PVM-4140

Features: SpecificationsDescriptionThe PVM-4140 is designed as +/- 3000V pulse generator module. Optimized for high impedance capacitive loads, the PVM-4140 is well suited for driving extraction grids and deflection plates for electrostatic modulation of particle beams in time-of-flight mass spect...

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SeekIC No. : 004467274 Detail

PVM-4140: Features: SpecificationsDescriptionThe PVM-4140 is designed as +/- 3000V pulse generator module. Optimized for high impedance capacitive loads, the PVM-4140 is well suited for driving extraction gri...

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Part Number:
PVM-4140
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/30

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Product Details

Description



Features:






Specifications






Description

The PVM-4140 is designed as +/- 3000V pulse generator module. Optimized for high impedance capacitive loads, the PVM-4140 is well suited for driving extraction grids and deflection plates for electrostatic modulation of particle beams in time-of-flight mass spectrometers and accelerators.

PVM-4140 has eight features. The first one is 0 to ±3000V pulse output. The next one is it would be less than 25ns rise and fall times. The next one is it would be less than 60ns to DC pulse width. The next one is it would be larger than 25KHz pulse repetition frequency. The next one is it would be optimized to drive deflection plates, grids, pockels cells and other capacitive loads. The next one is it is protected against arcs, shorts and load transients. The next one is it would have voltage and current monitor outputs. The ext one is it would have the economical, modular solid state design. That are all the main features.

Some important specifications of PVM-4140 have been concluded into several points as follow. The first one is about its maximum value which would be ±3000 volts (Vhigh - Vlow). The next one is about its minimum value which would be 0 volts. The next one is about its means of adjustment which would be controlled by power supply input voltages. The next one is about its pulse rise and fall time which would be less than 25ns (10% to 90%). The next one is about its pulse width which would be less than 60ns (typically 55ns) to DC, controlled by input gate. The next one is about its pulse recurrence frequency (PRF) which would be single shot to >25KHz at 3000V continuous output, maximum limited by power dissipation (1), 5MHz Burst, controlled by input gate. The next one is about its max average power which would be 500W. And so on. For more information please contact us.






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