Infiniium UXR-Series Oscilloscopes: The most advanced oscilloscope on the planet

2023-02-07
●Introduction
■The Infiniium UXR-Series oscilloscopes deliver world-leading performance, ultra-low noise, and high signal fidelity for engineers and scientists to truly see and understand the fastest phenomena – enabling you to develop the next generation of technology and research more quickly.
●Introduction and Model Overview
■The UXR has more accurate analysis. Up to four channels of simultaneous 110 GHz of bandwidth, each concurrently sampling at a staggering 256 GSa/s with 10 bits of high-definition analog to digital converter (ADC) resolution.
■The UXR runs faster. Up to 100x faster performance for some measurements – enabled by a powerful new measurement acceleration ASIC and memory controller capable of 5 trillion integer operations per second (IOPS).
■The UXR is fully upgradeable. The Infiniium UXR-Series is scalable – you can easily upgrade the bandwidth, memory, channel count, and software capabilities to meet your future needs.
■The UXR is available in three models based on bandwidth, sample rate and input connector size. Infiniium UXR-Series models offer bandwidths from 5 GHz to 110 GHz with various 1-channel, 2-channel, or 4-channel configurations available. The 3.5mm models are equipped with Keysight AutoProbe II interfaces while 1mm and 1.85 mm models incorporate an advanced high-performance high-bandwidth Keysight AutoProbe III interface.

Keysight

UXR-SeriesUXRUXR1104AUXR1004AUXR0804AUXR0704APUXR0594APUXR0404APUXR0254APUXR0704AUXR0594AUXR0504AUXR0404AUXR0334AUXR0254AUXR0204AUXR0164AUXR0134AUXR0104AUXR1102AUXR1002AUXR0802AUXR0702APUXR0592APUXR0402APUXR0252APUXR0051APUXR0702AUXR0592AUXR0502AUXR0402A

More

Part#

Oscilloscopes

More

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

November 21, 2022

5992-3132EN

2.3 MB

- The full preview is over. If you want to read the whole 24 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: