Agilent Technologies 6015A, 6010a, 6011A, 6012B service manual Schematic Diagram Notes, 115

Page 115

SCHEMATIC DIAGRAM NOTES

1.ALL RESISTORS ARE IN OHMS, ± 5%, 1/4W, UNLESS OTHERWISE INDICATED.

2.ALL CAPACITORS ARE IN MICROFARADS, UNLESS OTHERWISE INDICATED.

3.WHITE SILKSCREENED DOTS ON P. C. BOARDS INDICATE ONE OF THE FOLLOWING.

A.PIN 1 OF AN I. C. (EXCEPT FOR U18 SEE NOTE 4 ).

B.POSITIVE END OF A POLARIZED CAPACITOR.

C.CATHODE OF A DIODE OR THE EMITTER OF A TRANSISTOR.

4.PIN LOCATIONS FOR SEMICONDUCTORS ARE SHOWN BELOW:

5.ON VOLTAGE REGULATOR DEVICES:

REF SUPPLY BIAS FOR REGULATORS INTERNAL REFERENCE. REF = OUTPUT FROM REGULATORS INTERNAL REFERENCE. BOOST OUTPUT = CONTROL FOR EXTERNAL PASS TRANSISTOR. CS = CURRENT SENSE.

CL = CURRENT LIMIT.

INV = INVERTING INPUT TO REGULATORS ERROR AMPLIFIER.

NI = NON-INVERTING INPUT TO REGULATORS ERROR AMPLIFIER. COMP = FREQUENCY COMPENSATION.

115

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Contents Autoranging DC Power Supply Agilent Models 6010A, 6011A Certification Safety Summary Safety Symbol Definitions Table of Contents Replaceable Parts Scope TroubleshootingCircuit Diagrams Safety ConsiderationsItem Description Manual RevisionsOperation Verification Tests Calibration ProcedureIntroduction Test Equipment RequiredTest Equipment Required Type Required Characteristics USE Recommended Model4KVA Calibration Procedure Initial SetupMON Vout Display SettingsIout Common Mode Setup Measurement Techniques Performance TestsCR4 Current-Monitoring Resistor Setup Constant Voltage CV Tests Basic Test SetupPage RMS Measurement Test Setup, CV Pard Test Peak-To-Peak Measurement Test Setup, CV Pard Test Not Applicable 6010A 6011A6012B 6015A 6010A 6011A 6012B 6015A Load Transient Recovery WaveformConstant Current CC Tests Page CC Pard Test Setup Initial Troubleshooting Procedures TroubleshootingVdc Control Board Test Connector, A2J7Electrostatic Protection Repair and ReplacementA4 FET Board Removal A2 Control Board RemovalA3 Front Panel Board Removal A5 Diode Board RemovalA1 Main Board Removal A1 Designator Wire color A3S1 Position Rear View Overall Troubleshooting ProcedureA3 Front Panel Assembly Rear View Main Troubleshooting Setup Using the TablesMain Troubleshooting Setup Modified Mains Cord Set For Troubleshooting Front Panel Troubleshooting Troubleshooting No-Output FailuresA2J7-26 A2J7-25 A3 Front Panel Board Failure Symptoms Troubleshooting Bias SuppliesPerformance Failure Symptoms Node + N0DE Node +Troubleshooting AC-Turn-on Circuits Power Section Blocks+ OUT Troubleshooting PWM & ClockAC Fault Relay EnablePWM-OFF Troubleshooting DC-To-DC ConverterTroubleshooting Down Programmer PWM-ONWaveforms OFF Troubleshooting CV CircuitTroubleshooting CC Circuit ON/OFFSET Voltage Setup Measurement Troubleshooting OVP CircuitPage Overview Autoranging PowerSystem Description Regulation & Control Subsystem A and 6015A Simplified Schematic A and 6012B Simplified Schematic Operation Quick Reference Guide to Major Circuits Major FunctionInput from Output to DP PWM PWM DPProtection Subsystem Input Power SubsystemOutput Subsystem DC Power Conversion SubsystemFront Panel Board Page Simplified Front Panel Schematic Reference Designators Replaceable PartsDescription Abbreviations Ordering InformationMain Board Assembly CR5 CB1CR1 CR2A1 Mechanical VR16010A C37 6010A, 6011A, 6015A Not Used Not Used Not Used Page Not Used VR5 VR2VR6 TB2 TB1Not Used Agilent Model VR1 VR2Drvr TTL NOR Dual TS1CR6 CR3FET N-CHAN A5 Mechanical A6 Mechanical Chassis Electrical Not Used Schematic Diagram Notes Component Location and Circuit DiagramsIndicate number of paths represented by the line Top View, Top Covers Removed Main Board A1 and Filter Board A6 Component Location Control Board A2 Component Location Front Panel Board A3 Component Location FET Board A4 Component Location Diode Board A5 Component Location Page Page Page Page General Information SpecificationsOption 002 Hardware Accuracy Table A-1. Specifications, Option Remote ProgrammingInput Compliance Voltage ± Current Programming Enable Status IndicatorsOn State logic low Remote Trip and Remote Reset TimingPower-on Preset Maximum Output Voltage logic high +Pard Typical Table A-1. Specifications, Option Pulse TimingBias Supplies DC Output Ratings 25C ± Short Circuit Output CurrentConnector Assembly Procedure InstallationOperation Figure A-1. Mating Connector AssemblyLocal/Remote Programming Resistance Voltage or Current Figure A-4. Calculating Value of Series Dropping Resistor Remote Resistance ProgrammingFigure A-5. Remote Resistance Programming 101 Remote MonitoringRemote Control Status Indicators102 Overvoltage Remote Reset103 104 Power-On PresetMultiple Supply System Shutdown AC Dropout Buffer Circuit105 Bias Supplies Maintenance106 Troubleshooting Current Programming Troubleshooting Resistance and Voltage Programming107 108 Figure A-11. Troubleshooting Current Programming of CV Mode109 Figure A-13. Troubleshooting Status Indicators110 111 Table A-3. Replacement Parts112 113 VR9Indicator and Qualifier Symbols Logic Symbols and Definitions114 115 Schematic Diagram NotesFigure A-15. Option 002 Board, Component Location 116 Schematic NotesFigure A-16. Option 002 Board, Schematic Diagram 117 Page Model 6011A Change Model 6010A Change119 Model 6015A Change Model 6012B Change120 121 Delete122 123 124 125 DS5126
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6015A, 6012B, 6011A, 6010a specifications

