Hsiao Chun-Ching, Liu Sheng-Yi, Siao An-Shen
Department of Mechanical Design Engineering, National Formosa University, No. 64, Wunhua Rd., Huwei Township, Yunlin County 632, Taiwan.
Department of Mechanical Engineering, National Taiwan University of Science and Technology, No. 43, Keelung Rd., Sec. 4, Taipei 10607, Taiwan.
Sensors (Basel). 2015 Jul 6;15(7):16248-64. doi: 10.3390/s150716248.
This article proposes a meliorated multi-frequency band pyroelectric sensor for detecting subjects with various velocities, namely extending the sensing frequency under good performance from electrical signals. A tactic, gradually increasing thickness of the ZnO layers, is used for redeeming drawbacks of a thicker pyroelectric layer with a tardy response at a high-frequency band and a thinner pyroelectric layer with low voltage responsivity at a low-frequency band. The proposed sensor is built on a silicon substrate with a thermal isolation layer of a silicon nitride film, consisting of four pyroelectric layers with various thicknesses deposited by a sputtering or aerosol deposition (AD) method and top and bottom electrodes. The thinnest ZnO layer is deposited by sputtering, with a low thermal capacity and a rapid response shoulders a high-frequency sensing task, while the thicker ZnO layers are deposited by AD with a large thermal capacity and a tardy response shoulders a low-frequency sensing task. The fabricated device is effective in the range of 1 KHz~10 KHz with a rapid response and high voltage responsivity, while the ZnO layers with thicknesses of about 0.8 μm, 6 μm, 10 μm and 16 μm are used for fabricating the meliorated multi-frequency band pyroelectric sensor. The proposed sensor is successfully designed, analyzed, and fabricated in the present study, and can indeed extend the sensing range of the multi-frequency band.
本文提出了一种用于检测不同速度物体的改进型多频带热释电传感器,即从电信号中在良好性能下扩展传感频率。采用一种逐渐增加ZnO层厚度的策略,以弥补较厚热释电层在高频带响应迟缓以及较薄热释电层在低频带电压响应率低的缺点。所提出的传感器基于具有氮化硅膜热隔离层的硅衬底构建,由通过溅射或气溶胶沉积(AD)方法沉积的四个不同厚度的热释电层以及顶部和底部电极组成。最薄的ZnO层通过溅射沉积,具有低热容量和快速响应,承担高频传感任务,而较厚的ZnO层通过AD沉积,具有大热容量和迟缓响应,承担低频传感任务。所制造的器件在1 KHz至10 KHz范围内有效,具有快速响应和高电压响应率,同时使用厚度约为0.8μm、6μm、10μm和16μm的ZnO层来制造改进型多频带热释电传感器。在本研究中成功设计、分析并制造了所提出的传感器,并且确实可以扩展多频带的传感范围。