IEEE Trans Biomed Circuits Syst. 2021 Dec;15(6):1306-1319. doi: 10.1109/TBCAS.2021.3135843. Epub 2022 Feb 17.
This paper presents a frequency-splitting-based wireless power and data transfer IC that simultaneously delivers power and forward data over a single inductive link. For data transmission, frequency-shift keying (FSK) is utilized because the FSK modulation scheme supports continuous wireless power transmission without disruption of the carrier amplitude. Moreover, the link that manifests the frequency-splitting characteristic due to a close distance between coupled coils provides wide bandwidth for data delivery without degrading the quality factors of the coils. It results in large power delivery, high data rate, and high power transfer efficiency. The presented IC fabricated in a 180-nm BCD process simultaneously achieves up-to-115-mW wireless power delivery to the load and 2.5-Mb/s downlink data rate over the single inductive link. The measured overall power efficiency from the DC power supply at the transmitter module to the load at the receiver module reaches 56.7 % at its maximum, and the bit error rate is lower than 10 at 2.5 Mb/s. As a result, the figure of merit (FoM) for data transmission is enhanced by 2 times, and the FoM for power delivery is improved by 38.7 times compared to prior state-of-the-arts using a single inductive link.
本文提出了一种基于分频的无线功率和数据传输 IC,它可以通过单个感应链路同时传输功率和前向数据。对于数据传输,采用频移键控(FSK),因为 FSK 调制方案支持在不中断载波幅度的情况下连续无线功率传输。此外,由于耦合线圈之间的近距离导致链路表现出分频特性,从而为数据传输提供了宽的带宽,而不会降低线圈的品质因数。这导致了高的功率传输、高的数据速率和高的功率传输效率。本文提出的 IC 采用 180nm BCD 工艺制造,在单个感应链路中可同时实现高达 115mW 的无线功率传输和 2.5Mbps 的下行链路数据速率。从发射模块的直流电源到接收模块的负载的总功率效率在最大值时达到 56.7%,并且在 2.5Mbps 时误码率低于 10。因此,与使用单个感应链路的现有技术相比,数据传输的性能指标提高了 2 倍,功率传输的性能指标提高了 38.7 倍。