The OnLogic HX511 expands on the Helix product range, and leverages Intel® 12th generation Alder Lake PS processing into a powerful fanless system.
The HX511 offers increased compute power and visual processing capabilities, encased in Hardshell™ Fanless Technology. Additionally, it offers optional expansion options via reliable, cableless add-on cards. With quad video output, a wide power range, and high processing power, the HX511 is equipped to handle a wide variety of applications.
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.
Care must be taken handling the device to prevent injury to self or possibility of damaging the unit.
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.
Des précautions doivent être prises lors de la manipulation de l'appareil pour éviter de se blesser ou d'endommager l'appareil.
4x Rubber Feet
If you purchased additional items such as mounting brackets, power supplies or terminal block connectors, they will be located in the system box or within the outer shipping carton.
All drivers and product guides can be found on the corresponding product page. For more information on accessories and additional features, visit the HX511 product page at .
The front power button can be used to turn on and off the Helix 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 Subscriber Identity Module (SIM) card slot is present on the front panel of the Helix platform allowing native support for OnLogic 4G LTE modules. The SIM signals are connected to the M.2 B-Key internal expansion slot.
The SIM slot is a Push-Push type receptacle. To insert the SIM card into the front panel of the Helix 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 four USB 3.2 Gen 2 ports on the front panel of the Helix platform. These ports are capable of linking at 10Gb/s transfer rates.
Thunderbolt™ 4
There are two Thunderbolt 4 ports on the front panel of the HX511. These ports are capable of linking at up to 40Gb/s transfer rates.
Power output up to 5V/3A for the first port and 5V/1.5A for the second port. Power will be allocated on a first-come first-serve basis between the first and second ports.
Up to 40 Gb/s data transfer rate in Thunderbolt Alt Mode
DisplayPort 1.4 compliant in DisplayPort Alt Mode
Note: Type-C power sink mode is not supported on Helix 511.
The Helix 511 platform supports an optional Isolated Digital I/O add-in card (OnLogic HX511-DIO). This option allows for interfacing of the Helix 511 with existing PLC integrations or other digital logic applications. For a complete explanation of features, operating voltages, and safety information, please refer to the DIO expansion manual on the OnLogic support site.
Each port’s serial mode and voltage between Off/5V/12V on Pin “9” is individually selected in the BIOS configuration. The serial ports support RS-232, RS-422, and RS-485 configurations. Refer to the for configuration instructions.
Power and Reset switch connectors are provided for use with momentary-contact switches making a connection between each signal and ground. Power and disk activity LED connections are provided to directly or indirectly drive indicator LEDs. Both provided signals are 5V sourced through a 330Ω resistor.
Helix utilizes Intel® Integrated processor graphics that power the onboard DisplayPorts. This means resolutions up to 4096x2304 @ 60Hz are supported on both outputs simultaneously. All ports support Multi-Stream Transport (MST).
The first LAN Port on Helix 511 supports up to 2.5Gbps 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 enclosed in the port. The description is included below.
The second Intel I225 LAN Port on Helix supports up to 2.5Gbps link speeds over standard shielded CAT5e or CAT6 cables. The connector is the industry standard RJ45 connector. This port also features Intel’s vPro® technology enabling remote out-of-band management and security features (requires Intel Core™ i5 or higher). The LAN link state is shown by the two LEDs enclosed in the port. The description is included below.
LAN activity light description
The dual stack USB 3.2 ports on the rear panel are USB 3.2 Gen 2 ports, capable of linking at 10Gb/s transfer rates.
The serial port mode and voltage between Off/5V/12V on Pin 9 on Helix 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 CAN port on Helix 511 supports CAN2.0 A/B at baud rates from 100-1000 kbaud. The system CAN port is not internally terminated, and a properly terminated (120 Ohms, typical) cable should be used. CAN messages may be sent and received via a virtual serial port over USB. Windows and Linux drivers are in-box for this interface.
Mainboard power is applied to the Helix 511 through a 4-pin terminal block connector (Mating part: Dinkle 2ESDAM-04P, OnLogic CBPW159, or equivalent).
The system is operational from 12V~24V. [see section 2.4 for input voltage qualifications]. The maximum rated current of the connector is 15A per pin. Use a wire gauge that is rated for the operational current. Cables should be properly terminated with wire ferrules. Do not use the terminal block with tinned wire ends or solid core wire. See below for connector pinout.
When using the remote switch connections with the terminal block option, mating power switch cables should be a twisted-pair wire with floating shield to assure proper immunity to EMI/RFI. It is recommended to keep wires at less than 3 meters in length. Switches should be momentary contact type only.
For pinout details, reference the located within I/O Definitions.
An M.2 B-Key port is present on the Helix 511 motherboard to allow support for B-Key form-factor expansion cards. Supported cards include 3042, 3052, 2280 form-factors. The B-Key connector supports PCIe Gen 4 x2, USB 3.2 10Gb/s, 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 connected to the M.2 B-Key.
An M.2 E-Key port is present on the Helix 511 motherboard to allow support for E-Key form-factor wireless expansion cards. Only 2230 form-factor cards are supported. The E-Key connector supports PCIe Gen 3 x1 and USB 2.0.
An M.2 M-Key port is present on the Helix 511 motherboard to allow support for M-Key form-factor expansion cards. Only 2280 form-factor cards are supported. The M-Key connector includes support for PCIe Gen 3 x4, PCIe Gen 3 x2, PCIe Gen 4 x4, SATA Gen I (1.5Gbps), SATA Gen II (3.0Gbps), and SATA Gen III (6.0Gbps) devices.
The Helix 511 has two onboard DDR5 SO-DIMM slots with the following specifications:
Maximum Capacity: DDR5-4800 64GB with two 32GB SO-DIMM Modules
Channel configuration: 1 DIMM Per Channel (DPC) - 2 Channels
No ECC Support
If the BIOS needs to be updated, please refer to the for reflashing instructions.
A board mounted button is used to clear the BIOS settings of the Helix 511.
The RTC (Real Time Clock) battery on the Helix 511 is used to retain BIOS CMOS settings and maintain the real-time clock for the system. If the RTC battery is low, BIOS settings will not be retained and you may receive an alert in the operating system. The cabled RTC battery should be replaced with a Maxell CR2032-WK11 (or UL listed equivalent). An equivalent battery shall use a Hirose DF13-2S-1.25c connector to mate with the on-board connector.
The Helix 511 has a power header that can support up to 2A of 5V and 12V power. This header is designed for internal expansion cards that require additional power above what is provided by the expansion slots. This header is a 2.5mm Pitch 4-pin JST XH Connector, with the pinout shown below.
The LGA1700 CPU socket on the Helix 511 supports all 12th Gen Intel PS-series processors up to 45W TDP.
The power consumption of the Helix 511 was measured for various system configurations, workloads, and power states at both 12V and 24V system input voltages. Tests were performed using Prime 95, Furmark, and Burnintest v9.0 build 1012 to stress system components. These tests were performed with Intel Turbo Boost Enabled. The build configurations and power consumption are listed in the tables below. The power consumption listed below is the average power draw over a 5 minute window from the test starting. This includes a brief period of PL2 power consumption (previously Intel turbo Boost) where the power consumption is much larger than the listed average. The highest power consumption seen during the period of turbo PL2 is shown at the bottom of each table.
*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 Helix 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.
These DC levels specified are the absolute max values for the pins for function and safety of the system. The protection circuitry allows for brief transient voltages above these levels without the system turning off or being damaged. A transient voltage suppressor on the power input allows momentary excursions above stated limits.
An optional CAN add-in card is available. The add-in card has an NXP i.MX1050-series microcontroller that can communicate with the host processor over USB. The card provides an interactive shell for configuration on a virtual COM port, and two CAN interfaces accessible through two additional virtual COM ports.
The add-in card is configured interactively through its shell using a serial terminal emulator program. The shell is accessed differently depending on operating system.
Open Device Manager by pressing Win+X M. Open the “Ports (COM & LPT)” menu.
Note the “COM#” numbers on each port listed. The shell is typically the lowest-numbered “USB Serial Device” port. The first and second CAN interfaces typically have higher port numbers.
Download and install PuTTY from the link above.
Install picocom, e.g. “sudo apt install picocom” on Ubuntu.
Open the shell’s virtual COM port with picocom by running “picocom /dev/serial/by-id/usb-OnLogic_USB-CAN-*-if00”.
Some Linux distributions may not configure udev to produce by-id links. If those links are missing, try /dev/ttyACM0 and similar devices.
Once the shell is open, type “help” for usage information. A description of available shell commands can also be found .
On Linux, the slcand utility can configure the add-in card’s interfaces as a regular SocketCAN network interface. Make sure the interface is configured for slcan usage by entering “set can-mode VCAN1 slcan” (and similar for “VCAN2”) in the shell.
On most Linux distributions, slcand is part of a package called can-utils; on Ubuntu, it can be installed with “sudo apt install can-utils”. Once installed, start the utility by running e.g. “slcand -oc -s6 /dev/serial/by-id/usb-OnLogic_USB-CAN-*-if02 slcan0” to create a SocketCAN interface named slcan0 running at 500k (“-s6”) from the first CAN interface’s virtual COM port.
The slcan message format is widely supported. High-quality libraries are available for most programming languages that handle the details of the protocol. It can also be implemented manually if needed.
The slcan protocol is stateful; each interface needs to be configured and opened before it can be used, and must be closed before it can be reconfigured. Make sure the interface is configured for slcan usage by entering “set can-mode VCAN1 slcan” (and similar for “VCAN2”) in the shell.
Each CAN interface has a corresponding virtual COM port. Commands are sent on that port to configure the interface and send frames. Each command consists of an ASCII letter, optionally followed by other ASCII text, ending with a newline (“\n”) character.
