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MK200 Series

MK200-71

MK200-71 Server Product Manual

1- Product Overview

1.1- Introduction

The OnLogic MK200-71 is a robust 2U rackmount server designed for demanding enterprise and industrial applications, offering reliable, powerful, and scalable computing. It supports dual 5th Gen Intel® Xeon® Scalable Processors on an LGA4677 socketed motherboard, paired with up to 32x DDR5 RDIMMs for high-speed memory.

The MK200-71 is highly configurable, featuring expansion options that include:

  • 8x hot-swap drive bays for 2.5” NVMe drives.

  • 2x hot-swap drive bays for 2.5” SATA drives.

  • Multiple M.2 slots.

  • 4x FHFL single-slot PCIE5.0 x16 or 2x FHFL dual-slot PCIE5.0 x16.

Server management capabilities are robust, with integrated ASPEED AST2600 graphics and a dedicated IPMI LAN port via Realtek RTL8211F.

MK200-71 Internal Components

Item
Description

The following information on safe use and installation is crucial to ensure compliance standards are met. This device is intended for indoor operation only.

  • Install the device securely. Be careful when handling to prevent injury and do not drop.

  • Equipment must be installed in a Restricted Access Area.

  • Elevated Operating Ambient: If installed in a rack, the ambient temperature may be greater than the room ambient. Ensure the installation environment is compatible with the maximum ambient temperature (T_ma) specified by the manufacturer.


Item
Description
Quantity

The following accessories are included with every system:

  • 2x 120V Power cables

  • 1x friction slide rail

If additional items were purchased, they will be included in the system packaging.


OnLogic MK200-71

Available Countries:

  • Americas: Canada, United States

  • Europe: Austria, Belgium, Bulgaria, Croatia, Czech Republic, Cyprus, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Liechtenstein, Luxembourg, Malta, Norway, The Netherlands, United Kingdom, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden

Available Countries upon request:

  • Australia, China, Japan, New Zealand

Other countries may be available; contact the provider to learn.


Item
Description
Item
Description
Item
Description

2.1.3.1- Front Panel Buttons

Item
Description/Function

2.1.3.2- Front Status LEDs

Power LED

Status
Description

System Status LED

Status
Description

ID LED

Status
Description
Item
Description

2.1.4.1- Hard Drive Tray Status LEDs

Hard Drive Power LED

Status
Description

Hard Drive Activity LED

Status
Description

Hard Drive Status LED

Status
Description

2.1.5.1- Power Supply Unit Status LED

Status
Description

Item
Description

2.2.1.1- LAN Port LED Indications

There is an LED on each side of the IPMI LAN port.

Activity / Link LED

Status
Description

Speed LED

Status
Description

This section details the internal connectivity headers and power connectors on the motherboard.

Connects to the power switch, reset switch, and system status indicator on the chassis. Note the positive and negative pins before connecting.

Label
Description
Function

Supports multiple front panel functions including front panel SMB (System Management Bus), locator switch/LED, and chassis intrusion pin. Some functions are unused in the MK200-71 Server.

Supports multiple front panel functions including front panel SMB and internet status indicator.

Pin
Net
Pin
Net

Intended for connecting a VGA_2X8 cable to a VGA header.

Used for the hot plug feature of Hard Drives on the backplane.

Used for SM BUS devices.

Two headers are on the motherboard, each supporting two USB 3.2 Gen1 ports in addition to the four default ports on the I/O panel.

Used for PWM configurations.

Used to connect an NMI device.

Supports the CASE OPEN detection feature, which requires a chassis with a chassis intrusion detection design.

Supports the SPI Trusted Platform Module (TPM) system for securely storing keys, digital certificates, passwords, and data to enhance security and integrity.

This header supports two USB 3.2 Gen1 ports in addition to the two default ports on the I/O panel.

Used to connect the chassis speaker.

Connects to the chassis cooling fans.

Used to supply power to SATA Hard Drives from the motherboard via a SATA power cable.

The motherboard provides four 8-pin ATX 12V GPU power connectors.

The motherboard provides two 6-pin MCIO power connectors.

Used to connect a Hard Drive backplane via a 6-pin power cable.

Supports a SATA data cable for an internal storage device.

Allows users to clear the data in CMOS. To clear CMOS, remove the CMOS battery and short the clear CMOS Pad.

Supports Intel® Virtual RAID on CPU (VROC) and NVME/AHCI RAID on CPU PCIE.


