Agilent Technologies 6051A Wartungshandbuch

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SERVICE MANUAL
Multiple Input
Electronic Load
Mainframes
Agilent 6050A and 6051A
Part No. 06050-90003
Service Manual
For instruments with Serial Numbers:
Agilent 6050A US37140101 and Above
Agilent 6051A US37140101 and Above
For instruments with higher Serial Numbers,
a change page may be included.
For instruments with lower Serial Numbers,
refer to Appendix A.
Microfiche Part No. 06050-90004 Edition 1 Printed: November, 1989
Edition 2 Printed: January, 1992
Edition 3 Printed: November, 1999
Seitenansicht 0
1 2 3 4 5 6 ... 115 116

Inhaltsverzeichnis

Seite 1 - Agilent 6050A and 6051A

SERVICE MANUALMultiple Input Electronic LoadMainframesAgilent 6050A and 6051APart No. 06050-90003Service ManualFor instruments with Serial Numbers:Agi

Seite 2 - ASSISTANCE

10GPIB BoardThis assembly contains static sensitive components. Observe all standard electrostatic procedures whenremoving or replacing the GPIB board

Seite 3 - SAFETY SUMMARY

96 Replaces page 35Table 3-10 Secondary Microprocessor Signature AnalysisDescription: These signatures check secondary microprocessor U301 and latche

Seite 4

Replaces page 36 97Table 3-11. Main DAC, Transient DAC, Data Bus Sign

Seite 5 - Table Of Contents

98 Replaces page 37Table 3-12. Transient Generator Signature Analysis (Secondary)Description: These signatures check transient generator IC's

Seite 6

Replaces page 38 99Table 3-13. Readback, Slew Rate, Analog Switch Sign

Seite 7 - Introduction

100 Replaces page 39Table 3-14. Chip Select, Status Readback, EEPROM Decoder Signature Analysis (Secondary)Description: These signatures check the c

Seite 8 - Safety Considerations

101 Replaces page 41First, check that the SA waveforms shown on Figure 3-3 are correct. If these waveforms are not correct, check the SD0-7data bus l

Seite 9 - Disassembly Procedures

102 Replaces page 42SLEW RATE SWITCH SETTINGSRefer to Module Operating Manual for Slew Rate Steps Slew Rate SLW1 SLW2 SLW3 SLW4#1HI HI LO HI#2HI L

Seite 10 - LCD Display and Window

Replaces page 43-45 103Figure 3-4. Slew Circuits Troubleshooting

Seite 11 - Line Switch

104 Replaces page 46Figure 3-5. CC/CV Control Circuits Troubleshooting

Seite 12 - Transformer (on mainframe)

Replaces page 47 105Input Power Stages Troubleshooting (Figure 3-6)There

Seite 13 - Troubleshooting

11• When reinstalling the cable, be sure to line up the cable stripe over the hole marked with a square. Also, make sure thepins are all properly ali

Seite 14

106 Replaces page 48Transient Generator Troubleshooting (Figure 3-7)The transient generator (U310-U316) allows the input power stages to switch betwee

Seite 15

Replaces page 49 107Figure 3-7. Transient Generator Troubleshooting

Seite 16

108 Replaces page 54Overcurrent Circuit Troubleshooting (Figure 3-9)This circuit limits the maximum current the load can sink for different input volt

Seite 17

Replaces page 55 109Figure 3-9. Overcurrent Circuit TroubleshootingOverpo

Seite 18

110 Replaces page 56Figure 3-10. Overpower Circuit Troubleshooting

Seite 19 - Secondary Circuits

111IndexBBias supplies...

Seite 20 - SECONDARY PART 2 ERRORS

112Manual backdating...

Seite 21 - Test Points

12Note: On the Agilent 60504B/07B modules you must first disassemble the heatsink before you can access thedefective subassembly. First remove the thr

Seite 22

133TroubleshootingMost of the procedures described here are performed with power applied and protective covers removed.These procedures should be done

Seite 23

14Table 3-1 Test Equipment Required for TroubleshootingType Purpose Recommend ModelGPIB Controller Communicate with the load via the GPIB HP9825, Ser

Seite 24 - Firmware Revisions

15• Keep the work area free of non-conductive objects such as Styrofoam-type cups, polystyrene foam polyethylene bags,and plastic wrappers. Non-condu

Seite 25 - Test Header Jumper Positions

16Figure 3-1. Overall Troubleshooting Flowchart (Sheet 1 of 3)