The interface baudrate is set with the “S” command. Nine baudrates are supported:
Once the baudrate is set, the interface should be opened by sending the open command (“O\n”). Once open, frames can be sent to the microcontoller in the format documented in . As frames arrive, the microcontroller will send messages back on the virtual COM port. To stop it, close the interface with the close (“C\n”) command.
The legacy “std” message format is supported for backwards compatibility with other devices, but is not recommended for new development. The standard slcan format should be used instead due to the availability of high-quality tools and libraries for working with that message format in most programming languages.
An optional DIO add-in card is available. The add-in card has an NXP i.MX1050-series microcontroller that can communicate with the host processor over USB. The card provides an interactive shell for configuration on a virtual COM port.
Supported VIN/Input/Output Voltage: 5-48V
The DIO is optically isolated, meaning that the terminal is separated from other motherboard features for protection. The DIO terminal requires external power from a 5~48V DC source through Pin 20 with GND to Pin 19 in order to function.
The Isolated Power Supply (ISO PSU) can be a voltage source from 5~48V to interface with external digital IO. The maximum power draw from the supply should not exceed 0.6A under normal operating conditions. Individual DOut pins will be damaged by loads in excess of 150mA. The ISO PSU must be a DC Limited Power Source (LPS) power supply.
Open Device Manager by pressing Win+X M. Open the “Ports (COM & LPT)” menu.
Note the “COM#” numbers on each port listed.
Download and install PuTTY from the link above.
Install picocom, e.g. “sudo apt install picocom” on Ubuntu.
Open the shell’s virtual COM port with picocom by running “picocom /dev/serial/by-id/usb-OnLogic_DIO-*-if00”.
Some Linux distributions may not configure udev to produce by-id links. If those links are missing, try /dev/ttyACM0 and similar devices.
Once the shell is open, type “help” for usage information. A description of available shell commands can also be found .
While the microcontroller shell is intended for human interaction, it can be used to programmatically control the MCU. To avoid a number of pitfalls when doing so, observe the following best practices:
On Linux, use the symlinked device nodes inside /dev/serial/by-id instead of hardcoding /dev/ttyACMx device names. /dev/ttyACMx numbering is
unstable; /dev/serial/by-id/usb-OnLogic_<device>-if00 will reliably point to the terminal interface.
Connection Diagrams
● Temperature Range: 0ºC to 50°C
● Step size: 10°C
● i7 Processor loaded @80% PTAT, 1TB SSD, and 64GB DDR5 RAM loaded @ 80% with
BurnInTest 9.2
Thermal testing of the Helix 511 was completed using a thermal chamber to control ambient environmental temperature across the rated temperature range of the system. Throughout testing, the system and its components were being stressed by various softwares to simulate a rigorous constant workload. Stress testing occurred for two hours in each temperature range. Components were monitored during testing via their internal sensors. Some components were monitored externally via thermocouples.
The Helix 511 with i7-12800HL processor saturated upwards of its rated base clock speeds on performance and efficiency cores while sustaining significant processor, memory and storage stress loads through an ambient temperature range of 0-50C.
The Helix 511 has optional Wall Mount brackets (SKU : MTW101) and DIN Rail mounting brackets (SKU : MTW101-K) available for purchase.
For Wall Mounting, follow steps below :
Step 1: Align the four screw holes on the bottom of the system with the respective holes on the mounting brackets.
Step 2: Attach wall mounting brackets (MTW101) to the system using the supplied M3 screws (M3X0.5 Flathead Screw, 4mm Long).
Step 3 : Install system to surface using keyhole slots on wall mount brackets and appropriate hardware for the surface (not provided).
For DIN Rail Mounting, follow the below steps:
Step 1: Follow steps 1-2 from the Wall Mounting section.
Step 2: Align the mounting holes of the din clip bracket to the three mounting holes on the wall mount bracket.
Step 3: Install the din clips to the wall mount brackets using supplied screws and a Phillips head screwdriver (tighten gently as screws are threading into plastic).
Step 6: Mount system onto the DIN rail.
Note: The mounting brackets are required to support 3x the hanging weight of the system (14.82lbs / 6.72 kgs). The mating surface and hardware must be capable of supporting the same load.
The Helix 511 has an optional VESA mounting bracket (SKU : VMPL-2022-K) available for purchase. Follow the steps below for mounting.
Step 1: Align the four screw holes on the bottom of the system with the respective holes on the mounting bracket.
Step 2: Attach VESA Mount Plate, to the system using the supplied M3 screws (M3X0.5 Flathead Screw, 4mm Long)
Step 3: Install the system to VESA 75 or VESA 100 mounting pattern using provided VESA Mount screws.
The mounting bracket systems are required to secure 3x the hanging weight of the computer system (14.82lbs / 6.72 kgs). The mating substrate must be capable of maintaining the same rating.
Properly opening OnLogic systems does not void the warranty in most cases, however, some precautions are necessary to avoid damaging the system.
Perform this disassembly in an area free of static discharge.
Disconnect power, video, and any other connections to the system. It should be fully unplugged.
Ideally, wear a grounding strap. If that is not available, regularly touch a grounded metal surface to discharge your body of static electricity.
Begin by removing the 4x Phillips P2 screws circled in orange. * You will need to remove any mounting hardware from the bottom of the system
Remove the bottom plate. You can use a thin tool such as a flathead screwdriver to help with this.
You now have access to the motherboard.
For complete details on all configurable firmware settings, please reference the .
Reference our guide for installation instructions.
Drivers are available in INF formats, which can be installed via a Windows deployment server, or through the Device Manager. Reference our guide for Installing via Device Manager.
Intel AMT is supported on select processor SKUs that meet requirements for vPro support:
i7-12800HL
i5-12600HL
AMT Configuration is managed from outside the BIOS setup menu by pressing DELETE at the system boot screen and selecting “MEBx Configuration”
For detailed configuration options, see the HX511 .
Intel VMD may be used to configure software RAID for supported Windows operating systems.
VMD is supported on all processor SKUs. VMD must be enabled from the BIOS setup menu, and then may be configured from the RST setup menu by pressing DELETE at the system boot screen and choosing “Device Management.”
For detailed configuration options, see the HX511 .
RAID volumes can be configured and created via the BIOS or from an operating system (OS).
If an operating system is to be installed on to a RAID volume, the processes outlined in this section must be followed in order to appropriately enable RAID and create the RAID volume where the OS will be deployed.
This section will outline the process for creating RAID volumes outside of the OS via the BIOS.
Enabling VMD Configuration
Prior to configuring or creating any RAID volumes using Intel® Rapid Storage Technology, Intel® Volume Management Device (VMD) must be appropriately configured/enabled.
From UEFI System Setup, navigate to Advanced → VMD Configuration → and set Enable VMD Controller to Enabled.
Next, configure the VMD Enabled devices to be enabled:
For SATA RAID: Above the “Root Port BDF Details value” of SATA Controller, set the “Map this Root Port under VMD” to Enabled
For NVMe RAID: Above the “Root Port BDF Details value” of XX/YY/ZZ, set the “Map this Root Port under VMD” to Enabled (each root port corresponds to an NVMe drive)
Alternatively, “Enable VMD Global Mapping” can be set to Enabled for all attached storage devices.
Press F10 to Save and Exit. The system will then reboot.
Creating a RAID Volume in BIOS
After enabling VMD, reboot and enter UEFI System Setup Front Page (F2 or DEL).
Navigate to Device Management -> Intel Rapid Storage Technology.
The available Physical Disks should be listed under Non-RAID Physical Disks:
Assign a Name and select the RAID Level (e.g., RAID 0, 1, 5, 10).
Select the disks to include in the volume by marking them with an X.
Select Create Volume.
Reboot the system and verify that the RAID array has been detected by the operating system or OS installation media.
If the system fails to power on or otherwise function, clearing the CMOS may help restore it to a working state.
Unplug the system from all power and peripherals and perform the disassembly steps above.
Locate the CMOS CLEAR button located near the power button
Depress the button with a flathead screwdriver, fingernail, or similar object for at least 30 seconds
The CMOS is now clear. Reassemble and power the unit back on. It may reboot multiple times before resuming normal operation.
Overview
Description
Audio output over DisplayPort for HX511 products running Ubuntu 22.04 is currently unsupported due to kernel driver incompatibility.
There is no line-out or headphone jack present on this product. Customers who require audio support on the HX511 may consider an external USB-audio adapter.
Resolution
OnLogic is working with upstream partners to enable. New software will be available when enablement is complete.
The computer system was evaluated for medical, IT equipment, automotive, and maritime EMC standards as a class A device. The computer complies with the relevant IT equipment directives for the CE mark. Modification of the system may void the certifications. Testing includes: EN 55032, EN 55035, IEC 60601-1, EN 62368-1, EN 60950-1, and IEC 60945. Product safety was evaluated to IEC 62368-1 and IEC 60950-1.
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.
