Loading...
Loading...
Loading...
Loading...
Loading...
Loading...
Loading...
Loading...
Loading...
As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
The auto power on feature will turn the Helix system back on after a power loss. This can be useful for automatic recovery after a power outage, or applications where the system’s power button is not easily accessible.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
Change the “Power On after Power Failure” option to “S0-Power On”
Navigate to the Exit tab.
Save Changes and Exit.
The unit will now automatically power on when power is connected.
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 and with the system 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.
Completely unplug the system from power and all peripherals
Remove 4x Phillips P2 screws from the bottom of the system.
Pulling evenly from both sides, lift the GPU module straight up off of the system.
Set the GPU module aside
Remove 3 screws from the 2.5″ drive tray
Carefully lift the tray out and unplug the drives (If installed)
Remove 3 2.5mm hex bolts from the pictured side of the case
Remove the case plate and set it aside
Remove 4 hex bolts from the other side of the case.
Slide the case apart
The internal components are now accessible, including the CMOS battery, RAM, m.2 SSD, and WiFi/Cellular.
Disassembling the unit further to remove the motherboard is not recommended and will void warranty.
Remove 4x Phillips P2 screws from the bottom of the system.
Pulling evenly from both sides, lift the GPU module straight up off of the system.
Remove 3x Phillips P2 screws
Remove the cover, and the PCI-E slots are now accessible.
If the system fails to power on or is unresponsive, clearing the CMOS may help. It will also restore the BIOS to factory defaults.
Completely unplug the system from power and all peripherals
Remove the 2.5mm hex bolts from the pictured side of the case
Remove the case plate and set it aside
Locate the CMOS clean button above the USB stack next to the DVI port
Depress the button for 15 seconds
Reinstall the case plate and all bolts
By default, the system should be configured to output video out of the graphics card (If equipped). If no video is outputted from the graphics card, try using the onboard displayports instead. If that works, use the steps below to change the primary display.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Advanced tab.
Open the “System Agent (SA) Configuration” menu
Open the “Graphics Configuration” menu
Change the “Primary Display” to IGFX to use the motherboard graphics, change to PEG to use the graphics card
If desired, set “Internal Graphics” to Enabled to utilize both the graphics card and onboard outputs.
Navigate to the Exit tab.
Save Changes and Exit.
While PCI-E 3.0 slots are backwards compatible with 2.0 and 1.0 cards, the auto detection may fail. If the system does not display video after installing an older PCI-E card, some tweaks to the BIOS may help.
Power on the PC and Press F2 to access the BIOS
Navigate to the Advanced tab and open the System Agent (SA) Configuration
Open the PEG Port Configuration
Change the max link speed to Gen1
Save and Exit the BIOS
Reinstall the PCI-E card
As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
If issues are still observed, contact tech support for further assistance.





















Navigate to the Exit tab.
Save Changes and Exit.
The unit will not automatically power on when power is connected.
The Nuvo-7000 can be opened by the user. This does not void the warranty, however, any damage caused by doing so will not be covered.
Required tools: 5mm Hex Driver, P2 Phillips Driver
Unplug the system completely from power and all peripherals
Unscrew all hex bolts from the blue panel on the side with the power button.
Remove the panel and set it aside.
Press and hold the pictured CMOS reset button for 10 seconds. The CMOS is now clear.
Reinstall the panel and power on the unit.
Required tools: 5mm Hex Driver, P2 Phillips Driver
Unscrew the four M3 flat-head screws and detach Cassette by pulling it up. NOTE: LP models do not have the cassette. You may skip to step 3.
Unscrew all hex bolts on the front and back panel.
Remove both panels.
Use caution if WiFi is installed as they are still attached by the antenna wires.
Lift the bottom cover up a couple inches and gently unplug the SATA cables.
Set the bottom cover aside.
You now have complete access to the internals of the unit.
Units equipped with the MezIO ignition timings card can be remotely turned on and off using the IGN pin on the power connector.
The timings are adjusted by a rotary switch inside the unit. To access the switch, perform the following steps:
Remove the 6x Hex bolts from this side of the unit only:
Remove the white plate to reveal the timings dial.
Using a small flathead screwdriver, carefully rotate the dial to the desired timings setting.
The following are timing settings that can be set on the Nuvo-7000
Mode 0
Mode 0 is the ATX mode without power-on and power-off delay. User can only use the power button on the front panel to turn on or turn off the Nuvo-7000 series system.
