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High speed ethernet application for the trigger electronics of the new small wheel

机译:高速以太网在新型小轮的触发电子设备中的应用

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The ATLAS detector will be upgraded in 2018. The main focus of the Phase-I ATLAS upgrade is on the Level-1 trigger, replacing the present muon small wheels (SW) with the “new small wheel(NSW)”, which consists of small thin gap chamber(sTGC) and micromegas (MM). A versatile application-specific integrated circuit(ASIC), the VMM chip, have been developed to read out the signals of the sTGC and MM. The VMM have 64 channels. In order to test the performance of the VMM, a large data transfer rate is needed. Meanwhile, it is required to implement the multi-board interconnection. It is proposed to apply the high-speed Ethernet-based network. We designed and implemented a test platform, the Gigabit Ethernet Module(GEM). The test result shows that the transfer rate can reach up to 926Mbps. Subsequently, the Ethernet is applied in the pad front end board (pFEB) and the thin gap chamber simulation signal generator (SG). This paper introduces the implementation of the GEM platform, as well as its applications. The features of the systems are described in detail.
机译:ATLAS探测器将在2018年进行升级。第一阶段ATLAS升级的重点是在Level-1扳机上,用“新的小型轮(NSW)”代替现有的μ型小型轮(SW),包括小而细的间隙室(sTGC)和微米(MM)。已经开发了一种通用的专用集成电路(ASIC)VMM芯片,以读取sTGC和MM的信号。 VMM具有64个通道。为了测试VMM的性能,需要大的数据传输速率。同时,需要实现多板互连。提议应用基于高速以太网的网络。我们设计并实现了一个测试平台,即千兆以太网模块(GEM)。测试结果表明,传输速率可以达到926Mbps。随后,将以太网应用到焊盘前端板(pFEB)和薄间隙腔模拟信号发生器(SG)中。本文介绍了GEM平台的实现及其应用。详细介绍了系统的功能。

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