The complete motherboard manual, along with the latest BIOS updates and specific drivers for the system's motherboard (Model XX), can be accessed from the OEM Resources via an external link (found in the original PDF template).


The server supports dual 5th Gen Intel® Xeon® Scalable Processors on an LGA4677 socketed motherboard.

Supported processors include:

  • Intel Xeon 6548Y+

  • Intel Xeon 6526Y

  • Intel Xeon 5520+

  • Intel Xeon 5418Y


The server uses 2700W Power Supplies with 80-Plus Platinum Efficiency and accepts 100~240V 50-60Hz input.

  • TBD (Information not explicitly present in the DOCX content)

  • PSU Status LED indicates Module Fault/Protection modes such as OCP (Overcurrent Protection), OVP (Overvoltage Protection), OTP (Overtemperature Protection), and UVP (Undervoltage Protection).

  • TBD (Information not explicitly present in the DOCX content)

This allows user to set the power state after an unexpected AC/power loss. If [Power Off] is selected, the AC/power remains off when the power recovers. If [Power On] is selected, the AC/power resumes and the system starts to boot up when the power recovers. If [Last State] is selected, it will recover to the state before AC/power loss.


The system supports expansion with:

  • 4x FHFL single-slot PCIE5.0 x16 or 2x FHFL dual-slot PCIE5.0 x16.

  • Optional TPM 2.0 module (Infineon SLB9670).


System fans are required for cooling, and the chassis top cover must be properly installed to ensure cooling air circulates correctly. A failed fan must be replaced immediately to prevent a rise in ambient air temperature.



The dimensions of the MK200-71 server are 87.3 x 438 x 800 mm (H x W x D).

The server is designed for Rack mount using a 20" (508-680mm) friction slide rail.

Item
Description

Prerequisites: The system must be powered off and the power cord unplugged before removing the top cover. The system must be operated with the top cover installed for proper cooling.

1

Remove the screws that secure the top cover to the chassis.

2

Press the button on the top cover.

3

Push the top cover toward the REAR of the chassis to remove it from the locked position. Lift up and remove.

1

Lower the top rear cover on the chassis, ensuring the side latches align with the cutouts.

2

Slide the top rear cover toward the FRONT of the chassis.

3

Secure the top rear cover until it is locked in place.

Follow these steps to install the CPU into the LGA 4677 socket:

1

Loosen the 4 corner fasteners on the cooler in a star pattern to ensure even pressure release. Gently pull the CPU cooler up by the edges.

2

Release the CPU latch lever by pushing the end of the lever down and away.

3

3.3.5.1- Replacing DIMMS Type B (Two Clips)

1

Press down on the latches on each side of the DIMM slot until they are tilted away.

2
3

Line up the notch in the DIMM with the notch in the slot.

  • PSU Installation: Carefully slide the PSU all the way into the power supply bay until it clicks into place.

  • PSU Removal: Carefully push in the power supply tab and pull out the power supply.

3.3.7.1- Removing the 2.5” Hard Drive From Hard Drive Tray

1

Press the locking lever latch on the drive tray to unlock the retention lever.

2

Rotate the lever out and away from the module bay and pull the hard drive out of the drive tray.

3.3.7.2- Installing a 2.5” Hard Drive into the Hard Drive Tray

1

Engage one side of the hard drive into the tray by aligning the side bracket.

2

Carefully push down the other side of the hard drive until it is locked into place.

3.3.7.3- Front Panel Installing the Hard Drive Assembly

1

Slide the drive tray into the Hard Drive bay until the drive is fully seated.

2

Push in the locking lever to lock the drive tray into place.

3.3.7.4- Rear Panel Installing the Hard Drive Assembly

1

Slide the drive tray into the Hard Drive bay until the drive is fully seated.

2

Push in the locking lever to lock the drive tray into place.

1

Press and hold the clip on the fan.

2

Align the mounting holes on the fan bar with the fan mount on the replacement fan. Be aware of the mount location of each fan.

3

Gently place the fan on the fan bar. Make sure the fan is well seated.

1

Align the air duct over the heat sink and carefully lower the air duct in place.

2

Align the duct cover over the air duct and fasten it to the air duct.

3

Install the duct bracket over the duct assembly and lock it in place with the chassis.

1

Remove the screws and plate.

2

Install the add-in card to the riser-card bracket blanking.

3

Secure the add-in card to the assembly with screws.

