enabled: Skip Full CD clock initialization.

    Disabled: Initialize the full CD clock if not initialized by Gfx PEIM

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable networking functionality for the onboard network interfaces in the UEFI environment.

    Default Value

    Onboard NIC

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable using the WWAN device wake gpio pins as potential wake sources.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable PCI Express Wireless LAN and Bluetooth to wake the system.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable PXE Option ROM execution.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Specify what state to go to when power is reapplied after a power failure (G3 state).

    Default Value

    S5 State (Off)

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable TCO timer. When disabled, it disables PCH ACPI timer, stops TCO timer, and ACPI WDAT table will not be published.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration

    Description

    Enable/Disable Timed GPIO0. When disabled, it disables cross time stamp time-synchronization as extension of Hammock Harbor time synchronization.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PCI Express Configuration

    Description

    The control of Active State Power Management of the DMI Link.

    Default Value

    Auto

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PCI Express Configuration

    Description

    PCI Express Port8xh Decode Enable/Disable.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > PCH-IO Configuration > PCI Express Configuration > PCI Express Root Port Settings

    Description

    Enables or disables the selected PCI Express Root Port

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > PCH-IO Configuration > PCI Express Configuration > PCI Express Root Port Settings

    Description

    Sets the PCI Express Active State Power Management mode

    Possible Values

    Auto, Disabled, L0s, L1, L0sL1

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > PCH-IO Configuration > PCI Express Configuration > PCI Express Root Port Settings

    Description

    Sets the PCIe Speed of the selected port

    Possible Values

    Auto, Gen1, Gen2, Gen3

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > PCH-IO Configuration > PCI Express Configuration > PCI Express Root Port Settings

    Description

    Sets the number of milliseconds reference code will wait for the link to exit detect state for enabled ports before assuming there is no device and potentially disabling the port

    Default Value

    0

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Enable/Disable SATA Device.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Set the SATA operation mode

    Default Value

    AHCI

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Ports Multiplier Enable/Disable

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Set the SATA generation to Gen 1, 2, or 3

    Default Value

    Gen3

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Enable PCH to aggressively enter link power state.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Enable or disable the given SATA port.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SATA Configuration

    Description

    Enable or disable SATA hot plug drive detection for the given port.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Enable/Disable xDCI (USB OTG Device).

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Select 'Enabled' to enable SUS Well PG for USB2 PHY. This option has no effect on PCH-H

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    This option is to select USB3 Link Speed GEN1 or GEN2

    Default Value

    GEN2

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Enable/disable USB overcurrent detection

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > 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 Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Selectively Enable/Disable the corresponding USB port from reporting a Device Connection to the controller.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Selectively Enable/Disable the corresponding USB 2.0 and USB 3.0 port device mode

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > USB Configuration

    Description

    Enable/Disable USB UCSI ACPI device

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > Security Configuration

    Description

    Enable will lock bytes 38h-3Fh in the lower/upper 128-byte bank of RTC RAM

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > Security Configuration

    Description

    Enable/Disable the PCH BIOS Lock Enable feature. Required to be enabled to ensure SMM protection of flash.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > Security Configuration

    Description

    If enabled BIOS will force all GPIO pads to be in unlocked state

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SerialIo Configuration

    Description

    Enable or disable the PCH controller for the platform’s I2C, SPI, and UART devices.

    Default Value

    [Enabled/Disabled]

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SerialIo Configuration > Serial IO UARTX Settings

    Description

    Enable or disable the UART hardware flow control signals

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SerialIo Configuration > Serial IO UARTX Settings

    Description

    Enable or disable the DMA support for the UART interface

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > SerialIo Configuration > Serial IO UARTX Settings

    Description

    Configure option power gating of the UART device in some platform off-states.

    Default Value

    Auto

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PSE Configuration

    Description

    Enable or disable the Programmable Services Engine. Disabling the PSE will disable: CAN, DIO, Power LED, and HPD

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PSE Configuration

    Description

    Target device for the PSE log output.

    0: Memory

    1-6: UART

    7: Disabled

    Default Value

    0

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PSE Configuration

    Description

    Enable or disable the PSE shell features

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PSE Configuration

    Description

    Enable or disable the PSE EC-Lite features

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > RC Advanced Menu > PCH-IO Configuration > PSE Configuration

    Description

    Enable or disable the PSE OOB features

    Default Value

    Enabled

    Type

    Information

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Displays Management Engine firmware version

    Type

    Information

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Displays Management Engine firmware mode

    Type

    Information

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Displays Management Engine firmware SKU

    Type

    Information

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Displays Management Engine firmware status 1

    Type

    Information

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Displays Management Engine firmware status 2