Board Dimensions
8.7" x 6.1"
221 x 156 mm
CPU (on solder side of board)
Socket LGA 1700 - Alder Lake PS
PCH
PS Integrated
Memory
2 x SO-DIMM DDR5 (2 x 32GB max Dual Channel) 64 GB Total
LAN Controller
1x Intel i225-LM -with AMT
1x Intel I225-IT
Expansion
1x M.2 2280/3042/3052 B-Key (PCIe x2, USB 3.2 5Gb/s, SATA III)
1x M.2 2230 E-key (Wi-Fi) (PCIe / USB 2.0)
1x M.2 2280 M-key (PCIe x 4, SATA III)
Back I/O
2x Full size DisplayPort 1.4 2x Gb LAN (2 x Intel)
2x USB 3.2 10 Gb/s
4-pin Terminal Block (12 ~ 24 V input)
Optional dual CAN card
Optional single COM (RS-232/422/485) card
Front I/O
1x Power button with LED indicator
1x 3FF-Sim slot (Mapped to the B-Key)
4x USB 3.2 10Gb/s
Optional 3 COM (RS-232/422/485) add-in card
Optional DIO add-in card
2x Thunderbolt 4 (40 Gb/s) USB Type C
Onboard Headers & Connectors
1x Battery on a cable
1x internal power header (5V, 12V)
Voltage Input
12~24V
Power Input
4-pin Terminal Block (supports remote switch)
BIOS
Insyde
Operating Systems
Windows 10 IOT 2021 LTSC, Ubuntu 22.04 LTS, Yocto, Window 11
Special Features
Watchdog timer
RTC
PTT in BIOS
On-board TPM 2.0
Support for Vision Processing Units
Support for 4G LTE and GPS expansion cards
TPM (Infineon SLB9672)
Thermal Standards (Subject to change through RFI and RFQ steps)
System Operating Temperature: 0-50C
Storage Temperature: -10-85C
Operating Humidity: 0% - 90% (non-condensing)
Extra Chassis Features
6 Antenna holes
Wall Mount
DIN Rail Mount
VESA Mount
Regulatory Certifications
FCC 47 CFR Part 15 Subpart B (Class A)
EN 60950-1 & EN 63268-1
CISPR 32/EN 55032
CISPR 35/EN 55035
Radio Equipment Directive (2014/53/EU)
WEEE Directive (2012/19/EU)
RoHS 3 (2015/863/EU)
IEC 60601-1-2, 4th ed. - EMC Ready
EN 60945, 4th ed.
IEC/UL/EN 62368-1
RF output power
20 dBm (2400-2485 MHz) IEEE 802.11b/g/n & BT
10 dBm (2400-2485 MHz) BLE
23 dBm (5150-5725 MHz) IEEE 802.11a/n/ac
13.98 dBm (5725-5875 MHz) IEEE 802.11a/n/ac
Type of Modulation
2.4 GHz: DSSS/OFDM/FHSS
5 GHz: OFDM
Type of Antenna
Reference antenna is PIFA type (2 dBi/2 dBi gain)
Modes of operation
Duplex (Tx/Rx)
Duty cycle (access protocol)
As In: IEEE 802.11a/b/g/n/ac
Galileao Receiver
Operating frequency range: 1559 - 1610 MHz
QZSS Receiver
Operating frequency range: 1559 - 1610 MHz
GSM 900
Operating frequency range: 880 - 915 MHz, 925 - 960 MHz Maximum output power: 33dBm rated
GSM 1800
Operating frequency range: 1710 - 1785 MHz, 1805 - 1880 MHz Maximum output power: 30dBm rated
WCDMA Band 1
Operating frequency range: 1920 - 1980 MHz, 2110 - 2170 MHz Maximum output power: 24dBm rated
WCDMA Band 8
Operating frequency range: 880 - 915 MHz, 925 - 960 MHz Maximum output power: 24dBm rated
LTE FDD Band 1
Operating frequency range: 1920 - 1980 MHz, 2110 - 2170 MHz Maximum output power: 23dBm rated
LTE FDD Band 3
Operating frequency range: 1710 - 1785 MHz, 1805 - 1880 MHz
Maximum output power: 23dBm rated
LTE FDD Band 7
Operating frequency range: 2500 - 2570 MHz, 2620 - 2690 MHz Maximum output power: 23dBm rated
LTE FDD Band 8
Operating frequency range: 880 - 915 MHz, 925 - 960 MHz
Maximum output power: 23dBm rated
LTE FDD Band 20
Operating frequency range: 832 - 862 MHz, 791 - 821 MHz Maximum output power: 23dBm rated
LTE FDD Band 28A
Operating frequency range: 703 - 733 MHz, 758 - 788 MHz
Maximum output power: 23dBm rated
LTE FDD Band 38
Operating frequency range: 2570 - 2620 MHz Maximum output power: 23dBm rated
LTE FDD Band 40
Operating frequency range: 2300 - 2400 MHz Maximum output power: 23dBm rated
E-GSM
Operating frequency range: 880 - 915 MHz Maximum output power: 33dBm rated
DCS
Operating frequency range: 1710 - 1785 MHz Maximum output power: 30dBm rated
1 x 8GB DDR5 SO-DIMM 4800MT/S
Transcend TS1GSA64V8G
2 x 16GB DDR5 SO-DIMM 4800MT/S
Transcent TS2GSA64V8E
2 x 32GB DDR5 SO-DIMM 4800MT/S
Transcend TS4GSA64V8E
LAN
[1 port linked at full speed]
[1 port linked at full speed]
[2 port linked at full speed]
Storage #1 M.2 M-Key
Samsung 980 Pro
1000GB Gen4
NVMe SSD
Samsung 980 Pro
1000GB Gen4
NVMe SSD
Samsung 980 Pro
1000GB Gen4
NVMe SSD
M.2 B-Key
Transcend TS512GMTS952T2
500GB
SATA Gen3 SSD
M.2 E key
Intel 9260NGW
Intel 9260NGW
Intel 9260NGW
Serial port
3xCOM
Expansion Port 1
DIO
DIO
Expansion Port 2
COM
COM
USB
Port 1: N/A
Port 2 : N/A
Port 3 : N/A
Port 4: Mouse & Keyboard
Port 1: N/A
Port 2 : N/A
Port 3 : N/A
Port 4: Wireless
Mouse & Keyboard
Port 1: N/A
Port 2 : N/A
Port 3 : N/A
Port 4: Wireless
Mouse & Keyboard
Thunderbolt
Port 1: N/A
Port 2: N/A
Port 1: N/A
Port 2: N/A
Port 1: TBT 4 dock connected (idle)
Port 2: N/A
Display
One Monitor
One Monitor
One Monitor
OS
WIndows 11 Pro 64 Bit
WIndows 11 Pro 64 Bit
WIndows 11 Pro 64 Bit
OS Power Plan
Balanced
Balanced
Balanced
BIOS Version
1.18
1.18
1.18
Deep S5
0.11
0.26
S5
1.6
2
S3
2.7
3.1
OS Idle
6.7
8.7
CPU / System stress
27.3
28
CPU + GPU / System stress
27.8
29.9
Max turbo draw
79.7
85.7
Medium Config Measurements
Power Consumption
12V Avg [W]
24V Avg [W]
Pseudo G3
0.05
0.135
Deep S5
0.11
0.26
S5
1.6
2
S3
3.2
3.6
OS Idle
7.9
10.2
CPU / System stress
65.7
70.7
CPU + GPU / System stress
66.1
67.8
Max turbo draw
123
121
High Config Measurements
Power Consumption
12V Avg [W]
24V Avg [W]
Pseudo G3
0.05
0.135
Deep S5
0.11
0.26
S5
2.4
2.9
S3
4.2
4.5
OS Idle
12.4
12.9
CPU / System stress
70
74
CPU + GPU / System stress
68.6
72
Max turbo draw
139.7
140
USB
S3
RTC Wake set by BIOS
Deep S5, S5, S3
Must be enabled in BIOS
RTC Wake set by OS
S3
If the port number was correct, a “uart:~$” prompt should appear. If not, try a different port.
If the port number was correct, a “uart:~$” prompt should appear. If not, try a different port.
stty -F /dev/serial/by-id/<device> -echo beforeinteracting with the shell. Most serial libraries (pyserial, serialport-rs, etc.) will automatically disable this flag.
When sending a command, precede it with a ‘\x03’ byte to clear the terminal’s line buffer and ensure that the command is interpreted correctly. Follow the command with a ‘\r’ or ‘\n’ character to execute the command.
Send less than 64 bytes at a time. To send longer commands, explicitly flush the port’s output buffer in between each block of 64 bytes.
Severity:
Low
Updated LAN numbering
03/25/2025
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 or rear of chassis. Screws should be a minimum length of 4mm. Add 1mm of screw length for every mm of additional thickness of plate or bracket beyond 1.5mm.
Caution, Hot Surface! It is normal for the unit to heat up and be hot to touch. Do not touch the heatsink area or enclosure during operation and 30 minutes after shutdown allowing the unit to cool down.
Ambient operating temperature must be between 0 °C to 50 °C with a non-condensing relative humidity of 10-85%.
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.
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 50 °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.
Model
HX511
System Dimensions
8.86" x 2" x 6.97"
225 x 50.8 x 177 mm
System Weight
4.94 lbs
2.24 kgs
Radio Specifications when equipped with Intel AC 9260 Wi-Fi (device for indoor use)
Frequency Bands
2.4 GHz and 5 GHz 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
Radio Specifications when equipped with Amit MDG100 (EU)
GPS Receiver
Operating frequency range: 1559 - 1610 MHz
GLONASS Receiver
Operating frequency range: 1559 - 1610 MHz
BDS Receiver
Operating frequency range: 1559 - 1610 MHz
System Component
Config 1 Low
Config 3 Medium
Config 4 High
CPU
Intel Core i7-1265UL Processor
Intel Core i5-12600HL Processor
Intel Core i7-12800HL Processor
Low Config Measurements
Power Consumption
12V Avg [W]
24V Avg [W]
Pseudo G3
0.05
Wake-Up Event
From ACPI State
Comments
Power Button
Deep S5, S5, S3
LAN
S5, S3
Parameter
Value
Nominal operating voltage (Rated DC value of input)
12~24V
Undervoltage protection trip DC level (system turns off)
6.5V
Maximum safe DC voltage (system not damaged)
28.4V
A025
02/25/2025
A024
04/24/2024
Category:
Software
SKU(s) Affected:
HX511
Revision(s) Affected:
All
Revision Resolved:
Unresolved
Revision History
Date
First release of HX11 manual
06/06/2023
Updated Errata and feature list
06/12/2023
Minor update to vPro list
02/09/2024
The system can be powered with a 4-pin terminal block by matching the Negative (-) and Positive (+). From left-to-right, the pinout is: (SW) (SW) ( – ) ( + )
The (SW) pins can be used for remote power switch operation. This can be connected with a momentary button/switch.


































