MC510-55 / MC610-55
1- Product Overview
1.1- Introduction
The MC510-55 and MC610-55 deliver reliable industrial computing using Intel® 12th Generation, or 13th Generation performance hybrid processing.
The system is ideal for real-time decision making in automation applications, with support for up to four simultaneous serial connections.

For more information on accessories and additional features, visit the MC510-55 or MC610-55 product page:
1.2- Safety
1.3- Box Contents & Accessories
4x Rubber Feet
Power cable retention - MC510-55 only
Power Supply
Extra Screws
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.
1.4- Product Specifications






2- Technical Specifications
2.1- External Features
Front I/O - MC510-55

Back I/O - MC510-55

Front I/O - MC610-55

Back I/O - MC610-55

2.2- I/O Definitions
Front I/O Definition

Power Button / Power LED
The front power button can be used to turn on and off the 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.
USB 2.0
There are two USB 2.0 ports on the front panel of the system. These ports are capable of linking at 0.48Gb/s transfer rates.
Rear I/O Definition


DisplayPort 1 & 2
The MC510-55/MC610-55 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).
HDMI Port
There is one HDMI 2.0b located on the system that can support resolutions up to 4096x2304 @ 60Hz.
LAN1/LAN2 - Intel I225-LM
The Intel I225 LAN Port supports up to 2.5Gbps link speeds over standard shielded CAT5e or CAT6 cables. The connector is the industry standard RJ45 connector. The H610 chipset in this system does not support AMT/VPro regardless of the SKU of the onboard NIC. The LAN link state is shown by the two LEDs enclosed in the port. The description is included below.

USB 3.2
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.
USB 2.0
There are two USB 2.0 ports on the rear panel of the system. These ports are capable of linking at 0.48Gb/s transfer rates.
Audio (Line out / Microphone)
Using Realtek ALC897 the system can provide high-performance multi-channel High Definition Audio Codec with Realtek proprietary lossless content protection technology that protects pre-recorded content while still allowing full-rate audio enjoyment.
COM DB9 option
The serial ports support RS-232, RS-422, and RS-485 configurations depending on the COM port used. Refer to the BIOS manual in Appendix C for configuration instructions.

Terminal block power option
For the MC610, a terminal block is used in place of the barrel-jack to provide 24V capability up to 330W (Mating part: Dinkle 2ESDAM-04P or equivalent).
The system is operational from 12V~24V. The maximum rated current of the connector is 15A. 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.\

