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Thermoelectric Microconverter for Energy Harvesting Systems

机译:能量收集系统的热电微转换器

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This paper presents a solution for energy microgeneration through energy harvesting by taking advantage of temperature differences that are converted into electrical energy using the Seebeck effect. A thermoelectric microconverter for energy scavenging systems that can supply low-power electronics was fabricated using thin films of bismuth and antimony tellurides. Thin films of n-type bismuth (Bi2Te3) and p-type antimony (Sb2Te3) tellurides were obtained by thermal coevaporation with thermoelectric figures of merit (ZT) at room temperature of 0.84 and 0.5 and power factors (PF × 10-3 [W · K-1 ·m-2]) of 4.87 and 2.81, respectively. The films were patterned by photolithography and wet-etching techniques. The goal for this thermoelectric microconverter is to supply individual electroencephalogram (EEG) modules composed by an electrode, processing electronics, and an antenna, where the power consumption ranges from hundredths of microwatts to a few milliwatts. Moreover, these wireless EEG modules allow patients to maintain their mobility while simultaneously having their electrical brain activity monitored.
机译:本文提出了一种利用塞贝克效应利用温差转化为电能的,通过能量收集实现能量微生的解决方案。使用铋和碲化锑的薄膜制造了用于能量清除系统的热电微转换器,该转换器可提供低功率电子设备。薄膜的n型铋(Bi2Te3)和p型锑(Sb2Te3)碲化物通过热共蒸发与热电性能因数(ZT)在室温下分别为0.84和0.5和功率因数(PFƒÃƒÃ分别为4.87和2.81的10-3 [W××K-1××m-2])。通过光刻和湿蚀刻技术将膜图案化。这种热电微转换器的目标是提供由电极,处理电子设备和天线组成的单个脑电图(EEG)模块,其功耗范围从百分之几微瓦到几毫瓦。而且,这些无线EEG模块允许患者在保持其活动性的同时,对他们的脑电活动进行监控。

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