Improvement of Fringe Area using ICS Extremely Low Power Repeater

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DesignCon 2005 Design of a Low-Power Differential Repeater Using Low Voltage and Charge Recycling

Advances in System-on-Chip (SoC) design have emphasized the need for driving long on-chip differential traces. The delay of long traces has traditionally been handled by inserting repeaters at periodic intervals. The repeater method reduces the delay at the expense of increased power consumption. At the same time, power is a major design consideration in SoC design, motivating a driver methodol...

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DesignConEast 2005 Design of a Low-Power Differential Repeater Using Low Voltage and Charge Recycling

Advances in System-on-Chip (SoC) design have emphasized the need for driving long on-chip differential traces. The delay of long traces has traditionally been handled by inserting repeaters at periodic intervals. The repeater method reduces the delay at the expense of increased power consumption. At the same time, power is a major design consideration in SoC design, motivating a driver methodol...

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RF MICRO DEVICES®, RFMD®, Optimum Technology Matching®, Enabling Wireless ConnectivityTM, PowerStar®, POLARISTM TOTAL RADIOTM and UltimateBlueTM are trademarks of RFMD, LLC. BLUETOOTH is a trademark owned by Bluetooth SIG, Inc., U.S.A. and licensed for use by RFMD. All other trade names, trademarks and registered trademarks are the property of their respective owners. ©2010, RF Micro Devices, Inc.

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Extremely Low Power Digital and Analog Circuits

Extremely low voltage operation near or below threshold voltage is a key circuit technology to improve the energy efficiency of information systems and to realize ultra-low power sensor nodes. However, it is difficult to operate conventional analog circuits based on amplifier at low voltage. Furthermore, PVT (Process, Voltage and Temperature) variation and random Vth variation degrade the minim...

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ژورنال

عنوان ژورنال: Journal of Broadcast Engineering

سال: 2016

ISSN: 1226-7953

DOI: 10.5909/jbe.2016.21.1.97