PCD-UHR-250-2.6-(C)

Pockels Cell Driver by EKSPLA

Note: Your Quotation Request will be directed to EKSPLA.

The PCD-UHR-250-2.6-(C) from EKSPLA is a Pockels Cell Driver that has a pulse amplitude of 2.6 kV. It has a maximum repetition rate of 250 kHz and pulse duration of 100 ns - 3900 ns. This pockels cell driver has a rise/fall time of less than 6 ns and support pulse regeneration technique for infinite pulse duration. It has a jitter of less than 100 ps and pulse delay of 25 ns - 30 ns. This pockels cell driver has a minimum pause between pulses of 100 ns and load capacitance of up to 6 pF. It utilizes 1 or 2 external triggering input pulses with a duration of greater than 20 ns and an amplitude of 3.5 V - 5 V.

The PCD-UHR-250-2.6-(C) is designed for BBO, RTP, KD*P, KTP, LiNbO3, and CdTe crystals. It has a triggering pulse rise/fall time below 10 ns and can be controlled via CAN-USB interface. This pockels cell driver requires a DC supply voltage of 24 V and consumes 40 W of power. It is available in a module that measures 114 mm x 73 mm x 50 mm and is ideal for micromachining, welding, cutting, ophthalmology, dermatology, surgery, fusion research, spectroscopy & high-energy physics applications.

Product Specifications

Product Details

  • Part Number
    PCD-UHR-250-2.6-(C)
  • Manufacturer
    EKSPLA
  • Description
    2.6 kV Pockels Cell Drivers for Welding & Cutting Applications

Electrical Specifications

  • Output Voltage Amplitude
    2.6 to 2.6 kV
  • Supply Voltage(DC)
    24 VDC ±1 V
  • Fall Time
    <6 ns
  • Trigger Voltage
    3.5 to 5 V
  • HV Power Consumption
    40 W
  • Input Impedance
    50 Ohms

General Parameters

  • Crystal Material
    Beta Barium Borate (BBO), Rubidium Titanyle Phosphate (RTP), Potassium Dihydrogen Phosphate (KD*P), Cadmium Telluride (CdTe)
  • Repetition Rate
    250 kHz
  • Pulse Width
    100 to 3900 ns
  • Rise Time
    <6 ns
  • Output Type
    Uni-Polar
  • Digital Signal
    rise and fall edges
  • Output pulse delay from trigger pulse
    >20 ns (Triggering pulse)
  • Pulse Delay
    25 ns
  • Pulse Jitter
    <100 ps
  • Pulse Output
    nanosecond
  • Pulse Shape
    Square
  • Rise/Fall Time
    <6 ns
  • Note
    Maximal length of leads to Pockels cell: 10 cm

Technical Documents

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