This page also applies to the TM110, TM710, and TM720 ThinManager Ready platforms.
CL250 / CL210 / CL200
CL2X0 Series
1- Product Overview
Ultra-small form factor computers that are designed to be reliable and feature-rich, with a fanless and ventless design for durability and effective cooling. The CL200 series are IoT-ready with configurable options for 4G LTE, Wi-Fi/Bluetooth, and advanced functionalities like Movidius and multi-CEC. Measuring just 34 mm x 115 mm x 82 mm, the CL200 can be installed in compact spaces while maintaining connectivity.
1.1- Box Contents & Accessories
CL200 Assembly
CL210 & CL250 Assembly
Accessories
Power Adapter
Thermal Pads
Thermal Pads are used to assist with cooling expansion mSATA and mPCIe cards. If you purchased your system with expansion cards pre-installed, the thermal pads will already be installed inside the system. If you purchased additional items such as mounting brackets, power supplies, or antennas, they will be located in the system box or within the outer shipping carton.
Feature
CL200 (Standard-Basic)
CL210 (Standard-Advanced)
CL250
CL210 & CL250 Exterior
Item
Functional Description
Item
Functional Description
Memory and storage are soldered on the motherboard for the CL200 Series computers. Memory for both systems are LPDDR4 dual channel RAM. Both systems use industrial-grade eMMC onboard storage. Manufacturers and part numbers are subject to change, so please check the system pages for updates. Additional storage is available using the uSD card Revision 3.01 (SDXC) supporting up to 2TB.
System
Storage
Manufacturer
Part Number
Size
System
Memory
Manufacturer
Part Number
Size
The audio jack is implemented using the Realtek ALC233-VB2 and supports Nokia and Apple headset connectors.
Pin
Nokia Headset Connector
Standard Connector
The serial port header is 2x5, 2.54 mm pitch, colored black and keyed at pin 10.
Standard pin-out supports half-height PCIe/USB and full-height PCIe/USB/mSATA signal.
Jumper Set Up
The following illustration shows how to use jumpers.
“Short” pins together by placing the jumper shunt on pins. Pins not capped with jumpers are “open”. With the illustrated 3-pin jumper, the shunt shorts pins 1 and 2. Check the corresponding header pin attributes to see what functionality is supported by shorting different pin pairs.
The following illustration shows the header without any jumpers.
This illustration shows jumpers in the default 6-4 and 5-3 positions.
Function
Setting
Clearing the CMOS
Setting the jumper with the Clear CMOS jumper shunt allows you to clear the data in the CMOS. NOTE: Do not clear the CMOS right after updating the BIOS. You must boot up the system first and then shut it down before clearing the CMOS. NOTE: The password, date, time user default profile will be cleared only if the CMOS battery is removed.
To clear and reset system parameters to the default setup, follow these steps:
Turn off the computer and unplug the power cord from the power supply.
Wait 15 seconds.
Remove the jumper shunt from pins 6 and 4 and use it to short pins 2 and 4 on the header for 5 seconds.
The 3V Battery coin cell cable header is clearly labeled:
Function
Setting
If it was selected and configured in the build, the chip will be populated. CEC functionality will work with an HDMI adapter. Please see series pages for additional information.
Onboard Intel HD Graphics 500 processing circuitry is integrated into the processor. Single Display supports a maximum resolution of up to 3840x2160 (4K) @ 60 Hz. Dual independent displays are achieved through the optional second Mini-Display Port. Up to three mirrored displays are achieved via Display Port v1.2 daisy chaining.
The CL200 Series supports multiple power states. These states can be configured on the motherboard. This section describes the power management functions you can perform.
An unexpected shutdown does not necessarily cause a loss of data, but it can make access to some of your data difficult. To remedy this possibility, follow this procedure to power up the system again after the system power has been off for more than 4 seconds:
If the SOC BIOS mode is set to AT mode, press the Power button once to power on the system.
If the SOC BIOS mode is set to ATX mode, press the Power button twice to power on the system.
The motherboard supports the following wake-up events.
Wake-Up Event
From ACPI State
Comments
Notes: S4 implies OS support only. USB ports must be turned off during S4/S5 states.
Step 1: Mark and prep holes in surface for mounting.
Step 2: Attach wall mount brackets to chassis.
Step 3: Fasten system to surface.
Step 1: Attach DIN Rail mounting brackets to the chassis.
Step 2: Clip system to the DIN Rail.
It is important to read the following precautions before installing expansion cards into the motherboard:
Wear a grounding strap attached to a grounded device to avoid damage from static electricity.
