Physical Values
|
Terminal No. (Wire color) |
Description |
Condition |
Value (Approx.) |
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|
+ |
- |
Signal name |
Input/Output |
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|
1 (W) |
5 (B) |
AC output 2 |
Output |
Ignition switch ON |
AC 120V outlet main switch OFF |
0V |
|
AC 120V outlet main switch ON (Using circuit tester) |
AC 120V |
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|
AC 120V outlet main switch ON (Using oscilloscope) |
Reference value AC 120V |
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|
4 (W) |
Ground |
Battery power supply |
Input |
Ignition switch OFF |
Battery voltage |
|
|
5 (B) |
1 (W) |
AC output 1 |
Output |
Ignition switch ON |
AC 120V outlet main switch OFF |
0V |
|
AC 120V outlet main switch ON (Using circuit tester) |
AC 120V |
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|
AC 120V outlet main switch ON (Using oscilloscope) |
Reference value AC 120V |
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|
6 (W) |
Ground |
AC 120 V outlet main switch |
Input |
Ignition switch ON |
AC 120V outlet main switch OFF |
0V |
|
AC 120V outlet main switch ON |
12V |
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|
7 (G) |
AC 120 V outlet main switch |
Output |
Ignition switch ON |
AC 120V outlet main switch OFF |
0V |
|
|
AC 120V outlet main switch ON |
5.2V |
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|
8 (B) |
Ground |
-- |
Ignition switch ON |
0V |
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- To measure AC 120V output signal, always use the circuit tester or oscilloscope AC range.
Never allow the probes to contact each other.
- Because of modified sine wave output of the AC 120V output signal, voltage cannot be measured accurately without using a circuit tester that can measure true RMS (root mean square).