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Standard detectors


ScintiblocTMCrismatec
Description

The ScintiblocTM design is a compact and integral assembly consisting of :
  • a Scintillation crystal: NaI(Tl), BGO...
  • a selected Photomultiplier tube (PMT), directly and permanently coupled to the crystal, with a high refractive index optical coupling medium.
  • a mu-metal shield around the PMT to protect against external magnetic fields.

hermetically sealed in a low mass light tight housing, with a thin aluminium (typically 0.5mm thick) entrance window.
scintibloc
Advantages
  • Simple plug-in unit.
  • Permanent light sealing ( no PMT damage).
  • Selection of the PMT (gain stability and linear response) and direct coupling of the PMT on the crystal to guarantee consistent and superior energy resolution.
Applications

General gamma ray counting and spectroscopy in the range of 15 KeV to 5 MeV.
Common configurations

Optimum configurations are achieved with the following crystal - PMT sizes :
PMT diameter Crystal sizes
1.5" F = 38mm to 51mm
H = on request
2" F = 38mm to 51mm
H = on request
3" F = 63.5mm to 76mm
H = on request
5" F = 102mm to 127mm
H = on request
Options
  • Electronics: Voltage Divider, Preamplifier and High Voltage devices can be incorporated on request.
  • Premium energy resolution assemblies: an external focusing potentiometer can be added to adjust and improve the photocathode optics.
Other configurations

Axial well Scintibloc
  • The most efficient configuration.
  • Application: high gamma ray counting for a small volume of liquid or solid samples (Radio-Immuno Assay).
  • Well sizes: diameter and length on request. Standard wall thickness : 0.25mm.

Transversal well Scintibloc

  • The second most efficient configuration: the hole is machined perpendicular to the crystal axis.
  • Application: high gamma ray counting for a small volume of liquid or solid samples, for fuel flow studies and scanning fuel rods.
  • Well sizes: 0.25mm thick, diameter and length on request.

Rugged assemblies designed to operate in severe temperature, vibration and shock conditions.

Sealed assemblies made to resist hydrostatic pressure.

Thin entrance window assemblies: crystal thickness, entrance window type and thickness are defined according to the low-energy gamma and X-Rays to be detected.

Low background assemblies manufactured with selected low background components.

Gain stabilization assemblies: a small radioactive source or a LED source is incorporated into the Scintibloc assembly.
Nomenclature

nomenclature 32 x 25 / X

The Scintibloc type is defined by the letter S.
The following letters are used for the other characteristics :

Design nomenclature

P : Axial well design
Pt : Transversal well design
R : Rugged assembly
T: High temperature unit
B: Beryllium entrance window
MIB: Multilayer Interlaminar Barrier entrance window
L : Detector and PMT connected by a flexible light guide.
F: Selected low background materials.
Q: Photomultiplier tube with a quartz window.
S: Crystal equipped with radioactive stabilization source.
W: Phoswhich assembly.

Electronics nomenclature

E: Voltage divider incorporated in the housing.
A: Preamplifier incorporated in the housing.
HV: High Voltage device 12.7mmx12.7mmx12.7mm incorporated in the housing.



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