Before opening the system, discharge static electricity by touching the metal case to a grounded object.
Leave components in the static-proof bags they came in until they can be installed.
Remove the two silver Phillips screws
Use a flathead screwdriver or similar tool to gently lever the bottom cover off
Hinge the bottom plate back onto the system by aligning the tabs
Reinstall the silver Phillips screws
To add Wi-Fi to the CL200 Series, follow this procedure.
Before starting, ensure that you have read and understand the installation precautions listed above in the "Pre-Installation Precautions" section. \
Remove both screws from the front of the case. Retain screws. \
Remove the cover of the unit by sliding it toward the rear. \
The following section describes the CL200 Series UEFI. It shows each screen menu with a table describing the various fields and values.
SMART Settings
NCT5524D Super IO Configuration
Hardware Monitor
S5 RTC Wake Settings
CPU Configuration
Socket 0 CPU Information
CPU Power Management
AMI Graphic Output Protocol Policy
Network Stack Configuration
USB Configuration
Platform Trust Technology
Thermal
System Component
RC ACPI Settings
PCI Express Configuration
PCI Express Root Port 3
LAN 1
PCI Express Root Port 5
LAN2
USB Configuration
Secure Boot
UEFI Hard Disk Drive BBS Priorities
Version
Link
Update the BIOS with the file(s) above. you can follow thisfor installation instructions.
Windows 10
Download and extract it.
In the Windows 10 folder, there are two applications required for full functionality, the kernel driver that allows communication with the CEC module, and the user driver that keeps the module up-to-date with the system’s HDMI port addresses.
To install the kernel driver, right-click on ADP107.inf and select install. Accept any prompts that follow, then restart the system.
Linux
Download and extract it.
Install the necessary prerequisites using:\
In the Linux folder, you will find a kernel module that can be compiled from the command line.
From the driver package’s Linux folder, run the following commands:\
Finally, restart the system. Upon reboot, you should find that a character device is loaded at /dev/adp107 that can be used to communicate with the device using the application codes included in the next section.
Ubuntu – Scan for HDMI addresses and power up displays
Prerequisites: python-smbus
Power on the CL200 and press the Esc key a few times to access the BIOS
Navigate to the Chipset tab
Change auto power on to [enable]
Enter the BIOS and ensure that the watchdog timer is enabled. The option is at the top of the Advanced settings page.
Install the watchdog package using `sudo apt-get install watchdog`.
In the terminal, run `lsmod | grep wdat_wdt` to see if the watchdog module is loaded. If the command returns nothing, the module is not loaded.
Locate the Clear CMOS jumpers
Remove the black jumper from pins 6 and 4
Install it onto pins 4 and 2, moving it down by 1 pin
Open the system following the Disassembly steps above.
Install the WiFi and/or mSATA card as shown. Install the WiFi antenna pigtail cables as shown.
The nuts and washers are loose for illustration purposes. They should be fully hand tightened
Apply the thermal pad to the top of the WiFi/mSATA card. This can be located in your system’s accessories.
The ADP107 is a module that is installed in-line with the DisplayPort outputs on configured OnLogic systems. Its purpose is to enable Consumer Electronics Control (CEC) functionality which manages the connection between the system and any connected displays according to a set of preconfigured rules. This allows command signals to be passed to the displays when the computer starts, stops, wakes, and sleeps, in a user-configurable order after a configurable time delay.
The device’s default configuration is to power up displays when the system starts/wakes and power them off when the system stops/sleeps. It is also configured by default to start the computer when the connected display powers on, and to power the computer off
when the displays are powered off. The default startup delay timer is set to 5 seconds.
This document provides international regulatory and safety compliance information for the OnLogic Fanless computers xxxx-CL2YY-xxxx, (where x can be any alphanumeric character or blank and Y is numeric character) computer system.
For more information on accessories and additional features, visit the product page:
FCC
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 might cause undesired operation.
Industry Canada Compliance Statement
This Class A digital apparatus complies with Canadian ICES-003.
Avis de Conformité à la Réglementation d’Industrie Canada
Cet appareil numérique de la classe A est conforme à la norme NMB-003 du Canada.
CE
This equipment complies with all applicable European Union (CE) directives if it has a CE marking. For this device to remain CE compliant, only CE compliant parts can be installed, and proper cables and cabling techniques are required.
Do not open or modify the device. The device uses components that comply with FCC and CE regulations. Modification of the device will void these certifications.
Install the device securely. Be careful handling the device to prevent injury and do not drop.