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    When Disabled ME will be put into ME Temporarily Disabled Mode. Default value: Enabled

    Possible Values

    Enabled (Management Engine will act normally)

    Disabled (Management Engine will be put into ME Temporarily Disabled Mode)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Enables or Disables support for Comms Hub

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Enables or Disables Intel DAL Host Interface Service (JHI)

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration

    Description

    Enable or Disable sending Core BIOS Done Message to ME

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > ME Debug Configuration

    Description

    Enable Host Embedded Control Interface timeouts

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > Firmware Update Configuration

    Description

    Enables or Disables Management Engine Firmware Image Re-Flash function

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > Firmware Update Configuration

    Description

    Enables or Disabled FW Update

    Default Value

    Enabled

    Type

    Info

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > PTT Configuration

    Description

    Report if the PTT (firmware TPM) is enabled and ready.

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > FIPS Configuration

    Description

    Enables or Disables FIPS

    Default Value

    Disabled

    Type

    Info

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > FIPS Configuration

    Description

    Report the current FIPS mode

    Type

    Info

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > FIPS Configuration

    Description

    Report the FIPS crypto driver version

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > Anti-Rollback SVN Configuration

    Description

    Enables or disables Automatic HW-Enforced Anti-Rollback SVN

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > Anti-Rollback SVN Configuration

    Description

    Enables or disables setting the HW-Enforced Anti-Rollback for Current SVN

    Default Value

    Disabled

    Type

    Info

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > FIPS Configuration

    Description

    Report the current Minimal Allowed Anti-Rollback SVN

    Type

    Info

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > FIPS Configuration

    Description

    Report the Executing Anti-Rollback SVN

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > OEM Key Revocation Configuration

    Description

    Enables or disables automatically revoking OEM keys

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > PCH-FW Configuration > OEM Key Revocation Configuration

    Description

    Enable to execute OEM key revocation

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration

    Description

    Enables ‘Memory Thermal Management’, ‘Active Trip Points’, and ‘Critical Trip Points’. Set to disabled for manual configuration.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Disabled: ACPI thermal management uses EC reported temperature values.

    Enabled: ACPI thermal management uses DTS SMM mechanism to obtain CPU temperature values.

    Out of Spec: ACPI Thermal Management uses EC reported temperature values and DTS SMM is used to handle Out of Spec conditions.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Offset from factory set Tcc activation temprature at which the Thermal Control Circuit must be activated. Tcc will be activated at: Tcc Activation Temp - Tcc Activation Offset. Tcc Activation Offset range is 0 to 63.

    Default Value

    0

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Tcc Offset Time Window for Running Average Temperature Limit(RATL) feature. The Tcc offset time window can range from 5ms to 448s.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Tcc Offset Clamp bit Enable for Running Average Temperature Limit(RATL) feature to allow CPU to throttle below P1.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Lock Enable for Running Average Temperature Limit(RATL) feature to lock Temperature Target MSR.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    When a processor thermal sensor trips (either core), then PROCHOT# will be driven.

    If bi-direction is enabled, external agents can drive PROCHOT# to throttle the processor.

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Enable/Disable PROCHOT# Output

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Enable/Disable VR Thermal Alert

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Enable/Disable PROCHOT Response

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Enable/Disable PROCHOT Lock

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > CPU Thermal Configuration

    Description

    Enable/Disable ACPI T-States

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the temperature value of the ACPI Critical Trip Point (the point at which the system will shut off.)

    Note: 119C is the Plan Of Record (POR) for all Intel processors.

    Possible Values

    15, 23, 31, 39, 47, 55, 63, 71, 79, 87, 95, 100, 103, 111, 119, 127 (C)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the temperature value of the ACPI Active Trip Point 0 (the point at which the OS will set the processor fan to Active Trip Point 0 Fan Speed)

    Possible Values

    15, 23, 31, 39, 47, 55, 63, 71, 79, 87, 95, 100, 111, 127 (C)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets Active Trip Point 0 Fan Speed percentage (the percentage of maximum speed at which the fan will run when Active Trip Point 0 is crossed)

    Possible Values

    0 to 100

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the temperature value of the ACPI Active Trip Point 1 (the point at which the OS will set the processor fan to Active Trip Point 1 Fan Speed)

    Possible Values

    15, 23, 31, 39, 47, 55, 63, 71, 79, 87, 95, 100, 111, 127 (C)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets Active Trip Point 1 Fan Speed percentage (the percentage of maximum speed at which the fan will run when Active Trip Point 1 is crossed)

    Possible Values

    0 to 100

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the temperature value of the ACPI Passive Trip Point (the point in which the OS will begin throttling the processor frequency)