  • TBD (Information not explicitly present in the DOCX content)


BIOS updates can be accessed from the official Motherboard manual & OEM Resources provided by the vendor (Model XX).

Drivers for your system's motherboard (Model XX) and firmware can be accessed from the official Motherboard manual & OEM Resources here:

Additionally, drivers, firmware, and product information for the MK200-71 are available on the product page for the MK220B-71: www.onlogic.com/store/mk200-71/.

An illustration shows that a jumper is "Short" when a jumper cap is placed on the pins, and "Open" when no cap is present.

The MK200-71 supports up to thirty-two 288-pin DDR5 DIMM slots in two groups (16+16), supporting Dual Channel Memory Technology.

CPU1
CPU2

4.3.2.1- DIMM Population Requirements

  • Do not install DDR, DDR2, DDR3, or DDR4 memory modules into a DDR5 slot, as this may damage the motherboard and DIMM.

  • For dual channel configuration, install identical (same brand, speed, size, and chip-type) DDR5 DIMM pairs.

  • Dual Channel Memory Technology cannot be activated with only one or three memory modules installed.

4.3.2.2- Memory Specifications

Memory (288pin RDIMMs)
Specification

4.3.2.3- Memory Recommendations when using a GPU

  • Minimum Recommendation: System memory should be at least 1.5 times the total GPU memory.

  • Strong Recommendation: For superior performance and future workloads, system memory should be 2.0 times the total GPU memory.

  • Failure to meet these requirements may lead to degraded performance or unexpected application behavior.

The MK200-71 supports the following operating systems:

  • Ubuntu 24.04 Server

  • Ubuntu 24.04 Desktop IoT


The computer system was evaluated for IT equipment EMC standards as a Class A device and complies with the relevant IT equipment directives for the CE mark. Modification of the system may void the certifications. Testing includes: EN 55032, EN 55035, EN 60601-1, EN 62368-1, EN 60950-1.

This device complies with part 15 of the FCC rules as a Class A device. Operation is subject to two conditions:

  • The device may not cause harmful interference.

  • The device must accept any interference received, including interference that may cause undesired operation.

This device complies with Industry Canada license-exempt RSS standard(s). It is a CAN ICES-003(A) / NMB-003(A) device.

The computer system was evaluated for medical, IT equipment, automotive, maritime, and railway EMC standards as a Class A device and complies with the relevant IT equipment directives for the UKCA mark.

  • Do not open or modify the device; modification may void the FCC and CE certifications.

  • The use of shielded cables for connection of a monitor to the GPU is required to ensure compliance with FCC and CE regulations.


  • Optional TPM 2.0 module (Infineon SLB9670) is available for secure storage of keys, certificates, passwords, and data.

  • The system should be booted within a secure ecosystem where robust security measures are in place to protect against external threats.

  • The system supports Chassis Intrusion Detection (CASE OPEN feature).


Additional technical support and information can be found in the section

Please refer to Section 1.2- Safety for complete Safe Use and Installation Instructions.

6 x System Fans

6 x System Fans

Front Controls and Indicators

Front Controls and Indicators

8 x 2.5” Hot-Swap Drive Trays

8 x 2.5” Hot-Swap Drive Trays

Reduced Air Flow: Rack installation must not compromise the required airflow for safe operation.
  • Mechanical Loading: Mounting in the rack must prevent a hazardous condition from uneven mechanical loading.

  • Circuit Overloading: Give appropriate consideration to the connection to the supply circuit and the potential effect on overcurrent protection. Use equipment nameplate ratings for guidance.

  • Reliable Earthing: Reliable earthing of rack-mounted equipment must be maintained, especially with connections other than direct connections to the branch circuit (e.g., power strips).

  • The ambient operating temperature must be between 10 °C to 35 °C with a non-condensing relative humidity of 8-85%.

  • The device can be stored at temperatures between -40 °C to 70 °C.

  • Keep the device away from liquids and flammable materials.

  • Do not clean the device with liquids; the chassis can be cleaned with a cloth.

  • Allow at least 2 inches of space around all sides for proper cooling.

  • Install the device only with shielded network cables.

  • Service and repair must be done by qualified service personnel, including replacement of the CMOS battery.

  • Replacement CMOS battery must be of the same type as the original, and disposal must comply with local governance.

  • Product must only be connected to a certified router, switch, or similar network equipment and cannot be connected to the public network.

