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Air cavity low-loss transmission lines for high speed serial link applications

机译:用于高速串行链路应用的空气腔低损耗传输线

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This paper reports on the design, optimization, processing and measurement of an air-cavity transmission line structure on FR-4 boards for high-speed chip-to-chip links. The proposed structure has air as the insulating material, thereby minimizing the dielectric loss. Full-wave electromagnetic simulation is used to predict the performance of the proposed air-cavity structure. Compared to conventional transmission lines on an FR4 substrate, the effective dielectric constant is reduced by 25% from 2.75 to 2.07, and the dielectric loss is reduced by 26% from 0.48 dB/cm (1.22 dB/inch) to 0.35 dB/cm (0.9 dB/inch) at 20 GHz. Simulation also shows that conductor surface roughness contributes significant loss, which is confirmed by the measurement results. An active low power electrical link demonstration is also reported herein. The transmitter (TX) utilizes a 1-tap feed-forward-equalization (FFE) for pre-cursor cancellation and the receiver (RX) a 1-tap decision-feedback-equalization (DFE) for post-cursor cancellation. The TX and RX frontends implement a current-sharing scheme to reduce the overall link power consumption. The circuitry and interconnect were co-designed to achieve 6.25 Gb/s at ∼0.6 mW/Gb/s (or 0.6 pJ/bits) in 0.13 μm 1.2V CMOS process.
机译:本文报告了FR-4电路板上的空气传输线结构的设计,优化,加工和测量,用于高速芯片对芯片链路。所提出的结构具有作为绝缘材料的空气,从而最小化介电损耗。全波电磁仿真用于预测所提出的气腔结构的性能。与FR4基板上的传统传输线相比,有效介电常数从2.75到2.07减少25%,介电损耗从0.48 db / cm(1.22 db /英寸)减少26%至0.35 db / cm( 0.9 db /寸)在20 ghz。模拟还表明导体表面粗糙度导致显着的损失,这通过测量结果确认。本文还报告了一个有效的低功率电气链路演示。发送器(TX)利用用于预光标消除的1分接馈电 - 均衡(FFE),并且接收器(Rx)为后光标消除的1分接判定反馈 - 均衡(DFE)。 TX和RX前端实现了电流共享方案以降低整体链路功耗。电路和互连共同设计为在0.13&#x03bc中实现6.25 gb / s∼ 0.6 mw / gb / s(或0.6 pj / bits); m 1.2v cmos工艺。

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