Wall or ceiling mounting device requires use of a mounting plate or bracket. Plate or bracket must be of metal construction and have a minimum thickness of 1mm.
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.
If this product was configured with a wireless device, the FCC and IC IDs will be detailed on a label on the chassis.
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.
Revision History
Date
Intel® Celeron® N3350
Intel® Celeron® J3455
System Memory
2GB LPDDR4 onboard
4GB LPDDR4 onboard
8GB LPDDR4 onboard
Graphics
Intel® HD Graphics 500
Intel® HD Graphics 500
Intel® HD Graphics 500
Audio
Realtek ALC233
Realtek ALC233
Realtek ALC233
Super I/O
Nuvoton NCT 5524
Nuvoton NCT 5524
Nuvoton NCT 5524
LAN (1 & 2)
Realtek RTL8111H
Realtek RTL8111H
Realtek RTL8111H
Expansion 1
Full-length mPCIe slot (PCIe/USB/mSATA signal)
Full-length mPCIe slot (PCIe/USB/mSATA signal)
Full-length mPCIe slot (PCIe/USB/mSATA signal)
Expansion 2
Half-length mPCIe slot (PCIe/USB signal)
Half-length mPCIe slot (PCIe/USB signal)
Half-length mPCIe slot (PCIe/USB signal)
WiFi Antenna
4 x Antenna holes
4 x Antenna holes
4 x Antenna holes
Onboard Storage
8GB eMMC
32GB eMMC
None
Rear I/O
Micro SD slot
Micro SD slot
Micro SD slot
Front I/O: Audio
Jack (Mic-in/Line-out)
Jack (Mic-in/Line-out)
Jack (Mic-in/Line-out)
Front I/O: mDP
1 x mini-Display Port
2 x mini-Display Port
2 x mini-Display Port
Front I/O: LAN
1 x Gb LAN port
2 x Gb LAN port
2 x Gb LAN port
Front I/O: USB
2 x USB 3.0
2 x USB 3.0
2 x USB 3.0
Bottom I/O
1 x Power button
1 x LED (on the backside of PCB)
1 x USB2.0 vertical type
1 x 12V DC-in barrel
RS 232 Box Header Connector
1 x Power button
1 x LED (on the backside of PCB)
1 x USB2.0 vertical type
1 x 12V DC-in barrel
RS 232 Box Header Connector
1 x Power button
1 x LED (on the backside of PCB)
1 x USB2.0 vertical type
1 x 12V DC-in barrel
RS 232 Box Header Connector
Onboard Headers and Connectors
1 x RTC battery header
1 x CEC header (module population is optional)
1 x clear CMOS, AT/ATX Jumper
1 x RTC battery header
1 x CEC header (module population is optional)
1 x clear CMOS, AT/ATX Jumper
1 x RTC battery header
1 x CEC header (module population is optional)
1 x clear CMOS, AT/ATX Jumper
A4
Dual USB3.0 connector
A5
Power Button
A6
Battery Header
A7
HDMI CEC Header (Optional)
A8
RS-232 COM Box Header
A9
Clear CMOS + AT/ATX Mode Header
A10
USB2.0 Verticle Type Connector
A11
DC-IN Power Jack
A12
Half-Height mPCIE Slot
A13
mPCIE Slot/mSATA Slot
CL210G-10
eMMC
Samsung
KLMG2JETD-B041
32 GB
CL210G-10
LPDDR4
Samsung
K4F6E304HB-MGCJ
2 GB x 2
3
Mic
Ground
4
Ground
Mic
ATX Mode (default)
3-5
Remove the jumper shunt and return it to short pins 6 and 4.
LAN
S3, S4, S5
USB
S3
PCIe
S3, S4, S5
via WAKE; monitor to remain in sleep state
Hold all circuit boards by the edges.
Do not bend circuit boards.
Remove rubber port blockers to install SMA connector through antenna holes. Remove nut first and line up the key. Install nut on the outside to hold connector in place. \
Unscrew the screw on the standoff for the card length required. Retain screw. \
Insert card at a 45 degree angle into the mPCIe slot until it snaps in. \
Press down on the card's edge and screw down using retained screw into standoff. \
Install second card as needed following the same instructions as above. \
If installing broadcast modules, install MHF4 pigtail cable to the module. Make sure the MHF4 cable maps to the correct port. \
Remove clear sticker backing from thermal pads to attach to installed modules. \
Install thermal pads onto installed modules, making sure to keep all wires free from pads and other ports.