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
0
N/A
N/A
N/A
Mode 1
If Mode 1 is specified, the system automatically turns on the system when DC power is applied. A retry mechanism is designed to repeat the power-on cycle if the system is failed to boot up.
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
1
N/A
N/A
N/A
Mode 2
Mode 2 is a special mode designed to support remote on/off control. User can use an external latched switch to connect the DC source (8~35V) and IGN input. When the switch is closed, IGN signal is asserted to initiate a power on operation. When the switch is opened, IGN signal is de-asserted and system shutdown operation is initiated. Neither power-on delay nor power-off delay is supported in this mode.
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
2
N/A
N/A
N/A
Mode 3 ~ Mode 12
Mode 3 ~ Mode 12 are ignition power control modes with various power-on delay and power-off delay. Each mode supports a hard-off timeout of 10 minutes.
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
3
10 seconds
10 seconds
10 minutes
Mode 13/Mode 14
Mode 13 and Mode 14 are ignition power control modes with very long power-off delay. Both modes support the feature of “smart off-delay”, which automatically detect system status during power-off delay duration and cut off system power if system is off in prior to power-off delay expired.
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
D
30 seconds
2 hours
10 minutes
To have ignition power control for in-vehicle usage, you need to supply IGN signal to Nuvo-7000 series with MezIO-V20. The IGN input is located on the back panel via a 3-pin pluggable terminal block (shared with DC power input). Here is a general wiring configuration for in-vehicle deployment.
Connect car Battery+ line (12V for car, 24V for bus/truck) to V+.
Connect car Battery-/GND line to GND.
Connect ACC line to IGN.
Notes:
Please make sure your DC power source and IGN signal share the same ground.
IGN input of Nuvo-7000 series accepts 8~35VDC. Supplying a voltage higher than 35VDC may damage the system.

4
10 seconds
1 minute
10 minutes
5
10 seconds
5 minutes
10 minutes
6
30 seconds
1 minute
10 minutes
7
30 seconds
5 minutes
10 minutes
8
30 seconds
10 minutes
10 minutes
9
3 minutes
1 minute
10 minutes
A
3 minutes
10 minutes
10 minutes
B
3 minutes
30 minutes
10 minutes
C
10 minutes
30 minutes
10 minutes
E
3 minutes
2 hours
10 minutes










As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
The POC-200 can be configured to turn on automatically. This is useful for power outage recovery or if the unit is mounted in a hard to reach location. You can enable Auto Power On by following the steps listed below:
Power on the system and immediately press the F2 key a few times to access the BIOS.
Navigate over to the Power tab.
Change the option [Power On after Power Failure] to [S0 – Power on].
Navigate to the Exit tab and choose “Save Changes and Reset”
Opening the POC-200 does not void the manufacturer’s warranty. However, some precautions are necessary to avoid damaging the unit:
Perform this disassembly in an area free of static discharge
Before beginning, touch a grounded metal surface to discharge your body of static electricity
Unscrew 4x hex bolts on the top of the heatsink.
Unscrew 1x hex bolt from the side.
Unscrew four M3 F-head screws on the bottom side.
Slide the bottom cover off.
Pull the HDD out of its slot and remove the tray.
Remove the RAM by pressing outward on the two metal clips.
The module will pop up to a 45 degree angle and can be removed straight out of slot.
Locate the CMOS battery.
4. Remove the CMOS battery from the holder. 5. Wait 5 minutes. 6. Reinstall the battery. The CMOS is now clear. 7. Follow the instructions in reverse order to reassemble the unit.
As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
The auto power on feature will turn the POC-300 system back on after a power loss. This can be useful for automatic recovery after a power outage, or applications where the system’s power button is not easily accessible.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
Change the “Power On after Power Failure” option to “S0-Power On”
Navigate to the Exit tab.
Save Changes and Exit.
The unit will now automatically power on when power is connected.
Remove x4 screws shown
Remove additional x1 screw shown (near the power button)
Slide bottom plate away from chassis
If Optional MEZIO card is installed, remove x3 screws shown
Remove the RAM from the indicated slot by gently pressing the two metal clips outward away from the RAM.
The CMOS coin cell battery is located below the RAM.
Remove the coin cell battery.
Leave the battery out of the system for 5 minutes and then reinstall it.
The CMOS has now been cleared. Reassemble the unit and retest. The system may take several minutes, and may reboot several times to reconfigure itself. Be patient when powering it back on.
As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
The auto power on feature will turn the POC-500 system back on after a power loss. This can be useful for automatic recovery after a power outage, or applications where the system’s power button is not easily accessible.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
Change the “Power On after Power Failure” option to “S0-Power On”
Navigate to the Exit tab.