Memory
0.135
Must be enabled in BIOS









The UEFI BIOS is a small program which runs when your computer starts and configures its basic functions. That configuration is automatic, and most users will be satisfied with the default configuration. If the default configuration is not sufficient, the BIOS has setup menus which can be used to reconfigure the computer.
The purpose of this manual is to document the function of the BIOS and its available configuration options. The text of this document lists the BIOS menus and options exactly as they appear in the BIOS menus: in the correct order, with the correct default values for this BIOS version. Some options are hidden based on how other options are set and which hardware is detected in the system, so some options may not appear on all systems. Informative screenshots are also provided throughout, but their contents may not exactly match this BIOS version.
To access the BIOS setup menu, hold the Delete key on the keyboard while turning on the system. After a few seconds, the BIOS front page menu is shown:
On each menu, the selected option is shown in white, other options are shown in blue, and read-only options are shown in gray. Some menus have multiple screens, which are shown at the top of the screen. The active screen is shown with a gray background and inactive screens are shown with blue backgrounds.
BIOS menus are navigated by pressing keys on the keyboard:
F1 shows help on available keyboard shortcuts
↑/↓ arrow keys select the option above or below the currently-selected option
→/← arrow keys activate the screen to the right or left of the currently-activated screen
Several options are available on the front page:
Continue: continues the boot process normally, booting the installed operating system
Boot Manager: opens a menu to select which device should be booted
Device Management: opens a menu which shows the status of the system hardware
The boot manager menu shows the devices available to be booted. The installed operating system and any attached USB drives will be listed. If enabled in the setup utility, the UEFI shell is also listed. Selecting an option boots it.
The setup utility shows the status of the system and allows many configuration options to be changed. These options affect the functionality, stability and security of the system, and should not be changed without an understanding of their meaning.
The setup utility has many screens. Press the →/← arrow keys to select between them. Each screen is described below.
Several configuration options are frequently used.
Default value: S0 State; possible values: S0 State, S5 State, Last
Controls the state the system enters after G3 (power loss). If set to S5, the system remains off when initially connected to power. If set to S0, the system boots when connected to power.
The main screen shows the BIOS version, information about the installed CPU, and the system date and language.
The Advanced menu contains the following options:
Boot Configuration (menu)
Configures Boot Settings.
Peripheral Configuration (menu; only in expert mode)
Configures the peripheral devices.
SATA Configuration (menu)
Select the SATA controller and hard disk drive type installed in your system
USB Configuration (menu; only in expert mode)
Configure the USB supp
Chipset Configuration (menu)
Advanced Chipset Configuration Options.
Debug Settings (menu; only in expert mode)
Debug interface Settings
PCI Subsystem Settings (menu; only in expert mode)
PCI, PCI-X and PCI Express Settings.
ACPI Table/Features Control (menu)
Configures ACPI Tables/Features setting.
CPU Configuration (menu)
CPU Configuration
Connectivity Configuration (menu; only in expert mode)
Configure Connectivity related options
Power & Performance (menu; only in expert mode)
Power & Performance Options
Functional Safety Configuration (menu)
Functional Safety Configuration options
OverClocking Performance Menu (menu; only in expert mode)
Performance Menu for Processor and Memory.
Memory Configuration (menu; only in expert mode)
Memory Configuration Parameters
System Agent (SA) Configuration (menu; only in expert mode)
System Agent (SA) Parameters
PCIE Configuration (menu; only in expert mode)
PCIE Parameters
PCH-IO Configuration (menu)
PCH Parameters
PCH-FW Configuration (menu)
Configure Management Engine Technology Parameters
Thermal Configuration (menu)
Thermal Configuration Parameters
Platform Settings (menu; only in expert mode)
Platform related settings
ACPI D3Cold settings (menu; only in expert mode)
ACPI D3Cold related settings
BCLK Configuration (menu; only in expert mode)
BCLK Configuration options
Console Redirection (menu)
Console Redirection Settings
OnLogic Feature Configuration (menu)
OnLogic Feature Configuration Menu
SIO NCT5124D (menu)
SIO NCT5124D configuration menu
Expert Mode (default value: Disabled; possible values: Disabled, Enabled)
SCU Expert Mode
The CPU Configuration menu contains the following options:
Efficient-core Information (menu)
Displays the E-core Information
Performance-core Information (menu)
Displays the P-core Information
ID
Displays the Processor ID.
Brand String
Brand String of the Performance Processor
VMX
VMX Supported or Not
SMX/TXT
SMX/TXT Supported or Not
TXT Crash Code
TXT Crash Code Register value
TXT SPAD
TXT SPAD Register value
Boot Guard Status
Boot Guard Status Register value
Boot Guard ACM Policy Status
Boot Guard ACM Policy Status value
Boot Guard SACM Information
Boot Guard SACM Info MSR value
C6DRAM (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable moving of DRAM contents to PRM memory when CPU is in C6 state
CPU Flex Ratio Override (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable CPU Flex Ratio Programming
CPU Flex Ratio Settings (read-only; possible values: numbers between 0 and 63)
This value must be between Max Efficiency Ratio (LFM) and Maximum non-turbo ratio set by Hardware (HFM).
Hardware Prefetcher (default value: Enabled; possible values: Disabled, Enabled)
To turn on/off the MLC streamer prefetcher.
Adjacent Cache Line Prefetch (default value: Enabled; possible values: Disabled, Enabled)
To turn on/off prefetching of adjacent cache lines.
Intel (VMX) Virtualization Technology (default value: Enabled; possible values: Disabled, Enabled)
When enabled, a VMM can utilize the additional hardware capabilities provided by Vanderpool Technology.
PECI (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable PECI
AVX (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable the Avx 2 Instructions. This is applicable for Performance-core only
Active Performance-cores (default value: All; possible values: All)
Number of P-cores to enable in each processor package. Note: Number of Cores and E-cores are looked at together. When both are {0,0}, Pcode will enable all cores.
Active Efficient-cores (default value: All; possible values: All, 0)
Number of E-cores to enable in each processor package. Note: Number of Cores and E-cores are looked at together. When both are {0,0}, Pcode will enable all cores.
Hyper-Threading (default value: Enabled; possible values: Disabled, Enabled)
Enable or Disable Hyper-Threading Technology.
BIST (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable BIST (Built-In Self Test) on reset
AP threads Idle Manner (default value: MWAIT Loop; possible values: HALT Loop, MWAIT Loop, RUN Loop)
AP threads Idle Manner for waiting signal to run
AES (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable AES (Advanced Encryption Standard)
MachineCheck (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Machine Check
MonitorMWait (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable MonitorMWait, if Disable MonitorMwait, the AP threads Idle Manner should not set in MWAIT Loop
Intel Trusted Execution Technology (default value: Disabled; possible values: Disabled, Enabled)
Enables utilization of additional hardware capabilities provided by Intel (R) Trusted Execution Technology.
Changes require a full power cycle to take effect.
Alias Check Request (read-only; possible values: Disabled, Enabled)
Enables Txt Alias Checking capability
Changes require full Txt capability before it will take effect.
It is a one time only change, next reboot will be reset.
DPR Memory Size (MB) (read-only; possible values: numbers between 0 and 255)
Reserve DPR memory size (0-255) MB
Reset AUX Content (read-only; possible values: Yes, No)
Reset TPM Aux content. Txt may not functional after AUX content gets reset.
CPU SMM Enhancement (menu)
CPU SMM Enhancement
Total Memory Encryption (default value: Disabled; possible values: Disabled, Enabled)
Configure Total Memory Encryption (TME) to protect DRAM data from physical attacks.
The Memory Configuration menu contains the following options:
Memory Thermal Configuration (menu)
Memory Thermal Configuration Options
Memory Training Algorithms (menu)
Enable/Disable Memory Training Algorithms.
Memory (menu)
Memory Overclocking Menu
Memory RC Version
Memory RC Version
Memory Frequency
Displays the Frequency of Memory
tCL-tRCD-tRP-tRAS
Memory Timings
MC 0 Ch 0 DIMM 0
Controller Channel Slot Subtitle
MC 0 Ch 0 DIMM 1
Controller Channel Slot Subtitle
Size
Memory Size in the Slot.
Number of Ranks
Number of Ranks in the slot
Manufacturer
DIMM / DRAM Manufacturer Value
MC 1 Ch 0 DIMM 0
Controller Channel Slot Subtitle
MC 1 Ch 0 DIMM 1
Controller Channel Slot Subtitle
Size
Memory Size in the Slot.
Number of Ranks
Number of Ranks in the slot
Manufacturer
DIMM / DRAM Manufacturer Value
Debug Value (default value: 0; possible values: numbers between 0 and 4294967295)
Debug Value
MRC ULT Safe Config (default value: Disabled; possible values: Disabled, Enabled)
MRC ULT Safe Config for PO
LPDDR DqDqs Re-Training (default value: Enabled; possible values: Disabled, Enabled)
Disable/Enable LPDDR DqDqs Re Training
Safe Mode Support (default value: Disabled; possible values: Disabled, Enabled)
Safe Mode enable support. Option will be used for changes/WAs that may affect an stable MRC
Memory Test on Warm Boot (default value: Enabled; possible values: Disabled, Enabled)
Enable Or Disable Base Memory Test Run on Warm Boot
Maximum Memory Frequency (default value: Auto; possible values: Auto, 1067, 1333, 1400, 1600, 1800, 1867, 2000, 2133, 2200, 2400, 2600, 2667, 2800, 2933, 3000, 3200, 3467, 3600, 3733, 4000, 4200, 4267, 4400, 4600, 4800, 5000, 5200, 5400, 5600, 5800, 6000, 6200, 6400, 10000, 12800)
Maximum Memory Frequency Selections in Mhz.
