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Agilent Frequency Counter Programming Comparison Guide
SCPI Programming comparison guide for the Agilent 53200 Series (53210A, 53220A, 53230A) and 531xxA Series (53131A, 53132A, 53181A) RF and Universal Frequency Counter/Timers.

Application Note 2012-12-17

U1051A Time to Digital Converter
Application Note - Absolute Time Recovery

Application Note 2012-07-01

PDF PDF 1.19 MB
Solutions for Using a Frequency Counter to Measure Phase Noise Close to a Carrier Signal
A local oscillator (LO) is the heart of any modern radar, electronic warfare or communication system. See how you can use this to your advantage.

Application Note 2011-08-01

53131A/32A/81A Counter accuracy calculator

Analysis Tool 2010-07-23

Installation and Maintenance of Microwave Links
All point to point microwave links have a common need – achieving lab results on site while maximizing instrument portability. An overview of Agilent’s microwave frequency counter offerings.

Application Note 2009-05-07

PDF PDF 109 KB
Speed Test Times by Utilizing the Built-in Features of your Frequency Counter
Taking advantage of built-in features of your counter will reduce the time needed for communication overhead and post-processing.

Application Note 2008-06-04

10 Hints for Getting the Most from your Frequency Counter
Maximize the results you get from your frequency counter through 10 hints from better from understanding the architecture to making faster measurements.

Application Note 2008-04-18

4 Steps for Making Better Power Measurements (AN 64-4D) - Application Note
Before selecting a power meter and associated sensors, make sure that you have taken the 4 steps detailed in this note, which influence the accuracy, economy and technical match to your application.

Application Note 2006-04-26

Accuracy Calculator for Frequency Counters
Determine the accuracy of a frequency measurement for the 53131A, 53132A, and 53181A counters.

Analysis Tool 2005-09-01

HTML HTML 17 KB
Tips for making more accurate measurements with a frequency counter
Six tips for making accurate frequency measurements.

Application Note 2004-07-30

Spectrum Analysis: Amplitude and Frequency Modulation (AN 150-1)
Modulation is the act of translating some low-frequency or base-band signal (voice, music, data) to a higher frequency. Why do we modulate signals? There are at least two reasons: to allow the simultaneous transmission of two or more baseband signals by translating them to different frequencies...

Application Note 2001-10-01

PDF PDF 1.23 MB
8 Hints for Making Better RF Counter Measurements
This Brochure focuses on making better RF counter measurements by understanding the effects of counter architecture; recognizing the difference between resolution and accuracy, and scheduling calibration to match performance needs. In addition, the impact of timebase options is discussed along...

Application Note 2001-04-10

Examine GMSK Modulation in GSM and PCN Mobile Communications Systems (AN 1200-11)
Current analog mobile communications systems have reached capacity limits in several large population centers. Future systems will utilize Time Division Multiple Access techniques to increase capacity. These new digital modulation techniques are difficult to characterize using conventional test...

Application Note 2000-09-01

Peak Deviation and Center Frequency Measurements for CT2 and DECT Radios (AN 1200-12)
The use of digital modulation in mobile communications systems is growing rapidly. Information in the form of 1s and 0s is often transmitted as two different frequencies. This is known as minimum shift keying or GMSK if the data is filtered. Measuring the deviation accurately on a bursted signal...

Application Note 2000-08-01

Direct Characterization of Motion Control Systems (AN 1200-2)
This Application Brief is one of a series. It demonstrates how the Agilent 53310A makes it easy to capture and view velocity profiles, without the need for an external controller.

Application Note 2000-08-01

Examine Channel Switching Characteristics of Cellular Radios (AN 1200-10)
The Agilent 53310A's ability to measure and display a signal's continuous frequency over time makes cellular communications channel switching analysis easy. A direct frequency profile of channel switching is provided on an easy-to-interpret display. Measurement markers allow you to quickly verify...

Application Note 2000-08-01

PDF PDF 101 KB
VCO Step Response Analysis Made Easy (AN 1200-3)
The Agilent 53310A allows for an easy-to-use single pass technique for displaying the VCO's output frequency versus time. It makes rapid, high resolution frequency measurements in a back-to-back manner. This yields a full analysis of a VCO's step response in a single pass. For applications that...

Application Note 2000-08-01

Simplified Motor Spin-up Analysis (AN 1200-1)
This Application Brief offers the Agilent 53310A Modulation Domain Analyzer as a solution to the problem of characterizing a motor's performance without the need for external controller.

Application Note 2000-08-01

Simplified Analysis of Phase-Locked Loop Capture and Tracking Range (AN 1200-7)
The Agilent 53310A's ability to measure and display a signal's continuous frequency over time makes dynamic frequency analysis of PLLs easy. A direct measure of the PLL's capture and tracking range is obtained by monitoring the output frequency while the PLL is forced to go in and out of lock. A...

Application Note 2000-08-01

Single Shot Frequency Profiling of Chirped Radars Made Easy (AN 1200-8)
This Application Note describes the Agilent 53310A's ability to measure and display a signal's continuous frequency over time makes dynamic frequency analysis of radar pulses easy. Views of single-shot chirp linearity are obtained by measuring the continuous frequency of the IF chirp. The chirp...

Application Note 2000-08-01

Fast Characterization of Pulse-Width Encoded Data (AN 1200-5)
The built in fast histogram capability of the Agilent 53310A is a simple and easy way to analyze pulse width encoded data. In less than a second, it takes a hundred thousand pulse width measurements, rearranges the measurements in value order, then displays how often a given value occurred.

Application Note 2000-08-01

Histograms Simplify Analysis of Random Jitter (AN 1200-9)
The Agilent 53310A's fast histograms make it easy to get complete view of clock jitter. The shape of the histogram indicates the nature of the jitter. For example a Gaussian-shaped distribution would suggest the jitter is random. Statistics are calculated automatically to provide the mean...

Application Note 2000-08-01

Quick Identification of Periodic Jitter Sources (AN 1200-4)
The Agilent 53310A is an easy-to-use, inexpensive tool for displaying time interval measurements versus time. Any repetitive pattern in the jitter is immediately apparent. The 53310A's analysis features readily give peak-to-peak and periodic rate information. Taking all of these clues together...

Application Note 2000-08-01

Automatic Frequency Settling time Measurement Speeds Time-to-Market for RF Designs (AN 1275)
This Application Note addresses considerations for the RF designer. It presents the Agilent 53310A with Option 031, which was developed specifically for digital RF communications measurement needs, offering significant advantages over past techniques.

Application Note 2000-07-01

PDF PDF 158 KB
4 Hints for Making Better Microwave Counter Measurements
This Product Note provides four pertinent hints for making better microwave counter measurements, describes the advantages of using a microwave counter, and deals with the unique measurement problems created by the advancement in counter technology.

Application Note 1998-09-01

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