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Trove AMAG M4000 Kits
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OUTPUT 1 OUTPUT 2 OUTPUT 3 OUTPUT 4 OUTPUT 5 OUTPUT 6 OUTPUT 7 OUTPUT 8
NC C NO COM NC C NO COM NC C NO COM NC C NO COM NC C NO COM NC C NO COM NC C NO COM NC C NO COM
IN GND IN GND IN GND IN GND
IN GND IN GND IN GND IN GND
1 2 3 4
5 6 7 8
INPUT
TRIGGER
10A 250V
+INP- T + RET-
NO C NC
FACP INTERFACE
Power Control
- + -
+
F1 F2 F3 F4 F5 F6 F7 F8
MAIN
TRG
FACP
1 2 3 4
O N
1 2 3 4
O N
Altronix
ACM8
+ INP1
--
DM1 +
OFF
IN1
IN2
Out1
<
1 off
2>
DM1 +
DM2 +
DM2 +
Common (--- )
Common (--- )
+ INP2
--
IN2 Fuse
IN1 Fuse
Common Power Outputs (NEG)
N
P
OUT1
OUT2
OUT3
OUT4
OUT5
OUT6
OUT7
OUT8
1
2
3
4
5
6
7
8
10
10
3
3
3
3
3
3
3
3
Out2
<
1 off
2>
Out3
<
1 off
2>
Out4
<
1 off
2>
Out5
<
1 off
2>
Out6
<
1 off
2>
Out7
<
1 off
2>
Out8
<
1 off
2>
Altronix PDS8
VR6 mounted under PDS8
AMAG
M4000
AMAG
M4000
NC C NO NC C NO
AC FAIL
BAT FAIL
TRIGGER
AC DC
AC1
EOL
NO
GND
SUPERVISED
RESET
+AUX-
- BAT
+-
DC
+
L G N
OFF - 24V
ON - 12V
ON
Altronix
eFlow6NB
T2AGK3F8: Configuration of AMAG M4000 Modules:
1. Align the AMAG M4000 modules on the backplane to match the boards’ mounting holes with corresponding pems.
2. Fasten standoffs (provided) onto metal pems (Fig. 2a, pg. 3).
3. Mount AMAG M4000 modules to standoffs utilizing pan head screws (provided) (Fig. 2a, pg. 3).
4. Fasten TAG2 backplane to Trove2 enclosure utilizing hardware (provided).
Fig. 2
Pem
Standoff
AMAG M4000
Module
Backplane
Pan Head
Screw
Fig. 2a