LP5 Bank Mode (default value: Auto; possible values: Auto, LP5 8 Bank Mode, LP5 16 Bank Mode, LP5 BG Mode)
LP5 Bank Mode
Frequency Limit for Mixed 2DPC DDR4 (default value: 0; possible values: numbers between 0 and 65535)
Override the reduced speed in mixed 2DPC config or non-POR 2DPC config. 0=Auto, otherwise speed in MT/s
Frequency Limit for Mixed 2DPC DDR5 1 Rank 8GB and 8GB (default value: 2000; possible values: numbers between 0 and 65535)
Override the reduced speed in mixed 2DPC config or non-POR 2DPC config. 0=Auto, otherwise speed in MT/s
Frequency Limit for Mixed 2DPC DDR5 1 Rank 16GB and 16GB (default value: 2000; possible values: numbers between 0 and 65535)
Override the reduced speed in mixed 2DPC config or non-POR 2DPC config. 0=Auto, otherwise speed in MT/s
Frequency Limit for Mixed 2DPC DDR5 1 Rank 8GB and 16GB (default value: 2000; possible values: numbers between 0 and 65535)
Override the reduced speed in mixed 2DPC config or non-POR 2DPC config. 0=Auto, otherwise speed in MT/s
Frequency Limit for Mixed 2DPC DDR5 2 Rank (default value: 2000; possible values: numbers between 0 and 65535)
Override the reduced speed in mixed 2DPC config or non-POR 2DPC config. 0=Auto, otherwise speed in MT/s
LCT Cmd Eye Width (default value: 96; possible values: numbers between 0 and 65535)
LCT Cmd Eye Width 0= Auto
HOB Buffer Size (default value: Auto; possible values: Auto, 1B, 1KB, Max (assuming 63KB total HOB size))
Size to set HOB Buffer
Max TOLUD (default value: Dynamic; possible values: Dynamic, 1 GB, 1.25 GB, 1.5 GB, 1.75 GB, 2 GB, 2.25 GB, 2.5 GB, 2.75 GB, 3 GB, 3.25 GB, 3.5 GB)
Maximum Value of TOLUD. Dynamic assignment would adjust TOLUD automatically based on largest MMIO length of installed graphic controller
SA GV (default value: Enabled; possible values: Disabled, Enabled, Fixed to 1st Point, Fixed to 2nd Point, Fixed to 3rd Point, Fixed to 4th Point)
System Agent Geyserville. Can disable, fix to a specific point, or enable frequency switching.
First Point Frequency (default value: 0; possible values: numbers between 0 and 65535)
Specify the frequency for the given point. 0 - MRC auto, Else a specific frequency as an integer: 1333
First Point Gear (default value: 0; possible values: numbers between 0 and 4)
Gear ratio for this SAGV point. 0-Auto, 1-G1, 2-G2, 4-G4
Second Point Frequency (default value: 0; possible values: numbers between 0 and 65535)
Specify the frequency for the given point. 0 - MRC auto, Else a specific frequency as an integer: 1333
Second Point Gear (default value: 0; possible values: numbers between 0 and 4)
Gear ratio for this SAGV point. 0-Auto, 1-G1, 2-G2, 4-G4
Third Point Frequency (default value: 0; possible values: numbers between 0 and 65535)
Specify the frequency for the given point. 0 - MRC auto, Else a specific frequency as an integer: 1333
Third Point Gear (default value: 0; possible values: numbers between 0 and 4)
Gear ratio for this SAGV point. 0-Auto, 1-G1, 2-G2, 4-G4
Fourth Point Frequency (default value: 0; possible values: numbers between 0 and 65535)
Specify the frequency for the given point. 0 - MRC auto, Else a specific frequency as an integer: 1333
Fourth Point Gear (default value: 0; possible values: numbers between 0 and 4)
Gear ratio for this SAGV point. 0-Auto, 1-G1, 2-G2, 4-G4
SAGV Switch Factor IA (default value: 30; possible values: numbers between 1 and 50)
SAGV Switch Factor of IA Load Percentage To Trigger Switching Up And Down
SAGV Switch Factor GT (default value: 30; possible values: numbers between 1 and 50)
SAGV Switch Factor of GT Load Percentage To Trigger Switching Up And Down
SAGV Switch Factor IO (default value: 30; possible values: numbers between 1 and 50)
SAGV Switch Factor of IO Load Percentage To Trigger Switching Up And Down
SAGV Switch Factor Stall (default value: 30; possible values: numbers between 1 and 50)
SAGV Switch Factor of IA/GT Stall Percentage To Trigger Switching Up And Down
Threshold For Switch Up (default value: 1; possible values: numbers between 1 and 50)
Duration In MS Of High Activity After Which SAGV Will Switch Up
Threshold For Switch Down (default value: 1; possible values: numbers between 1 and 50)
Duration In MS Of Low Activity After Which SAGV Will Switch Down
Retrain on Fast Fail (default value: Enabled; possible values: Disabled, Enabled)
Restart MRC in Cold mode if SW MemTest fails during Fast flow. Default = Enabled
DDR4_1DPC (default value: Enabled; possible values: Disabled, Enabled on DIMM0 only, Enabled on DIMM1 only, Enabled)
DDR4 1DPC performance feature for 2R DIMMs. Can be enabled on DIMM0 or DIMM1 only, or on both
Row Hammer Mode (default value: RFM; possible values: Disabled, RFM, pTRR)
Row Hammer Prevention Mode. RFM will fall back to pTRR if not available
RH LFSR0 Mask (default value: 1/2^11; possible values: 1/2^1, 1/2^2, 1/2^3, 1/2^4, 1/2^5, 1/2^6, 1/2^7, 1/2^8, 1/2^9, 1/2^10, 1/2^11, 1/2^12, 1/2^13, 1/2^14, 1/2^15)
LFSR0 mask for RH pTRR
RH LFSR1 Mask (default value: 1/2^11; possible values: 1/2^1, 1/2^2, 1/2^3, 1/2^4, 1/2^5, 1/2^6, 1/2^7, 1/2^8, 1/2^9, 1/2^10, 1/2^11, 1/2^12, 1/2^13, 1/2^14, 1/2^15)
LFSR1 mask for RH pTRR
MC Refresh Rate (default value: NORMAL Refresh; possible values: NORMAL Refresh, 2x Refresh, 4x Refresh)
Select refresh rate on the MC
Refresh Watermarks (default value: High; possible values: Low, High)
Sets Refresh Panic Watermark and Refresh High-Priority Watermark to HIGH or LOW values
LPDDR ODT RttWr (default value: 0; possible values: numbers between 0 and 255)
Initial RttWr ODT override for LP4/5 in Ohms. Range 0x01 - 0xFF, default 0 = AUTO
LPDDR ODT RttCa (default value: 0; possible values: numbers between 0 and 255)
Initial RttCa ODT override for LP4/5 in Ohms. Range 0x01 - 0xFF, default 0 = AUTO
Exit On Failure (MRC) (default value: Enabled; possible values: Disabled, Enabled)
Exit On Failure for MRC training steps
New Features 1 - MRC (default value: Disabled; possible values: Disabled, Enabled)
Enabling/Disabling Generic New Features 1
New Features 2 - MRC (default value: Disabled; possible values: Disabled, Enabled)
Enabling/Disabling Generic New Features 2
Ch Hash Override (default value: Disabled; possible values: Disabled, Enabled)
Override Channel Hash settings
Ch Hash Support (read-only; possible values: Disabled, Enabled)
Enable/Disable Channel Hash Support. NOTE: ONLY if Memory interleaved Mode
Ch Hash Mask (read-only; possible values: numbers between 1 and 16383)
Set the BIT(s) to be included in the XOR function. NOTE BIT mask corresponds to BITS [19:6}
Ch Hash Interleaved Bit (read-only; possible values: BIT6, BIT7, BIT8, BIT9, BIT10, BIT11, BIT12, BIT13)
Select the BIT to be used for Channel Interleaved mode. NOTE: BIT7 will interlave the channels at a 2 cacheline granularity, BIT8 at 4 and BIT9 at 8
Extended Bank Hashing (default value: Enabled; possible values: Disabled, Enabled)
Enable/disable Extended Bank Hashing.
Per Bank Refresh (default value: Enabled; possible values: Disabled, Enabled)
Enables and Disables the per bank refresh. This only impacts memory technologies that support PBR: LPDDR4, LPDDR5 and DDR5
VC1 Read Metering (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable VC1 Read Metering Feature (RdMeter)
Strong Weak Leaker (default value: 7; possible values: numbers between 1 and 7)
Value for StrongWkLeaker
Power Down Mode (default value: Auto; possible values: Auto, No Power Down, APD, PPD-DLLoff)
CKE Power Down Mode Control
Pwr Down Idle Timer (default value: 0; possible values: numbers between 0 and 255)
The minimum value should = to the worst case Roundtrip delay + Burst_Length. 0 means AUTO: 64 for ULX/ULT, 128 for DT/Halo
Page Close Idle Timeout (default value: Enabled; possible values: Enabled, Disabled)
Page Close Idle Timeout Control
Memory Scrambler (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Memory Scrambler support.
Force ColdReset (default value: Disabled; possible values: Enabled, Disabled)
Force ColdReset OR Choose MrcColdBoot mode, when Coldboot is required during MRC execution. Note: If ME 5.0MB is present, ForceColdReset is required!
Controller 0, Channel 0 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 0, Channel 0 Control - Enable or Disable Controller 0, Channel 0.