2.3- Motherboard Connectors
1
DDR4 SO-DIMM Sockets
19
Clear CMOS Header (CLRMOS1)
2
ESPI Header (ESPI1)
20
Chassis Intrusion Header (CI1_2)
3
M.2 Key-B Socket (M2_B1)
21
PWR_BAT1_SIO_AT1
4
Battery Connector
22
AT_TEST1_PCIE_PWR1
5
SATA Power Output Connector
23
System Panel Header
6
SATA3 Connectors (SATA3_1, SATA3_2)
24
SMBUS_TEST1
7
DACC1
25
CPU FAN Connector (+12V)
8
Digital Input / Output Default Value Setting (JGPIO_SET1)
26
Chassis FAN Connector (+12V)
9
Digital Input / Output Power Select (JGPIO_PWR1)
27
Power Adapter
10
Digital Input/Output Pin Header (JGPIO1)
28
M.2 Key-M Socket (M2_KEYM1)
11
COM Port Headers
(COM1, 2, 3, 4)
29
M.2 Key-E Socket (M2_KEYE1)
12
Backlight Power Select (LCD_BLT_VCC) (BKT_PWR1)
30
4-pin ATX PWR Connector
13
COM Port PWR Setting Jumpers PWR_COM3 (For COM Port3) PWR_COM1 (For COM Port1)
31
2-pin UPS Module Power Input Connector
14
Inverter Power Control Wafer (BLT_PWR1)
32
SPDIF Header
15
LVDS Panel Connector - eDP Connector (on the Backside of PCB)
33
Front Panel Audio Header
16
Backlight Volume Control (BLT_VOL1)
34
3W Audio AMP Output Wafer
17
Panel Power Select (LCD_VCC) (PNL_PWR1)
36
USB2.0 Header (USB2_5_6)
18
Inverter Power Control Wafer (BLT_PWR2)
36
USB3.2 Gen1 Header (USB3_4_9)
Back :
SIM Card Socket (SIM1)eDP Connector (EDP1, refer to No. 15)
M.2 B-Key
An M.2 B-Key port is present on the motherboard to allow support for B-Key form-factor expansion cards. Supported cards include 3042 and 3052 form-factors. The B-Key connector supports PCIe x1, USB 3.2 10Gb/s, and USB 2.0 devices.
The 3FF Micro SIM card slot is connected to the M.2 B-Key.
M.2 E-Key
An M.2 E-Key port is present on the 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 x1, CNVi for wireless, and USB 2.0.
M.2 M-Key
An M.2 M-Key port is present on the motherboard to allow support for M-Key form-factor expansion cards. 2242, 2260, and 2280 form-factor cards are supported. The M-Key connector includes support for PCIe Gen 3 x4 devices.
SO-DIMM1 & SO-DIMM2
The motherboard has two onboard DDR4 SO-DIMM slots with the following specifications:
Maximum Capacity: DDR4-2300 64GB with two 32GB SO-DIMM Modules
Channel configuration: 1 DIMM Per Channel (DPC) - 2 Channels
No ECC Support
BIOS EEPROM
If the BIOS needs to be updated, please refer to BIOS Manual & Updates for reflashing instructions.
CPU socket
The LGA1700 CPU socket on the motherboard supports all 12th and 13th Gen Intel series processors up to 35W base TDP.
2.4- Motherboard Manual
Access the official Motherboard manual & OEM Resources from ASRock. This external link provides access to the complete motherboard manual, along with the latest BIOS updates and specific drivers for your system's motherboard.
2.4- Power Management
Recommended Power Supply
MC610-55
The MC610-55 is sold with a 330W power supply
MC510-55
This recommendation takes into account the maximum peak power usage of each component, along with an additional overhead for safety. The optimal approach for determining the appropriate power supply size involves precise measurements using the actual hardware and specific applications.

Average Power Consumption
The power consumption of the MC510-55 & MC610-55 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 v10 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. The non-idle tests include a brief period of PL2 power consumption (previously Intel turbo Boost) where the power consumption is up to 71W more than the listed average.
*The configurations below are using representative samples of internal devices, the specific components mentioned below may vary from the devices provided by OnLogic.

The average power consumption for each system configuration is recorded below. See section “5.1.2 - Recommended Power Supply” for recommended power supplies

Protection Circuitry

Wake-Up Events
This 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.
Auto Power On
Auto power allows the computer to automatically power on when power is applied/turned on. This is useful when the system needs to stay running all the time, and will come back up after a power outage. Systems can have this enabled on new orders, but you can follow these steps to enable this setting for any units in the field. Note: you will need a 2-pin jumper to enable this setting. If you need a 2-pin jumper, you can contact our sales team to order the [HWP134] Board Jumper, 2×1. They can be contacted at [email protected], or by calling 802 481 3324 ext. 3.


2.5- Thermal Results
Test Conditions
● Temperature Range: 0ºC to 50°C
● Step size: 10°C
● i9-13900TE Processor loaded with Intel XTU
● SSD, DDR4 RAM, and A4000 SFF GPU loaded @ 80% with BurnInTest 10.1
Test Methodology
Thermal testing of the MC510-55 and MC610-55 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, and ambient air were monitored externally via thermocouples.
Test Results




Test Result Summary
The MC510-55 with the i9-13900TE sustained significant processor, memory, and storage loads through a temperature range of 0°C-50°C without any significant performance drop in either performance or efficiency core clock speed. Neither the efficiency nor performance clocks dip below their rated base clock. Note the system is certified for use between 0°C-40°C ambient temperature but does function properly up to 50°C.
The MC610-55 with the i9-13900TE sustained significant processor, memory, and storage loads through a temperature range of 0-50°C. The performance of the performance cores of the processor lowered from their boost clock as temperatures reached 50°C. GPU clock speed decreased as temperatures reached 50°C but stayed well above the base clock speed. The installation of a second chassis fan increases performance of the system and lowers system temperatures.
2.6- Block Diagram

