Agilent Technologies 6834B, 6814B, 6843A manual Procedure Display Explanation, Volt, Protclear

Page 27

Turn-On Checkout - 3

Make sure that the unit is turned off, and make the following connections to the output. If you are verifying a single phase source, you only need to connect one bulb.

Figure 3-1.Verification Connections

 

Procedure

Display

Explanation

1.

Turn the unit on.

Meter mode

Meter mode is active and the Dis annunciator should be

 

 

 

on.

2.

Press the Voltage key.

VOLT

0.00

3.

Press Phase Select

VOLT

0.00

 

until only φ1 is lit.

 

 

Display indicates the default settings.

If you are verifying a three phase source , all phase annunciators should be on.

Single phase units use only phase 1.

4.

Press 1, 2, 0, Enter

VOLT 120

Programs the output on phase 1 to 120 Vrms. After the

 

 

 

value is entered, the display returns to Meter mode,

 

 

 

which indicates that no voltage is applied to the output.

5.

Press Output On/Off

120 V 60 Hz

Turns the output on and applies 120 volts to the phase 1

 

 

 

light bulb. The Dis annunciator should be off and CV

 

 

 

should be on.

If you are verifying three phase sources, repeat steps 2 through 4 for phase 2 and phase 3. All three light bulbs should be lit when this action is complete.

Continue with step 6 of you are verifying three phase sources. Otherwise skip to step #10.

6.

Press the Voltage key.

VOLT

120

 

7.

Press Phase Select

VOLT

120

 

 

until all phase

 

 

 

 

annunciators are lit

 

 

 

8.

Press 0, Enter

VOLT 0

Turns off all light bulbs connected to the three-phase

 

 

 

 

source.

9.

Press Voltage 1, 2, 0,

VOLT

120

Turns on all light bulbs connected to the three-phase

 

Enter

 

 

source.

10.

Press Protect

PROT:CLEAR

Display accesses the protection menu list.

27

Image 27
Contents User’s Guide AC Power Solutions Agilent Models 6814B, 6834B, and 6843ACertification Warranty InformationGeneral Safety SummarySafety Symbols EMC DeclarationPrinting History Acoustic Noise InformationTable of Contents Entry Keys Examples of Front Panel Programming Specifications Supplemental CharacteristicsPerforming the Calibration Procedure Error Number ListDocument Orientation TopicLocation Agilent Part Number Safety ConsiderationsOptions, Accessories, and User Replaceable Parts Option DescriptionDescription CapabilitiesModel Description Output Characteristic Front Panel/Remote OperationRanges Output VA Capability AC Source Output Characteristic in real-time modePage Items Supplied CleaningInspection Damage Packaging MaterialNot block the fan exhaust at the rear of the unit LocationBench Operation Rack MountingInstalling the Power Cord Input ConnectionsInput Source and Line Fuse Output Connections Output ConnectionsAmpacity and Resistance of Stranded Copper Conductors Wire ConsiderationsVoltage Drops Current RatingsRemote Sense Connections Remote Sense ConnectionsOutput Rating Trigger ConnectionsDigital Connections OVP ConsiderationsController Connections Gpib ConnectorRS-232 Data Format Interface CommandsRS-232 Connector RS-232 InterfaceNull Modem Interface Lines Response Data Terminator Hardware HandshakePreliminary Checkout IntroductionCheckout Procedure Using the KeypadProcedure Display Explanation VoltProtclear Currprot OFF VoltprotCurrlev CurrprotError Messages Case of TroubleLine Fuse Page Front Panel, Overall View Front Panel DescriptionAC+DC System Keys Display Command FunctionAnnunciator On Phase Selected Function KeysImmediate Action Keys KBESSEL, Rect Scrolling KeysMeter Display Keys Display MeasurementDisplay Output Control KeysRST CLS Protection and Status Control KeysAbort Trigger and List Control KeysInitimmed IMMThrough Are used for entering numeric values Is the decimal Entry KeysSet the output to 120 V rms as follows Setting the Output Voltage AmplitudeProcedure for Single-Phase AC Sources Examples of Front Panel ProgrammingTo verify the output, you can measure it as follows Procedure for Three-Phase AC SourcesPhase 3 to 235 Vrms Action DisplaySetting the Output Frequency Setting a Protection FeatureOvercurrent protection feature as follows Voltm Step Using Transient Voltage ModesStep Transient VolttDcycle Pulse TransientVoltm Pulse WidthList Transient ActionVoltm Fixed Voltm List Count Volt EOL Step Auto Trigger Delays and Phase SynchronizationSyncsour Phase Example DisplaySyncphas Initimmed Example Voltm Step Syncsour Phase Syncphas InitimmedProgramming Slew Rates Using Slew Rates to Generate WaveformsSlewt Voltm FixedSlew Step SlewmCurrpeak Syncsour Phase SyncphasMeasuring Peak Inrush Current RangeAction Display To set the Gpib address, proceed as follows Setting the Gpib Address and RS-232 ParametersTo configure the RS-232 interface, proceed as follows Saving and Recalling Operating StatesAddress Noutputs Specifications Table A-1. Performance Specifications1Agilent 6814B Agilent 6834B Agilent 6843A Table A-2. Supplemental Characteristics Supplemental CharacteristicsSpecifications a Page Characteristics Equipment RequiredRecommended Model Test Setup Turn-On Checkout ProcedurePerforming the Verification Tests Voltage Programming and Measurement Accuracy RMS Current Readback AccuracyAction Normal Result Agilent 6843A Current Measurement Accuracy Performing the Calibration ProcedureAgilent 6814B Current Measurement Accuracy Agilent 6834B Current Measurement AccuracyEnable Calibration Mode Front Panel CalibrationFront Panel Calibration Menu Calibrating the OVP trip point Calibrating and Entering Voltage Calibration ValuesCalibrating and Entering Current Calibration Values Calpass Changing the Calibration PasswordCalibrating the Output Impedance Agilent 6843A only Saving the Calibration ConstantsAgilent Calibration Program Listing Calibration Error MessagesTable B-3. Gpib Calibration Error Messages Calibration Over the GpibFigure B-2. Calibration Program Listing Sheet 1 Figure B-2. Calibration Program Listing Sheet 2 Page Table C-1. Error Numbers Error Number ListError Messages Error Messages C Page Index Index Index Japan United States Latin AmericaCanada Australia/New Zealand Europe Asia PacificManual Updates
Related manuals
Manual 20 pages 27.01 Kb Manual 187 pages 38.86 Kb

