Agilent Technologies 83620A Betriebsanweisung

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Seitenansicht 0
Obtaining Flat
Test Port Power
with the Agilent
8360’s User Flatness
Correction Feature
Product Note 8360-2
Seitenansicht 0
1 2 3 4 5 6 ... 15 16

Inhaltsverzeichnis

Seite 1 - Correction Feature

Obtaining Flat Test Port Power with the Agilent 8360’s User FlatnessCorrection FeatureProduct Note 8360-2

Seite 2 - Introduction

10Example 3: Swept mm-wave measurement with arbitrary correction frequenciesThe focus of this example is on using user flatnesscorrection to obtain fl

Seite 3 - Theory of operation

11Command DescriptionTurn off sourceConnect Source Module Interface cableTurn on sourceSetup source parameters[PRESET]FREQUENCY [START] 26.5 GHz Set s

Seite 4

12Example 4: Scalar analysis measurement with user flatness correctionsThe following example demonstrates how to setup a scalar analysis measurement (

Seite 5 - Configuration examples

13Command Description[PRESET] analyzer Reset analyzer and source to a known stateSetup source parametersFREQUENCY [START] 2 GHz Set start frequency t

Seite 6 - Data entry methods

14Example 5: Computer controlled measurements with user flatness correctionsThis section focuses on computer controlled meas-urement systems. The foll

Seite 7 - Swept measurement with

15Note: The 8360’s rear panel language and addressswitches must be set to 7 and 31 (all 1s), to allowthe user to change the language or address of the

Seite 8 - Example 2:

16Agilent Technologies’ Test and Measurement Support, Services, and AssistanceAgilent Technologies aims to maximize the value you receive,while minimi

Seite 9

2The 8360 series synthesized sweepers provideextremely flat power at your test port, for testingpower sensitive devices such as amplifiers, mixers,dio

Seite 10 - Example 3:

3A major contribution of the 8360 series synthesizedsweepers is their unparalleled leveled outputpower accuracy and flatness. This is achieved byusing

Seite 11 - Command Description

4If the correction frequency span is only a subset ofthe start/stop frequency span set on the source, nocorrections will be applied to the portion of

Seite 12 - Scalar analysis measurement

5The following examples demonstrate the user flatness correction feature:1. Using an Agilent 437B power meter to automatically enter correction data f

Seite 13

6Data entry methods for user flatness correctionUser flatness correction data is obtained by connecting a power meter sensor at the desiredtest port a

Seite 14 - Example 5:

7Example 1: Swept measurement with automatically entered correctionsThis example illustrates how to set up a 2 to 18GHz swept measurement with a corre

Seite 15 - Figure 11b. Program

8Example 2: Frequency list measurement with manually entered correctionsThe following example demonstrates how to entercorrection data when using a po

Seite 16

9Command DescriptionSetup source parameters[PRESET] Reset source to a known statePOWER [POWER LEVEL] 5 dBm Set test port power to +5 dBm (P0 max- Ppat

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