Jun Byoung Ok, Lee Gwang Jun, Kang Jong Gu, Kim Seunguk, Choi Ji-Woong, Cha Seung Nam, Sohn Jung Inn, Jang Jae Eun
Daegu Gyeongbuk Institute of Science and Technology (DGIST), Department of Information and Communication Engineering, Daegu, 711-873, Korea.
Advanced Naval Technology Center, Agency for Defense Development, Changwon, 645-600, Korea.
Sci Rep. 2015 Dec 22;5:18621. doi: 10.1038/srep18621.
A wireless thin film transistor (TFT) structure in which a source/drain or a gate is connected directly to a micro antenna to receive or transmit signals or power can be an important building block, acting as an electrical switch, a rectifier or an amplifier, for various electronics as well as microelectronics, since it allows simple connection with other devices, unlike conventional wire connections. An amorphous indium gallium zinc oxide (α-IGZO) TFT with magnetic antenna structure was fabricated and studied for this purpose. To enhance the induction coupling efficiency while maintaining the same small antenna size, a magnetic core structure consisting of Ni and nanowires was formed under the antenna. With the micro-antenna connected to a source/drain or a gate of the TFT, working electrical signals were well controlled. The results demonstrated the device as an alternative solution to existing wire connections which cause a number of problems in various fields such as flexible/wearable devices, body implanted devices, micro/nano robots, and sensors for the 'internet of things' (IoT).
一种无线薄膜晶体管(TFT)结构,其中源极/漏极或栅极直接连接到微天线以接收或传输信号或功率,它可以成为一个重要的构建模块,作为电气开关、整流器或放大器,用于各种电子设备以及微电子设备,因为与传统的有线连接不同,它允许与其他设备进行简单连接。为此,制备并研究了一种具有磁性天线结构的非晶铟镓锌氧化物(α-IGZO)TFT。为了在保持相同小天线尺寸的同时提高感应耦合效率,在天线下方形成了由镍和纳米线组成的磁芯结构。通过将微天线连接到TFT的源极/漏极或栅极,工作电信号得到了很好的控制。结果表明,该器件是现有有线连接的一种替代解决方案,现有有线连接在诸如柔性/可穿戴设备、体内植入设备、微/纳米机器人以及物联网(IoT)传感器等各个领域中会引发诸多问题。