Save Changes and Exit.
The unit will now automatically power on when power is connected.
If the system fails to power on or is otherwise unresponsive, clearing the CMOS may help. It will also restore the BIOS to factory defaults.
If equipped with an external fan, remove the screws shown.
Unplug the fan connector and set the fan aside
Remove the screw shown
Remove the screws shown
Slide the bottom plate off.
Remove the two screws in the RAM heat-spreader.
Pull the heat-spreader off
Remove the RAM by gently pressing the two metal clips outward away from the RAM.
Remove the coin cell battery.
Leave the battery out of the system for 5 minutes and then reinstall it.
The CMOS has now been cleared. The system may reboot several times to reconfigure itself. Be patient when powering it back on.














As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
The auto power on feature will turn the system back on after a power loss. This can be useful for automatic recovery after a power outage, or applications where the system’s power button is not easily accessible.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
Change the “Power On after Power Failure” option to “S0-Power On”
Navigate to the Exit tab.
Save Changes and Exit.
The unit will now automatically power on when power is connected.
Opening the system does not void the warranty, however any damage caused during opening the system is not covered.
Unplug the system completely from power and all peripherals
Remove the screws shown
Remove the screws shown
Lift the cover up and then away
Unplug the system completely from power and all peripherals
Remove the screws shown
Gently press inward on the mesh in the spot shown.
Slide the cover up and away.
If the system fails to power on or is otherwise unresponsive, clearing the CMOS may help. It will also restore the BIOS to factory defaults.
Follow the disassembly steps for your system above. Make sure all cables (such as power, video, etc) are disconnected.
To clear the CMOS, locate and remove the coin cell battery
Leave the battery out of the system for 5 minutes and then reinstall it.
Reassemble your system.
The CMOS has now been cleared. The system may reboot several times to reconfigure itself. Be patient when powering it back on.
By default, the system should be configured to output video out of the graphics card (If equipped). If no video is outputted from the graphics card, try using the onboard DisplayPorts instead. If that works, use the steps below to change the primary display.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Advanced tab.
Open the “System Agent (SA) Configuration” menu
Open the “Graphics Configuration” menu
Change the “Primary Display” to IGFX to use the motherboard graphics, change to PEG to use the graphics card
If desired, set “Internal Graphics” to Enabled to utilize both the graphics card and onboard outputs.
Navigate to the Exit tab.
Save Changes and Exit.
As a certified OnLogic solution, all detailed product documentation, including user manuals, technical specifications, regulatory information, and software downloads, is available directly on the manufacturer support site linked below.
Power on the unit and immediately press the F2 key a few times to access the BIOS.
Navigate to the Power tab.
Change the “Power On after Power Failure” option to “S0-Power On”
Navigate to the Exit tab.
Save Changes and Exit.
The unit will not automatically power on when power is connected.
The Nuvo-5000 can be opened by the user. This does not void the warranty, however, any damage caused by doing so will not be covered.
Required tools: 5mm Hex Driver, P2 Phillips Driver
Unplug the system completely from power and all peripherals.
Unscrew four M3 flat-head screws and detach Cassette by pulling it up. NOTE: LP models do not have cassette. You may skip to step 3.
Unscrew all hex bolts on the front and back panel.
Remove both panels.
NOTE: Use caution is WiFi is installed as they are still attached by antenna wires.
Lift the bottom cover up a couple inches and gently unplug the SATA cables.
Set the bottom cover aside.
You now have complete access to the internals of the unit.
Make sure the system is unplugged completely from power and all peripherals.
Locate the CMOS battery.
Using your fingernail, push the golden retaining clip away from the battery to pop it loose.
Units equipped with the MezIO ignition timings card can be remotely turned on and off using the IGN pin on the power connector.
The timings are adjusted by a rotary switch inside the unit. To access the switch, perform the following steps:
Remove the 6x Hex bolts from this side of the unit only:
Remove the white plate to reveal the timings dial:
Using a small flathead screwdriver, carefully rotate the dial to the desired timings setting (see list below).
The following are timing settings that can be set on the Nuvo-5000
Mode 0
Mode 0 is the ATX mode without power-on and power-off delay. User can only use the power button on the front panel to turn on or turn off the Nuvo-5000 series system.
Mode 1
If Mode 1 is specified, the system automatically turns on the system when DC power is applied. A retry mechanism is designed to repeat the power-on cycle if the system is failed to boot up.