Install cover onto the unit using retained screws. \
Install antennas to exposed SMA connector. \
Save & Exit
The CL200 will now automatically turn on when power is connected
If the watchdog module is not loaded, it is likely blacklisted by default. Open `/usr/lib/modprobe.d/blacklist_linux-hwe-5.19_5.12.0-43-generic.conf` with a text editor and remove or comment out `blacklist wdat_wdt`. If there are other `blacklist_linux…` files here, ensure that the blacklist is removed from them as well.
Open `/etc/default/watchdog` with a text editor and add or modify the watchdog module line to be as follows: `watchdog_module=”wdat_wdt”`. Other watchdog module settings can be adjusted here as well.
Open `/etc/watchdog.conf` and add or modify the watchdog device line to be as follows: `watchdog-device = /dev/watchdog `(it may also be `watchdog0`) . There are additional settings here that can be changed as needed, such as the watchdog timeout which controls how long it takes to trigger a system reboot after an event. The timeout defaults to 60s but can be adjusted by adding the line `watchdog-timeout = #` where `#` is the desired time in seconds.
Reboot the system.
The following commands should be run as the root user. To confirm the watchdog timer is working correctly, you can kill the watchdog process, stopping the watchdog pulse and causing the system to reboot using the following command: `killall -STOP watchdog`, if `killall` is not available try `pkill -STOP watchdog`. A kernel panic can also be triggered and cause the watchdog to reboot the system using the following command: `echo c > /proc/sysrq-trigger`.
Wait 30 seconds
Restore the jumper to its original 6-4 position
The CMOS is now clear
Use M3x0.5mm Flat Head screws to attach mounting plate or mounting brackets to threaded holes on bottom of chassis. Screws should be a minimum length of 4mm. Add 1mm of screw length for every mm of additional thickness of plate or bracket beyond 1.5mm.
Operational temperature must be between 0-50°C with a non-condensing relative humidity of 10-90%. Derated operational temperature of 0-40°C dependent on included power adapter. See Table 1 below.
The device can be stored at temperatures between 0-60°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 of the device for proper cooling. If the device is mounted to a vertical surface then the recommended device orientation is so that heatsink fins allow air to rise unobstructed. Alternative orientations may result in reduced operational temperature range.
This device is intended for indoor operation only.
Use UL Listed external power supply with rated output 12V d.c., 3A min.
Install the device only with shielded network cables.
Service and repair of the device must be done by qualified service personnel. This includes but is not limited to replacement of CMOS battery. Replacement CMOS battery must be of same type as original.
Proper disposal of CMOS battery must comply with local governance.
Form Factor
Pico ITX (100mm x 72mm)
Pico ITX (100mm x 72mm)
Pico ITX (100mm x 72mm)
Processor
A1
Combo Audio JACK connector (optional)
A2
miniDisplay Port connector - J54-DDI0 1st display
miniDisplay Port connector - J55-DDI1 2nd display (optional)
A3
RJ45 LAN connector - J_Lan_1
RJ45 LAN connector - J_Lan_2 (optional)
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.
1.2 - Navigating the Setup Menu
To access the BIOS setup menu, hold the DEL 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
To access the BIOS boot manager, hold the F10 key on the keyboard while turning on the system. After a few seconds, the BIOS boot manager is shown:
To access the Secure Boot Menu, hold the Ctrl+Alt+F4 key on the keyboard while turning on the system. After a few seconds, the Secure Boot menu is shown:
The system will prompt you to set admin passwords to configure secure boot for the first time.
Enter the admin password to access the secure boot setting page.
The Error LED is effectively controlled by BIOS based on the following conditions:
Blinking frequencies:
Slow blinking: 0.5 Hz (Blinks once every two seconds)
Medium blinking: 1 Hz (Blinks once every second)
Fast blinking: 4 Hz (Blinks four times every second)
When RTC battery is low, BIOS will display "Warning: Low RTC battery" for 30 seconds during the BIOS POST.
If a BIOS update is interrupted, your system may fail to boot. The system will attempt to recover in two ways:
1. Automatic Recovery
The system will automatically try to restore the original BIOS image.
Look for the text "Crisis Recovery" on your screen.
This indicates the repair is in progress.
2. Manual Recovery (USB Method)
If the system keeps rebooting and does not recover automatically, follow these steps:
Save a valid BIOS image file onto a USB flash drive.
Rename the file to: CL260.bin
Insert the USB drive into the computer.
You can enable the Factory Reset Button under Onlogic Feature Configuration of the BIOS setup menu
Turn off the system completely.
Press and hold the Factory Reset button.
