On the Design of a Linear Delay Element for the Triggering Module at CERN LHC

Jordan Lee Gauci, E. Gatt, O. Casha, G. Cataldo, I. Grech, J. Micallef
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引用次数: 2

Abstract

This paper presents an analytical model of a linear delay element circuit to be employed in the triggering module for the High Momentum Particle Identification Detector (HMPID) at the CERN Large Hadron Collider (LHC). The aim of the analytical model is to facilitate the design of the linear delay element circuit, while maximizing its linearity and delay range. The analytical model avoids the need of time consuming parametric sweeps on the aspect ratios of the various transistors of the delay element in order to optimize it. In addition, the analytical model can be used to predict the variation of the delay with the input tuning voltage. The proposed analytical model is verified via the simulation of the delay element circuit using the $0.18\mu \mathrm {m}$ X-FAB technology.
欧洲核子研究中心大型强子对撞机触发模块线性延迟元件的设计
本文提出了用于欧洲核子研究中心(CERN)大型强子对撞机(LHC)高动量粒子识别探测器(HMPID)触发模块的线性延迟元件电路的解析模型。分析模型的目的是为了方便线性延迟元件电路的设计,同时最大化其线性度和延迟范围。该分析模型避免了对延迟元件各晶体管的宽高比进行耗时的参数扫描以进行优化。此外,该解析模型还可用于预测延迟随输入调谐电压的变化。采用$0.18\mu \ mathm {m}$ X-FAB技术对延迟元件电路进行仿真,验证了所提出的分析模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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