6834B, 6843A, 6814B specifications

Agilent Technologies, a leader in electronic test and measurement equipment, offers a range of powerful signal sources including the 6843A, 6834B, 6814B, 6813B, and 6811B models. These instruments are designed to support various applications in research, development, and manufacturing, providing precise signal generation capabilities.

The Agilent 6843A is a versatile signal generator known for its exceptional frequency range and modulation capabilities. It supports an extensive bandwidth, making it ideal for applications that require high-frequency signal generation. With its superior phase noise performance, the 6843A is an excellent choice for radar, wireless communications, and electronic warfare applications. The instrument features an intuitive user interface, allowing engineers to set parameters quickly and efficiently.

Next, the Agilent 6834B offers exceptional performance characteristics, including high output power and low distortion. This signal generator is particularly noted for its ability to produce complex modulation formats, making it suitable for testing advanced wireless communication systems. With a reliable and stable output, the 6834B ensures accurate and repeatable measurements, which is vital for thorough testing processes.

The 6814B model stands out for its dual-channel capabilities, allowing users to generate simultaneous signals for testing multiple components or systems. This feature significantly enhances testing efficiency and flexibility for engineers. With built-in arbitrary waveform functionality, users can create custom waveforms, making the 6814B suitable for a wide range of applications including device characterization and signal processing research.

For those seeking a more compact solution, the Agilent 6813B provides essential signal generation features without compromising on performance. It is designed for a variety of applications across telecommunications and consumer electronics, featuring a straightforward interface and robust performance metrics.

Lastly, the 6811B is an entry-level yet capable model that supports a broad spectrum of testing needs. Perfect for educational and laboratory environments, it provides essential functionalities required for effective signal generation and analysis.

Overall, Agilent Technologies' 6843A, 6834B, 6814B, 6813B, and 6811B signal generators offer an array of features and technologies that cater to various application needs. Their precision, reliability, and user-oriented designs position them as invaluable assets in any testing environment, ensuring engineers can carry out their work with confidence and accuracy.