While still holding Reset, press the Power button to turn the system on.
Wait 5 seconds after the system powers up, then release the Factory Reset button.
The Result:
All BIOS settings return to default.
Admin passwords are deleted.
SSD S.M.A.R.T Health Check is enabled by default in the Onlogic Feature Configuration
BIOS will check the SSD health status and display warnings if the status is bad for 30 seconds
Normal Operation: Once the computer boots to an OS, the BIOS constantly resets a hidden countdown timer to prove the system is still running smoothly.
If the system freezes ("hangs") and stops working, it fails to reset that timer.
When the timer runs out (hits zero), it automatically forces the computer to restart to recover from the freeze.
To enable In-Band ECC in the memory configuration page, Intel Trusted Execution Technology must be disabled in the CPU configuration page.
Several options are available on the Main page:
Platform information: a comprehensive summary of the computer's hardware components and firmware details
Language: Select which language to display
System Time: adjust RTC time
The Advanced menu contains the following options:
BT
Enable/Disable BT module
WIFI
Enabling Turbo Mode on the CL260 Description By default, Turbo Mode is disabled in the shipping BIOS to prevent total power consumption from exceeding the maximum output of the power adapter, particularly when Power over Ethernet (PoE) is utilized to power external devices.
If you are not using PoE as a power source, you may follow the instructions in this guide to enable Turbo Mode via the BIOS Setup Utility.
Power on the system and press [DEL] to enter the BIOS Setup Utility. Navigate to the [Advanced] tab and select [RC Advanced Menu].
Within the [RC Advanced Menu], select [Power & Performance].
In the [Power & Performance] menu, select [CPU Power Management Control].
4. Locate [Turbo mode] at the top of the menu. Select this item and press [ENTER] to change the value from [Disabled] to [Enabled]. No other settings need to be modified.
5. Press [F10] to save your changes and exit the BIOS Setup Utility. Turbo Mode is now enabled on your CL260.
The Security menu contains the following options:
Current TPM Device (read-only; possible values: Not Detected, TPM 1.2, TPM 2.0)
TPM Active PCR Hash Algorithm (read-only)
TPM Hardware Supported Hash Algorithm (read-only)
The Power menu contains the following options:
Wake on RTC from S5
Auto wake on S5, By Day of Month or Fixed time of every day
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
CL260
An ultra-compact, fanless edge gateway with dual LAN, dual Display over USB-C, and Intel® Quad-Core processing.
For more information on accessories and additional features, visit the CL260 product page:
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.
For more information on accessories and additional features, visit the CL Series Product page.
Enter activates the selected option. If that option is a menu, it is opened. If it is a configuration option, a dialog is opened to select a new value.
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
RTC coin cell battery < 2.5V
Fast blinking
At BIOS boot-up
The system will automatically find the file and repair the BIOS.
System Date: adjust RTC date
Enable/Disable WiFi module
LAN WAKE
Enable/Disable LAN WAKE
USB Type-A S4/S5 keep power
Enabled to make USB A continue to supply power in S4/S5
Serial Port
Select RS485/RS422/RS232/Loopback function
Hardware Monitor
Display voltage information
Onlogic Feature Configuration
Onlogic features described in Section 2 above
RC Advanced Menu
Advanced settings on platform
Boot Configuration
Configure boot settings
Advanced Platform Information
Console Redirection Configuration
Console redirection allows the input and output of a computer's console to be rerouted to another device or location, often for remote management or troubleshooting.
BIOS Supported Hash Algorithm (read-only)
TrEE Protocol Version (default value: 1.1; possible values: 1.0, 1.1)
TPM Availability (default value: Available; possible values: Available, Hidden) When Hidden, don’t exposes TPM to OS
TPM Operation - a command setting that tells the computer what to do with the security chip the next time it reboots.
Select Power Off/ Power On/ Last State after power loss restore
Disabled : Support Network Stack
UEFI PXE : IPv4/IPv6
Legacy : Legacy PXE OPROM only
Boot Device Type Order
Change boot device type order
Hard Disk Drive
Change hard drive boot order
Others
Changer other device boot order
Load Optimal Defaults: loads the factory default configuration
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
The CL260 is pictured with 2 RP-SMA antenna plugs.
The front power button can be used to turn on and off the CL260 system. The power button is a momentary contact button without LED.
