(Enter summary)
Abstract: This paper presents an overview of technical challenges in
achieving higher integration levels, lower power dissipation,
smaller form factor, and lower cost in portable battery-powered
RF transceivers for personal communications applications.
Specific emphasis is placed on silicon integrated
circuits for transceivers in the 800MHz-2.5GHz range of frequencies.
Introduction
Digital radio personal communications devices utilizing the
bands between 800MHz and 2.5GHz will play an increasingly... (Update)
Context of citations to this paper: More
...factor. INTRODUCTION Interest in monolithic spiral inductors has surged with recent growing demand for Si based RF communication circuits [1]. Although promising experimental results [2] 3] have been reported, basic understanding of the performance limitations and procedures for...
.... and IS 54 are already widespread and current research is directed towards reducing power dissipation, size, and cost in the implementation [4, 28]. During the last years, the wireless communications market has grown tremendously in both North America and Europe. The GSM and...
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4: Direct conversion radio transceivers for digital communications (context) - Abidi - 1995
2: A 2.7V to 4.5V Single-Chip GSM Transceiver RF Integrated Circuit (context) - Stetzler - 1995
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BibTeX entry: (Update)
P.R.Gray and R. G. Meyer, "Future directions in silicon ics for rf personal communication," Proceedings IEEE Custom Integrated Circuit Conference, pp. 91--95, may 1995. Challenge in achieving high integration, for transceiver in the band 800 MHz-2.5 GHz. http://citeseer.ist.psu.edu/gray95future.html More
@misc{ gray95future,
author = "P. Gray and R. Meyer",
title = "Future directions in silicon ics for rf personal communication",
text = "P.R.Gray and R. G. Meyer, Future directions in silicon ics for rf personal
communication, Proceedings IEEE Custom Integrated Circuit Conference, pp.
91--95, may 1995. Challenge in achieving high integration, for transceiver
in the band 800 MHz-2.5 GHz.",
year = "1995",
url = "citeseer.ist.psu.edu/gray95future.html" }
Citations (may not include all citations):
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Analysis of Timing Jitter in CMOS Ring Oscillators (context) - Weigandt - 1994
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An Integrated Si Bipolar RF Transceiver for a Zero IF 900 MH.. (context) - Sevenhans - 1991
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A Monolithic CMOS Radio Systems for Wideband CDMA Communicat..
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A 200- MHz all-digital QAM modulator and demodulator in 1.2-.. (context) - Wong, Samueli - 1991
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4
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Radio Frequency Integrated Circuits for Portable Communicati.. (context) - Abidi - 1994
3
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2
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2
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DLL/PLL System Noise Analysis for Low Jitter Clock Synthesiz.. (context) - Kim - 1994
1
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Integrated Filters Using Micro-mechanical Resonators (context) - Nguyen - 1994
1
Low-Noise Power-Efficient Oscillators, Theory and Design (context) - Everhard - 1986
1
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1
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1
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1
A 700- MHz 24-b pipelined accumulator in 1.2- mu m CMOS for .. (context) - Lu, Samueli et al. - 1993
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DECT Zero-IF Receiver Front-end (context) - Baltus, Tombeur - 1993
1
A CMOS Low-Phase-Noise Voltage-Controlled Oscillator with Pr.. (context) - Craninckx, Steyart - 1995
1
Analog Integrated Polyphase Filters (context) - Steyaert, Crols - 1994
1
A 10-bit, 20MS/sec, 35mW Pipeline A/D Converter (context) - Cho - 1994
1
A 1.2 Micron CMOS Implementation for a LowPower 900 MHz Mobi.. (context) - Thiriamsut - 1994
1
IC Solutions for Mobile Telephones (context) - Rapeli - 1993
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A baseband codec for digital cellular telephony (context) - Lakshmikumar, Green et al. - 1991
1
A 900 MHz CMOS Power Amplifier with Programmable Output (context) - Rofougraran - 1994
1
A 1.1 GHz oscillator using bondwire inductance (context) - Steyaert, Craninckx - 1994
1
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High performance (context) - Yan, Lee et al.
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