GD-5x Series Gamma Detectors

GD-5x Series Gamma Detectors

GD-5x Series Gamma Detectors are developed for gamma radiation detection and spectrometric analysis applications.

Description

GD-5x Series Gamma Detectors are a scintillation probe series developed for precise gamma radiation detection and utilization in spectrometric analysis applications.

The GD-5x series can be utilized as an external detector in environmental radiation monitoring, process radiation monitoring, liquid activity monitors, and laboratory gamma measurement applications. Through various crystal options, it adapts to varying sensitivity, energy resolution, temperature resistance, and application requirements.

The detector core consists of a NaI(Tl), YAP(Ce), CeBr₃, or CLYC:Ce scintillation crystal and a photomultiplier structure. Upon request, it can also be produced with different scintillator crystals such as LaBr₃, YAG(Ce), or CaF₂.

GD-5x series detectors, when used with multichannel analyzers, enable spectrometric analysis of the measured signal. Processing, evaluation, and reporting of gamma spectra are supported with DIM-09 BOX, DIM-15 BOX, and RadSpec software.

Its hermetically sealed and water-resistant structure offers reliable use in field, facility, and laboratory applications. Spectrum stabilization can be supported with a potassium chloride capsule or an LED control source, depending on the requirement.

Key Features

  • Scintillation Probe Series for Gamma Radiation Detection
  • NaI(Tl), YAP(Ce), CeBr₃, and CLYC:Ce Crystal Options
  • 50 keV – 3 MeV Energy Range
  • Photomultiplier-Based Signal Processing
  • Compatible Use with DIM-09, DIM-15, and RadSpec
  • Water-Resistant and Hermetic Housing Structure
  • Optional LED Control Source
  • Suitable for Environmental, Process, and Laboratory Measurements

Application Areas

  • Gamma Spectrometry Laboratories
  • Radiation Monitoring Systems
  • Process Radiation Monitoring
  • Liquid Effluent Monitoring
  • Environmental Radiation Measurements
  • Nuclear Power Plants
  • Radioactive Waste Characterization
  • Nuclear Medicine and Healthcare Facilities