Controller 0, Channel 1 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 0, Channel 1 Control - Enable or Disable Controller 0, Channel 1.
Controller 0, Channel 2 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 0, Channel 2 Control - Enable or Disable Controller 0, Channel 2.
Controller 0, Channel 3 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 0, Channel 3 Control - Enable or Disable Controller 0, Channel 3.
Controller 1, Channel 0 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 1, Channel 0 Control - Enable or Disable Controller 1, Channel 0.
Controller 1, Channel 1 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 1, Channel 1 Control - Enable or Disable Controller 1, Channel 1.
Controller 1, Channel 2 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 1, Channel 2 Control - Enable or Disable Controller 1, Channel 2.
Controller 1, Channel 3 Control (default value: Enabled; possible values: Enabled, Disabled)
Controller 1, Channel 3 Control - Enable or Disable Controller 1, Channel 3.
Force Single Rank (default value: Disabled; possible values: Disabled, Enabled)
When enabled, only Rank 0 will be used in each DIMM
Memory Remap (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable Memory Remap above 4GB
Time Measure (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable printing of the time it takes to execute MRC.
Fast Boot (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable fast path thru the MRC
Rank Margin Tool Per Task (default value: Disabled; possible values: Disabled, Enabled)
Enables/Disables RMT running at every major training step
Training Tracing (default value: Disabled; possible values: Disabled, Enabled)
Enables/Disables printing of the current trained state at every major training step.
Lpddr Mem WL Set (default value: Set B; possible values: Set A, Set B)
Only applicable to LPDDR, Memory Write Latency Set selection (A is default, B will be used if memory devices support it)
BDAT Memory Test Type (read-only; possible values: Rank Margin Tool Rank, Rank Margin Tool Bit, Margin 2D)
Indicates the type of Memory Training data to populate into the BDAT ACPI table.
Rank Margin Tool Loop Count (default value: 0; possible values: numbers between 0 and 32)
Specifies the Loop Count to be used during Rank Margin Tool Testing. 0 - AUTO
ECC DFT (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable ECC DFT feature
Write0 (default value: Disabled; possible values: Disabled, Enabled)
Write0 feature for LP5/DDR5
Periodic DCC (default value: Disabled; possible values: Disabled, Enabled)
Enable / Disable Periodic DCC
LPMode (default value: Auto; possible values: Auto, Enabled, Disabled)
Control LPMode feature
PPR Enable (default value: Disabled; possible values: Disabled, Hard PPR)
PPR permanently repairs failed rows (if possible).
SAM Overlaoding (default value: Disabled; possible values: Disabled, Enabled)
Enable: copy the sagv frequency point. Disable: not copy.
The Chipset Configuration menu contains the following options:
Platform Trust Technology (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable Platform Trust Technology.
The System Agent (SA) Configuration menu contains the following options:
VT-d
VT-d capability
Graphics Configuration (menu)
Graphics Configuration
DMI/OPI Configuration (menu)
Control various DMI functions.
TCSS setup menu (menu)
TCSS Configuration settings
VMD setup menu (menu)
VMD Configuration settings
Display setup menu (menu)
Display Configuration settings
PCI Express Configuration (menu)
PCI Express Configuration settings
Stop Grant Configuration (default value: Auto; possible values: Auto, Manual)
Automatic/Manual stop grant configuration
VT-d (default value: Enabled; possible values: Disabled, Enabled)
VT-d capability
Control Iommu Pre-boot Behavior (default value: Enable IOMMU during boot; possible values: Disable IOMMU, Enable IOMMU during boot)
Enable IOMMU in Pre-boot environment (If DMAR table is installed in DXE and If VTD_INFO_PPI is installed in PEI.)
X2APIC Opt Out (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable X2APIC_OPT_OUT bit
DMA Control Guarantee (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable DMA_CONTROL_GUARANTEE bit
Thermal Device (B0:D4:F0) (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable SA Thermal Device. Always enabled for ICL A0 stepping.
Cpu CrashLog (Device 10) (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable Cpu CrashLog Device.
GNA Device (B0:D8:F0) (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable SA GNA Device.
CRID Support (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable SA CRID and TCSS CRID control for Intel SIPP
Above 4GB MMIO BIOS assignment (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable above 4GB MemoryMappedIO BIOS assignment
This is enabled automatically when Aperture Size is set to 2048MB.
IPU Device (B0:D5:F0) (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable SA IPU Device.
IPU 1181 Dash Camera (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable SA IPU 1181 Dash Camera support.
MIPI Camera Configuration (menu)
MIPI Camera Configuration
The PCH-IO Configuration menu contains the following options:
PCI Express Configuration (menu)
PCI Express Configuration settings
SATA Configuration (menu)
SATA Device Options Settings
USB Configuration (menu)
USB Configuration settings
Security Configuration (menu)
Security Configuration settings
HD Audio Configuration (menu)
HD Audio Subsystem Configuration Settings
THC Configuration (menu; disabled)
Touch Host Controller Configuration Settings
SerialIo Configuration (menu)
SerialIo Configuration Settings
ISH Configuration (menu)
Integrated Sensor Hub (ISH) Configuration
Pch Thermal Throttling Control (menu)
Pch Thermal Throttling Control
Skip VCCIN_AUX Configuration (default value: Disabled; possible values: Disabled, Enabled)
Skips VCCIN_AUX Configuration if enabled
FIVR Configuration (menu)
Menu for changing FIVR configuration parameters
PMC Configuration (menu)
Power management controller configuration
EFI Network (default value: Disabled; possible values: Onboard NIC, WiFi, Onboard NIC & WiFi, Disabled)
Enable/Disable EFI Network support for onboard LAN or WiFi module.
DeepSx Power Policies (default value: Disabled; possible values: Disabled, Enabled in S4-S5-Battery, Enabled in S5-Battery, Enabled in S4-S5, Enabled in S5)
configure the DeepSx Mode configuration.
Wake on WLAN and BT Enable (only in expert mode; default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable PCI Express Wireless LAN and Bluetooth to wake the system.
Disable DSX ACPRESENT PullDown (only in expert mode; default value: Disabled; possible values: Enabled, Disabled)
Disable PCH internal ACPRESENT PullDown when DeepSx or G3 exit.
State After G3 (default value: S0 State; possible values: S0 State, S5 State, Last)
Specify what state to go to when power is re-applied after a power failure (G3 state).
Port 80h Redirection (default value: LPC Bus; possible values: LPC Bus, PCIE Bus)
Control where the Port 80h cycles are sent.
Enhance Port 80h LPC Decoding (default value: Enabled; possible values: Disabled, Enabled)
Support the word/dword decoding of port 80h behind LPC
Compatible Revision ID (read-only; possible values: Disabled, Enabled)
Enable/Disable the PCH Compatible Revision ID feature
Legacy IO Low Latency (default value: Disabled; possible values: Disabled, Enabled)
Set to enable low latency of legacy IO. Some systems require lower IO latency irrespective of power. This is a tradeoff between power and IO latency.
PCH Cross Throttling (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable the PCH Cross Throttling feature. Only ULT support this feature.
PCH Energy Reporting (default value: Enabled; possible values: Disabled, Enabled)
Enable Energy Report. MUST set it as ENABLED. This is only for test purpose.
LPM S0i2.0 (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable S0ix sub-state. This setting is for test purpose. S0ix sub-states should be enabled for production.
LPM S0i3.0 (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable S0ix sub-state. This setting is for test purpose. S0ix sub-states should be enabled for production.
C10 Dynamic threshold adjustment (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable C10 dynamic threshold adjustment
IEH Mode (default value: Bypass Mode; possible values: Bypass Mode, Enabled)
Enable/Bypass IEH Mode
Enable TCO Timer (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable TCO timer. When disabled, it disables PCH ACPI timer, stops TCO timer, and ACPI WDAT table will not be published.
Enable Timed GPIO0 (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Timed GPIO0. When disabled, it disables cross time stamp time-synchronization as extension of Hammock Harbor time synchronization.
Enable Timed GPIO1 (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Timed GPIO1. When disabled, it disables cross time stamp time-synchronization as extension of Hammock Harbor time synchronization.
Pcie Pll SSC (default value: Auto; possible values: Auto, 0.0%, 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.8%, 0.9%, 1.0%, 1.1%, 1.2%, 1.3%, 1.4%, 1.5%, 1.6%, 1.7%, 1.8%, 1.9%, 2.0%, Disable)
Pcie Pll SSC percentage.AUTO - Keep hw default, no BIOS override. Range is 0.0%-2.0%.
IOTG PLL SSCEN (CPU Side SSC) (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable IOTG PLL SSCEN
Enable 8254 Clock Gate (default value: Enabled; possible values: Disabled, Enabled, Enabled In Runtime and S3 Resume)
Enables/Disables 8254 clock gate in early phase. Set 8254CGE is necessary for SLP_S0 support. Platform is albe to disable this policy and set 8254CGE in late phase.
Lock PCH Sideband Access (default value: Enabled; possible values: Disabled, Enabled)
Lock PCH Sideband access, include SideBand interface lock and SideBand PortID mask for certain end point (e.g. PSFx). The option is invalid if POSTBOOT SAI is set.
Flash Protection Range Registers (FPRR) (default value: Enabled; possible values: Disabled, Enabled)
Enable Flash Protection Range Registers
SPD Write Disable (default value: TRUE; possible values: TRUE, FALSE)
Enable/Disable setting SPD Write Disable. For security recommendations, SPD write disable bit must be set.