  • The system should be booted within a secure ecosystem with robust security measures to protect against external threats.

  • 3

    Power Supply Unit

    2

    4

    System Fans

    6

    5

    Hard Drive Backplanes (BPB)

    2

    6

    Front Panel Board (FPB)

    2

    7

    Riser Cable

    4

    8

    Slide Rail

    1

    9

    1U Cooler/Heatsink

    2

    10

    Accessory Box

    1

    11

    2.5” Drive Trays

    8

    12

    Mains Power Supply Cable

    2

    Processor

    Intel Xeon 6548Y+, Intel Xeon 6526Y, Intel Xeon 5520+, Intel Xeon 5418Y, Intel Xeon 4516Y+, Intel Xeon 4514Y, Intel Xeon 4509Y, Intel Xeon 4510T

    Memory

    Support up to 32x DDR5 RDIMM from 16 to 96 GB in EC8

    Maximum operational speed

    5600 MT/s on 5th Gen Intel® Xeon® Scalable Processors

    Chipset

    Intel® C741

    Integrated Graphics

    1x Mini-DisplayPort 1.1a (BMC Video Out)

    Front I/O

    1x Power Button, 1x Power LED (white), 1x ID Button, 1x ID LED (blue), 1x Error LED (orange), 2x USB 3.2 Gen1 (Type-A)

    Rear I/O

    2x USB 3.2 Gen1 (Type-A), 1x RJ45 (COM), 1x GbE Dedicated Management (BMC/IPMI), 1x Mini-DisplayPort 1.1a (BMC Video Out)

    Expansion & Storage - Chassis

    2x 2.5” SATA Rear Drive Bay, 8x 2.5”, 7mm wide NVMe (PCIe5.0) Front Drive Bays

    Expansion & Storage - Onboard

    2 M-key (PCIe4.0 x4), support 22110/2280 form factor

    Server Management

    BMC Controller - ASPEED AST2600, IPMI Dedicated GLAN - Realtek RTL8211F for dedicated management GLAN

    Security

    Optional TPM 2.0 module (Infineon SLB9670)

    Operating Systems

    Ubuntu 24.04 Server, Ubuntu 24.04 Desktop IoT

    Power Supplies

    100~240V 50-60Hz input, 2700W Output, 80-Plus Platinum Efficiency

    Mounting

    Rack mount 20" (508-680mm) friction slide rail

    Weight

    TBD

    Operating Temperature

    10-35 °C

    Storage Temperature

    -40-70 °C

    Storage Humidity

    20-90% Relative, non-condensing

    Certifications

    FCC 47 CFR Part 15 Subpart B (Class A), CAN ICES-003(A) / NMB-003(A) (Class A), EN 63268-1, CISPR 32/EN 55032 (Class A), CISPR 35/EN 55035, RoHS (2011/65/EU, (EU) 2015/863), WEEE Directive (2012/19/EU)

    4

    2 x 2.5” Hot-Swap Drive Trays

    4

    System Reset Button

    Off

    Hard Drive Powered-Off

    Blinking Red (4Hz)

    Hard Drive Positioning

    Blinking Red (1Hz)

    Hard Drive Reconnection

    Off

    Hard Drive Powered Off

    Green Blinking at 0.5Hz

    AC Present Only 12VSB On (PS Off) or PS in Smart Redundant State

    4

    LAN RJ-45 Port (IPMI_LAN)*

    5

    UID Switch (UID1)

    PLED +,-

    System Power LED

    Connects to the power status indicator. LED is on when the system is operating, and off when in S4 sleep state or powered off (S5).

    HDLED +,-

    Hard Drive Activity LED

    Connects to the hard drive activity LED. LED is on when the hard drive is reading or writing data.

    15

    RESET#

    3

    N/A

    16

    SMB_DATA

    4

    LOCATORLED+

    17

    SMB_CLK

    5

    PLED-

    18

    GND

    6

    LOCATORLED-

    19

    LOCATORBTN#

    7

    +3V

    20

    N/A

    8

    N/A

    21

    N/A

    9

    System Fault LED-

    22

    N/A

    10

    HDLED-

    23

    N/A

    11

    PWRBTN#

    24

    N/A

    12

    N/A

    25

    GND

    13

    GND

    26

    GND

    Intel Xeon 4516Y+

  • Intel Xeon 4514Y

  • Intel Xeon 4509Y

  • Intel Xeon 4510T

  • 4

    2 x 2.5” SATA Drive Trays

    5

    System Fan 6

    6

    System Fan 5

    7

    System Fan 4

    8

    System Fan 3

    9

    System Fan 2

    10

    System Fan 1

    11

    2.5” Drive Backplane Board

    12

    8 x 2.5” Drive Trays (only supports NVMe)

    4

    Install Top Cover — Step 4

    Press down the spring button to confirm the top cover is locked with the chassis. Secure the front cover to the chassis with screws.