Agilent Technologies, a leader in the field of measurement and analysis, offers a suite of instruments within its 6010 and 6011 series, specifically the 6010A, 6011A, 6012B, and 6015A models. These devices are designed to meet the needs of various industries, including healthcare, environmental monitoring, and materials testing.

The Agilent 6010A is a high-performance spectrometer known for its precision and versatility. It utilizes advanced optical technologies to provide exceptional wavelength accuracy and resolution. This model is particularly useful in laboratories where reliable data is critical, offering a wide spectral range and effective noise reduction features. Its user-friendly interface simplifies complex analyses, making it suitable for both seasoned professionals and newcomers.

Following closely, the Agilent 6011A is recognized for its robust capabilities in laboratory environments. This device incorporates advanced signal processing techniques, enabling high-throughput measurements without compromising on quality. The 6011A is ideal for real-time monitoring applications, ensuring that users can make informed decisions based on accurate, timely data. Its comprehensive software suite is designed to enhance data analysis, allowing for seamless integration with existing laboratory workflows.

The 6012B variant enhances the functionality further by introducing additional features tailored for specific applications. With a focus on flexibility, the 6012B supports multiple measurement modes, including direct and differential detection. This model excels in complex measurements, allowing for greater analytical depth and insights. The built-in calibration options ensure consistent performance, making it a reliable choice for various research and development tasks.

Lastly, the Agilent 6015A model stands out with its leading-edge technology, designed for the most demanding applications. It boasts enhanced sensitivity and an improved dynamic range, making it perfect for trace analysis in challenging environmental samples. The 6015A’s advanced reporting tools provide detailed analytics, helping scientists and researchers interpret results efficiently. Its compact design also makes it suitable for laboratory spaces with limited room, without sacrificing performance.

Together, these models showcase Agilent Technologies' commitment to delivering high-quality, innovative solutions that empower users to achieve their analytical goals effectively and efficiently. Whether in a research, clinical, or industrial setting, the 6010A, 6011A, 6012B, and 6015A continue to set standards in precision instrumentation.