A single press while the system is on will initiate a graceful Shutdown or Sleep operation from the OS
Pressing and holding the button for 4 seconds while the system is running will cause a forced shutdown
The system can be woken by a single press of the power button from any state
Color
Type
The Power LED indicates the system events:
Powered on in the S0 State: Constant on
System is in the Sleep State (S3): Flashing
System is in S5 or deeper state: Off
Read/Write activities on M.2 storage device: Blinking
The Error LED indicates the system error events:
DRAM Error: Constant on
No boot device found: Slow blinking (0.5 Hz)
USB 3.2 Gen 1 (5 Gbps)
DisplayPort 1.4 compliant in DisplayPort Alt Mode
Power output up to 5V/3A
USB 3.2 Gen 1 (5 Gbps)
The LAN Ports on CL260 supports up to 1Gbps 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.
When Factory Reset Button is pressed, it resets system BIOS settings back to factory defaults.
In order for the factory reset button to be functional it must be enabled in the BIOS setup menu.
The mainboard power is applied to the CL260 platform through a 3-pin terminal block connector (Mating part: Dinkle / OnLogic 0225-0603 or equivalent).
The system is operational from 12V~24V. 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 the connector pinout which is also indicated on the terminal block mounting panel adjacent to the connector. Installation of DC Mains connection shall only be performed by skilled personnel and in accordance with your local and national electrical code (Example: NEC, CEC).
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.
Pin
Function
1
DC +
2
Earth GND
3
DC -
USB 3.2 Gen 1 (5 Gbps)
DisplayPort 1.4 compliant in DisplayPort Alt Mode
Power output up to 5V/3A
Serial Port (10-Pin Terminal Block)
The serial ports support RS-232, RS-422, and RS-485 configurations. Refer to the BIOS manual for configuration instructions.
(Mating part: Dinkle 0159-0110 / OnLogic TB10P or equivalent).
The motherboard top and bottom view for CL260 is as below.
An M.2 E-Key port is present on the Helix motherboard to allow support for E-Key form-factor wireless expansion cards. Only 2230 form-factor cards are supported. The E-Key connector on the CL260 platform supports PCIe Gen 3 x1 and USB 2.0.
A full pinout table for this expansion slot is provided in Expansion Port Pinout
An M.2 M-Key port is present on the Helix motherboard to allow support for M-Key form-factor expansion cards. Only 2280 form-factor cards are supported. The M-Key connector on the CL260 platform includes support PCIe Gen 3 x2 and SATA III.
A full pinout table for this expansion slot is provided in Expansion Port Pinout
If the BIOS needs to be updated, please refer to the BIOS manual for reflashing instructions.
The RTC battery on the CL260 platform is used to maintain the real-time clock for the system. If the RTC battery is low, the Error LED will indicate the error event. The cabled RTC battery should be replaced with an UL listed battery. The battery shall use a ACES 50276-002H or equivelent connector to mate with the on-board connector.
Two Intel Twin Lake Processor options are available for the CL260.
CPU
OnLogic SKU
On Board RAM / Core / Thread Count
N150
CL260-N150-P
8GB / 4 / 4
N250
CL260-N250-P
The CL260 platform has the onboard LPDDR5 chips:
Capacity: 8GB
Speed: 4800 MT/s
The power consumption of the CL260 system was measured for various system configurations, workloads, and power states at 12V system input voltages. Tests were performed using BurnInTest v10.2 to stress system components. The build configurations and power consumption are listed in the tables below.
*The configurations below are using representative samples of internal devices, the specific components mentioned below may vary from the devices provided by OnLogic. The power consumption for each system configuration is record below
System Component
Config 1 - N150
Config 2 - N250
CPU
N150
N250
Memory
LPDDR5 8GB
Configuration 1 : N150
Power Consumption
Avg [Watt]
S5 (WoL disabled)
0.614
S5 (WoL enabled)
0.626
S3 (WoL disabled)
0.626
Configuration 2 : N250
Power Consumption
Avg [Watt]
S5 (WoL disabled)
0.675
S5 (WoL enabled)
0.688
S3 (WoL disabled)
0.675
Parameter
Value
Nominal Operating Voltage (Rated DC value of input)
12V - 24V (± 15%)
Rated Power Consumption
65W
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. For input power consumption and current see Power Consumption
The CL 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. Low power shutdown is an additional option in the BIOS. See BIOS Manual for more information.
Wake Up Event
From ACPI State
Notes
Power Button
Pseudo G3
S5
S4
S3
LAN
S5
S4
S3
Pressing Delete key while the system is booting, then navigate to Power -> Restore AC Power Loss
Select Power On to enable auto power on
Select Power Off to disable auto power on
Temperature Range: 0ºC to 50°C
Step size: 10°C
Place the system in a chamber with 0.7 m/s of airflow and run the Furmark stress test
Step 1: Align the two screw holes on the back of the system with the respective holes on the DIN Clip (MTD109).
