Agilent Technologies 89441A manual Rpg, See knob

Page 85

range hardkey HT RBW

See resolution bandwidth real-time bandwidth HT rear panel tour HT recalling HT

about recalling HT autostate file HT BASIC programs HT capture-buffer contents HT math functions HT measurement state HT recalling data GS 6-5 spectrogram displays OP 5-16 trace GS 3-2, HT

waterfall displays OP 5-16 receiver HT

about receivers HT

GPIB address: external receiver HT using an external receiver HT

receiver softkey HT REF, definition of HT reference filter, selecting HT reference level

See reference line reference line HT

displaying HT examples of HT position of HT

setting reference level HT setting with the marker HT tracking the range HT

reference signal

digital demod OP 17-9 video demod OP 18-10 reference, frequency GS 7-7

references

digital demod OP 17-2 Remote LED HT REMOTE OPERATION group hardkeys HT requirements

grounding GS 7-3 power GS 7-2

resolution display OP 14-12 frequency OP 14-11 measurement OP 14-5

resolution bandwidth HT about resolution bandwidth HT

Index

and gating OP 16-5

 

 

coupling to frequency span HT

 

digital demod

OP 17-11

 

effect on noise

OP 14-2

 

 

entering arbitrary values

HT

 

interaction with other parameters

HT

scalar limitations OP 14-11

 

setting the resolution bandwidth

HT

vector limitations OP 14-18

 

video demod

OP 18-11

 

 

See also bandwidth coupling

 

result length

 

 

 

digital demod

OP 6-8, OP 17-14

 

video demod

OP 7-13

 

 

result length softkey HT

 

 

RF section

 

 

 

connecting to IF section

GS 7-7

 

fuse GS 7-13

 

 

 

model number

GS 7-11

 

 

voltage selector switch

GS 7-11

 

rms averaging

 

 

 

See averaging

 

 

 

root raised cosine filters OP 17-17

 

RPG

 

 

 

See knob

 

 

 

RS232

 

 

 

See serial port

 

 

 

S

safety

See inside front cover sample frequency

See sample rate sample rate OP 14-14

video demodulation OP 17-11, OP 18-12

samples, defined HT saving HT

about saving HT autostate file HT calibration trace HT capture buffer contents HT math functions HT measurement state HT

re-saving BASIC programs HT saving BASIC programs HT saving data GS 6-4

traces HT

scalar measurements HT about scalar mode HT

GS = Getting Started Guide

HT = Online Help

OP = Operator's Guide

(press (Help) key)

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Contents Agilent Technologies 89441A Getting Started Guide Analyzer at a Glance Front Panel IiiThis page left intentionally blank Saftey Summary Fuses Safety Symbols Notation Conventions This Book This page left intentionally blank Table of Contents Xii General TasksUsing Online Help Enter the online help system Press Help To learn about online helpTo display help for hardkeys and softkeys To display a related help topic To select a topic from the help index Page Making Simple Noise Measurements Start an averaged measurement To measure random noiseTurn on the band power markers To measure band powerTurn on the carrier-to-noise marker To measure signal to noise ratiosCarrier-to-noise ratio normalized to one Hertz Page Using Gating to Characterize a Burst Signal Display should now appear as shown below To Use Time GatingSet up the time gating and examine the first burst Configure the display and the measurementExamine the second burst Page Measuring Relative Phase To measure the relative phase of an AM signal Measuring Relative Phase Zero the offset marker on the carrier To measure the relative phase of an PM signalCharacterizing a Filter Have option AY7 To set up a frequency response measurementIf section for network measurements Press Auto Scale To use the absolute marker To use the relative marker To use the search marker Specify phase data for the second trace To display phaseActivate the second trace and select a coherence measurement To display coherenceGeneral Tasks To set up peripherals General Tasks To save data with an internal or RAM disk Press Return To recall data with an internal or RAM diskTo format a disk Define a constant To create a math functionDefine a math function Press Math, define F1 To use a math function Press measurement state or input/source state To display a summary of instrument parametersPage Preparing the Analyzer for Use Preparing the Analyzer for Use To chassis ground Analyzer cabinet can subject the operator to lethal voltages To do the incoming inspection Power if it is damagedPreparing the Analyzer for Use To connect the sections Preparing the Analyzer for Use To install the analyzer Select To change the if section’s line-voltage switchTo change the RF section’s line-voltage switch To change the if section’s fuse RF Section To change the RF section’s fuseInternet protocol address Return To connect the analyzer to a LANTo connect the analyzer to a parallel device To connect the analyzer to a serial deviceTo connect the analyzer to an external monitor To connect the analyzer to an Gpib deviceTo connect the optional keyboard Set the if section’s power switch to on lConnect the other end of the keyboard cable to the keyboard To connect the optional minimum loss pad To store the analyzer To clean the screenElectricity which can damage electronic components To transport the analyzerIf the if section will not power up If the RF section will not power up If the analyzer’s stop frequency is 10 MHz Page Index Basic HT Gpib QAM Dqpsk HTSNR SNR HTSee also traces Gpib HT FSKGpib LAN Manuals, for this product HT See LAN RAM QAM HTSee knob RPGSource LED Tdma Sync not Found HTEXT Trigger LED HT PSD HTVSB Page Agilent 89400-Series Documentation Roadmap Need Assistance?

89441A specifications

The Agilent Technologies 89441A is a high-performance signal analyzer renowned for its versatility in both research and industrial applications. Designed primarily for the testing and analysis of RF signals, this instrument serves as an indispensable tool for engineers and technicians in the telecommunications and electronic testing fields.

One of the key features of the 89441A is its wide frequency range. It operates from 100 kHz up to 1.5 GHz, making it suitable for a vast array of applications, including wireless communications, spectrum monitoring, and signal integrity testing. The 89441A incorporates advanced digital signal processing technologies that ensure accurate and efficient signal analysis, providing users with a high level of precision and reliability in their measurements.

Another significant aspect of the 89441A is its ability to perform real-time analysis. This feature allows users to capture and display transient events with high fidelity, making it easier to analyze complex signals. Coupled with a comprehensive measurement suite, the device is capable of conducting various measurements such as modulation analysis, vector signal analysis, and spectral measurements, making it highly suitable for modern communication systems.

The 89441A also boasts a user-friendly interface that enhances operational efficiency. Its intuitive graphical user interface provides users with easy access to various functions, minimizing the learning curve for new users. Additionally, it supports multiple languages, further broadening its accessibility for global users.

One of the standout characteristics of the 89441A is its high dynamic range, which enables reliable measurements even in the presence of noise. This is critical for applications where signal purity is paramount. Furthermore, its capability to demodulate multiple standards allows it to adapt to evolving technological requirements in various industries.

The flexibility of the 89441A is complemented by its modular design, allowing users to expand its capabilities as their testing needs grow. It supports various plug-in modules and accessories, enabling customization for specific measurement tasks.

In summary, the Agilent Technologies 89441A is an advanced signal analyzer characterized by its wide frequency range, real-time analysis capabilities, user-friendly interface, high dynamic range, and modularity. This combination of features and technologies positions the 89441A as a leading solution for professionals seeking accurate and efficient signal analysis in today's fast-paced electronic environment.