LGMR (default value: Disabled; possible values: Enabled, Disabled)
64KB memory block for LGMR (LPC Memory Range Decode)
HOST_C10 reporting to Target (default value: Disabled; possible values: Disabled, Enabled)
This option enables HOST_C10 reporting to Target via eSPI Virtual Wire
OS IDLE Mode (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable OS Idle Mode Feature
S0ix Auto Demotion (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable Host Low Power Mode S0ix Auto-Demotion
Latch Events C10 Exit (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable Latch Events on C10 Exit
Extended BIOS Range Decode (default value: Disabled; possible values: Disabled, Enabled)
Enabling this will make memory cycles falling in a specific area to be redirected to SPI flash controller
ACPI L6D PME Handling (default value: Disabled; possible values: Enabled, Disabled)
BIOS through ACPI code can associate specific method to a particular GPE. In this case _L6D for Level-triggered Event, BIOS-ACPI can verify PMEENABLE and PMESTATUS of each device that requires GPE related wake.
The PCH-FW Configuration menu contains the following options:
ME Firmware Version
ME Firmware Version
ME Firmware Mode
ME Firmware Mode
ME Firmware SKU
ME Firmware SKU
ME Firmware Status 1
ME Firmware Status 1
ME Firmware Status 2
ME Firmware Status 2
ME Firmware Status 3
ME Firmware Status 3
ME Firmware Status 4
ME Firmware Status 4
ME Firmware Status 5
ME Firmware Status 5
ME Firmware Status 6
ME Firmware Status 6
ME State (default value: Enabled; possible values: Disabled, Enabled)
When Disabled ME will be put into ME Temporarily Disabled Mode.
Manageability Features State (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Intel(R) Manageability features.
NOTE:
This option disables/enables Manageability Features support in FW.
To disable support platform must be in an unprovisioned state first.
AMT BIOS Features (default value: Enabled; possible values: Disabled, Enabled)
When disabled AMT BIOS Features are no longer supported and user is no longer able to access MEBx Setup.
Note:
This option does not disable Manageability Features in FW.
AMT Configuration (menu)
Configure Intel(R) Active Management Technology Parameters
ME Unconfig on RTC Clear (default value: Enabled; possible values: Disabled, Enabled)
When Disabled ME will not be unconfigured on RTC Clear
Comms Hub Support (default value: Disabled; possible values: Disabled, Enabled)
Enables/Disables support for Comms Hub.
JHI Support (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable Intel(R) DAL Host Interface Service (JHI)
Core Bios Done Message (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Core Bios Done message sent to ME
Firmware Update Configuration (menu)
Configure Management Engine Technology Parameters
PTT Configuration (menu)
Configure PTT
FIPS Configuration (menu)
FIPS Mode help
Unique Platform Id Configuration (menu; disabled)
Configure Unique Platform Id Feature
ME Debug Configuration (menu)
Configure ME debug options
NOTE:
This menu is provided for testing purposes. It is recommended to leave the options in their default states
Anti-Rollback SVN Configuration (menu)
Configure Anti-Rollback SVN
OEM Key Revocation Configuration (menu)
Configure OEM Key Revocation
Extend CSME Measurement to TPM-PCR (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable Extend CSME Measurement to TPM-PCR[0] and AMT Config to TPM-PCR[1]
The Peripheral Configuration menu contains the following options:
Serial Port A (default value: Disabled; possible values: Disabled, Auto, Enabled)
Configure Serial port A using options : [Disable] No Configuration [Enable] User Configuration [Auto] EFI/OS chooses configuration
Infrared Port (default value: Disabled; possible values: Disabled, Auto, Enabled)
Configure Infrared port using options : [Disable] No Configuration [Enable] User Configuration [Auto] EFI/OS chooses configuration
The USB Configuration menu contains the following options:
USB BIOS Support (default value: Enabled; possible values: Disabled, Enabled, UEFI Only)
USB keyboard/mouse/storage support under UEFI and DOS environment. It will supporting UEFI environment only if set to UEFI Only
Usb Legacy SMI bit Clean (default value: Disabled; possible values: Disabled, Enabled)
Clean Usb Legacy SMI bit for xHCI and EHCI
The SATA Configuration menu contains the following options:
Serial ATA Port 0 (menu; disabled)
Serial ATA Port 0 Device configuration
Serial ATA Port 1 (menu; disabled)
Serial ATA Port 1 Device configuration
The PCI Subsystem Settings menu contains the following options:
PCI Bus Driver Version
PCI, PCI-X and PCI Express Settings.
PCI ROM Priority (default value: EFI Compatible ROM; possible values: Legacy ROM, EFI Compatible ROM)
In case of multiple Option ROMs (Legacy and EFI Compatible), specifies what PCI Option rom to launch.
External DMA Allowed On Boot (default value: No; possible values: No, Yes)
External DMA Allowed On Boot for devices such as 1394, PCMCIA, & CardBus
Install Ext OpRom Before BIOS Setup (default value: Disabled; possible values: Disabled, Ext PCIE Storage OpRom, Ext PCIE Other OpRom, Ext PCIE Both Storage and Other OpRom)
Install Ext OpRom for Storage or Other device before BIOS Setup, That we can get the Ext PCIE Card OpRom Setup Menu and have chance to enter into it
PCI Latency Timer (default value: 32 PCI Bus Clocks; possible values: 32 PCI Bus Clocks, 64 PCI Bus Clocks, 96 PCI Bus Clocks, 128 PCI Bus Clocks, 160 PCI Bus Clocks, 192 PCI Bus Clocks, 224 PCI Bus Clocks, 248 PCI Bus Clocks)
Value to be programmed into PCI Latency Timer Register.
The SIO NCT5124D menu contains the following options:
UART Port 1 Configuration (menu)
UART Configuration
UART Port 2 Configuration (menu)
UART Configuration
UART Port 3 Configuration (menu)
UART Configuration
UART Port 4 Configuration (menu)
UART Configuration
The PCIE Configuration menu contains the following options:
IMR Configuration (menu)
IMR Configuration
The Power & Performance menu contains the following options:
CPU - Power Management Control (menu)
CPU - Power Management Control Options
GT - Power Management Control (menu)
GT - Power Management Control Options
Intel(R) Speed Shift Technology Interrupt Control (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Intel(R) Speed Shift Technology Interrupts
The OverClocking Performance Menu menu contains the following options:
OverClocking Feature (read-only; possible values: Disabled, Enabled)
Performance Menu for Processor and Memory.
WDT Enable (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable WatchDog Timer. Note: This option is ignored on debug BIOS.
BCLK Frequency
The BCLK Configuration menu contains the following options:
BCLK Source Config (default value: CPU BCLK; possible values: CPU BCLK)
CPU BCLK is only BCLK Source for ADL.
BCLK Frequency
The Thermal Configuration menu contains the following options:
Enable All Thermal Functions (default value: Enabled; possible values: Disabled, Enabled)
Enable All Thermal Functions" is Enabled it Enables 'Memory Thermal Management','Active Trip Points', 'Critical Trip Points'.Set to disabled for Manual Configuration
CPU Thermal Configuration (menu)
CPU Thermal Configuration options
Platform Thermal Configuration (menu)
Platform Thermal Configuration options
Intel(R) Dynamic Tuning Technology Configuration (menu)
Intel(R) Dynamic Tuning Technology Configuration options
Hardware Health Monitor (menu)
Monitor the Hardware Health.
The ACPI D3Cold settings menu contains the following options:
ACPI D3Cold Support (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable ACPI D3Cold support to be executed on D3 entry and exit
Note: Disable it would affect the Storage D3 setting
The ACPI Table/Features Control menu contains the following options:
ACPI Settings (menu)
System ACPI Parameters
FACP - RTC S4 Wakeup (default value: Enabled; possible values: Disabled, Enabled)
Value only for ACPI. Enable/Disable for S4 Wakeup from RTC
APIC - IO APIC Mode (default value: Enabled; possible values: Disabled, Enabled)
This item is valid only for WIN2k and WINXP.Also,a fresh install of the OS must occur when APIC Mode is desired.Test the IO ACPI by setting item to Enable.The APIC Table will then be pointed to by the RSDT,the Local APIC will be initialized,and the proper enable bits will be set in ICH4M
The Boot Configuration menu contains the following options:
Numlock (default value: Off; possible values: Off, On)
Selects Power-on state for Numlock
The Platform Settings menu contains the following options:
Charging Method (default value: Normal Charging; possible values: Normal Charging, Fast Charging)
Select charging method as Normal Charging or Fast Charging.
Scan Matrix Keyboard Support (default value: Enabled; possible values: Enabled, Disabled)
Enable Scan Matrix Keyboard Support
EC PECI Mode (default value: Legacy PECI mode; possible values: Legacy PECI mode, PECI over eSPI mode)
Switch eSPI PECI Mode or Legacy PECI mode
Power Loss Notification Feature (default value: Default; possible values: Disabled, Enabled, Default)
Enable/Disable Power Loss Notification Feature
Pmic Vcc IO Level (default value: Disable; possible values: Disable, 1.05V, 1.071V, 1.023V, 0.997V, 0.850V, 0.900V, 0.950V)
Select the Pmic Vcc IO Voltage Level
Pmic Vddq Level (default value: Disable; possible values: Disable, 0, 1, 2, 3, 4, 5, 6, 7)
Select the Pmic Vddq Voltage Level
CSC Pmic NVM Update Support (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable CastroCove Pmic Nvm Update
Pmic NVM Write Lock Support (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable WarrenCove/CastroCove Pmic Nvm Write Lock
Pmic SlpS0 VM Support (default value: Disabled; possible values: Disabled, Enabled)
Support to auto check Primium PMIC and disable SlpS0 voltage.
Power Sharing Manager (default value: Disabled; possible values: Disabled, Enabled)
Configure the PSM ACPI objects.
Enable FFU Support (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable FFU Support.
HID Event Filter Driver (default value: Enabled; possible values: Disabled, Enabled)
Enables/Disables HID Event Filter Driver interface to OS.
