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A Wireless Capsule Endoscope System With Low-Power Controlling and Processing ASIC

机译:具有低功耗控制和处理ASIC的无线胶囊内窥镜系统

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This paper presents the design of a wireless capsule endoscope system. The proposed system is mainly composed of a CMOS image sensor, a RF transceiver and a low-power controlling and processing application specific integrated circuit (ASIC). Several design challenges involving system power reduction, system miniaturization and wireless wake-up method are resolved by employing optimized system architecture, integration of an area and power efficient image compression module, a power management unit (PMU) and a novel wireless wake-up subsystem with zero standby current in the ASIC design. The ASIC has been fabricated in 0.18-$mu{hbox {m}}$ CMOS technology with a die area of 3.4 mm $ast$ 3.3 mm. The digital baseband can work under a power supply down to 0.95 V with a power dissipation of 1.3 mW. The prototype capsule based on the ASIC and a data recorder has been developed. Test result shows that proposed system architecture with local image compression lead to an average of 45% energy reduction for transmitting an image frame.
机译:本文介绍了无线胶囊内窥镜系统的设计。拟议的系统主要由CMOS图像传感器,RF收发器和低功耗控制和处理专用集成电路(ASIC)组成。通过采用优化的系统架构,集成区域和省电图像压缩模块,电源管理单元(PMU)和新颖的无线唤醒子系统,解决了涉及系统功耗降低,系统小型化和无线唤醒方法的若干设计难题。 ASIC设计中的待机电流为零。 ASIC用0.18-μmCMOS技术制造,管芯面积为3.4mm-3.3mm。数字基带可以在低至0.95 V的电源下工作,功耗为1.3 mW。已经开发了基于ASIC和数据记录器的原型封装。测试结果表明,所提出的具有局部图像压缩的系统架构可平均减少传输图像帧的能源消耗45%。

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