Mode 2
Mode 2 is a special mode designed to support remote on/off control. User can use an external latched switch to connect the DC source (8~35V) and IGN input. When the switch is closed, IGN signal is asserted to initiate a power on operation. When the switch is opened, IGN signal is de-asserted and system shutdown operation is initiated. Neither power-on delay nor power-off delay is supported in this mode.
Mode 3 ~ Mode 12
Mode 3 ~ Mode 12 are ignition power control modes with various power-on delay and power-off delay. Each mode supports a hard-off timeout of 10 minutes.
Mode 13/Mode 14
Mode 13 and Mode 14 are ignition power control modes with very long power-off delay. Both modes support the feature of “smart off-delay”, which automatically detect system status during power-off delay duration and cut off system power if system is off in prior to power-off delay expired.
To have ignition power control for in-vehicle usage, you need to supply IGN signal to Nuvo5000 series with MezIO-V20. The IGN input is located on the back panel via a 3-pin pluggable terminal block (shared with DC power input). Here is a general wiring configuration for in-vehicle deployment.
Connect car Battery+ line (12V for car, 24V for bus/truck) to V+.
Connect car Battery-/GND line to GND.
Connect ACC line to IGN.
Notes:
Please make sure your DC power source and IGN signal share the same ground.
IGN input of Nuvo-5000 series accepts 8~35VDC. Supplying a voltage higher than 35VDC may damage the system.
Below you will find Nuvo-5000 models and their respective additional resources. Look for your model on the right side and find the additional resources.
Motherboard Manual
Drivers
Motherboard Manual
Ignition Timings How-To
Drivers
Motherboard Manual
Internal USB Settings
Motherboard Manual
Drivers
Reinsert the battery and re-assemble the unit.
10 seconds
1 minute
10 minutes
5
10 seconds
5 minutes
10 minutes
6
30 seconds
1 minute
10 minutes
7
30 seconds
5 minutes
10 minutes
8
30 seconds
10 minutes
10 minutes
9
3 minutes
1 minute
10 minutes
A
3 minutes
10 minutes
10 minutes
B
3 minutes
30 minutes
10 minutes
C
10 minutes
30 minutes
10 minutes
3 minutes
2 hours
10 minutes
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
0
N/A
N/A
N/A
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
1
N/A
N/A
N/A
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
2
N/A
N/A
N/A
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
3
10 seconds
10 seconds
10 minutes
Mode
Power-on Delay
Power-off Delay
Hard-off Timeout
D
30 seconds
2 hours
10 minutes









4
E


















RGS-8805GC – Technical Resources
Product Manual (BIOS and Hardware)
Drivers
Remove 8 Black screws from Chassis to free the Cover. The cover will lift off and you will have access to the inside of the unit’s chassis.
With the lid removed you should see the below layout
Further disassembly steps are located in the product manual, starting on page 42.
To gain access to internal components, please refer to the section . Remove the punch-out panel for the PCIe card on the rear panel.
Take the PCIe card out of its box/ static bag, align and insert the goldfingers into the PCIe slot. There are two slots available, it is recommended to install into the bottom slot first.
Remove the screws (indicated in blue) on the side panel, and the remove the trap door (indicated in red).
Secure the PCIe card panel with a screw through the trap door
For a standard full-size PCIe card, there are L-shaped stopper brackets in the accessory box for securing the add-on card in place. Depending on the size of your add-on card, locate the appropriate screw-holes for placement. Secure two screws to position the stopper bracket in-place
Secure at least one L-shape bracket towards the middle or mid-rear end of the PCIe card to complete the add-on PCIe card installation.
Reinstall the system enclosure and panel when done. If you need to install other components, please refer to respective sections.
To access these slots on the board you will need to remove any PCIe card currently installed in the Full Length bay.
This option defines the behavior of System series when DC power is supplied.
To set “Power On after Power Failure” option:
When system boots up, press F2 to enter BIOS setup utility.
Go to [Power] > [Power On after Power Failure].
Scroll down to highlight [Power On after Power Failure], press ENTER to bring up setting options, S0 – Power On or S5 – Power Off, and press ENTER to select the setting.
In order to set auto-power on this unit you will need to turn the dial seen below to the corresponding position(Position 1).
A full list of the ignition timings can be found in the manual, starting on page 91.
Disconnect the unit from all power and other peripherals
Hold the RESET button for 30 seconds
Release the button and reapply power to the unit
