Seite 26

17Figure 3-1. Overall Troubleshooting Flowchart (Sheet 2 of 3)

Seite 27

18Figure 3-1. Overall Troubleshooting Flowchart (Sheet 3 of 3)

Seite 28

19Primary CircuitsThe turn-on selftest sequence of the primary microprocessor consists of two parts:1. The selftest is performed by the primary micro

Seite 29

CERTIFICATIONAgilent Technologies certifies that this product met its published specifications at time of shipment from the factory. AgilentTechnologi

Seite 30

20Table 3-2. Selftest Error CodeCode Error Description ProcedurePRIMARY PART 2 ERRORS-4 The primary microprocessor U203 read/write test tothe GPIB tal

Seite 31

21Test PointsTable 3-3 lists test points that are referred to in many of the troubleshooting procedures. Each test point is identified by acircled num

Seite 32

22Table 3-3. Test Points (continued)Test PointNumberSignal Measurement and Conditions U308-1CV PROG In VOLT MODE, + 10V with full rated voltage progr

Seite 33

23Table 3-3. Test Points (continued)Test PointNumberSignal Measurement and Conditions cath-D17+ OV + 14V when OV condition is false (normal). -13V wh

Seite 34

24Signature AnalysisNote: You cannot use signature analysis to troubleshoot units with the following serial numbers:Agilent 6050A: 3714A05433 and up;

Seite 35

25Test Header Jumper PositionsThe Electronic Load mainframe contains a primary test header (TP201) located on the GPIB Board, and each modulecontains

Seite 36

26The following paragraphs describe the setups for troubleshooting the mainframe GPIB Board, and the Control Board andPower Board in the load modules.

Seite 37

27AC mains voltage is present on exposed pins on the top edge of the mainframe GPIB Board and eachmodule whenever the unit is turned on.a. Carefully

Seite 38

28Figure 3-2. Signature Analysis Setup

Seite 39

29Table 3-4. Primary Microprocessor Signature AnalysisDescription: These signatures check primary microprocessor U203, ROM U205, and RAM U206. The si

Seite 40

SAFETY SUMMARYThe following general safety precautions must be observed during all phases of operation, service and repair of thisinstrument. Failure

Seite 41

30Table 3-5. GPIB Interface Signature Analysis (Primary)Description: These signatures check the GP-IB talker/listener IC U202. The signatures are val

Seite 42 - SLEW RATE SWITCH SETTINGS

31Table 3-6. Front Panel Interface Signature Analysis (Primary)Description: These signatures check the front panel interface IC's U246 U209, U21

Seite 43

32Table 3-7. Trigger Circuit Signature Analysis (Primary)Description: These signatures check the operation of the primary trigger circuits. The signa

Seite 44

33Table 3-7. Trigger Circuit Signature Analysis (Primary) continuedU228 - connect CLOCK = TP201-16 (CS7)U228-1 = UFP6 +5V U228-11 = OOOO Pulsing LOU2

Seite 45

34Table 3-9. Fan Speed Control Signature Analysis (Primary)Description: These signatures check the fan speed control circuits. Connect the signature

Seite 46

35Table 3-10. Secondary Microprocessor Signature AnalysisDescription: These signatures check secondary microprocessor U301 and latches U302 and U330

Seite 47 - Transient Generator Frequency

36Table 3-11. Main DAC, Transient DAC, Data Bus Signature Analysis (Secondary)Description: These signatures check main DAC U320, transient DAC U32

Seite 48

37Table 3-12. Transient Generator Signature Analysis (Secondary)Description: These signatures check transient generator IC's U350 through U35

Seite 49

38Table 3-13. Readback, Slew Rate, Analog Switch Signature Analysis (Secondary)Description: These signatures check the readback DAC U322, slew rate

Seite 50 - Toggle or Pulse Modes

39Table 3-14. Chip Select, Status Readback, EEPROM Decoder Signature Analysis (Secondary)Description: These signatures check the chip select IC U304

Seite 51 - Internal Timer Triggers

DO NOT CIRCUMVENT SAFETY DEVICES.AC mains power exists on exposed terminals in various locations in the mainframe and on the load modules. To protect

Seite 52 - External Triggers

40Figure 3-3. DAC Circuits Troubleshooting

Seite 53

41If the unit has failed selftest by reporting an error 105-108 at turn-on and no problem can be found using SA, the IMONadjustment may be at fault.

