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A 0.13μm CMOS VGA for Drift Chambers

机译:用于漂移室的0.13μmcmosvga

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摘要

The counting of the consecutive ionization clusters in a drift chamber is a very promising technique for particle identification purposes. Up to now the bottleneck for the application of this technique was the possibility of realizing a large number of very-fast read-out channels with reduce power consumption. Typical time separation between each ionization act in a helium-based gas mixture is from a few ns to a few tens of ns. Thus the read-out interface has to be able to process such a high-speed signals. In this paper, the first realization of a CMOS 0.13μm integrated readout circuit, including a fast variable gain amplifier (VGA) with 160MHz bandwidth is designed for the central tracker of a future collider (ILC, super-B). The VGA circuit has been optimized for low power consumption. Moreover, it presents a programmable power consumption (8.4mA, 9.4mA, 10.6mA) according to the gain setting (0dB, 10dB, 20dB). The design issues and the measured performance associated to this architecture are discussed.
机译:漂移室中连续电离簇的计数是一种非常有希望的粒子识别目的的技术。到目前为止,应用这种技术的瓶颈是实现大量非常快速读出通道的可能性,降低功耗。每个电离动作在氦基气体混合物中的典型时间分离是几个ns至几十个ns。因此,读出界面必须能够处理这种高速信号。在本文中,第一次实现CMOS0.13μm集成读出电路,包括具有160MHz带宽的快速可变增益放大器(VGA),专为未来撞机(ILC,SUPER-B)的中央跟踪器而设计。 VGA电路已针对低功耗进行了优化。此外,根据增益设置(0dB,10dB,20dB),它提出了可编程功耗(8.4mA,9.4mA,10.6mA)。讨论了与此架构相关的设计问题和测量性能。

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