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Agilent Technologies
6800
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Output Transient Trigger Model Measurement Trigger Model
Models:
6800
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7
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Timing Diagram of Application
Agilent 6800 series setup
What is a MEASure Command?
What is
Using the computer
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Output Transient Trigger Model
Measurement Trigger Model
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Page 8
Contents
Product Note
Agilent 6800 Series AC Power Source/Analyzer
Introduction
Table of Contents
Introduction to the Agilent 6800 AC Power Source/Analyzer
Agilent 6800 Series Output Transients
What is a Step Transient?
What is a Pulse Transient?
What is a List Transient?
Model of the Transient System
What Can Serve as the Source of the Trigger?
What Actions Can be Triggered?
How Can Triggers be Generated?
Output Transient Trigger Model Measurement Trigger Model
What is a FETCh Command?
What is a MEASure Command?
Agilent 6800 Series Measurements
MEASure and FETCh Command Execution Diagram
Application Transient Generation
Applications
Overview of application
Agilent 6800 series features used
Advantages/benefits of the Agilent 6800 series solution
Application Simulating AC Line Sub-Cycle Dropouts
Timing Diagram of Application
Page
At 400 Hz
Application Generating MIL-STD-704D Waveforms
Set the List points as follows
List Timing Diagram for Application
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Advantages/benefits of the Agilent 6800 series
Application Performing IEC 555-2 Measurements
Using the computer
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Application Performing Inrush Current Measurements
Agilent 6800 series setup
Page
How the 6800 series implements user-defined waveforms
Application Generating User-Defined Waveforms
Timing Diagram for Application #5
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Page
Advantages/benefits of the Agilent 6812A and 6813A solutions
Agilent 6812A and 6813A features used
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Our Promise
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Contents