Seite 54

42SLEW RATE SWITCH SETTINGS Refer to Module Operating Manual for Slew Rate Steps Slew Rate SLW1 SLW2 SLW3 SLW4#1 HI HI LO HI#2 HI LO LO HI#3 LO HI L

Seite 55

43Figure 3-4A. Slew Circuits Troubleshooting for 60501B

Seite 56

44Figure 3-4B. Slew Circuits Troubleshooting for 60502B/04B/07B

Seite 57

45Figure 3-4C. Slew Circuits Troubleshooting for 60503B

Seite 58

46Figure 3-5. CC/CV Control Circuits Troubleshooting

Seite 59 - EEPROM Initialization

47Input Power Stages Troubleshooting (Figure 3-6)There are four, eight or sixteen identical input power stages (depending on the module) connected in

Seite 60

48FSEL TABLEFront Panel FSEL INPUTSinterval between 1µµµµs pulsesFrequency 0 1 2 @U350-14 @U351-1410000Hz LO LO LO LO50µs1000Hz HI LO LO10µs 500µs100

Seite 61 - Principles Of Operation

49Figure 3-7. Transient Generator Troubleshooting

Seite 62 - Control Board Circuits

5Table Of ContentsIntroduction ...

Seite 63

50Toggle or Pulse ModesTo check the transient generator in toggle and pulse modes, run the following program:10 LOOP20 OUTPUT 705;"TRAN ON;:TRAN:

Seite 64

51Trigger Circuit Troubleshooting (Figure 3-8)The Multiple Electronic Load can be triggered over the HPIB using the GET function, the *TRIG common com

Seite 65

52Level Triggers (*TRG and TRIG command)The following program continuously toggles all labeled signal lines in Figure 3-8 in the indicated direction.1

Seite 66 - Power Board Circuits

53Figure 3-8. Trigger Circuit Troubleshooting

Seite 67

54Overcurrent Circuit Troubleshooting (Figure 3-9)This circuit limits the maximum current the load can sink for different input voltages and/or power

Seite 68

55Figure3-9. Overcurrent Circuit TroubleshootingOverpower Circuit Troubleshooting (Figure 3-10)This circuit limits the power sinking capability of th

Seite 69 - Replaceable Parts

56Figure 3-10. Overpower Circuit TroubleshootingFan Speed Control Troubleshooting (Figure 3-11)Use extreme caution when troubleshooting the GPIB boar

Seite 70

57Checking the waveform across U242 pins 4-6 involves circuits that are connected to the ac mains. To lessenthe danger of personal injury, the mainfra

Seite 71

58Figure 3-11. Fan Speed Control Circuit Troubleshooting

Seite 72

59Post Repair CalibrationCalibration is required annually and whenever certain components are replaced. If certain control board components(U13-16, U3

Seite 73

6Post Repair Calibration...

Seite 75

614Principles Of OperationIntroductionFigure 4-1 is a block diagram illustrating the major circuits and signals within the Electronic Load. Each block

Seite 76

62the ac line-synchronization signal derived from the Bias Supply circuits. TRIG_IN is derived from the external triggersignal connected to the rear p

Seite 77

63Figure 4-1. Block Diagram (Sheet 1 of 3)

Seite 78

64Figure 4-1. Block Diagram (Sheet 2 of 3)

Seite 79

65Figure 4-1. Block Diagram (Sheet 3 of 3)

Seite 80 - Diagrams

66Power Board CircuitsThe CV Control circuit compares CV_PROG, which represents what the input voltage should be, to VMON*, whichrepresents what the i

Seite 81

67Figure 4-2. Module/Mainframe Communication

Seite 83 - Figure 6-1. Keypad Wiring

695Replaceable PartsIntroductionTable 5-4 lists the electrical components and Table 5-5 lists the mechanical components for the Agilent 6050A/6051AEle

Seite 84 - Ex: : CAL_LOCK

71IntroductionScopeThis manual contains information for troubleshooting and repairing the Electronic Load mainframe and modules to thecomponent level.

