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Global Silicon Drift X-ray Detectors Production, Demand and Key Producers, 2022-2028

date 05 Dec 2022

date Machinery & Equipment

new_biaoQian Silicon Drift X-ray Detectors

Like other solid state X-ray detectors, silicon drift detectors measure the energy of an incoming photon by the amount of ionization it produces in the detector material. This varying ionization produces varying charge, which the detector electronics measure for each incoming photon.

USD4480.00

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Global Silicon Drift X-Ray Detectors Production, Demand and Key Producers, 2022-2028

date 05 Dec 2022

date Machinery & Equipment

new_biaoQian silicon drift x ray detectors production demand producers

Like other solid state X-ray detectors, silicon drift detectors measure the energy of an incoming photon by the amount of ionization it produces in the detector material. This varying ionization produces varying charge, which the detector electronics measure for each incoming photon. In the SDD, this material is high purity silicon with a very low leakage current. The high purity allows for the use of Peltier cooling instead of the traditional liquid nitrogen. The major distinguishing feature of a SDD is the transversal field generated by a series of ring electrodes that causes charge carriers to 'drift' to a small collection electrode. The 'drift' concept of the SDD (which was imported from particle physics) allows significantly higher count rates coupled with a very low capacitance of the detector. Silicon Drift X-ray Detectors are X-ray radiation detectors used in x-ray spectrometry (XRF and EDS) and electron microscopy, or also calles Silicon drift detectors (SDDs). We focus on the complete silicon drift X-ray detectors system.

USD4480.00

Add To Cart

Add To Cart

industry 05 Dec 2022

industry Machinery & Equipment

new_biaoQian Silicon Drift X-ray Detectors

Like other solid state X-ray detectors, silicon drift detectors measure the energy of an incoming photon by the amount of ionization it produces in the detector material. This varying ionization produces varying charge, which the detector electronics measure for each incoming photon.

USD4480.00

addToCart

Add To Cart

Like other solid state X-ray detectors, silicon drift detectors measure the energy of an incoming photon by the amount of ionization it produces in the detector material. This varying ionization produces varying charge, which the detector electronics measure for each incoming photon. In the SDD, this material is high purity silicon with a very low leakage current. The high purity allows for the use of Peltier cooling instead of the traditional liquid nitrogen. The major distinguishing feature of a SDD is the transversal field generated by a series of ring electrodes that causes charge carriers to 'drift' to a small collection electrode. The 'drift' concept of the SDD (which was imported from particle physics) allows significantly higher count rates coupled with a very low capacitance of the detector. Silicon Drift X-ray Detectors are X-ray radiation detectors used in x-ray spectrometry (XRF and EDS) and electron microscopy, or also calles Silicon drift detectors (SDDs). We focus on the complete silicon drift X-ray detectors system.

USD4480.00

addToCart

Add To Cart