E5052B Agilent SSA Signal Source Analyzer, 10 MHz - 7 GHz

E5052B Agilent SSA Signal Source Analyzer, 10 MHz - 7 GHz

The Keysight E5052B has a frequency range that can be extended up to 26.5 GHz with the Agilent E5053A, and up to 110 GHz with the E5053A plus Keysight 11970 (Agilent) series mixers.

  • Product Introduction

 

Overview and Features

The Keysight E5052B (Agilent) Signal Source Analyzer, 10 MHz to 7 GHz, features a number of enhanced performance characteristics. It offers world's highest measurement throughput and best usability in characterizing VCO or other types of high frequency signal sources, aw well as clock jitter evaluation in high-speed data communication systems.

The Keysight E5052B has a frequency range that can be extended up to 26.5 GHz with the Agilent E5053A, and up to 110 GHz with the E5053A plus Keysight 11970 (Agilent) series mixers.

The E5052B SSA is suitable for use in a wide range of applications including RF/uW/mmW oscillators, VCO's, system reference clocks, LAN modules, high-speed timing modules, SerDes chips, and high-speed data converters (ADC/DAC).

 

Key specfications of the Keysight E5052B (Agilent) Signal Source Analyzer include:

Frequency Range

RF Input frequency range: 10 MHz to 110 GHz

Analysis offset frequency range: 1 Hz to 100 MHz

Phase noise measurement with ultra low noise floor and a cross-correlation method

Frequency transient capture range: up to 80 MHz in narrow band, up to 4.8 GHz in wide band

Noise Measurement Functions

Phase noise with ultra low noise floor and a cross-correlation method

AM noise measurement and phase noise measurement without changing RF connection

Baseband noise measurement from 1 Hz to 100 MHz

Spectrum monitoring up to 15 MHz span in a real-time mode

Analysis Capabilities

Simultaneous transient measurements for frequency, phase and power over time

Capture of unexpected frequency change with video trigger function

Complete VCO characterization with outstanding low-noise DC sources(frequency/power/DC-supply-current over Vc and Vs)

Clock jitter measurement with femto-second resolution

 

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