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In the market of wireless communication, high data-rate transmission and high spectral efficiency have been the trend. The IEEE 802.11 a/g standards working at 5GHz/2.4GHz ISM bands can s… Más…

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IQ Calibration Techniques for CMOS Radio Transceivers - Sao-Jie Chen; Yong-Hsiang Hsieh
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IQ Calibration Techniques for CMOS Radio Transceivers - Pasta blanda

ISBN: 9789048172795

In the market of wireless communication, high data-rate transmission and high spectral efficiency have been the trend. The IEEE 802.11 a/g standards working at 5GHz/2.4GHz ISM bands can s… Más…

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IQ Calibration Techniques for CMOS Radio Transceivers / Yong-Hsiang Hsieh (u. a.) / Taschenbuch / Analog Circuits and Signal Processing / Paperback / XIX / Englisch / 2010 / Springer Netherland - Hsieh, Yong-Hsiang
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Hsieh, Yong-Hsiang:
IQ Calibration Techniques for CMOS Radio Transceivers / Yong-Hsiang Hsieh (u. a.) / Taschenbuch / Analog Circuits and Signal Processing / Paperback / XIX / Englisch / 2010 / Springer Netherland - Pasta blanda

2010

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Yong-Hsiang Hsieh:
IQ Calibration Techniques for CMOS Radio Transceivers - Pasta blanda

2010, ISBN: 9048172799

[EAN: 9789048172795], Neubuch, [PU: Springer Netherlands Nov 2010], BLUETOOTH; DVB; FILTER; GAINMISMATCH; I/QCALIBRATION; I/QMISMATCHES; IEEE80; MODULATION; PHASEMISMATCH; RFTRANSCEIVER; … Más…

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Sao-Jie Chen:
IQ Calibration Techniques for CMOS Radio Transceivers - Pasta blanda

ISBN: 9789048172795

Paperback, [PU: Springer], The 802.11n wireless standard uses 64-state quadrature amplitude modulation (64-QAM) to achieve higher spectral efficiency. Consequently, the transmitter and re… Más…

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Detalles del libro
IQ Calibration Techniques for CMOS Radio Transceivers

The 802.11n wireless standard uses 64-state quadrature amplitude modulation (64-QAM) to achieve higher spectral efficiency. Consequently, the transmitter and receiver require a higher signal to noise ratio with the same level of error rate performance. This book offers a fully-analog compensation technique without baseband circuitry to control the calibration process. Using an 802.11g transceiver design as an example, it describes in detail an auto-calibration mechanism for I/Q gains and phases imbalance.

Detalles del libro - IQ Calibration Techniques for CMOS Radio Transceivers


EAN (ISBN-13): 9789048172795
ISBN (ISBN-10): 9048172799
Tapa dura
Tapa blanda
Año de publicación: 2010
Editorial: Springer
112 Páginas
Peso: 0,192 kg
Idioma: eng/Englisch

Libro en la base de datos desde 2010-11-03T08:22:56-06:00 (Mexico City)
Página de detalles modificada por última vez el 2024-04-02T08:42:18-06:00 (Mexico City)
ISBN/EAN: 9789048172795

ISBN - escritura alterna:
90-481-7279-9, 978-90-481-7279-5
Mode alterno de escritura y términos de búsqueda relacionados:
Autor del libro: yong, hsieh, chen
Título del libro: radio, cmos taschenbuch


Datos del la editorial

Autor: Sao-Jie Chen; Yong-Hsiang Hsieh
Título: Analog Circuits and Signal Processing; IQ Calibration Techniques for CMOS Radio Transceivers
Editorial: Springer; Springer Netherland
89 Páginas
Año de publicación: 2010-11-30
Dordrecht; NL
Impreso en
Peso: 0,454 kg
Idioma: Inglés
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XIX, 89 p.

