...
首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A Single-Chip Solar Energy Harvesting IC Using Integrated Photodiodes for Biomedical Implant Applications
【24h】

A Single-Chip Solar Energy Harvesting IC Using Integrated Photodiodes for Biomedical Implant Applications

机译:使用集成光电二极管的单芯片太阳能收集IC,用于生物医学植入物应用

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, an ultra-compact single-chip solar energy harvesting IC using on-chip solar cell for biomedical implant applications is presented. By employing an on-chip charge pump with parallel connected photodiodes, a 3.5 × efficiency improvement can be achieved when compared with the conventional stacked photodiode approach to boost the harvested voltage while preserving a single-chip solution. A photodiode-assisted dual startup circuit (PDSC) is also proposed to improve the area efficiency and increase the startup speed by 77%. By employing an auxiliary charge pump (AQP) using zero threshold voltage (ZVT) devices in parallel with the main charge pump, a low startup voltage of 0.25 V is obtained while minimizing the reversion loss. A 4Vin gate drive voltage is utilized to reduce the conduction loss. Systematic charge pump and solar cell area optimization is also introduced to improve the energy harvesting efficiency. The proposed system is implemented in a standard 0.18- μm CMOS technology and occupies an active area of 1.54 mm2. Measurement results show that the on-chip charge pump can achieve a maximum efficiency of 67%. With an incident power of 1.22 mW/cm2 from a halogen light source, the proposed energy harvesting IC can deliver an output power of 1.65 μW at 64% charge pump efficiency. The chip prototype is also verified using in-vitro experiment.
机译:本文提出了一种用于生物医学植入应用的,使用片上太阳能电池的超紧凑型单芯片太阳能采集IC。通过使用带有并联连接的光电二极管的片上电荷泵,与传统的堆叠式光电二极管方法相比,可以提高3.5倍的效率,从而在保持单芯片解决方案的同时提高收获的电压。还提出了一种光电二极管辅助双启动电路(PDSC),以提高面积效率并将启动速度提高77%。通过使用与零阈值电压(ZVT)器件并联的辅助电荷泵(AQP)与主电荷泵并联,可获得0.25 V的低启动电压,同时最大程度地降低了恢复损耗。利用4Vin栅极驱动电压来降低传导损耗。还引入了系统电荷泵和太阳能电池面积优化,以提高能量收集效率。拟议的系统以标准的0.18-μmCMOS技术实现,并占用1.54 mm2的有效面积。测量结果表明,片上电荷泵可实现67%的最大效率。利用卤素光源的1.22 mW / cm2的入射功率,所提出的能量收集IC可以在64%的电荷泵效率下提供1.65μW的输出功率。芯片原型还通过体外实验进行了验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号