Pockels Cell by AGILTRON

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The KDPM05AB from AGILTRON is a Deuterated Potassium Dihydrogen Phosphate (KD*P) Pockels Cell that has a transmission range of 400 nm - 600 nm. It has a clear aperture of 10 mm and half wave voltage of 3300 V (532 nm) & 6400 V (1064 nm). This pockels cell has a maximum damage threshold of 10 GW/cm2 (at 10 ns, 10 Hz & 1064 nm) and minimum parallelism of 5". It has an extinction (on/off) of 20 dB - 35 dB and a minimum material purity of 99.8 %. This pockels cell has a rise/fall time of 0.5 ns - 1.1 ns and an angle tolerance of ± 0.15 deg.

The KDPM05AB has a capacitance of 10 pF and surface scratch/dig of 20/10 mm. It has a length of 35 mm and an electrooptic coefficient of 8.8 pm/V - 25 pm/V. This pockels cell includes standard pin-type HV connectors, sapphire windows, and nitrogen-filled moisture-resistant sealings. It has polarization cubes that can be aligned and installed at both input and output ports to form an intensity modulator. This pockels cell is available in a ceramic housing package that measures Φ19 mm × 28 mm and is ideal for Q-Switch, phase/power modulation, and pulse picker applications.

Product Specifications

Product Details

  • Part Number
  • Manufacturer
  • Description
    400 nm - 600 nm, DKDP (KD*P) Pockels Cell for Q-Switch Applications


  • Application
    Q-Switch, Phase/Power Modulation, Pulse Picker

Environmental Conditions

  • Operating Temperature display
    10 to 80 Degree C

General Parameters

  • Clear Aperture
    10 mm
  • Half Wave Voltage
    1350 V
  • Wavelength Range
    400 to 600 nm
  • Capacitance
    10 pF
  • Crystal Material
    Potassium Dihydrogen Phosphate (KD*P)
  • Damage Threshold
    10 GW/cm2
  • Dimension
    10 x 10 x 35 mm
  • Electro-optical Coefficients
    r41: 8.8 pm/V, R63: 25 pm/V
  • Extinction Ratio
    20 to 35 dB
  • Parallelism
    5 Inches
  • Perpendicularity
    ±0.15 Degree
  • Rise Fall Time
    0.5 to 1.1 ns
  • Scratch and dig
    20/10 mm
  • Clear Aperture display
    10 mm
  • Note
    Material Purity: 99.8%

Technical Documents

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