A 6-9 GHz 1.28 Gbps 76 mW Amplitude and Synchronized Time Shift Keying IR-UWB CMOS Transceiver for Brain Computer Interfaces.

Geunhaeng Lee, Junyoung Jang, Kyoungseok Song, Tae Wook Kim
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Abstract

This paper proposes a low-power, high-speed impulse radio-ultra-wideband (IR-UWB) transceiver for brain computer interfaces (BCIs) using amplitude and synchronized time shift keying technique (ASTSK). The proposed IR-UWB transmitter (Tx) generates two pulses (sync pulse and data pulse) per symbol rate. The time difference between two pulses is used for synchronized time shift keying and the amplitude of the two pulses is used for amplitude shift keying. The receiver (Rx) demodulates the time difference with a low power time-to-digital converter (TDC) and peak detector (PD) based amplitude demodulation is suggested to relax analog-to-digital converter (ADC) burden for low power receiver. Especially the Tx-based synchronized operation eliminates the need for complex clock circuitry such as phase-lock loop (PLL) and reference crystal oscillator. Therefore, it can achieve low power and high-speed operation. The prototype, fabricated in 65 nm CMOS, has a frequency range of 6-9 GHz, communication speed of 1.28 Gbps, and power consumption of 18 mW (Tx) and 58 mW (Rx). This work is a fully integrated RF transceiver adapted for high-order modulation and designed to include the receiver.

用于脑计算机接口的 6-9 GHz 1.28 Gbps 76 mW 振幅和同步时移键控 IR-UWB CMOS 收发器。
本文提出了一种使用振幅和同步时移键控技术(ASTSK)的低功耗、高速脉冲无线电超宽带(IR-UWB)收发器,用于脑计算机接口(BCI)。拟议的 IR-UWB 发射器(Tx)按符号率产生两个脉冲(同步脉冲和数据脉冲)。两个脉冲之间的时间差用于同步时移键控,两个脉冲的振幅用于振幅移动键控。接收器(Rx)使用低功耗时数转换器(TDC)解调时差,建议使用基于峰值检波器(PD)的振幅解调,以减轻低功耗接收器的模数转换器(ADC)负担。特别是基于 Tx 的同步操作,无需锁相环 (PLL) 和基准晶体振荡器等复杂的时钟电路。因此,它可以实现低功耗和高速运行。原型采用 65 纳米 CMOS 制作,频率范围为 6-9 GHz,通信速度为 1.28 Gbps,功耗为 18 mW(Tx)和 58 mW(Rx)。该作品是一款完全集成的射频收发器,适用于高阶调制,并设计有接收器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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