    Line the CPU up on the socket using the golden triangle on the corner of the CPU and the notches on the CPU and socket. Gently place the CPU into the socket.
    4

    CPU Installation — Step 4

    Close the CPU bracket over the CPU. Close the latch lever and secure it by pressing down and towards the CPU, ensuring it latches under the hook.

    5

    CPU Installation — Step 5

    Flip the CPU carrier over.

    6

    CPU Installation — Step 6

    Apply thermal grease.

    7

    CPU Installation — Steps 7–10

    Install the heatsink using the four screws around the CPU socket.

    4

    Gently press the DIMM into the slot until an audible click is heard, indicating the latches are engaged

    4

    Connect the end of the fan cable to the fan connector. Check the LED status (refer to Section 1.9.3 for onboard fan LED behaviors).

    Max. DIMM Frequency

    5600 MT/s (1DPC) / 4400 MT/s (2DPC) on 5th Gen Intel® Xeon® Scalable Processors, 4800 MT/s (1DPC) / 4400 MT/s (2DPC) on 4th Gen Intel® Xeon® Scalable Processors

    Server Board

    Server Board

    Riser Card Bracket

    Riser Card Bracket

    2 x Power Supply Units

    2 x Power Supply Units

    1

    MK200 Series Chassis (2U form factor)

    1

    2

    System Board (MB)

    1

    Form Factor

    2U Rackmount

    Dimensions (H x W x D)

    87.3 x 438 x 800 mm (3.44'' x 17.2'' x 31'')

    Supported MB Size

    SP2C741D32TM3 (Proprietary 18.87" x 16.85")

    1

    Thumbscrew Covers

    2

    Control Panel

    3

    8 x 2.5” Hot-Swap Drive Trays

    1

    2 x Power Supply Units (PSU)

    2

    Rear Vent

    3

    I/O Shield

    1

    Power Button and LED

    2

    System Status LED

    3

    ID Button and LED

    System Reset

    Press to reboot the server and initialize the system when it's completely unresponsive (does not require shutting off power).

    ID

    Press to toggle the front panel ID LED and the baseboard ID LED on and off, allowing the user to locate the server behind a rack.

    Power

    Press to toggle system power on and standby/sleep modes. To remove all power completely, disconnect the power cord from the server.

    Blue

    Power On

    Blinking Blue

    Standby (Sleep) Mode

    Off

    Power Off

    Red

    System Process Fault

    Off

    Running or Normal Operation

    Blue

    System Identification is Active

    Off

    System Identification is Disabled

    1

    Hard Drive Power LED

    2

    Hard Drive Activity LED

    3

    Hard Drive Status LED

    Solid Blue

    Hard Drive Powered-On

    Off

    No Power to Hard Drive

    Solid Green

    Hard Drive Active

    Blinking Green

    Hard Drive Accessing or Reading

    Solid Red

    Hard Drive Failed

    Solid Green

    Hard Drive Active

    Blinking Green

    Hard Drive Accessing or Reading

    Solid Red

    Hard Drive Failed

    Green

    Normal Work; Output ON and OK

    Amber

    Module Fault/Protection in Operating Mode (Failure, OCP, OVP, Fan Fail, OTP, UVP), or AC Cord Unplugged

    Amber Blinking at 0.5Hz

    Warning (High Temp, High Power, High Current, Slow Fan)

    1

    Mini Display Port (MINI_DP)

    2

    USB 3.2 Gen1 Ports (USB3_1_2)

    3

    RJ45 Serial Port (COM1)

    Off

    No Link

    Blinking Yellow

    Data Activity

    On

    Link

    Off

    10Mbps Connection or No Link

    Orange

    100Mbps Connection

    Green

    1Gbps Connection

    PWRBTN

    Power Switch

    Connects to the power switch on the chassis front panel. Used to configure the way to turn the system on/off.

    RESET

    Reset Switch

    Connects to the reset switch on the chassis front panel. Used to restart the computer if it freezes.

