Agilent Technologies E3617A, E3614A, E3616A, E3615A Step Measure Response Probable Cause

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Table A-5. Low Output Voltage Troubleshooting (Cont’d)

STEP

ACTION

 

RESPONSE

 

PROBABLE CAUSE

 

 

 

 

4

Check voltage from pin 13 to

a. Measured voltage is positive.

a. Check U9A is defective.

 

pin 12 of U9.

b.

Measured voltage is negative.

b. Check U10 and U9D is defective.

 

 

 

 

 

Check R85 is open.

 

 

 

 

 

5

Check voltage from pin 6

a. Measured voltage is positive.

a.

U9B is defective.

 

to pin 5 of U9.

b.

Measured voltage is negative.

b.

Check U9C is defective.

 

 

 

 

 

 

Table A-6. Preregulator/Control Circuit Troubleshooting

STEP

 

 

MEASURE

 

RESPONSE

 

PROBABLE CAUSE

 

 

 

 

 

1

Set output voltage to 4.5 V +- 0.5 V for E3614A.

 

 

 

Set output voltage to 10 V +- 1 V for E3615A.

 

 

 

 

Set output voltage to 15 V +- 1 V for E3616A.

 

 

 

 

Set output voltage to 26 V +- 5 V for E3617A.

 

 

 

 

 

 

 

 

 

2

E3614A

 

Waveform form from

a.

Normal firing pulse

a. Check CR18, CR15, Q7, Q8

 

E3615A

 

TP6(common) to point 6

 

 

 

for defective.

 

 

 

 

b.

No firing pulse

b. Proceed to step 3.

 

 

 

 

 

 

 

 

E3616A

 

Voltage from TP6

a.

High voltage (+0.7 V)

a. CR15, CR18, U2, U21

 

 

 

(common) to point 6

 

 

 

defective

 

 

 

 

b. Low voltage (0 V)

b. Proceed to step 3.

 

 

 

 

 

 

 

3

Voltage from TP6(common) to

a.

Low voltage (-12 V)

a.

U3 defective

 

U4 pin 1

 

b.

High voltage (+5 V)

b. Proceed to step 4.

 

 

 

 

 

 

4

Voltage from TP6(common) to

a.

High voltage (+15 V)

a.

U4 defective

 

U5 pin 1

 

b.

Low voltage (-12 V)

b. Proceed to step 5.

 

 

 

 

 

 

5

Voltage from pin 6 to

a.

Measured voltage is positive.

a.

U5 defective

 

pin 7 of U5

 

b.

Measured voltage is negative.

b.

U6 defective

 

 

 

 

 

 

6

Set output voltage to 7 V +- 1 V for E3614A.

 

 

 

 

Set output voltage to 16 V +- 2 V for E3615A.

 

 

 

 

Set output voltage to 25 V +- 2 V for E3616A.

 

 

 

 

Set output voltage to 44 V +- 5 V for E3617A.

 

 

 

 

 

 

 

 

7

Waveform form from TP6

a.

Normal firing pulse

a. CR10, CR12, Q5, Q6

 

(common) to point 7

 

 

 

defective

 

 

 

 

b.

No firing pulse

b. Proceed to step 8.

 

 

 

 

 

 

8

Voltage from TP6(common)

a.

Low voltage (-12 V)

a.

U3 defective

 

to U4 pin 14

 

b.

High voltage (+5 V)

b. Proceed to step 9.

 

 

 

 

 

 

9

Voltage from TP6(common)

a.

High voltage (+15 V)

a.

U4 defective

 

to U5 pin 14

 

b.

Low voltage (-12 V)

b. Proceed to step 10.

 

 

 

 

 

 

10

Voltage from pin 8 to

a.

Measured voltage is positive.

a.

U5 defective

 

pin 9 of U5

 

b.

Measured voltage is negative.

b.

U6 defective

 

 

 

 

 

 

 

 

A-11

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Contents April Agilent E361xA 60W Bench Series DC Power SuppliesSafety Summary Operating Instructions General Information Meter Programming Resolution Operating Temperature RangeTemperature Coefficient Line FuseInstallation Data InstallationInput Power Requirements Initial InspectionPower Cord TURN-ON Checkout ProcedureOperating Instructions Connecting Loads Local Operating ModeOperating Modes Operation Beyond Rated OutputRemote Voltage Sensing Remote Operating ModesRemote Analog Voltage Programming Normal Parallel Operation MULTIPLE-SUPPLY OperationAUTO-PARALLEL Operation Gramming according to the remote-programming instructions Normal Series OperationTotal output voltage to ground must not exceed 240 Vdc AUTO-SERIES Operation= slave output voltage AUTO-TRACKING OperatonLoad Considerations Service Information Test Equipment Required MaintenanceOperation Verification Tests Performance Tests Type Required Characteristics USE Recommended ModelMeasurement Techniques Load Regulation Load Effect Constant Voltage CV TestsLine Regulation Source Effect Load Transient Response TimePardrms Measurement PARDRipple and NoisePARDPeak-to-Peak Measurement CV Drift Stability Constant Current CC TestsCC Drift Stability Adjustment and Calibration ProcedureOverall Troubleshooting Procedure TroubleshootingReference and Bias Circuit Regulating Loop TroublesOvervoltage Protection Circuit Troubles Symptom Checks and Probable CausesStep Action Response Probable Cause Step Measure Response Probable Cause Replaceable Parts Table A-10. Replaceable Parts List Table A-10. Replaceable Parts List Contd R28,111 0698-3228 Resistor 49.9K +-1% .125W TF TC=0+-100 RESISTOR-VAR 10K +-10% ALL IC V RGLTR-FXD-POS 4.8/5.2V TO-220 PKG ALL DIODE-GEN PRP 180V 200MA DO-35 ALL Table A-11. Component Value Model Page Page Page Page Manual Supplement T E Constant Voltage ModeProgramming Voltage Common to the Minus Output Alternative Voltage Programming Using ResistorsProgramming Voltage Common to the Minus Output Constant Current with Voltage Programming Constant Current ModeCurrent Monitoring Remote Resistor Programming, Constant Voltage Remote Resistor Programming ConnectionsRemote Resistor Programming, Constant Current Certification Declaration of Conformity