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KTP POCKELS CELL

Short Description:

HGTR (high anti-grey track) KTP crystal developed by hydrothermal method overcomes the common phenomenon of electrochromism of the flux-grown KTP, thus has many advantages such as high electrical resistivity, low insertion loss, low half-wave voltage, high laser damage threshold, and wide transmission band.


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    HGTR (high anti-grey track) KTP crystal developed by hydrothermal method overcomes the common phenomenon of electrochromism of the flux-grown KTP, thus has many advantages such as high electrical resistivity, low insertion loss, low half-wave voltage, high laser damage threshold, and wide transmission band.

    KTP Pockels cells made by HGTR-KTP crystal are mainly used in pulse lasers with narrow pulse width and high repetition frequency. Giving advantages of high extinction ratio, low half-wave voltage, and no piezoelectric ringing effect under high repetition frequency, KTP Pockels cells are widely used in laser ranging, laser lidar, medical lasers and industrial lasers, etc.

    WISOPTIC provides technical consultation, design service, customized test sample, and fast-delivery standard products of KTP Pockels cells.

    Contact us for the best solution for your application of KTP Pockels cell.

    WISOPTIC Advantages of KTP Pockels Cell

    • Wide optical bandwidth (0.5-3μm)

    • Low insertion loss

    • Low half-wave voltage

    • Low operating voltage

    • High extinction ratio

    • Very high laser damage threshold

    • No piezoelectric ringing effect

    • Precise switching in high repetitive rate laser with super-fast voltage drivers

    • Thermally compensated design for operating in large temperature range

    • Compact design, very easy to mount and adjust

    • Quality KTP crystal with high environmental resistance and long service life

    WISOPTIC Technical Data of KTP Pockels Cell

    Sizes of one of the pair of KTP

    (mm)

    X-cut

    Y-cut

    Electrical Resistivity

    (Ohm·cm)

    HWV @1064nm

    (V)

    Extinction Ratio

    @ 633nm (dB)

    HWV @1064nm

    (V)

    Extinction Ratio

    @ 633nm (dB)

    3×3×10

    1200

    > 20

    1000

    > 20

    > 1011

    4×4×10

    1600

    > 20

    1300

    > 20

    > 1011

    5×5×10

    2000

    > 20

    1600

    > 20

    > 1011

    6×6×10

    2300

    > 20

    1900

    > 20

    > 1011

    7×7×10

    2700

    > 20

    2200

    > 20

    > 1011

    8×8×10

    3100

    > 20

    2500

    > 20

    > 1011

    9×9×10

    3500

    > 20

    2800

    > 20

    > 1011

    Damage Threshold: > 600 MW/cm2 for 10 ns pulses @ 1064 nm (AR coating)

    KTP Pockels cell working at 100kHz 

    54531

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