proton rx 4000 watts power amplifier circuit diagram
Abstract: Hamamatsu r300 0812E H5783
Text: PHOTOMULTIPLIER TUBES Basics and Applications THIRD EDITION Edition 3a PHOTON IS OUR BUSINESS 2007 HAMAMATSU PHOTONICS K. K. ▲ Photomultiplier Tubes ▲ Photomultiplier Tube Modules © 2007 HAMAMATSU PHOTONICS K. K. Introduction Light detection technolgy is a powerful tool that provides deeper understanding of more sophisticated
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OTH9001E03a
proton rx 4000 watts power amplifier circuit diagram
Hamamatsu r300
0812E
H5783
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6199 photomultiplier
Abstract: hamamatsu r1387 photomultiplier JEDEC B12-43 dynode JEDEC B12-43 B12-43 DY10 R1387
Text: PHOTOMULTlPLlER TUBE R1387 300 to 850nm Response S–20 38mm(1–1/2 Inch) Diameter, 10–stage, Head–On Type The configuration and basing diagram of the R1387 are identical with 6199 Photomultiplier tubes. GENERAL Parameter Spectral Response Wavelength of Maximum Response
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R1387
850nm
R1387
SE-171-41
TPMH1117E02
6199 photomultiplier
hamamatsu r1387
photomultiplier JEDEC B12-43
dynode
JEDEC B12-43
B12-43
DY10
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Peltier element
Abstract: E3059-500 hamamatsu r1387 E2762-506 E2762 R329-02 R3809U-50 C10372 C10373 C10372-01
Text: HIGH PERFORMANCE THERMOELECTRIC COOLERS C10372, C10373 SERIES The C10372 series and C10373 series are water-cooled thermoelectric coolers designed to reduce thermal electrons emitted from the photocathode of photomultiplier tubes PMTs in order to improve signal-to-noise ratio (S/N ratio). The C10372 series
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C10372,
C10373
C10372
SE-171-41
TACC1040E02
Peltier element
E3059-500
hamamatsu r1387
E2762-506
E2762
R329-02
R3809U-50
C10372-01
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Untitled
Abstract: No abstract text available
Text: CHAPTER 4 CHARACTERISTICS OF PHOTOMULTIPLIER TUBES This chapter details various characteristics of photomultiplier tubes, including basic and performance. For example, section 4.1 shows spectral response characteristics of typical photocathodes and also gives
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NS-14
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2272 ic
Abstract: a1320a
Text: 光電子増倍管 PHOTOMULTIPLIER TUBE その基礎と応用 第3a版 光センシングでホトニクスの未来を拓く ▲光電子増倍管 ▲光電子増倍管モジュール はじめに 光による極端領域の計測技術はより高度な現象の解明への大きな手法となりつつあります。
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OTH9001J03a
2272 ic
a1320a
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