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目錄:深圳市賽儀歐電子有限公司>>示波器探頭>> TAP1500TAP1500 單端有源 FET 探頭

TAP1500 單端有源 FET 探頭
  • TAP1500 單端有源 FET 探頭
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  • 品牌
  • 型號 TAP1500
  • 廠商性質(zhì) 經(jīng)銷商
  • 所在地 深圳市
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更新時(shí)間:2023-10-28 10:47:45瀏覽次數(shù):90評價(jià)

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產(chǎn)品簡述:TAP1500Single-endedActiveFETProbeprovidesexcellenthigh-speedelectricalandmechanicalperformancerequiredfortoday'sdigitalsystemdesigns.KeyfeaturesOutstandingelectricalpe

TAP1500 Single-ended Active FET Probe provides excellent high-speed electrical and mechanical performance required for today's digital system designs.

Key features
  • Outstanding electrical performance
    • ≥1.5 GHz probe bandwidth
    • <267 ps rise time
    • ≤1 pF input capacitance
    • 1 M? input resistance
    • -8 V to +8 V input dynamic range
    • -10 V to +10 VDC input offset range
  • Versatile mechanical performance
    • Small compact probe head for probing small geometry circuit elements
    • DUT attachment accessories enable connection to SMDs as small as 0.5 mm pitch
    • Robust design for reliability
  • Easy to use
    • Connects directly to oscilloscopes with the TekVPI™ probe interface
    • Provides automatic units scaling and readout on the oscilloscope display
    • Easy access to oscilloscope probe menu display for probe status/diagnostic information, and to control probe DC offset
    • Remote GPIB/USB probe control through the oscilloscope
  • Applications
    • High-speed Digital Systems Design
    • Component Design and Characterization
    • Manufacturing Engineering and Test
    • Educational Research
    • Signals with Voltage Swings up to 16 V

1.5 GHz active probes for TekVPI™ probe interface

Specifically designed for use and direct connection to oscilloscopes with the TekVPI™ probe interface, the TAP1500 Active FET probe achieves high-speed signal acquisition and measurement fidelity by solving three traditional problems:
  • Lower DUT loading effects with ≤1 pF input capacitance and 1 M? input resistance
  • Versatile DUT connectivity for attaching to small SMDs
  • Preserves instrument bandwidth at the probe tip for ≤1 GHz oscilloscopes

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