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Titlebook: Design of Low Power Integrated Radios for Emerging Standards; Mustafijur Rahman,Ramesh Harjani Book 2020 Springer Nature Switzerland AG 20

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Analog Circuits and Signal Processinghttp://image.papertrans.cn/d/image/268730.jpg
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1872-082X aders with basic knowledge of circuits suitable for low powe.This book describes novel and disruptive architecture and circuit design techniques, toward the realization of low-power, standard-compliant radio architectures and silicon implementation of the circuits required for a variety of leading-e
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Transceiver,iciency of 1.52 nJ/bit at 971 kbps data rate. The measured RMS EVM for ./4 DQPSK modulation is 5.68%. The prototype receiver consumes 1.29 mW of power resulting in an energy efficiency of 1.32 nJ/bit while achieving a receiver noise figure of 10.2 dB and an IIP3 of −24.1 dBm. This design does not use off-chip inductors.
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https://doi.org/10.1007/978-1-4615-0353-8ote patient monitoring. This will lead to reduced health care cost and early detection and prevention of diseases. Remote patient monitoring will significantly benefit the aging population in regions where there is a scarcity of clinics and clinicians.
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Introduction,ote patient monitoring. This will lead to reduced health care cost and early detection and prevention of diseases. Remote patient monitoring will significantly benefit the aging population in regions where there is a scarcity of clinics and clinicians.
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https://doi.org/10.1007/978-1-4615-0353-8bration and resolves the problems of traditional injection lock-based modulators. The prototype transmitter consumes 2.4 mW while delivering − 10 dBm RF power at the TX output resulting in an energy efficiency of 2.5 nJ/bit at 1.2 Mbps raw data rate. The measured RMS EVM for .∕4 DQPSK modulation is 3.21%.
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From Chemical to Biological Organizationoise figure and power consumption problems of sub 1 V mixers. The figure of merit (FOM) is 10 dB higher and the power consumption is 194 μW which is 0.5X lower than the state of the art. The local oscillator (LO) power used is − 14 dBm.
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Spatial Patterns in (Bio)Chemical Reactionsancelled allowing for low power operation. The 2.8 dB NF, − 10.7 dBm IIP3 LNA in TSMC’s 65 nm GP process consumes 475 μW of power resulting in an FOM of 28.8 dB which is 8.2 dB better than the state of the art.
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