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    CAESIUM-ANTIMONY SPECTRAL RESPONSE Search Results

    CAESIUM-ANTIMONY SPECTRAL RESPONSE Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    LM710CH
    Rochester Electronics LLC LM710 - Comparator, 1 Func, 5000uV Offset-Max, 40ns Response Time, BIPolar, MBCY8 PDF Buy
    LM161H/883
    Rochester Electronics LLC LM161 - Comparator, 3000uV Offset-Max, 14ns Response Time, BIPolar, MBCY10 - Dual marked (5962-8757203IA) PDF Buy
    LM760J/883
    Rochester Electronics LLC LM760 - Comparator, 1 Func, 6000uV Offset-Max, 16ns Response Time, BIPolar, CDIP8 - Dual marked (5962-8754501CA) PDF Buy
    ADC34RF55IRTD
    Texas Instruments Quad-channel, 14-bit, 3-GSPS, low noise spectral density (NSD), RF-sampling ADC 64-VQFN -40 to 85 Visit Texas Instruments
    ADC34RF52IRTDT
    Texas Instruments Quad-channel, 14-bit, 1.5-GSPS low-noise spectral density (NSD) RF-sampling ADC 64-VQFN -40 to 85 Visit Texas Instruments

    CAESIUM-ANTIMONY SPECTRAL RESPONSE Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    photomultiplier

    Abstract: photomultiplier 8 stage JT INDUSTRIES Scans-0017376
    Contextual Info: 27M13 EDISWAN 27MI3 SEVEN STAGE PHOTO-MULTIPLIER G EN ERA L The 27M13 is a seven stage Photo-multiplier having a blue sensitive cathode and twin anodes. Its sensitivity in typical operation is 2.5 amps/lumen. The cathode surface is of •<Caesium Antimony.


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    27M13 27MI3 27M13 photomultiplier photomultiplier 8 stage JT INDUSTRIES Scans-0017376 PDF

    phototube philips spectral response

    Abstract: 90AV k938 radiation tube phototube 939 phototube
    Contextual Info: PHILIPS 90 AV High vacuum PH0T0CELL CELLULE PHOTOELECTRIQUE à vide poussé Hochvakuum PHOTOZELLE Cathode: Cathode; Kathode: Caesium Césium Cäsium - antimony, blue sensitive - antimoine, sensible au bleu - Antimon, blau empfindlich Dimensions in mra Dimensions


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    90AVI phototube philips spectral response 90AV k938 radiation tube phototube 939 phototube PDF

    Contextual Info: Hollow Cathode Lamps Overview Atomic absorption spectroscopy or AAS in its modern form came from principles developed by Australian physicist Dr. A. Walsh in 1955. Atomic absorption spectroscopy is ideal for analyzing minute quantities of metallic elements because its operating principle and analysis method


    Original
    SE-164 1014E01 PDF