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      Rad-hard vertical JFET switch for the HV-MUX system of the ATLAS upgrade Inner Tracker

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          Abstract

          This work presents a new silicon vertical JFET (V-JFET) device, based on the trenched 3D-detector technology developed at IMB-CNM, to be used as switches for the High-Voltage powering scheme of the ATLAS upgrade Inner Tracker. The optimization of the device characteristics is performed by 2D and 3D TCAD simulations. Special attention has been paid to the on-resistance and the switch-off and breakdown voltages to meet the specific requirements of the system. In addition, a set of parameter values has been extracted from the simulated curves to implement a SPICE model of the proposed V-JFET transistor. As these devices are expected to operate under very high radiation conditions during the whole experiment life-time, a study of the radiation damage effects and the expected degradation on the device performance is also presented at the end of the paper.

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          Most cited references4

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          Numerical Simulation of Radiation Damage Effects in p-Type and n-Type FZ Silicon Detectors

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            Strip detector design for ATLAS and HERA-B using two-dimensional device simulation

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              New BNL 3D-Trench electrode Si detectors for radiation hard detectors for sLHC and for X-ray applications

              Zheng Li (2011)
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                Author and article information

                Journal
                10.1088/1748-0221/11/01/C01043
                1511.00416

                Technical & Applied physics
                Technical & Applied physics

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