N9020A MXA Signal Analyzer

Accelerate the Development of Wireless Devices with the Speed, Performance & Applications to Adapt to Evolving Test Requirements

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N9020A MXA Signal Analyzer

8753ES Network Analyzer

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8753ES Network Analyzer

SM200B Spectrum Analyzer

The High Performance SM200B From Signal Hound: High Performance Speed, Accuracy, Security, and Agility Meet Very Low Cost

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    "Best packing ever! I would let you ship one of my children!"
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    "Unit received in great shape. Passed Agilent calibration. Good job!!"
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AQ6317C - Ando Optical Spectrum Analyzers


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  • Model: AQ6317C
  • Manufactured by: Ando
  • Form Factor: Benchtop
  • High end wavelength limit: 1700 nm
  • Wavelength Resolution: 15.0pm
  • Instrument Type: n/a
  • Extra Specifications: Optical Spectrum Analyzer for S-, C- and L-band ranges
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Ando AQ6317C Overview

The AQ6317C Optical Spectrum Analyzer more than meets the latest needs, with its new waveform analysis function, S-, C- and L-band coverage, superior wavelength accuracy throughout the measurement range, faster measurement speeds in high-sensitivity mode and capability to improve manufacturing throughput. Achieves high wavelength accuracy of ±0.1 nm for the entire range from 600 to 1750 nm, and to ±0.02 to ±0.04 nm at 1450 to 1620 nm (S-, C- and L-band). Achieves wavelength resolution of 0.015 nm or less, enabling analysis of WDM signals at 25 GHz spacing. Analysis functions for WDM and other optical devices such as LD, LED and FBG. In conjunction with the AQ4321A/4321D Tunable Laser Source, much higher wavelength resolution/wide dynamic range can be achieved by high-speed synchronous sweep at a maximum of 10 nm/second. High sensitivity allows measurement of light at down to –90 dBm, covering from 1200 to 1600 nm. With possible measurement of up to +20 dBm per one resolution, WDM optical amplifiers and high-powered laser diodes can be measured directly. Twice the measurement speed of conventional spectrum analyzers in high-sensitivity mode The dynamic range is 70dB or more at peak ±0.4 nm and 60 dB at peak ±0.2 nm for optimal 50 GHz spacing WDM signal analysis performance. Polarization dependency reduced to ±0.05 dB, for accurate optical amplifier gain and other critical measurements. Accurate within ±0.3 dB. Pulsed light measurement function Three individual trace memories
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