1. A circuit for taking out timing signal from one dynode of photomultiplier is described.
介绍一种从光电倍增管倍增极引出快信号的电路。
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2. The dynode signal generation principle is analyzed and its timing characteristic studied.
分析了信号的产生机理,并研究了它的定时性能。
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3. Electrons are accelerated by making the voltage of each successive dynode of the tube more positive than the previous one.
使每个连续的光电倍增管电极的电压都比它前面一个电极的电压更高,这样电子就得到加速。
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4. The picoammeter reads the current at the last dynode, which is equal to the anode current minus the current flowing to the previous dynode.
皮安计在最后一个倍增管电极处读取电流,此电流等于阳极电流减去流过前一个倍增管电极的电流。
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5. It was concluded that the three key technologies are the glass microsphere classifying, MSP body molding and sintering, dynode making of MSP.
指出了微球板电子倍增器研制中的三项关键技术:玻璃微球的制作、分级,坯体的成型与烧结和打拿极制作。
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6. The easiest way to accomplish this is to apply a potential across the entire tube and tap the dynode voltages off a voltage divider, as shown in Figure 4-13.
7. The easiest way to accomplish this is to apply a potential across the entire tube and tap the dynode voltages off a voltage divider, as shown in Figure 4-13.