BS IEC 61452 establishes methods for the calibration and use of high purity germanium spectrometers for the measurement of photon energies and emission rates over the energy range from 45 keV to approximately 3 000 keV and the calculation of radionuclide activities from these measurements. Minimum requirements for automated peak finding are stated.
BS IEC 61452 establishes methods for measuring the full-energy peak efficiency with calibrated sources.
BS IEC 61452 is intended for use by persons who understand the principles of HPGe gamma- spectrometry and are responsible for the development of correct procedures for the calibration and use of such detectors. This document is primarily intended for routine analytical measurements.
Note: BS IEC 61452 does not address the measurement of emission rates of annihilation radiation peaks or single- and double-escape peaks resulting from partial energy deposition in the detector from pair production.
BS IEC 61452 on nuclear instrumentation is relevant to:
A typical gamma-ray spectrometer consists of high purity germanium (HPGe) detector with its liquid nitrogen or mechanically refrigerated cryostat and preamplifier, associated to either analog or digital electronic modules including the detector biasing and signal processing (amplification, multichannel conversion, and storage) and data-readout devices. The spectrometers include or are associated with computers and their acquisition software.
The objective of BS IEC 61452 is to provide a basis for the routine calibration and use of germanium (HPGe) semiconductor detectors for the measurement of gamma-ray emission rates and thereby the activities of the radionuclides in a sample
BS IEC 61452 helps users by providing methods for the calibration and use of high purity germanium spectrometers for the measurement of photon energies and emission rates.
BS IEC 61452 provides a basis for the routine calibration and use of germanium (HPGe) semiconductor detectors for the measurement of gamma-ray emission rates and thereby the activities of the radionuclides in a sample.
In general, BS IEC 61452 benefits scientists and radiologists by helping them to watch out for gamma rays, radiation that is harmful to humans and the environment, and to reduce the risk of disasters.
BS IEC 61452:2021 supersedes BS IEC 61452:1995. BS IEC 61452:2021 includes some technical changes with respect to BS IEC 61452:1995. These include:
IEC 61452 Ed.2.0