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Characterization of high speed data transmission interface for future IRS payloads

机译:面向未来IRS有效载荷的高速数据传输接口的特性

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Camera Electronics for remote sensing payloads having multi-sensors with different resolutions in terms of spatial, spectral and radiometric calls for large amount of data to be sent to data handling system of spacecraft in real-time. Sensors have multiple video ports to be processed with ≥12-bit digitization generating data at >12Mbps simultaneously. Conventional Parallel transmission followed in earlier missions will require large number of interface devices and cables, resulting large weight and volume. Parallel transmission will also have signal integrity issues like EMI/EMC, crosstalk data skew etc. Hence to have better signal integrity, data needs to be serialized and transmitted with minimum interfaces. This calls for high-speed transmission medium (>1Gbps) within spacecraft subsystems. It also requires to address jitter and timing margins related issues. Serdes devices are used in various serial transmission standards like PCI express, Ethernet, fiber channel, etc. They have a set of dedicated serializer and deserializer units either in a single chip for duplex data transmission or a pair of devices. Main function of Serdes is to perform parallel-to-serial conversion of data with internally generated serial clock at the transmitter end, transmission of serial stream with or without clock over a differential interface and conversion of the serial data back to parallel at the receiver end with clock. Serdes devices use CMOS technology and LVDS digital interface, which means low power consumption and high noise immunity. One such Serdes device has been identified and evaluated under application conditions of camera electronics. This device transforms 21-bit parallel data into a three LVDS differential streams with total throughput of 1.575GBPs. Evaluation of these devices is challenging w.r.t. development of high bandwidth test set up and serial data analysis. This paper discusses test setup and characterization of Serdes.
机译:用于遥感有效载荷的相机电子设备具有在空间,光谱和辐射测量方面具有不同分辨率的多传感器,要求将大量数据实时发送到航天器的数据处理系统。传感器具有多个视频端口,可进行≥12位数字化处理,并同时以> 12Mbps的速度生成数据。早期任务中遵循的常规并行传输将需要大量接口设备和电缆,从而导致重量和体积较大。并行传输还会遇到信号完整性问题,例如EMI / EMC,串扰数据偏斜等。因此,要获得更好的信号完整性,就需要对数据进行串行化并以最少的接口进行传输。这要求在航天器子系统中使用高速传输介质(> 1Gbps)。它还需要解决与抖动和时序裕量有关的问题。 Serdes设备用于各种串行传输标准,例如PCI Express,以太网,光纤通道等。它们在单个芯片中用于双工数据传输的一对或一组设备中具有一组专用的串行器和解串器单元。 Serdes的主要功能是在发送器端使用内部生成的串行时钟执行数据的并行到串行转换,通过或不通过时钟通过差分接口传输串行流以及在接收器端将串行数据转换回并行与时钟。 Serdes设备使用CMOS技术和LVDS数字接口,这意味着低功耗和高抗噪性。已经在照相机电子设备的应用条件下识别并评估了一种这样的Serdes设备。该器件将21位并行数据转换为三个LVDS差分流,总吞吐量为1.575GBPs。对这些设备的评估具有挑战性。开发高带宽测试装置和串行数据分析。本文讨论了Serdes的测试设置和特性。

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