    1

    +3VSB

    14

    N/A

    2

    1

    Motherboard

    2

    Power Supply Unit (PSU1)

    3

    Power Supply Unit (PSU2)

    Blue Slots

    DDR5_A1, B1, C1, D1, E1, F1, G1 H1

    DDR5_I1, J1, K1, L1, M1, N1, O1, P1

    Black Slots

    DDR5_A2, B2, C2, D2, E2, F2, G2, H2

    DDR5_I2, J2, K2, L2, M2, N2, O2, P2

    Support DIMM QTY

    16+16 RDIMM slots (2DPC)

    Support DIMM Type

    DRR5 288-pin ECC/non-ECC UDIMM

    Max Capacity per DIMM

    48GB (RDIMM) or 256GB (RDIMM-3DS)

    1.2- Safety

    1.2.1- Safe Use and Installation Instructions

    WARNING: There is danger of explosion if the CMOS battery is replaced incorrectly. Disposal of a battery into fire or a hot oven, or mechanically crushing or cutting a battery can result in an explosion.

    1.3- Box Contents & Acc.

    1.3.1- System Contents

    1.3.2- Accessories Included

    1.4- Product Specifications

    1.4.1- Countries of Use

    2- Technical Specifications

    2.1- External Features

    2.1.1- System Front Panel

    2.1.2- System Rear Panel

    2.1.3- Front Panel Buttons and LEDs

    2.1.4- 2.5” Hard Drive Tray LEDs

    2.1.5- Power Supply Unit LED

    2.2- I/O Definitions

    2.2.1- I/O Panel

    2.3- Motherboard Connectors

    2.3.1- System Panel Header (9-pin PANEL1)

    2.3.2- Auxiliary Panel Header (18-pin AUX_PANEL2)

    2.3.3- Auxiliary Panel Header (26-pin AUX_PANEL1)

    2.3.4- Front VGA Header (15-pin FRNT_VGA1)

    2.3.5- Backplane PCI Express Hot-Plug Connectors (5-pin CPU1_HSBP1, CPU2_HSBP1)

    2.3.6- BMC SMB Headers (5-pin BMC_SMB1)

    2.3.7- Front USB 3.2 Gen1 Headers (26-pin USB3_1, USB3_2)

    2.3.8- PWM Configuration Headers (3-pin PWM_CFG1, PWM_CFG2)

    2.3.9- Non Maskable Interrupt Button Header (2-pin NMI_BTN1)

    2.3.10- Chassis Intrusion Header (2-pin CASEOPEN1)

    2.3.11- TPM-SPI Header (13-pin TPM_BIOS_PH1)

    2.3.12- USB 3.2 Gen1 Header (19-pin USB3_2)

    2.3.13- Chassis Speaker Header (4-pin SPEAKER1)

    2.3.14- System Fan Connectors (4-pin FAN1 to FAN8)

    2.3.15- SATA Power Connectors (4-pin HDD_PWR1, HDD_PWR2)

    2.3.16- GPU Power Connectors (8-pin GPU_PWR1 to GPU_PWR4)

    2.3.17- MCIO Power Connectors (6-pin MCIO_PWR1, MCIO_PWR2)

    2.3.18- Hard Drive Backplane Power Connector (6-pin HSBP_PWR1, HSBP_PWR2)

    2.3.19- SATA Connector (Right-Angle SATA_0)

    2.3.20- Clear CMOS Pad (CLRMOS1)

    2.3.21- Virtual RAID On CPU Header (4-pin RAID_1)

    2.4- Motherboard Manual

    2.5- Processor

    2.6- Power Management

    2.6.1- Recommended Power Supply

    2.6.2- Average Power Consumption

    2.6.3- Protection Circuitry

    2.6.4- Wake-Up Events

    2.6.5- Auto Power On

    To adjust the Auto Power On feature, enter the BIOS setup and navigate to: Server Mgmt -> BMC Tools -> Restore AC Power Loss

