FIELD: physics.
SUBSTANCE: monitor for measuring the intensity of the beam of charged particles consisting of a scintillation counter characterized in that the signal from the photomultiplier anode is supplied to an electronic circuit via a galvanic connection, consisting of an operational amplifier that amplifies and splits the signal, wherein one signal is sent to the pulse shaper, and the other - to the amplifier, the output of which is applied to the capacitor, which accumulates the charge during the measurement of the cycle intensity, then the capacitor is discharged to the converter of voltage-frequency, a train of pulses from which is fed to the pulse shaper and then with the shapers of the pulses, the signals arrive at the counters.
EFFECT: increase in the range of measured intensities and self-calibration of the detector.
1 dwg
Title | Year | Author | Number |
---|---|---|---|
BEAM MONITOR | 2014 |
|
RU2616930C2 |
SPECTROMETER METHOD AND SYSTEM FOR NUCLEAR RADIATION MEASUREMENTS | 2002 |
|
RU2269798C2 |
ELECTRON AVALANCHE COORDINATE PROTRACTOR BASED ON POSITION- SENSITIVE DETECTORS | 0 |
|
SU1711108A1 |
SCINTILLATION IONISING RADIATION COUNTER | 2013 |
|
RU2548048C1 |
PORTAL RADIATION MONITOR | 2000 |
|
RU2191408C2 |
DEVICE FOR MEASURING NEUTRON FLOW DENSITY OF NUCLEAR POWER PLANT IN TERMS OF BACKGROUND INTERFERENCE FROM GAMMA RAYS AND HIGH-ENERGY SPACE ELECTRONS AND PROTONS | 2016 |
|
RU2615709C1 |
DETECTOR OF CHARGED PARTICLES WITH THIN SCINTILLATOR | 2015 |
|
RU2594991C1 |
METHOD FOR CALIBRATING HIGH-ENERGY SCINTILLATION DETECTOR AND DEVICE FOR ITS IMPLEMENTATION | 2017 |
|
RU2647515C1 |
METHOD OF TUNING OF SCINTILLATION COUNTER | 1991 |
|
RU2056639C1 |
MINIATURE PHOTON RADIATION DETECTOR | 2023 |
|
RU2811667C1 |
Authors
Dates
2018-01-12—Published
2016-03-09—Filed