BC; Communications Engineering, Networks; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Nachrichtententechnik, Telekommunikation; Verstehen; Bluetooth; CMOS; DVB; Filter; Gain mismatch; I/Q Calibration; I/Q mismatches; IEEE 80; Modulation; Phase mismatch; RF Transceiver; Standards; Transceiver; communication; Circuits and Systems; Electronics and Microelectronics, Instrumentation; Signal, Image and Speech Processing; Communications Engineering, Networks; Electronic Circuits and Systems; Electronics and Microelectronics, Instrumentation; Signal, Speech and Image Processing; Schaltkreise und Komponenten (Bauteile); Elektronik; Digitale Signalverarbeitung (DSP); BB

List of Figures. List of Tables. List of Abbreviations. Preface. Acknowledgments. 1. INTRODUCTION. 1. Wireless LAN Standards. 1.1 IEEE 802.11. 1.2 HiperLan. 1.3 HiperLan II. 1.4 OpenAir. 1.5 HomeRF and SWAP. 1.6 BlueTooth. 2. Wireless in the 21st Century. 3. The 802 Standard and The IEEE. 3.1 IEEE 802.11b. 3.2 IEEE 802.11a. 3.3 IEEE 802.11g. 3.4 Performance and Characeristic. 4. Background and Motivation. 5. IEEE 802.11g RF Transceiver Performance Requirement. 5.1 Synthesizer Output Phase Noise. 5.2 Circuit Linearity. 5.3 Modulator/Demodulator I/Q Gain and Phase Imbalance. 6 Transceiver Design Goal. 6.1 Solutions on I/Q Balance. 2. TRANSCEIVER ARCHITECTURE DESIGN. 1. Receiver Architecture. 1.1 Superheterodyne Receiver. 1.2 Low-IF Receiver. 1.3 Zero-IF Receiver. 2. Comparison of Our Choice. 3. Transceiver Architecture. 4. The Choice of Intermediary Frequency. 5. Receiver Chain Link Budget. 5.1 Receiver Adjacent Channel Rejection. 5.2 Receiver Cascade Gain. 5.3 Receiver Cascade Noise Figure. 5.4 Receiver Dynamic Range. 5.4.1 RF/IF Section Gain Windows. 5.4.2 Receiver IF VGA and I/Q Demodulator Specification. 5.4.3 Cascade Gain of IF/BB. 5.4.4 Cascade Noise Figure of IF/BB. 6. Transmitter Chain Link Budget. 6.1 Transmit Circuits Gain Distribution and Gain Range. 6.2 Transmit Error Vector Magnitude. 6.3 Transmit Signal Spectral Mask. 3. I/Q MODULATOR AND DEMODULATOR DESIGN. 1. I/Q Modulator and Demodulator Architecture Overview. 2. Variable Gain Amplifier and Low-Pass Filter Re-use. 2.1 RX/TX Two-Mode Variable Gain Control Amplifier. 2.2 RX/TX Two-Mode Low-Pass Filter. 2.3 DC Offset Cancellation. 4. AN AUTO-I/Q CALIBRATED MODULATOR. 1. DC Offset, I/Q Gain and Phase Imbalance. 2. DC Offset, I/Q Gain and Phase Imbalance Auto-Calibration. 2.1 DC Offset Auto-Calibration. 2.2 I/Q Gain Imbalance Auto-Calibration. 2.3 I/Q Quadrature Phase Mismatch Auto-Calibration. 2.4 Implementation of I/Q Auto-Calibration Circuitry. 2.5 TX I/Q Auto-Calibration Measurement Result. 5. AN AUTO-I/Q CALIBRATED DEMODULATOR. 1. Single Test Tone Design. 2. I/Q Gain Imbalance and Quadrature Phase Mismatch Auto-Calibration. 2.1 I/Q Gain Imbalance Auto-Calibration. 2.2 I/Q Quadrature Phase Mismatch Auto-Calibration. 2.3 Implementation of I/Q Auto-Calibration Circuitry. 3. RX I/Q Auto-Calibration Measurement Result. 6. SYSTEM MEASUREMENT RESULT. 1. Transmitter Measurement Result. 2. Receiver Measurement Result. 7. CONCLUSION. References.

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