3- Installation & Mechanial
3.1- Dimensions
MC510-55 Dimensions

MC610-55 Dimensions

PCIe Envelope
The max dimensions of a PCIe expansion card for the MC610-55 is: 112mm x 183mm x dual slot.
3.2- Mounting Instructions
Wall Mount & DIN Rail Mounting

The MC510-55 and MC610-55 have optional Wall Mount brackets (SKU : MTW101 for the MC510-55, and MTW102 for the MC610-55) 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). Use a torque of at least 200 N-cm (18 in-lbs) to attach brackets.
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.
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.
VESA Mounting
The MC510-55 and MC610-55 have optional VESA mounting brackets (SKU : VMP-1041 or MTW113 for MC510-55 and VMPL-1041 for the MC610-55) available for purchase. Follow the steps below for mounting these brackets.

Step 1: Align the four screw holes on the bottom of the system with the respective holes on the VESA bracket.
Step 2: Attach VESA Bracket to the system using the supplied M3 screws (M3X0.5 Flathead Screw, 4mm Long) Use a torque of at least 200 N-cm (18 in-lbs) to attach brackets.
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.
VESA Through-Mounting
For VESA through mounting using MTW113, follow the steps below.

Step 1: Separate the two bracket segments by first removing the M4 screw on either side of the bracket (M4X0.7 Phillips head, 6 mm long). With the screws removed, the bracket segments can be separated by removing the perforated hex piece from the hooked tabs on the top edge of the bracket.
Step 2: Align the screw holes indicated with a single dot marking with the bottom holes of the MC510-55. (Holes marked with two dots are for the OnLogic HX300 series). Secure the system using the 4x supplied M3 screws (M3X0.5 Flathead Screw, 6mm Long). Use a torque of at least 200 N-cm (18 in-lbs) to attach the bracket.

Step 3: Install the bracket/MC510-55 assembly to a VESA 75 or VESA 100 mounting pattern on a monitor stand/arm using the provided M4x0.7 8mm length screws. Note the arrow marking on the bracket indicating which side of the bracket should be facing UP.

Step 4: Install the remaining bracket segment to a monitor VESA 75 or VESA 100 mounting pattern using the provided M4x0.7 8mm length screws Note the arrow marking on the bracket indicating which side of the bracket should be facing UP.
Step 5: Install the bracket/monitor assembly to the bracket/MC510-55 assembly on the mounting arm by aligning the hooks/tabs and slot the pieces together. Secure the bracket segments together using the 2x M4 screws removed in Step 1.

3.3- Internal Access
The MC500 and MC510 can be opened by the user. This does not void the warranty, however, any damage caused by doing so will not be covered.
The MC500 and MC510 series chasses can be opened by removing the two screws from the back (indicated in the picture below). Slide the lid off towards the rear of the chassis.

4- Software & Firmware
4.1- BIOS Manual & Updates
Access the official Motherboard manual & OEM Resources from ASRock. This external link provides access to the complete motherboard manual, along with the latest BIOS updates and specific drivers for your system's motherboard.
BIOS Update
Warning: Never interrupt a BIOS update. If the update is interrupted, the system may become irreparable. Damage caused as a result of BIOS updates may not be covered by the system's warranty.
You can follow this how-to guide for installation instructions.
4.2- Drivers & Downloads
Access the official Motherboard manual & OEM Resources from ASRock. This external link provides access to the complete motherboard manual, along with the latest BIOS updates and specific drivers for your system's motherboard.
5- Support & Compliance
5.1- Troubleshooting & FAQ
Clear CMOS


5.2- Regulatory
Download Documents
CE
The computer system was evaluated for medical, IT equipment. 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 and EN 62368-1. Product safety was evaluated to IEC 62368-1.
FCC Statement
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.
ISED
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)
UKCA
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.
VCCI
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.

5.3- Security Advisory
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
5.4- Appendices
A: Errata
The MC610-55 only supports a standard 900mA regulated 5V output to power USB3 devices via each port on the PCIe-USB381F Neousys 8-Port USB 3.1 Gen1 Frame Grabber.
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