Modular radiation detector assembly

6359282
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Inventors

Sekela, William D.

Application #

366855

Filed

Aug-4-1999

Published

Mar-19-2002

Current US Class

250/363.02
250/367
250/368
250/370.09
250/370.11

International Classes

G01T 001/20

Field of Search

250/370.11 250/363.02 250/367 250/370.09 250/368

Assignee

Saint-Gobain Ceramics & Plastics, Inc. (Worcester, MA)

Examiners

Hannaher; Constantine

Attorney, Agent or Firm

Bulson; Donald Volker Ulbrich

US Patent References

4649276   High-energy radiat...
5753919   Gamma ray detecti...

Referenced by:

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Citation

Cite This Patent

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Abstract
A modular radiation detector includes a scintillator module containing a crystal, and an electronics module containing a light sensing device such as a photomultiplier tube (PMT), and an electronics package. The scintillator module and the electronics module are releaseably mechanically coupled, for example by means of mating threaded portions on each of the modules. The crystal and the PMT are optically coupled via an optical window in the scintillator module and a removable gel pad which is pressed between the modules as they are mechanically coupled together.
 
Claims
What is claimed is:

1. A radiation detector assembly comprising:

a scintillator module including a scintillator casing and a scintillator within the casing; and

an electronics module including a photodetector casing and a light sensing device within the photodetector casing;

wherein the scintillator casing and the photodetector casing are releaseably mechanically coupled to bring the scintillator and the light sensing device into an optically coupled relationship; and

wherein the light sensing device is axially movable within the photodetector casing and resiliently biased towards the scintillator.

2. The detector of claim 1, wherein the light sensing device is a photomultiplier tube.



Description
FIELD OF THE INVENTION

The invention herein described relates generally to a radiation detector assembly and a method for assembling the same. The radiation detector assembly is particularly useful for well bore hole logging applications, but may also have use in other applications.

DESCRIPTION OF THE RELATED ART

Radiation detectors have been employed in the oil and gas industry for well logging. These detectors have used thallium-activated sodium iodide crystals that are effective in detecting gamma rays. The crystals are enclosed in tubes or casings to form a crystal package. The crystal package has an optical window at one end of the casing which permits radiation-induced scintillation light to pass out of the crystal package for measurement by a light sensing device, such as a photomultiplier tube (PMT) coupled to the crystal package. The PMT converts the light photons emitted from the crystal into electrical pulses that are shaped and digitized by associated electronics. Pulses that exceed a threshold level are registered as counts that may be transmitted "uphole" by wire to analyzing equipment or stored locally.
 
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