Step 2: Attach DIN Clip (MTD109) to the system using the supplied M3 screws (M3X0.5 Flathead Screw, 6mm Long).
Step 3: Mount system onto the DIN rail.
Note: The mounting brackets are required to support 4x the hanging weight of the system.The mating surface and hardware must be capable of supporting the same load.
Step 1: Align the two screw holes on the back of the system with the respective holes on the VESA mounting bracket (MTW117).
Step 2: Attach VESA Mounting Bracket (MTW117) to the system using the supplied M3 screws (M3X0.5 Flathead Screw, 6mm Long)
Step 1: Peel feet from releasing paper.
Step 2: Adhere feet on the bottom side or CL260.
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.
*Update the BIOS with the file(s) above. You can follow this how-to guide for installation instructions. PLEASE NOTE - this is a SIGNED BIOS.
The BIOS controls the serial port configurations. Go to the following BIOS settings to adjust the communication types. Access the BIOS by pressing <DEL> at boot up.
Set the communication type, navigate to:
Advanced –> Serial Port
RS232 (default)
RS422
RS485
Make sure to save any changes by pressing F10 to Save and Exit.
The CL260 features a factory reset button to manually restore the BIOS to its default settings.
Locate the factory reset button on the front plate.
Press the reset button to restore system BIOS settings back to factory defaults or custom set values.
120-ohm termination resistor:
For RS-422 and RS-485, the internal 120Ω termination resistor is enabled by default.
RS-485 Built-in biasing/fail-safe:
The transceiver supports enhanced fail-safe operation and does not require external biasing resistors to maintain a defined receiver state when the bus is idle.
Standard RS-485 biasing:
The transceiver implements an enhanced fail-safe receiver function. When the bus is open, shorted, or idle (un-driven), the receiver output is guaranteed to remain at a logic-high state. Therefore, no external RS-485 biasing resistors are required.
This device has been tested to the relevant EMC and Safety standards. Modifications by the user may invalidate certifications. Testing included EN 55032, EN 55035, EN 60601-1-2, EN 62368-1, EN 18031-1 (RED 3.3d) and IEC 60945 Ed. 4.
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.
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.
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
1-Product Overview
1.1- Introduction
1.2- Safety
Safety Precautions, Safeguards & Information
Do not open and modify the device! The device complies with various national and international Safety, EMC and Environmental requirements per various standards.
Modification of the device may void certifications, warranty and/or cause possible injury to the user.
Safe use and installation instructions
Care must be taken handling the device to prevent injury to self or possibility of damaging
the unit.
Read the entire manual before using the product.
Install the device securely per users manual instructions.
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 Listed external power supplies with DC output of 12-24VDC, see specs for details.
Install the device only with shielded network cables.
The installer should be experienced in aftermarket installation and familiar with general practices for installing electronics.
This equipment is intended to be used in Restrict Access Location. The Restrict Access Location must only be accessed by a Skilled person or by Instructed person.
Service and repair of the device must be done by qualified skilled service personnel. This includes, but is not limited to, replacement of the CMOS battery. Replacement CMOS battery must be UL recognized and of a similar type as the original.
Proper disposal of the CMOS battery must comply with local governance.
Radio device is not intended for emergency service use.
To protect against excessive RF exposure, maintain at least 20cm from any user and the RF antennas. Only use provided dual band PIFA antennas with 2dBi/2dBi gain (2.4 and 5Ghz)
for Wifi/BT.
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.
Précautions et guide d’installation
Ne pas ouvrir et modifier l'appareil ! L'appareil est conforme à diverses exigences nationales et internationales en matière de sécurité, de CEM et d'environnement selon diverses normes.
La modification de l'appareil peut annuler les certifications, la garantie et/ou causer des blessures à l'utilisateur.
Instructions d'utilisation et d'installation en toute sécurité
Des précautions doivent être prises lors de la manipulation de l'appareil pour éviter de se blesser ou d'endommager l'appareil.
Lisez l'intégralité du manuel avant d'utiliser le produit.
Installez l'appareil en toute sécurité selon les instructions du manuel de l'utilisateur.
Pour vous protéger contre une exposition RF excessive, maintenez au moins 20 cm de tout utilisateur et des antennes RF. Utilisez uniquement les antennes double bande fournies avec un gain de 2 dBi/2 dBi.
