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首页> 外文期刊>Journal of Electronic Testing: Theory and Applications: Theory and Applications >Extending a DWDM Optical Network Test System to 12 Gbps x4 Channels
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Extending a DWDM Optical Network Test System to 12 Gbps x4 Channels

机译:将DWDM光网络测试系统扩展到12 Gbps x4通道

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A "Development Platform" for prototyping new multi-GHz ATE has recently been introduced (Keezer et al. 2009). The first application was a multi-channel test system for characterizing an optical network switch operating at 2.5 Gbps per channel (Keezer et al. 2009, 2010). Nine transmitter channels (TX) and nine receivers (RX) were used to test the Dense Wavelength Division Multiplexing (DWDM) switching network. This present paper incorporates elements from the prototype designs into full-feature test modules targeting applications between 2.5 Gbps and 24.0 Gbps per channel. Specifically, the optical test system is extended for burst-mode 12 Gbps DWDM packets (more than 4-times the rate of the original system). Using 8 TX channels, an aggregate data rate of 96 Gbps is achieved. Alternatively, some modules can be configured to double the channel-count (up to 18) while operating at the lower 2.5 Gbps rate (45 Gbps aggregate rate). Lower rates permit use of lower-cost optical components. Two new modules are described with testability features such as: (1) support for "loopback" testing of DUT output-to-inputs, (2) DC electrical tests, (3) 2-to-1 multiplexing up to 24 Gbps, (4) ATE self-test/calibration loopback paths. Recently multiple Development Platforms have been constructed that can operate either independently or synchronized using very low-jitter (~1 ps RMS) clock distribution paths.
机译:最近已经引入了用于开发新的多GHz ATE原型的“开发平台”(Keezer等,2009)。第一个应用是多通道测试系统,用于表征以每通道2.5 Gbps的速度运行的光网络交换机(Keezer等,2009,2010)。九个发射器通道(TX)和九个接收器(RX)用于测试密集波分复用(DWDM)交换网络。本文将原型设计中的元素整合到针对每个通道2.5 Gbps至24.0 Gbps应用的全功能测试模块中。具体来说,光学测试系统扩展为突发模式12 Gbps DWDM数据包(是原始系统速率的4倍以上)。使用8个TX通道,可实现96 Gbps的总数据速率。或者,可以将某些模块配置为使通道数加倍(最多18个),同时以较低的2.5 Gbps速率(45 Gbps聚合速率)运行。更低的价格允许使用成本更低的光学组件。描述了具有可测试性功能的两个新模块,例如:(1)支持DUT输出到输入的“环回”测试;(2)直流电测试;(3)高达24 Gbps的2对1多路复用,( 4)ATE自检/校准环回路径。最近,已经构建了多个开发平台,这些平台可以使用极低抖动(〜1 ps RMS)的时钟分配路径独立运行或同步运行。

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