    2.7- Add-in Modules

    2.8- Thermal Results

    2.9- Block Diagram

    3- Installation & Mechanical

    3.1- Dimensions

    3.2- Mounting

    3.3- Internal Access

    3.3.1- Internal Overview Diagram

    3.3.2- Removing the Server Top Cover

    Remove Top Cover — Step 1

    Remove Top Cover — Step 2

    Remove Top Cover — Step 3

    3.3.3- Installing the Server Top Cover

    Install Top Cover — Step 1

    Install Top Cover — Step 2

    Install Top Cover — Step 3

    3.3.4- CPU Installation

    CPU Installation — Step 1

    CPU Installation — Step 2

    CPU Installation — Step 3

    3.3.5- Remove/Replace DIMMS

    3.3.6- Power Supply Unit Installation

    3.3.7- Hard Drive Installation/Removal

    3.3.8- Replacing the System Fan

    3.3.9- Air Duct Installation

    3.3.10- Add-In Card Installation

    3.4- CAD & Drawings

    4- Software & Firmware

    4.1- BIOS

    4.2- Drivers & Downloads

    4.3- Features & Configuration

    4.3.1- Chassis ID Jumper Setup

    4.3.2- Memory Configuration

    4.3.3- Supported Operating Systems

    5- Support & Compliance

    5.1- Troubleshooting & FAQ

    Motherboard Reset (Clear the CMOS)

    To clear the data in CMOS, remove the CMOS battery and short the clear CMOS Pad (CLRMOS1).

    See section 2.3.20- Clear CMOS Pad (CLRMOS1) for location on the motherboard.

    Dr. Debug Codes

    Dr. Debug provides code information for debugging. The Digital Display location can be found in Section 1.9.2 - Internal Motherboard Features & Headers on the motherboard map.

    Code
    Description
    Code
    Description

    5.2- Regulatory

    5.2.1- CE Compliance

    5.2.2- FCC Statement

    5.2.3- ISED (Industry Canada)

    5.2.4- UKCA

    5.2.5- Compliance Information

    5.3- Security Advisory

    5.4- Appendices

    5.4.1- Technical Support

    5.4.2- Safe Use and Installation Instructions

    https://www.asrockrack.com/general/productdetail.asp?Model=SP2C741D32TM3#Download
    5.1- Troubleshooting & FAQ

    +3VSB

    MK200-60

    Technical information related to the system's motherboard can be found from the support link below.