    Possible Values

    15, 23, 31, 39, 47, 55, 63, 71, 79, 87, 100, 103, 111, 119 (POR), 127 (C)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the TC1 value for the ACPI Passive Cooling Formula

    Possible Values

    1 to 16

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the TC2 value for the ACPI Passive Cooling Formula

    Possible Values

    1 to 16

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the TSP value for the ACPI Passive Cooling Formula. This value represents how often (in tenths of a second) the OS will read the temperature when passive cooling is enabled

    Possible Values

    2 to 32

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables Active Trip Points

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > Thermal Configuration

    Description

    Enables or Disables Passive Trip Points

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables Critical Trip Points

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables Active Trip Points

    Default Value

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables reading of PCH temperature

    Default Value

    [X] (enabled)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables reading of CPU power draw

    Default Value

    [X] (enabled)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables reading of CPU temperatures

    Default Value

    [X] (enabled)

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Enables or Disables locking of all Alert Enable settings

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the Fail Safe temperature that the embedded controller will use if the OS is hung

    Default Value

    75

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > Thermal Configuration > Platform Thermal Configuration

    Description

    Sets the fan speed that the embedded controller will use if the OS is hung

    Possible Values

    0-100%

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > RC Advanced Menu > ACPI D3Cold Settings

    Description

    Enable/Disable ACPI D3Cold (RTD3) support

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced Page > H2OUVE Configuration

    Description

    Enable/Disable interface for configuring settings via the H2OUVE tool.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration

    Description

    When enabled, the system will transition to a lower power state after shutting down. When enabled, the only wake source for the system is the front power button.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration > COM

    Description

    RS-232: Set COM mode as RS-232.

    RS-485 Half Duplex: Set COM mode as RS-485.

    RS-485 Half Duplex (Terminated): Set COM mode as RS-485, and enable internal termination and bias resistors.

    RS-422 Full Duplex: Set COM mode as RS-422.

    RS-422 Full Duplex (Terminated): Set COM mode as RS-422, and enable internal termination and bias resistors.

    Note: RS-422 and RS-485 modes use a different driver framework at the OS level.

    Default Value

    RS-232

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration > COM

    Description

    Set the slew rate of a given COM port to slow or fast

    Default Value

    Fast

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration > LAN Dev Off

    Description

    Disable the corresponding onboard NIC with a hardware power gate.

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration > CAN/DIO Daughter Card

    Description

    Configure pin for use as PWM instead of GPIO

    Default Value

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Advanced > OnLogic Feature Configuration > CAN/DIO Daughter Card

    Description

    Configure pin group for use as QEP instead of GPIO

    Default Value

    Disabled

    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

    Power

    Description

    Enable wake from a PCI Power Management Enable wake up event when the system is off

    Default

    Enabled

    Type

    Configurable Setting

    BIOS Page

    Power

    Description

    Software auto-power-on feature. This motherboard also features a hardware ATX jumper that provides the same functionality.

    Default

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Power

    Description

    Force to enable RTC S5 wake up, even if the OS disables it. Supports ‘ipwrtest’ performing RTC S5 wakeup.

    Default

    Disabled

    Type

    Configurable Setting

    BIOS Page

    Boot Page

    Description

    Sets the boot mode

    Possible Values

    UEFI Boot Type, Legacy Boot Type, Dual Boot Type

    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. Additionally PXE Boot over SGMII on this platform is not currently available. Updated UNDI drivers are planned to support this feature.

    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

    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

    Revision History

    Date

    First release of K410/K430 BIOS Manual

    7/30/2021

    2- Main Page

    3- Advanced Page

    3.1- Boot Configuration

    3.2- USB Configuration

    3.3- Chipset Configuration

    3.4- ACPI Table/Features Control

    3.5- SFB Chipset Feature

    3.6- RC Advanced Menu

    ACPI Settings

    CPU Configuration

    CPU - Power Management Control

    GT - Power Management Control

    Intel Time Coordinated Computing

    Memory Configuration

    System Agent (SA) Configuration

    Graphics Configuration

    PCH-IO Configuration

    PCI Express Configuration

    PCI Express Root Port Configuration

    SATA Configuration

    USB Configuration

    Security Configuration

    SerialIo Configuration

    PSE Configuration

    PCH-FW Configuration

    Firmware Update Configuration

    FIPS Configuration

    OEM Key Revocation Configuration

    CPU Thermal Configuration

    3.7- H2OUVE Configuration

    3.8- OnLogic Feature Configuration

    4- Security Page

    5- Power Page

    6- Boot Page

    6.1- EFI

    7- Exit Page

    8- BIOS Updates

    9- Revision History

    K410 / K430 Product Documentation