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DMILL, a mixed analog-digital radiation-hard BICMOS technology for high energy physics electronics

机译:DMILL,一种用于高能物理电子学的混合模拟-数字辐射-硬BICMOS技术

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High energy physics experiments under preparation at CERN (Geneva, Switzerland) with the future LHC (Large Hadron Collider) require a fast, low noise, very rad-hard, mixed analog-digital microelectronics VLSI technology. Readout electronics designed using such a technology for the central parts of the LHC particle detectors must withstand more than 10 Mrad (SiO/sub 2/) and 10/sup 14/ neutrons/cm/sup 2/ over 10 years of operation. We are presenting here recent results obtained with a new rad-hard analog-digital technology called DMILL, which monolithically integrates NPN bipolar, CMOS and P-JFET transistors, and which has been specifically developed to fulfil the severe constraints of LHC detectors readout circuits.
机译:在CERN(日内瓦,瑞士)的高能物理实验与未来的LHC(大型强子撞机)需要快速,低噪声,非常抗体,混合的模拟 - 数字微电子VLSI技术。使用这种技术设计的用于LHC粒子探测器的中心部分设计的电子设备必须承受超过10个MRAD(SIO / SUB 2 /)和10 / SUP 14 /中子/ CM / SUP 2 /超过10年的操作。我们在这里介绍了最近通过称为DMill的Rad-Hard模拟数字技术获得的最新结果,该技术整体集成了NPN双极,CMOS和P-JFET晶体管,并且已经专门开发以满足LHC检测器读出电路的严重约束。

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