System Time and Alarm Source (default value: ACPI Time and Alarm Device; possible values: ACPI Time and Alarm Device, Legacy RTC)
Select source of system time and alarm functions. ACPI Time and Alarm (default, legacy RTC disabled) or Legacy RTC support only
DG Platform Support (default value: Add In Card; possible values: Add In Card, MB Down)
DG is supported as MotherBoard Down OR Add In Card
Enable PowerMeter
Intel Trusted Device Setup Boot (default value: Disabled; possible values: Enabled, Disabled)
Enables/Disables a Intel Trusted Device Setup Boot on the next boot
MPDT Support (default value: Disabled; possible values: Disabled, Sensor_BOM1, Sensor_BOM2, Sensor_BOM1 with Companion Chip)
Enable(Sensor_BOM1,Sensor_BOM2 and Sensor_BOM1 with Companion Chip)/Disable MPDT Support in BIOS
Closed Lid WoV LED Lighting Support (default value: Disabled; possible values: Disabled, Enabled)
Disables/Enables Closed Lid WoV LED Lighting Support.
System Firmware Update Config (menu)
Config settings for System Firmware Update (Capsule Update)
VTIO (menu)
Configure settings for VTIO
TCSS Platform Setting (menu)
Configure TCSS Platform Setting
The Connectivity Configuration menu contains the following options:
RFI Mitigation (default value: Enabled; possible values: Enabled, Disabled)
This is an option intended to Enable/Disable DDR-RFIM feature for Connectivity
This RFI mitigation feature may result in temporary slowdown of the DDR speed.
CoExistence Manager (read-only; possible values: Disabled, Enabled)
CoEx Manager mitigates radio coexistence issues between Intel WWAN (modem) and Intel WLAN (WiFi/BT).
This should be enabled only if both WWAN and WLAN solutions are based on Intel components
Preboot BLE (default value: Disabled; possible values: Disabled, Enabled)
This will be used to enable Preboot Bluetooth function
Discrete Bluetooth Interface (default value: USB; possible values: Disabled, USB)
SerialIo UART0 needs to be enabled to select BT interface
BT Tile Mode (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable Tile
Advanced settings (default value: Disabled; possible values: Disabled, Enabled)
Configure ACPI objects for wireless devices
WWAN Configuration (menu)
Configure WWAN related options
The OnLogic Feature Configuration menu contains the following options:
I225 LAN Controller (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable I225 LAN controller.
Wake on Lan (default value: Enabled; possible values: Enabled, Disabled)
Enable/Disable Wake on Lan
Pseudo G3 (default value: Disabled; possible values: Enabled, Disabled)
Enable/Disable Pseudo G3.
If Pseudo G3 is enabled, "Advanced > PCH-IO Configuration > DeepSx Power Policies" will be set to "Enabled in S4/S5" in the next boot automatically.
The Console Redirection menu contains the following options:
Console Serial Redirect (default value: Enabled; possible values: Enabled, Disabled)
Enable Console Redirection Function
The Debug Settings menu contains the following options:
Kernel Debug Serial Port (default value: Legacy UART; possible values: Legacy UART, SERIALIO UART0)
Select Kernel Debug Port and report in ACPI DBG2 table
Kernel Debug Patch (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable Kernel Debug Patch
Debug Token is present
Debug Token is present
Platform Debug Consent (default value: Disabled; possible values: Disabled, Enabled (All Probes+TraceHub), Enabled (Low Power), Manual)
Enabled(All Probes+TraceHub) supports all probes with TraceHub enabled and blocks s0ix
Enabled(Low Power) Tracehub is powergated by default, s0ix is viable
Manual:user needs to configure Advanced Debug Settings manually, aimed at advanced users
VT-d Debug Settings (menu)
Vt-d Debug Settings
Advanced Debug Settings (menu)
Advanced Debug Settings
The Functional Safety Configuration menu contains the following options:
Fusa Enable (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable all Functional Safety (FUSA) feature
Enable Startup Array BIST (default value: Disabled; possible values: Disabled, Enabled)
Enabling this will execute startup array test during boot
Enable Startup Scan BIST (default value: Disabled; possible values: Disabled, Enabled)
Enabling this will execute startup scan test during boot
Enable Periodic Scan BIST (default value: Disabled; possible values: Disabled, Enabled)
Enabling this will execute periodic scan test during boot
Core Lockstep Configuration (default value: Disable lockstep; possible values: Disable lockstep, Enable lockstep for Core 0 with Core 1, Core 2 with Core 3, Enable lockstep for Core 0 with Core 1, Enable lockstep for Core 2 with Core 3)
Enable/Disable Lockstep for Efficient-core module, which has 4 cores each
Core Lockstep Configuration (default value: Disable lockstep; possible values: Disable lockstep, Enable lockstep for Core 0 with Core 1, Core 2 with Core 3, Enable lockstep for Core 0 with Core 1, Enable lockstep for Core 2 with Core 3)
Enable/Disable Lockstep for Efficient-core module, which has 4 cores each
Display Fusa Configuration (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Functional Safety (FUSA) on Display
Graphics Fusa Configuration (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Functional Safety (FUSA) on Graphics
Opio Fusa Configuration (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Functional Safety (FUSA) on Opio
Psf Fusa Configuration (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable Functional Safety (FUSA) on Psf
Iop Fusa Configuration (default value: Enabled; possible values: Disabled, Enabled)
Enable/Disable Functional Safety (FUSA) on Iop
The Security menu contains the following options:
Current TPM Device (read-only; possible values: Not Detected, TPM 1.2, TPM 2.0)
Current TPM Device: TPM1.2, or TPM2.0.
TPM Active PCR Hash Algorithm (read-only)
TPM Active PCR Hash Algorithm: SHA1, SHA256, SHA384, SHA512, SM3_256
TPM Hardware Supported Hash Algorithm (read-only)
TPM Hardware Supported Hash Algorithm: SHA1, SHA256, SHA384, SHA512, SM3_256
BIOS Supported Hash Algorithm (read-only)
BIOS Supported Hash Algorithm: SHA1, SHA256, SHA384, SHA512, SM3_256
TrEE Protocol Version (default value: 1.1; possible values: 1.0, 1.1)
TrEE Protocol Version: 1.0 or 1.1
TPM Availability (default value: Available; possible values: Available, Hidden)
When Hidden, don’t exposes TPM to OS
Supervisor Password (read-only)
The Power menu contains the following options:
Wake on PME (default value: Enabled; possible values: Disabled, Enabled)
Determines the action taken when the system power is off and a PCI Power Management Enable wake up event occurs.
Auto Wake on S5 (default value: Disabled; possible values: Disabled, By Every Day, By Day of Month)
Auto wake on S5, By Day of Month or Fixed time of every day
The Boot menu contains the following options:
Boot Type (default value: UEFI Boot Type; possible values: Dual Boot Type, Legacy Boot Type, UEFI Boot Type)
Select boot type to Dual type, Legacy type or UEFI type
Quick Boot (default value: Enabled; possible values: Enabled, Disabled)
Allows InsydeH2O to skip certain tests while booting. This will decrease the time needed to boot the system.
Quiet Boot (default value: Enabled; possible values: Enabled, Disabled)
Disables or enables booting in Text Mode.
Network Stack (default value: Disabled; possible values: Disabled, Enabled)
Network Stack Support:
Windows 8 BitLocker Unlock
UEFI IPv4/IPv6 PXE
Legacy PXE OPROM
PXE Boot capability (default value: Disabled; possible values: Disabled)
Disabled : Support Network Stack
UEFI PXE : IPv4/IPv6
Legacy : Legacy PXE OPROM only
Power Up In Standby Support (default value: Disabled; possible values: Enabled, Disabled)
Disable or enable Power Up In Standby Support.
The PUIS feature set allows devices to be powered-up into the Standby power management state to minimize inrush current at power-up and to allow the host to sequence the spin-up of devices.
USB Boot (default value: Enabled; possible values: Enabled, Disabled)
Disables or enables booting to USB boot devices.
EFI Device First (default value: Enabled; possible values: Disabled, Enabled)
Determine EFI device first or legacy device first. If enable, it is EFI device first. If disable, it is Legacy device first.
UEFI OS Fast Boot (default value: Enabled; possible values: Enabled, Disabled)
If enabled the system firmware does not initialize keyboard and check for firmware menu key.
USB Hot Key Support (default value: Disabled; possible values: Disabled, Enabled)
Enable/Disable to support USB hot key while booting. This will decrease the time needed to boot the system.
Timeout (default value: 3; possible values: numbers between 0 and 10)
The number of seconds that the firmware will wait before booting the original default boot selection.
Automatic Failover (default value: Enabled; possible values: Disabled, Enabled)
Enable: if boot to default device fail, it will directly try to boot next device.
Disable: if boot to default device fail, it will pop warning message then go into firmware UI.
The exit screen provides options to leave the setup utility and to load and save settings.
Exit Saving Changes: saves the current configuration and restarts the system to apply it
Save Change Without Exit: saves the current configuration but does not restart the system
Exit Discarding Changes: returns to the front page without saving or applying the current configuration
The Intel AMT configuration utility is password-protected. By default, the password is “admin”, but it must be changed immediately. A strong password using upper- and lower-case letters, symbols, and numbers is required.
F5/F6 change the selected option to its previous or next value
Esc returns to the previous menu
F9 restores all options to their factory default values
F10 saves all options and restarts the system
Administer Secure Boot: opens a menu which manages the Secure Boot configuration of the system
Setup Utility: opens the BIOS setup utility
MEBx: opens the Intel AMT configuration utility
Load Custom Defaults: loads a previously saved custom configuration
Save Custom Defaults: saves the current configuration so it can be loaded later
Discard Changes: restores the current configuration to its original state
Revision History
Date
Version 1.20
1/17/2023








