Byun Sangjin
Division of Electronics and Electrical Engineering, Dongguk University, Seoul 04620, Korea.
Micromachines (Basel). 2022 Mar 26;13(4):519. doi: 10.3390/mi13040519.
An integrated near-infrared (NIR) spectroscopy prototype module for sugar content estimation of apples is presented. Since this is the first attempt to design an integrated NIR spectroscopy module, we followed the design process as follows. First, we estimated the sugar content of apples using a tungsten halogen light source and a 700 nm-1000 nm NIR spectrometer with a 10 nm wavelength resolution and a 16b analog-to-digital converter (ADC) resolution. Second, we determined the most effective wavelengths among 31 evenly distributed wavelengths while observing the correlation coefficient, R, and then we reduced the ADC resolution 1b by 1b starting from 16b while also observing the R. Lastly, we designed an integrated NIR spectroscopy module with the selected eight wavelengths and a 13 ADC resolution. The module implemented in a 0.18 μm 1P6M CMOS process occupies a die area of 0.84 mm. By utilizing this module with eight off-chip light emitting diodes (LED) and one photo diode (PD), the measured R and the standard error of calibration (SEC) were 0.365 and 0.686 brix, respectively.
本文介绍了一种用于苹果糖分含量估算的集成近红外(NIR)光谱原型模块。由于这是首次尝试设计集成近红外光谱模块,我们遵循了如下设计流程。首先,我们使用钨卤光源和波长分辨率为10 nm、模数转换器(ADC)分辨率为16位的700 nm - 1000 nm近红外光谱仪估算苹果的糖分含量。其次,在观察相关系数R的同时,我们在31个均匀分布的波长中确定最有效的波长,然后从16位开始每次将ADC分辨率降低1位,同时也观察R。最后,我们用选定的八个波长和13位ADC分辨率设计了一个集成近红外光谱模块。该模块采用0.18μm 1P6M CMOS工艺实现,占用芯片面积为0.84平方毫米。通过将该模块与八个片外发光二极管(LED)和一个光电二极管(PD)配合使用,测得的相关系数R和校准标准误差(SEC)分别为0.365和0.686度白利糖度。