Campbell Scientific CR1000KD CR1000 Measurement and Control System - Page 440

Adjusting Charging Voltage

Page 440 highlights

Section 10. Troubleshooting Charging Regulator with ac or dc Transformer Test Disconnect any wires attached to the 12V and G (ground) terminals on the PS100 or CH100 charging regulator. Unplug any batteries. Connect the power input ac or dc transformer to the two CHG terminals. Polarity of the inputs does not matter. Only the transformer should be connected. Set the charging-regulator power switch to OFF. Connect the transformer to mains power. Transformer Test Determine whether the transformer output is ac or dc voltage (labeling on the transformer usually identifies the output voltage type). Set a voltmeter to read that type of voltage. Measure transformer output across the two transformer leads by No placing a voltmeter lead on one CHG terminal, and the other lead on the other CHG terminal. Is the output 17 to 22 volts? Yes Taking care not to short the transformer leads, remove the leads from the charging regulator. Measure transformer output across No the two leads. Is the output 17 to 22 Vac / Vdc? Yes Reconnect the power source (transformer / solar panel) to the CHG terminals on the charging regulator. Measure the voltage No between the two CHG terminals. Is the voltage ≥ 17 Vdc / Vac? Yes The transformer is damaged and should be replaced. 5-kΩ Load Test 1) Place a 5-kΩ resistor between a 12V terminal and a G (ground) terminal on the charging regulator. 2) Switch the power switch to ON. No 3) Measure the DC voltage across the resistor. Is the measured voltage 13.3 to 14.1 V? Yes Measure the voltage between the two pins in a battery-connection receptacle. Is the voltage 10.0 to 15.5 Vdc? No Yes 50-Ω Load Test 1) Switch the power switch to OFF. 2) Disconnect the power source (transformer / solar panel). 3) Remove the 5-kΩ resistor 4) Place a 50-Ω, 1-Watt resistor between a 12V terminal and a G (ground) terminal on the charging regulator. 5) Reconnect the power source and then switch the power switch to ON. 7) Measure the voltage across the ends of the resistor. Is the voltage 13.0 to 14.0 Vdc (13.3 if circuit just adjusted)? 8) Switch the power switch to OFF. No NOTE The resistor will get HOT in just a few seconds. After measuring the voltage, switch the power switch to OFF and allow the resistor to cool before removing it. Yes See Adjusting Charging Voltage (p. 440) to calibrate the charging regulator, or return the charging regulator to Campbell Scientific for calibration. Obtain Repair Authorization The charging regulator is damaged and should be repaired or replaced. Test Completed The charger is functioning properly. Remove the 50-Ω resistor. 10.5.3.4 Adjusting Charging Voltage Note Campbell Scientific recommends that a qualified electronic technician perform the following procedure. The procedure outlined in this flow chart tests and adjusts PS100 and CH100 charging regulators. If a need for repair or calibration is indicated after following the procedure, see Warranty and Assistance (p. 3) for information on sending items to Campbell Scientific. 440

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Section 10.
Troubleshooting
440
Charging Regulator with ac or dc Transformer Test
Disconnect any wires attached to the 12V and G (ground) terminals on the PS100 or CH100 charging regulator.
Unplug any batteries.
Connect the power input ac or dc transformer to the
two CHG terminals.
Polarity of the inputs does not matter.
Only the transformer should be connected.
Set the charging-regulator power switch to OFF.
Connect the transformer to mains
power.
Transformer Test
Determine whether the transformer output is ac or dc voltage (labeling on the
transformer usually identifies the output voltage type).
Set a voltmeter to read that
type of voltage.
Measure transformer output across the two transformer leads by
placing a voltmeter lead on one CHG terminal, and the other lead on the other CHG
terminal.
Is the output 17 to 22 volts?
No
Taking care not to short the
transformer leads, remove the leads
from the charging regulator.
Measure transformer output across
the two leads.
Is the output 17 to 22
Vac / Vdc?
No
The transformer is damaged and
should be replaced.
Yes
Yes
Reconnect the power source
(transformer / solar panel) to the
CHG terminals on the charging
regulator.
Measure the voltage
between the two CHG terminals.
Is the voltage
17 Vdc / Vac?
No
Yes
5-k
Load Test
1) Place a 5-k
resistor between a 12V terminal and a G (ground) terminal on the
charging regulator.
2) Switch the power switch to ON.
3) Measure the DC voltage across the resistor.
Is the measured voltage 13.3 to 14.1 V?
No
Measure the voltage between the
two pins in a battery-connection
receptacle.
Is the voltage 10.0 to
15.5 Vdc?
No
Yes
Yes
See
Adjusting Charging Voltage
(p. 440)
to calibrate the charging
regulator, or return the charging
regulator to Campbell Scientific for
calibration.
50-
Load Test
1) Switch the power switch to
OFF
.
2) Disconnect the power source (transformer / solar panel).
3) Remove the 5-k
resistor
4) Place a 50-
, 1-Watt resistor between a
12V
terminal and a
G
(ground)
terminal on the charging regulator.
5) Reconnect the power source and then switch the power switch to
ON
.
7) Measure the voltage across the ends of the resistor.
Is the voltage 13.0 to 14.0 Vdc (13.3 if circuit just adjusted)?
8) Switch the power switch to
OFF
.
NOTE
The resistor will get HOT in just a few seconds.
After measuring the
voltage, switch the power switch to
OFF
and allow the resistor to cool before
removing it.
No
Obtain Repair Authorization
The charging regulator is
damaged and should be repaired
or replaced.
Yes
Test Completed
The charger is functioning properly.
Remove the 50-
resistor.
10.5.3.4 Adjusting Charging Voltage
Note
Campbell Scientific recommends that a qualified electronic technician
perform the following procedure.
The procedure outlined in this flow chart tests and adjusts PS100 and CH100
charging regulators.
If a need for repair or calibration is indicated after following
the procedure, see
Warranty and Assistance
(p. 3)
for information on sending items
to Campbell Scientific.