TY - JOUR
T1 - Thermopile infrared detector with detectivity greater than 10 8 cmHz (1/2)/W
AU - Wang, Kaiqun
AU - Xue, Chenyang
AU - Liang, Ting
AU - Jiao, Binbin
AU - Zhang, Wendong
AU - Chen, Dapeng
AU - Xiong, Jijun
PY - 2010/7
Y1 - 2010/7
N2 - In this paper, the design, fabrication and experimental results of the thermopile infrared detector, with a single layer of low-stress SiN x membrane, instead of thin sandwich layer membrane of SiO 2-Si 3N 4 are presented. Thermal isolation is achieved by using back etching of bulk silicon. Thermopiles are consisted of serially interconnected p-poly-Si/Al thermocouples supported by the single layer of SiN x membrane with low stress. Au/Ti reflective coating was evaporated on the surface of cold junctions of the thermopile to block incident radiation. In the measurement, we find that infrared absorbance of SiN x membrane to different wavelength is diverse and less than 100%, which has great influence on calculating the actual absorbing power of the detector, so the infrared (IR) transmission spectrum is measured to calibrate the actual infrared absorbing amount of the detector. The analysis result shows that only 43.72% infrared radiation is absorbed by the detector. Based on the measurement of IR transmission spectrum and output voltage of the detector, the response sensitivity of the detector is calculated as 31.65 V/W, detectivity of the detector is 1.16∈×∈10 8 cmHz (1/2)W -1, and response time of the detector is 126 ms.
AB - In this paper, the design, fabrication and experimental results of the thermopile infrared detector, with a single layer of low-stress SiN x membrane, instead of thin sandwich layer membrane of SiO 2-Si 3N 4 are presented. Thermal isolation is achieved by using back etching of bulk silicon. Thermopiles are consisted of serially interconnected p-poly-Si/Al thermocouples supported by the single layer of SiN x membrane with low stress. Au/Ti reflective coating was evaporated on the surface of cold junctions of the thermopile to block incident radiation. In the measurement, we find that infrared absorbance of SiN x membrane to different wavelength is diverse and less than 100%, which has great influence on calculating the actual absorbing power of the detector, so the infrared (IR) transmission spectrum is measured to calibrate the actual infrared absorbing amount of the detector. The analysis result shows that only 43.72% infrared radiation is absorbed by the detector. Based on the measurement of IR transmission spectrum and output voltage of the detector, the response sensitivity of the detector is calculated as 31.65 V/W, detectivity of the detector is 1.16∈×∈10 8 cmHz (1/2)W -1, and response time of the detector is 126 ms.
KW - Detectivity
KW - Infrared transmission spectrum
KW - Low-stress SiN membrane
KW - Response sensitivity
KW - Thermopile infrared detector
UR - https://www.scopus.com/pages/publications/77955492354
U2 - 10.1007/s10762-010-9635-y
DO - 10.1007/s10762-010-9635-y
M3 - 文章
AN - SCOPUS:77955492354
SN - 1866-6892
VL - 31
SP - 810
EP - 820
JO - Journal of Infrared, Millimeter, and Terahertz Waves
JF - Journal of Infrared, Millimeter, and Terahertz Waves
IS - 7
ER -