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Microwave and wireless synthesizers: theory and design

Ulrich L. Rohde
- Iss: 1
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TLDR
This book discusses Loop Fundamentals, Digital PLL Synthesizers, and High-Performance Hybrid Synthesizer, as well as special Loops and Noise and Spurious Response of Loops.
Abstract
Loop Fundamentals. Noise and Spurious Response of Loops. Special Loops. Loop Components. Digital PLL Synthesizers. High-Performance Hybrid Synthesizer. Appendices. Index.

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Journal ArticleDOI

Progress Towards the First Wireless Sensor Networks Consisting of Inkjet-Printed, Paper-Based RFID-Enabled Sensor Tags

TL;DR: The paper concludes discussing the details for establishing for the first time an asynchronous wireless link between the aforementioned RFID-tags and a widely used commercial wireless sensor network (WSN) mote using a simplified protocol; a paramount step that could potentially create ubiquitous ultra-low-cost sensor networks and large-scale RFID implementations eliminating the need of expensive RFID reader infrastructure and linking RFIDs to the mature level of WSNs.
Journal ArticleDOI

Noise analysis of phase-locked loops

TL;DR: In this paper, the effect of loop filter characteristics, phase-frequency detector, and phase noise of the open-loop voltage-controlled oscillator (VCO) on the PLL output spectrum is quantified.
Journal ArticleDOI

Electro-optical frequency division and stable microwave synthesis

TL;DR: Electro-optical approach to optical frequency division and microwave generation by using a tunable electrical oscillator to create dual combs through phase modulation of two optical signals that have a stable difference frequency.
Journal ArticleDOI

Paper-Based RFID-Enabled Wireless Platforms for Sensing Applications

TL;DR: The feasibility of inkjet printing of circuit and microwave structures on paper-based substrates is investigated for the first time in the implementation of a complete low-cost wireless platform for sensors using inket-printing technology.
Book

Integrated Frequency Synthesizers for Wireless Systems

TL;DR: Using an intuitive yet rigorous approach, the authors describe simple analytical methods for the design of phase locked loop (PLL) frequency synthesizers using scaled silicon CMOS and bipolar technologies.