Nano Convergence Technology Division, National Nano Fab Center, Yuseong-gu, Daejeon 34141, Republic of Korea.
Sensor & Package Business Division, Partron Co., Ltd., Hwaseong-si 18449, Gyeonggi-do, Republic of Korea.
Biosensors (Basel). 2024 Feb 19;14(2):109. doi: 10.3390/bios14020109.
Reflection-type photoplethysmography (PPG) pulse sensors used in wearable smart watches, true wireless stereo, etc., have been recently considered a key component for monitoring biological signals such as heart rate, SPO, and blood pressure. Typically, the optical front end (OFE) of these PPG sensors is heterogeneously configured and packaged with light sources and receiver chips. In this paper, a novel quarter-annulus photodetector (NQAPD) with identical inner and outer radii of curvature has been developed using a plasma dicing process to realize a ring-type OFE receiver, which maximizes manufacturing efficiency and increases the detector collection area by 36.7% compared to the rectangular PD. The fabricated NQAPD exhibits a high quantum efficiency of over 90% in the wavelength of 500 nm to 740 nm and the highest quantum efficiency of 95% with a responsivity of 0.41 A/W at the wavelength of 530 nm. Also, the NQAPD is shown to increase the SNR of the PPG signal by 5 to 7.6 dB compared to the eight rectangular PDs. Thus, reflective PPG sensors constructed with NQAPD can be applied to various wearable devices requiring low power consumption, high performance, and cost-effectiveness.
反射式光体积脉搏波(PPG)脉搏传感器已被广泛应用于智能手表、真无线立体声(TWS)耳机等可穿戴设备中,可用于监测心率、血氧饱和度和血压等生物信号。通常,这些 PPG 传感器的光学前端(OFE)采用异质结构配置,并与光源和接收器芯片进行封装。本文提出了一种采用等离子体切割工艺制作的具有相同内外曲率半径的四分之一环形光电探测器(NQAPD),实现了环形 OFE 接收器,最大限度地提高了制造效率,并使探测器的收集面积比矩形 PD 增加了 36.7%。所制作的 NQAPD 在 500nm 至 740nm 的波长范围内具有超过 90%的高光量子效率,在 530nm 的波长下具有最高 95%的量子效率和 0.41A/W 的响应率。此外,与八个矩形 PD 相比,NQAPD 可将 PPG 信号的 SNR 提高 5 至 7.6dB。因此,采用 NQAPD 构建的反射式 PPG 传感器可应用于各种需要低功耗、高性能和高性价比的可穿戴设备中。