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    Untitled

    Abstract: No abstract text available
    Text: Ge Photodiodes Cooled Types Achieves higher S/N ratio by cooling • Optimized for low level infrared photometry • Lower temperature detection limit: Approx. 200 °C By cooling Ge photodiodes, the dark current can be reduced effec­ tively and the S/N ratio improved.


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    PDF P3226-02 P394A, P3207-04 P791-11 P4115 P3981-01, K3413-01, K1713-01, KIRDA0041EA P2750,

    B2538-05

    Abstract: B6175-05
    Text: Ge Photodiodes Cooled Types Spectral Response Range: 0.8 to 1.8 urn Achieving higher S/N by cooling T h e c h a rcte ristics of dark cu rrent and S / N can be im proved effectiviely by cooling Ge photodiodes. When cooled, it should be noted that the spectral response of Ge pho­


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    PDF B2538-05 B2614-05 B6175-05 KIRDB0023EA KIRDB0024EA KIRDB0025EB B2538-05

    B2538-05

    Abstract: B6175-05
    Text: Ge Photodiodes Cooled Types Achieves higher S/N ratio by cooling • Optimized for low level infrared photometry • Lower tem perature detection limit: Approx. 200 °C By coo lin g G e photo d io d es, the dark c u rre n t can be reduced e ffe c ­ tively and the S/N ratio im proved.


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    PDF B2538-05 5x101 B2614-05 1x101 3x101 B6175-05 KIRDB0023EA KIRDB0024EA KIRDC0001EA B2538-05 B6175-05

    Untitled

    Abstract: No abstract text available
    Text: Ge Photodiodes Cooled Types Achieves Higher S/N Ratio by Cooling By cooling G e photodiodes, the dark current can be reduced effec­ tively and the S/N ratio improved. W hen cooling, it should be noted that the spectral response o f Ge photodiodes shifts slightly to the short wavelength side.


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    PDF KIRDB0023EA