Obtaining Flat Test Port Power with the Agilent 8360’s User FlatnessCorrection FeatureProduct Note 8360-2
10Example 3: Swept mm-wave measurement with arbitrary correction frequenciesThe focus of this example is on using user flatnesscorrection to obtain fl
11Command DescriptionTurn off sourceConnect Source Module Interface cableTurn on sourceSetup source parameters[PRESET]FREQUENCY [START] 26.5 GHz Set s
12Example 4: Scalar analysis measurement with user flatness correctionsThe following example demonstrates how to setup a scalar analysis measurement (
13Command Description[PRESET] analyzer Reset analyzer and source to a known stateSetup source parametersFREQUENCY [START] 2 GHz Set start frequency t
14Example 5: Computer controlled measurements with user flatness correctionsThis section focuses on computer controlled meas-urement systems. The foll
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
16Agilent Technologies’ Test and Measurement Support, Services, and AssistanceAgilent Technologies aims to maximize the value you receive,while minimi
2The 8360 series synthesized sweepers provideextremely flat power at your test port, for testingpower sensitive devices such as amplifiers, mixers,dio
3A major contribution of the 8360 series synthesizedsweepers is their unparalleled leveled outputpower accuracy and flatness. This is achieved byusing
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
5The following examples demonstrate the user flatness correction feature:1. Using an Agilent 437B power meter to automatically enter correction data f
6Data entry methods for user flatness correctionUser flatness correction data is obtained by connecting a power meter sensor at the desiredtest port a
7Example 1: Swept measurement with automatically entered correctionsThis example illustrates how to set up a 2 to 18GHz swept measurement with a corre
8Example 2: Frequency list measurement with manually entered correctionsThe following example demonstrates how to entercorrection data when using a po
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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