Seite 85

70Table 5-2. Part Description AbbreviationsAL Aluminum PE PolyesterCC Carbon Composition PD Power DissipationCER Ceramic PP PolypropyleneDIP Dual In-

Seite 86

71Table 5-4. Agilent 6050A/6051A Parts List - ElectricalRef.Desig.HPPart No. DescriptionMfr.CodeMfrPart No.A3 5063-3440GPIB BOARD ASSEMBLY28480C201 0

Seite 87

72Table 5-4. Agilent 6050A/6051A Parts List - Electrical (continued)Ref.Desig.HPPart No. DescriptionMfr.CodeMfrPart No.L200,201 06050-80002 CHOKE, RF

Seite 88

73Table 5-4. Agilent 6050A/6051A Parts List - Electrical (continued)Ref.Desig.HPPart No. DescriptionMfr.CodeMfrPart No.R276 0683-1815 RESISTOR 180 5%

Seite 89 - Manual Backdating

74Table 5-4. Agilent 6050A/6051A Parts List - Electrical (continued)Ref.Desig.HPPart No. DescriptionMfr.CodeMfrPart No.TP201 1251-4927 CONNECTOR-POST

Seite 90

75Table 5-4. Agilent 6050A/6051A Parts List - Electrical (continued)Ref.Desig.HPPart No. DescriptionMfr.CodeMfrPart No.06050-600026050A FRONT PANEL A

Seite 91

76Table 5-5. Agilent 6050A/6051A Parts List - Mechanical (continued)Ref.Desig.HPPart No.QuantityDescriptionFRONT PANEL ASSEMBLYMP11 5040-5448 1 WINDO

Seite 92

77Table 5-5. Agilent 6050A/6051A Parts List - Mechanical (continued)Ref.Desig.HPPart No.QuantityDescriptionMP326050A 06050-00012 1 SHROUD-FAN6051A 06

Seite 93

78Figure 5-1. Mechanical Parts Locations

Seite 94

79Figure 5-1. Mechanical Parts Locations

Seite 95

8Safety ConsiderationsThe Electronic Load is a Safety Class 1 instrument that has a protective earth terminal. Refer to the Safety Summary page atthe

Seite 96

806DiagramsIntroductionThis chapter contains the test point and component location diagram, schematic diagrams, and related tables useful formaintenan

Seite 97 - Later "A" Modules

81Table 6-1. Signal-Name DescriptionsMnemonic Function Sheet 1 Sheet2Sheet 3GPIB BOARDCAL_LOCK Software-calibration lockout (D)8C4ACLR Initialize tran

Seite 98

82Table 6-1. Signal-Name Descriptions (continued)Mnemonic Function Sheet 1 Sheet 2 Sheet 3PTX1 \5B, 8APTX2 |5B, 8APTX3 |5B, 8APTX4 |---- Se

Seite 99 - Test Point

83Figure 6-1. Keypad WiringTable 6-2. Component LocationsCOORDINATES COORDINATES COORDINATES COORDINATES COORDINATES COORDINATES COORDINATES"A&

Seite 100 - Description:

84Table 6-3. Schematic Diagram Notes1. All resistors are in ohms ±1%, 1/8 W, unless otherwise specified.2. All capacitors are in microfarads unless ot

Seite 105 - 101 Replaces page 41

85AManual BackdatingThis section describes changes that must be made to the manual so that it applies to instruments with serial numbers lowerthan tho

Seite 106 - CC EN_ signal

9 2Disassembly ProceduresIntroductionThe following procedures will make it easier for you to disassemble major components on the Electronic Load main

Seite 107

86Table 3-4. Primary Microprocessor Signature AnalysisDescription: These signatures check primary microprocessor U203, ROM U205, and RAM U206. The si

Seite 108 - 104 Replaces page 46

87Table 3-5. GPIB Interface Signature Analysis (Primary)Description: These signatures check the GP-IB talker/listener IC U202. The signatures are val

Seite 109

88Table 3 6. Front Panel Interface Signature Analysis (Primary)Description: These signatures check the front panel interface IC's U246 U209, U21

Seite 110

89Table 3-7. Trigger Circuit Signature Analysis (Primary)Description: These signatures check the operation of the primary trigger circuits. The signa

Seite 111

90Table 3-7. Trigger Circuit Signature Analysis (Primary) continuedU228 - connect CLOCK = TP201-16 (CS7)U228-1 = UFP6 +5V U228-11 = OOOO Pulsing LOU2

Seite 112 - 108 Replaces page 54

91Description: These signatures check the fan speed control circuits. Connect the signature analyzer's clock input to theIC under test as specif

Seite 114 - 110 Replaces page 56

93B"A" Load Modules TroubleshootingThis section describes the changes that must be made to the troubleshooting procedures in section 3 of th

Seite 115

94 Replaces page 22Table 3-3. Test Points (continued)Test PointNumberSignal Measurement and ConditionsU308-1CV PROG In VOLT MODE, + 10V with full rat

Seite 116

Replaces page 23 95Table 3-3. Test Points (continued)Test PointNumberS

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