    1. Power on the server and press F2 a few times to access the BIOS

    1. Navigate to the Advanced tab

    0x10

    PEI_CORE_STARTED

    0xAB

    DXE_SETUP_INPUT_WAIT

    0x11

    PEI_CAR_CPU_INIT

    0xAD

    DXE_READY_TO_BOOT

    0x15

    PEI_CAR_NB_INIT

    0xAE

    DXE_LEGACY_BOOT

    0x19

    PEI_CAR_SB_INIT

    0xAF

    DXE_EXIT_BOOT_SERVICES

    0x31

    PEI_MEMORY_INSTALLED

    0xB0

    RT_SET_VIRTUAL_ADDRESS_MAP_BEGIN

    0x32

    PEI_CPU_INIT

    0xB1

    RT_SET_VIRTUAL_ADDRESS_MAP_END

    0x33

    PEI_CPU_CACHE_INIT

    0xB2

    DXE_LEGACY_OPROM_INIT

    0x34

    PEI_CPU_AP_INIT

    0xB3

    DXE_RESET_SYSTEM

    0x35

    PEI_CPU_BSP_SELECT

    0xB4

    DXE_USB_HOTPLUG

    0x36

    PEI_CPU_SMM_INIT

    0xB5

    DXE_PCI_BUS_HOTPLUG

    0x37

    PEI_MEM_NB_INIT

    0xB6

    DXE_NVRAM_CLEANUP

    0x3B

    PEI_MEM_SB_INIT

    0xB7

    DXE_CONFIGURATION_RESET

    0x4F

    PEI_DXE_IPL_STARTED

    0xF0

    PEI_RECOVERY_AUTO

    0x60

    DXE_CORE_STARTED

    0xF1

    PEI_RECOVERY_USER

    0x61

    DXE_NVRAM_INIT

    0xF2

    PEI_RECOVERY_STARTED

    0x62

    DXE_SBRUN_INIT

    0xF3

    PEI_RECOVERY_CAPSULE_FOUND

    0x63

    DXE_CPU_INIT

    0xF4

    PEI_RECOVERY_CAPSULE_LOADED

    0x68

    DXE_NB_HB_INIT

    0xE0

    PEI_S3_STARTED

    0x69

    DXE_NB_INIT

    0xE1

    PEI_S3_BOOT_SCRIPT

    0x6A

    DXE_NB_SMM_INIT

    0xE2

    PEI_S3_VIDEO_REPOST

    0x70

    DXE_SB_INIT

    0xE3

    PEI_S3_OS_WAKE

    0x71

    DXE_SB_SMM_INIT

    0x50

    PEI_MEMORY_INVALID_TYPE

    0x72

    DXE_SB_DEVICES_INIT

    0x53

    PEI_MEMORY_NOT_DETECTED

    0x78

    DXE_ACPI_INIT

    0x55

    PEI_MEMORY_NOT_INSTALLED

    0x79

    DXE_CSM_INIT

    0x57

    PEI_CPU_MISMATCH

    0x90

    DXE_BDS_STARTED

    0x58

    PEI_CPU_SELF_TEST_FAILED

    0x91

    PEI_CORE_STARTED

    0x59

    PEI_CPU_NO_MICROCODE

    0x92

    DXE_PCI_BUS_BEGIN

    0x5A

    PEI_CPU_ERROR

    0x93

    DXE_PCI_BUS_HPC_INIT

    0x5B

    PEI_RESET_NOT_AVAILABLE

    0x94

    DXE_PCI_BUS_ENUM

    0xD0

    DXE_CPU_ERROR

    0x95

    DXE_PCI_BUS_REQUEST_RESOURCES

    0xD1

    DXE_NB_ERROR

    0x96

    DXE_PCI_BUS_ASSIGN_RESOURCES

    0xD2

    DXE_SB_ERROR

    0x97

    DXE_CON_OUT_CONNECT

    0xD3

    DXE_ARCH_PROTOCOL_NOT_AVAILABLE

    0x98

    DXE_CON_IN_CONNECT

    0xD4

    DXE_PCI_BUS_OUT_OF_RESOURCES

    0x99

    DXE_SIO_INIT

    0xD5

    DXE_LEGACY_OPROM_NO_SPACE

    0x9A

    DXE_USB_BEGIN

    0xD6

    DXE_NO_CON_OUT

    0x9B

    DXE_USB_RESET

    0xD7

    DXE_NO_CON_IN

    0x9C

    DXE_USB_DETECT

    0xD8

    DXE_INVALID_PASSWORD

    0x9D

    DXE_USB_ENABLE

    0xD9

    DXE_BOOT_OPTION_LOAD_ERROR

    0xA0

    DXE_IDE_BEGIN

    0xDA

    DXE_BOOT_OPTION_FAILED

    0xA1

    DXE_IDE_RESET

    0xDB

    DXE_FLASH_UPDATE_FAILED

    0xA2

    DXE_IDE_DETECT

    0xDC

    DXE_RESET_NOT_AVAILABLE

    0xA3

    DXE_IDE_ENABLE

    0xE8

    PEI_MEMORY_S3_RESUME_FAILED

    0xA4

    DXE_SCSI_BEGIN

    0xE9

    PEI_S3_RESUME_PPI_NOT_FOUND

    0xA5

    DXE_SCSI_RESET

    0xEA

    PEI_S3_BOOT_SCRIPT_ERROR

    0xA6

    DXE_SCSI_DETECT

    0xEB

    PEI_S3_OS_WAKE_ERROR

    0xA7

    DXE_SCSI_ENABLE

    0xA8

    DXE_SETUP_VERIFYING_PASSWORD

    0xA9

    DXE_SETUP_START

    Open the Chipset Configuration menu
  • Locate the Restore AC Power Loss option

  • Change it to “Power ON’

    1. Press F10 to save & exit, and enter to confirm

    2. Auto power on is now enabled

    If the server fails to power on or is unresponsive, clearing the CMOS may help. It will also restore the BIOS to factory defaults. Ensure this procedure is done in a static safe environment. A grounding strap is recommended.

    1. Unplug the server completely from power and all peripherals

    2. Remove one phillips screw from each side of the lid near the front

    1. Loosen the 2 captive thumbscrews and slide the lid off towards the rear of the server.

    1. Locate the clear CMOS solder pads

    1. Using a flathead screwdriver or similar conductive tool, short the two pins together for 30 seconds

    1. Slide the lid back on, reconnect the server, and power it on

    2. It may reboot several times to re-detect hardware

    3. If it continues to malfunction, contact technical support.

    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. Access Security Advisories

    Technical Resources

    Motherboard

    Manual & Drivers

    Startup Settings

    Auto Power On

    Clear CMOS

    Security Advisory

    https://www.asrockrack.com/general/productdetail.asp?Model=ROMED8-2T#Specificationswww.asrockrack.com