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ZHAO Xingwen, SU Hong, QIAN Yi, KONG Jie, ZHANG Xueheng, YAN Duo, LI Zhan kui, LI Haixia. Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors[J]. Nuclear Physics Review, 2014, 31(4): 499-504. doi: 10.11804/NuclPhysRev.31.04.499
Citation: ZHAO Xingwen, SU Hong, QIAN Yi, KONG Jie, ZHANG Xueheng, YAN Duo, LI Zhan kui, LI Haixia. Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors[J]. Nuclear Physics Review, 2014, 31(4): 499-504. doi: 10.11804/NuclPhysRev.31.04.499

Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors

doi: 10.11804/NuclPhysRev.31.04.499
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2014-12-20
  • The silicon strip array detector is one of external target facility subsystems in the Cooling Storage Ring on the Heavy Ion Research Facility at Lanzhou (HIRFL-CSR). Using the ASICs, the front-end electronics module has been developed for the silicon strip array detectors and can implement measurement of energy of 96 channels. The performance of the front-end electronics module has been tested. The energy linearity of the front-end electronics module is better than 0.3% for the dynamic range of 0.1 ~ 0.7 V. The energy resolution is better than 0.45%. The maximum channel crosstalk is better than 10%. The channel consistency is better than 1.3%. After continuously working for 24 h at room temperature, the maximum drift of the zero-peak is 1.48 mV.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors

doi: 10.11804/NuclPhysRev.31.04.499

Abstract: The silicon strip array detector is one of external target facility subsystems in the Cooling Storage Ring on the Heavy Ion Research Facility at Lanzhou (HIRFL-CSR). Using the ASICs, the front-end electronics module has been developed for the silicon strip array detectors and can implement measurement of energy of 96 channels. The performance of the front-end electronics module has been tested. The energy linearity of the front-end electronics module is better than 0.3% for the dynamic range of 0.1 ~ 0.7 V. The energy resolution is better than 0.45%. The maximum channel crosstalk is better than 10%. The channel consistency is better than 1.3%. After continuously working for 24 h at room temperature, the maximum drift of the zero-peak is 1.48 mV.

ZHAO Xingwen, SU Hong, QIAN Yi, KONG Jie, ZHANG Xueheng, YAN Duo, LI Zhan kui, LI Haixia. Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors[J]. Nuclear Physics Review, 2014, 31(4): 499-504. doi: 10.11804/NuclPhysRev.31.04.499
Citation: ZHAO Xingwen, SU Hong, QIAN Yi, KONG Jie, ZHANG Xueheng, YAN Duo, LI Zhan kui, LI Haixia. Development of a Multi-channel Front-end Electronics Module based on ASIC for Silicon Strip Array Detectors[J]. Nuclear Physics Review, 2014, 31(4): 499-504. doi: 10.11804/NuclPhysRev.31.04.499

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