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1 |
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System Status LED
indiciators |
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LED name |
State |
LED Color |
Description |
PI-PWR |
Solid on |
Red |
Indicates
that 5V power has been provided to the
compute module 4 (CM4) |
PI-ACT |
Blink |
Green |
Indicate the CM4 SD
card status and program activity |
PC-HDD |
Blink |
Green |
Reads the
status of PC HDD LED, indicates data reading
/writing |
PC-PWR |
Solid on |
Red |
Reads the
status of PC power LED, indicates PC power
supply OK |
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2 |
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RJ45 connector for ATX
control - pin description |
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Functions |
Name |
PIN# |
PIN# |
Name |
Functions |
Connect to PC reset switch |
RESET-SW |
1 |
2 |
RESET-SW |
Connect to PC reset
switch |
Connect to PC HDD LED- |
HDD LED- |
3 |
4 |
PWR-SW |
Connect to PC power
switch |
Connect to PC power switch |
PWR-SW |
5 |
6 |
HDD LED+ |
Connect to PC HDD LED+ |
Connect to PC power LED- |
PWR-LED- |
7 |
8 |
PWR-LED+ |
Connect to PC power
LED+ |
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1 |
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Locat a USB port on your
PC/server and connect to Raspberry Pi OTG connector
using the supplied USB-C to USB-A cable
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2 |
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Connect the monitor for local
operation– The HDMI pass-through transmits both
video and audio signals from your target host.
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3 |
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Locat a HDMI port on your PC/server and connect
using a HDMI cable A Male to A Male |
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4 |
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Connect to your network using an
Ethernet cable
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5 |
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Connect to the X630-A5 ATX
control PCI card using an Ethernet cale - Optional,
install inside the chassis |
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6 |
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Connect the
USB-C power supply (DC5V
3A), not required if
powering over Ethernet
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1 |
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X633 single-port IPKVM switch x1
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2 |
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Raspberry Pi 4 Model B x1
(all variants Compatible)
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3 |
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micro-SD card with preloaded
IPKVM OS x1
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4 |
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CR1220 coin battery x1 (For
Real-time clock)
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5 |
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HDMI cable A Male to A Male x2 (For
HDMI video)
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6 |
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Ethernet cable x2 (For network
and ATX control)
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7 |
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USB-C power supply (DC5V
3A), not required if
powering over Ethernet |
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8 |
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