用于大面积传感器阵列系统集成的柔性 TFT 读出电路板 测量光伏模块和电池

Seyed Mojtaba Sadati Faramarzi;Nikolas Papadopoulos;Jan Genoe;Kris Myny
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引用次数: 0

摘要

在此,我们报告了采用低温多晶硅(LTPS)薄膜技术的模拟构件的设计和特性。这些电路块的目标是用作集成在太阳能模块和电池中的大量传感器的读出电路的基本元件。本文介绍的电路具有无与伦比的性能,适用于需要在一定温度范围内稳定工作并要求低功耗的应用。我们从单个薄膜晶体管(TFT)器件的特性开始,研究不同温度下的变化和起始电压变化。随后,我们分析了采用 LTPS 技术设计的电流源的性能。接下来,我们介绍了一款电源电压低至 6 V 的低压 LTPS 运算放大器 (OpAmp),最后展示了一款具有低输入偏移和高达 1 MHz 时钟频率的高速锁存比较器。利用这些构建模块来创建模拟接口以及集成在能源设备中的传感器阵列,可实现太阳能模块和电池中精确的传感器测量分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible TFT Read-Out Circuit Blocks for Large Area Sensor Array System Integration Measuring Photovoltaic Modules and Batteries
Herein, we report the design and characterization of analog building blocks in low-temperature poly silicon (LTPS) thin-film technology. These circuit blocks are targeted to be used as the fundamental elements of read-out circuitry in a large array of sensors integrated inside solar modules and batteries. The circuits presented here show unparalleled performance for applications that require stable operation over temperature ranges and demand low power consumption. We start with single thin-film transistor (TFT) device characterization and study variation and onset voltage change over different temperatures. Afterward, we analyze the performance of a current source designed in LTPS technology. A low-voltage LTPS operational amplifier (OpAmp) with supply voltage as low as 6 V is presented next, and finally, a high-speed latched comparator with low input offset and clock frequency up to 1 MHz is demonstrated. Using these building blocks to create analog interfaces along with sensor arrays integrated in energy devices enables precise sensor measurement resolution in solar modules and batteries.
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