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首页> 外文期刊>Journal of Low Power Electronics >Differential Voltage Mode On-Chip Serial Transceiver for Global Interconnects
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Differential Voltage Mode On-Chip Serial Transceiver for Global Interconnects

机译:用于全局互连的差分电压模式片上串行收发器

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摘要

In this paper, a novel voltage mode serial transceiver is proposed for on-chip global interconnects. In order to minimize the power dissipation and to increase the speed, a novel domino logic based multiplexer and an improved voltage mode de-multiplexer cum sense amplifier (IVDSA) are proposed. A modified Delay locked loop (DLL) is also proposed for reducing the jitter as well as the number of clock cycles required for locking. The design of the proposed transmitter and DLL are carried out using method of logical effort. For the purpose of comparison, the transceiver for a Metal 4 interconnect of 5 mm length and 0.6 μm width is implemented in 180 nm technology using the proposed circuits and their performances are compared with that reported in literature. From the post layout simulation results, it is found that the transceiver operates at a speed of 4 Gb/s. The transmitter using domino logic based multiplexer achieves the same speed as that using 4:1 CMOS multiplexer but at 3.25 times lower power dissipation. The power dissipation of IVDSA is 2.88 times lower than that of a voltage mode sense amplifier and its sensitivity and bandwidth are higher by a factor of 10 and 2 respectively. The jitter of the modified DLL is lower by a factor of 1.4 and the locking time is 2 clock cycles less than that reported in literature.
机译:在本文中,提出了一种新颖的电压模式串行收发器,用于片上全局互连。为了最小化功耗并提高速度,提出了一种新型的基于多米诺逻辑的多路复用器和一种改进的电压模式解复用器兼感测放大器(IVDSA)。还提出了一种改进的延迟锁定环(DLL),以减少抖动以及锁定所需的时钟周期数。所提出的发射机和DLL的设计是使用逻辑努力的方法来进行的。为了进行比较,使用提出的电路以180 nm技术实现了长度为5 mm,宽度为0.6μm的Metal 4互连的收发器,并将其性能与文献中的性能进行了比较。从布局后的仿真结果可以看出,收发器的工作速度为4 Gb / s。使用基于多米诺逻辑的多路复用器的发送器可以达到与使用4:1 CMOS多路复用器相同的速度,但功耗要低3.25倍。 IVDSA的功耗比电压模式读出放大器的功耗低2.88倍,其灵敏度和带宽分别高10倍和2倍。修改后的DLL的抖动降低了1.4倍,并且锁定时间比文献报道的要少2个时钟周期。

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