IP Library Granted Patent US 9,268,036
Granted Patent B2
US 9,268,036 · App. 14/494,969 · Granted Feb 23, 2016

Radiation detector and sample analyzer

Inventor: Genki Kinugasa (Tokyo, JP)
Assignee: JEOL Ltd.
G01T1/172G01T1/171
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Quick Facts
Patent No.
US 9,268,036
App. No.
14/494,969
Granted
Feb 23, 2016
Kind
B2
Abstract

A radiation detector is offered which can suppress generation of sum peaks. The radiation detector ( 100 ) has a radiation detection portion ( 2 ), a first differential filter portion ( 10 ) for converting the output signal S 2 from the detection portion into a first pulsed signal S 10, a second differential filter portion ( 20 ) for converting the output signal S 2 into a second pulsed signal S 20, a third differential filter portion ( 30 ) having a time constant longer than that of the second differential filter portion ( 20 ) and operative to convert the output signal S 2 into a third pulsed signal S 30, an event detection portion ( 40 ) for outputting an event signal S 40, a pileup detection portion ( 50 ) for outputting a pileup signal S 50 in response to the ratio between the pulse height of the second pulsed signal S 20 and the pulse height of the third pulsed signal S 30, and a pulse height detection portion ( 60 ) starting to detect the pulse height of the first pulsed signal S 10 in response to the event signal S 40 and outputting a detection signal S 60. The pulse height detection portion ( 60 ) stops from outputting the detection signal S 60 in response to the pileup signal S 50.

Claims (21)

1. A radiation detector comprising:

a radiation detection portion for detecting radiations and producing an output signal;

a first differential filter portion having a time constant and operative to differentiate the output signal from the radiation detection portion for converting the signal into a first pulsed signal;

a second differential filter portion having a time constant shorter than the time constant of the first differential filter portion and operative to differentiate the output signal from the radiation detection portion for converting the signal into a second pulsed signal;

a third differential filter portion having a time constant longer than the time constant of the second differential filter portion and shorter than the time constant of the first differential filter portion and operative to differentiate the output signal from the radiation detection portion for converting the signal into a third pulsed signal;

an event detection portion for outputting an event signal in response to the second and third pulsed signals;

a pileup detection portion for outputting a pileup signal in response to a ratio between a pulse height of the second pulsed signal and a pulse height of the third pulsed signal; and

a pulse height detection portion operative to start detection of the pulse height of the first pulsed signal in response to the event signal and to output a detection signal containing information about the pulse height of the first pulsed signal,

wherein said pulse height detection portion stops from outputting the detection signal in response to the pileup signal.

2. The radiation detector according to claim 1 , wherein said second differential filter portion takes the nth-order differential of the output signal (where n is an integer equal to or greater than 2 (i.e., n≧2)) from said radiation detection portion to convert the signal into said second pulsed signal.

3. A radiation detector comprising:

a radiation detection portion for detecting radiations and producing an output signal;

a first differential filter portion having a time constant and operative to differentiate the output signal from the radiation detection portion for converting the signal into a first pulsed signal;

a second differential filter portion having a time constant shorter than the time constant of the first differential filter portion and operative to take the nth-order differential (where n is an integer equal to or greater than 2 (i.e., n≧2)) of the output signal from the radiation detection portion for converting the signal into a second pulsed signal;

an event detection portion for outputting an event signal in response to the second pulsed signal; and

a pulse height detection portion operative to start detection of a pulse height of the first pulsed signal in response to the event signal and to output a detection signal containing information about the pulse height of the first pulsed signal.

4. The radiation detector according to claim 3 , further comprising a pileup detection portion for outputting a pileup signal in response to said event signal, and wherein said pulse height detection portion stops from outputting said detection portion in response to the pileup signal.

5. The radiation detector according to claim 1 , wherein the output signal from said radiation detection portion is a staircase waveform having steps of heights corresponding to energies of said radiations.

6. The radiation detector according to claim 3 , wherein the output signal from said radiation detection portion is a staircase waveform having steps of heights corresponding to energies of said radiations.

7. A sample analyzer including a radiation detector as set forth in claim 1 .

8. A sample analyzer including a radiation detector as set forth in claim 3 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2014
From: KINUGASA, GENKI
To: JEOL LTD.
Reel/Frame 034057/0558 →
Priority Claims (1)
JP 2013-198101 · Sep 25, 2013 · national
Continuity (1)
Related Publication 20150083913A1 · Mar 26, 2015