一个紧凑和高效的紫外线剂量计设计

B. Fahs, Ali Hage-Diab, A. Harb
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摘要

本文介绍了一种结构紧凑、功率高效的紫外线剂量计设计。紧凑的设计是通过将主要剂量计功能集成到CMOS集成芯片上实现的。此外,外部元件的安排,以尽量减少整体板BoM(物料清单)。在功耗方面,CMOS集成旨在降低最大功耗水平。此外,定期睡眠/唤醒技术被采用,以进一步降低全球平均功耗。高功率模块由可变占空比集成振荡器驱动,仅在短时隙内导通。该装置由一个主太阳能可充电电池和一个次级标准应急电池供电。应急电池仅在可充电电池无法为电路供电时使用。建议的解决方案旨在防止在产品生命周期内更换任何电池。外部三色LED显示皮肤暴露于紫外线的风险等级。
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A compact and power efficient UV dosimeter design
This paper presents a compact and power efficient ultra-violet (UV) dosimeter design. The compact design is achieved by incorporating the principal dosimeter functions onto a CMOS integrated chip. Besides, the external components are arranged in order to minimize the global board BoM (Bill of Materials). On the power consumption side, the CMOS integration aims to reduce the maximum power consumption levels. In addition, a regular sleep/wake-up technique is employed to further decrease the global average power consumption. The high-power blocks are driven by a variable duty-cycle integrated oscillator and turned ON only during short time slots. The device is powered by a primary solar rechargeable battery and a secondary standard emergency battery. The emergency battery is only used when the rechargeable battery gets unable to supply the circuit. The proposed solution aims to prevent any battery replacement during the life-time of the product. An external tri-color LED indicates the skin exposure risk level to UV rays.
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