Department of Mechatronics Engineering, SRM Institute of Science and Technology, SRM Nagar, Kattankulathur, Chennai 603203, India.
Sensors (Basel). 2021 Nov 29;21(23):7961. doi: 10.3390/s21237961.
In the present scenario, a considerable assiduity is provided to develop novel human-machine interface technologies that rapidly outpace the capabilities of display technology in automotive industries. It is necessary to use a new cockpit design in conjunction with a fully automated driving environment in order to enhance the driving experience. It can create a seamless and futuristic dashboard for automotive infotainment application. In the present study, an endeavor was made to equip the In-vehicle bezels with printed capacitive sensors for providing superior sensing capabilities. Silver Nanoparticles based interdigitated pattern electrodes were formed over polycarbonate substrates to make printed capacitive sensors using screen printing process. The developed sensor was investigated to evaluate the qualitative and quantitative measures using direct and in-direct contact of touch. The proposed approach for sensors pattern and fabrication can highly impact on sensor performance in automotive infotainment application due to the excellent spatial interpolation with lower cost, light weight, and mechanical flexibility.
在当前的情况下,人们付出了相当大的努力来开发新的人机界面技术,这些技术迅速超越了汽车行业显示技术的能力。为了提高驾驶体验,有必要结合全新的驾驶舱设计和全自动驾驶环境来使用。这可以为汽车信息娱乐应用创造一个无缝和未来感十足的仪表盘。在本研究中,我们尝试在车载边框上配备印刷电容式传感器,以提供卓越的感应能力。在聚碳酸酯基板上形成基于银纳米粒子的叉指式图案电极,以使用丝网印刷工艺制造印刷电容式传感器。使用直接和间接触摸接触,对所开发的传感器进行了定性和定量评估。由于具有出色的空间插值、低成本、重量轻和机械灵活性,因此,这种传感器图案和制造方法非常适合汽车信息娱乐应用中的传感器性能。