Le dispositif de montage mural ou au plafond nécessite l'utilisation d'une plaque ou d'un support de montage. La plaque ou le support doit être en métal et avoir une épaisseur minimale de 1 mm.
Utilisez des vis à tête plate M4x0,5 mm pour fixer la plaque de montage ou les supports de montage aux trous filetés au bas ou à l'arrière du châssis. Les vis doivent avoir une longueur minimale de 4 mm. Ajoutez 1 mm de longueur de vis pour chaque mm d'épaisseur supplémentaire de plaque ou de support au-delà de 1,5 mm.
Attention surface chaude! Il est normal que l'appareil chauffe et soit chaud au toucher. Ne touchez pas la zone du dissipateur thermique ou le boîtier pendant le fonctionnement et 30 minutes après l'arrêt pour permettre à l'unité de refroidir.
La température ambiante de fonctionnement doit être comprise entre 0 °C et 40 °C avec une humidité relative sans condensation de 10 à 85 %.
L'appareil peut être stocké à des températures comprises entre -10 °C et 85 °C. Remarque : L'unité doit être stabilisée à la température de fonctionnement avant utilisation, minimum 3 heures.
Gardez l'appareil à l'écart des liquides et des matériaux inflammables. Ne pas installer dans un environnement dangereux.
Ne nettoyez pas l'appareil avec des liquides. Le châssis peut être nettoyé uniquement avec un chiffon sec ou un plumeau. Pour éviter de se blesser et/ou d'endommager l'appareil, l'appareil doit être éteint et toutes les alimentations et autres périphériques doivent être déconnectés avant le nettoyage.
Prévoyez un espace suffisant autour de tous les côtés de l'appareil pour un refroidissement correct et pour ne pas dépasser sa limite de température de fonctionnement maximale. Si l'appareil est monté sur une surface verticale, l'orientation recommandée de l'appareil est telle que les ailettes du dissipateur thermique permettent à l'air de monter sans obstruction. Des orientations alternatives peuvent entraîner une plage de températures de fonctionnement réduite.
Cet appareil est destiné à une utilisation en intérieur uniquement.
Attention, risque de choc électrique !L'unité est alimentée uniquement par une basse tension CC (courant continu) ! Ne connectez pas le courant alternatif (courant alternatif) à l'appareil !
Pour alimenter l'appareil, utilisez uniquement des alimentations externes répertoriées UL 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.
Cet équipement est destiné à être utilisé dans un lieu à accès restreint. L'accès à ce lieu est réservé à une personne qualifiée ou formée.
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.
For both USB-C Ports the Power Output is as follows:
At 45℃ Ambient Temperature power output is 5V/3A
At 50℃ Ambient Temperature power output is: 5V/0.9A
USB 3.2 Gen 1 Type A USB port
LAN
Factory Reset Button
Right I/O Definition
Terminal Block Power
For the best and safest results, please use the UL approved and tested power supply. Using an alternative power supply may pose a safety risk.
If you need further assistance, please contact an OnLogic Sales Representative for more information.
Wire Type: Cu. Only use 28 to 16 AWG wire size (Maximum Temperature Rating: 130°C)
USB 3.2 Gen 1 Type C USB port
One of the Type-C ports is for connecting to an external monitor. This machine is intended for standalone use and not to connect with multiple machines.
Expansion Port Pinout
M.2 E-Key
M.2 M-Key
2.3- Motherboard Connectors
Motherboard Top Side
Motherboard Bottom Side
M.2 E-Key
M.2 M-Key
BIOS EEPROM
RTC battery header
2.4- Processor
LPDDR5
2.5- Power Management
Protection Circuitry
Wake-Up Events
Auto Power On
2.6- Thermal Results
Test Conditions
Test Results
2.7- Block Diagram
3- Installation & Mechanical
Dimensions
3.1- Mounting
DIN Rail Mounting (MTD109)
VESA Mounting (MTW117)
Rubber Feet (MTF100)
3.2- Internal Access
It is recommended that this is to be performed by skilled personnel.
3.3- CAD & Drawings
CL260 CAD Files
CL260 Mounting Dimensional Drawings
4- Software & Firmware
4.1- Drivers & Downloads
4.2- BIOS
BIOS manual
BIOS Updates
4.3- Features & Configuration
How to configure Serial port for RS232/422/485
5- Support & Compliance
5.1- Troubleshooting & FAQ
Factory Reset
RS232/422/485 Information
5.2- Regulatory
CE
FCC Statement
ISED (Innovation, Science and Economic Development Canada)