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Now downloading free:Agilent Why Upgrade to the 90000 X-Series Infiniium 90000 X-Series versus 90000A Series Oscilloscopes 5991-

Agilent Why Upgrade to the 90000 X-Series Infiniium 90000 X-Series versus 90000A Series Oscilloscopes 5991- free download

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File name:Why Upgrade to the 90000 X-Series_ Infiniium 90000 X-Series versus 90000A Series Oscilloscopes 5991-
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Descr: Agilent Why Upgrade to the 90000 X-Series_ Infiniium 90000 X-Series versus 90000A Series Oscilloscopes 5991-1039EN c20140916 [2].pdf
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File name Why Upgrade to the 90000 X-Series_ Infiniium 90000 X-Series versus 90000A Series Oscilloscopes 5991-

Keysight Technologies Why Upgrade to the 90000 X-Series? Infiniium 90000 X-Series versus 90000A Series Oscilloscopes Upgrade to the 90000 X-Series and start making better measurements today 1. Dramatically improved signal integrity--Pick a spec: noise floor, jitter, ENOB, SFDR, 90000 X-Series 90000A Series not only is the X-Series a dramatic signal integrity improvement over the 90000A, it Analog channels has the best signal integrity of any real-time oscilloscope, period. Max analog bandwidth 33 GHz 12 GHz 2. Bandwidth upgradability to 33 GHz--The 90000 X-Series features a max sample rate Max bandwidth (4 channel) 16 GHz 13 GHz of 80 GSa/s and upgradability to 33 GHz of true analog bandwidth. You can buy a 13 GHz model now and upgrade all the way to 33 GHz as your needs evolve. Max memory depth 2 Gpts - 4 channels 1 Gpts - 4 channels Sample rate 80 GSa/s 40 GSa/s 3. Available MSO--Get 16 digital channels (+ 1 for triggering), and the world's highest 20 GSa/s digital channel sample rate. This is the greatest analog bandwidth and Noise floor @ 13 GHz 1.2 mVrms 1.45 mVrms signal integrity MSO in the industry. Noise floor @ 33 GHz 2.02 mVrms Not available Jitter measurement floor 150 fs 600 fs Bandwidth upgradable Yes, to 33 GHz Yes, to 13 GHz Digital channels Max 8 channel sample rate 20 GSa/s Max 16 channels sample rate 10 GSa/s Max memory depth 400 Mpts Not available 17th channel for triggering Yes Specialized DDR1/2/3 triggering Yes Better measurements within reach How did we achieve this? The 900



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