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DESIGN OF 622Mb/s 16-CHANNEL CMOS OPTICAL TRNASCEIVER ARRAY

机译:622Mb / s 16通道CMOS光学TRNASCEIVER阵列的设计

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摘要

We describe design of 622 Mb/s 16-channel CMOS optical transceiver array using the 0.35μm CMOS technology. The transceiver array consists of Laser Diode (LD) driver and limiting amplifier with trans-impedance amplifier. CMOS LD driver offers the capability of independent dc and modulation current adjustments. The dc circuit used to pre-bias LD is adjustable for the dc current at a range of 0~30 mA. Because each amplifier block is de-coupled, there are several sources of non-linearity in the amplifier chains. These problems deteriorate the magnitude and timing performance. In order to solve these problems, we employ a compensate circuit which consists of positive and negative peak detectors and decision comparator. This scheme forces the data to be sliced in the middle eliminating timing errors. With this design technique, we have succeeded in developing a CMOS optical transceiver array with a high performance.
机译:我们描述了使用0.35μmCMOS技术的622 Mb / s 16通道CMOS光收发器阵列的设计。收发器阵列由激光二极管(LD)驱动器和带跨阻放大器的限幅放大器组成。 CMOS LD驱动器提供独立的直流和调制电流调整功能。用于对LD进行预偏置的直流电路可在0〜30 mA范围内调节直流电流。由于每个放大器模块都已去耦,因此放大器链中存在多个非线性源。这些问题降低了幅度和定时性能。为了解决这些问题,我们采用了由正负峰值检测器和判决比较器组成的补偿电路。此方案强制将数据切片在中间,从而消除时序误差。通过这种设计技术,我们成功地开发了具有高性能的CMOS光收发器阵列。

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