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Design methodology of low-power CMOS RF-ICs

Tsuneo Tsukahara, Mitsuru Harada, Mamoru Ugajin, Junichi Kodate, Akihirro Yamagishi
2003 Proceedings of the 2003 conference on Asia South Pacific design automation - ASPDAC  
Finally, it presents a 1-V, 12-mW image-rejection receiver in the 2-GHz band.  ...  This paper presents design methodology for CMOS RF-ICs in the 2-GHz band.  ...  Acknowledgments The authors thank Hakaru Kyuragi and Shoichi Sudo for their guidance and encouragement.  ... 
doi:10.1145/1119772.1119850 dblp:conf/aspdac/TsukaharaHUKY03 fatcat:5bsl3psmtfgcldhtcc6avarwne

2.4 GHz BLE Receiver with Power-Efficient Quadrature RF-to-Baseband-Current-Reuse Architecture for Low-Power IoT Applications

Beomyu Park, Kuduck Kwon
2021 IEEE Access  
In this paper, a 2.4 GHz Bluetooth low energy receiver employing a power-efficient quadrature RF-to-baseband-current-reuse architecture is presented for low-power low-voltage internet of things applications  ...  The implemented Bluetooth low energy receiver is composed of the RF-to-basebandcurrent-reuse RF front-end, IF amplifiers, two-stage passive-RC polyphase filter, and fifth-order Chebyshev-II G m -C filters  ...  To this end, in this study, a 2.4 GHz BLE receiver with a power-efficient quadrature RF-to-BB-CR architecture was developed to be used in low-power IoT applications.  ... 
doi:10.1109/access.2021.3074650 fatcat:5gxzx6ye75fbfgsa3xw2hphjs4

A 2.4-GHz CMOS transceiver for Bluetooth

H. Darabi, S. Khorram, Hung-Ming Chien, Meng-An Pan, S. Wu, S. Moloudi, J.C. Leete, J.J. Rael, M. Syed, R. Lee, B. Ibrahim, M. Rofougaran (+1 others)
2001 IEEE Journal of Solid-State Circuits  
The receiver uses a low-IF architecture for higher level of integration and lower power consumption.  ...  A fully integrated CMOS transceiver tuned to 2.4 GHz consumes 46 mA in receive mode and 47 mA in transmit mode from a 2.7-V supply.  ...  Masood Syed received the B.S. degree in electrical engineering from the New York Institute of Technology, New York, in 1992.  ... 
doi:10.1109/4.972152 fatcat:54sj2st4hneazkdyiugfymffje

Adaptive multi-standard circuits and systems for wireless communications

A. Tasic, W.A. Serdijn, J.R. Long
2006 IEEE Circuits and Systems Magazine  
Telecom trends such as smooth migration towards higher data rates and higher capacities for multimedia applications, and provision of various services (text, audio, video) from different standards with  ...  This paper describes adaptivity design concepts and application of design for adaptivity to multi-standard circuits and systems for wireless communications.  ...  For a 3 V supply, a frequency tuning range of 600 MHz (i.e., output from 1.8 GHz to 2.4 GHz) is measured.  ... 
doi:10.1109/mcas.2006.1607636 fatcat:vhq55yrqnjcq5oz7bj23ahezei

Integrated low-power communication system design for wireless sensor networks

Tsung-Hsien Lin, W.J. Kaiser, G.J. Pottie
2004 IEEE Communications Magazine  
Finally, the design, implementation, and performance of the most challenging component, a complete low-power CMOS receiver system, is presented to demonstrate these design principles.  ...  The selection of radio architectures and circuit techniques is discussed with an emphasis on the low-power implementation and operating characteristics that match requirements of sensor network application  ...  The receiver also incorporates a phase locked loop (PLL)based frequency synthesizer and a polyphase network to generate quadrature local oscillator (LO) signals.  ... 
doi:10.1109/mcom.2004.1367566 fatcat:t5hdubmpebfu5htyqfdv4nea54

Topics in circuits for communications

C. Chien, J. Goodman, S. Molloy
2005 IEEE Communications Magazine  
Finally, the design, implementation, and performance of the most challenging component, a complete low-power CMOS receiver system, is presented to demonstrate these design principles.  ...  The selection of radio architectures and circuit techniques is discussed with an emphasis on the low-power implementation and operating characteristics that match requirements of sensor network application  ...  The receiver also incorporates a phase locked loop (PLL)based frequency synthesizer and a polyphase network to generate quadrature local oscillator (LO) signals.  ... 
doi:10.1109/mcom.2005.1497560 fatcat:lfgh5vqwk5a4nfr3kalfds373e

2.4 GHZ HETERODYNE RECEIVER FOR HEALTHCARE APPLICATION

Wei Cai, Frank Shi
2016 International Journal of Pharmacy and Pharmaceutical Sciences  
<p class="lead">The objective of this research was to design a basic 2.4 GHz heterodyne receiver for healthcare on a 130um CMOS process.  ...  The second part of this proposal presents a low power 2.4 GHz down conversion Gilbert Cell mixer.  ...  In a wireless system, the Local Oscillator (LO) provides the carrier signal for both the receiver and the transmitter.  ... 
doi:10.22159/ijpps.2016v8s2.15214 fatcat:grkmfimqgrc6xkfhsncflivypm

Radio Systems and Computing at the Edge for IoT Sensor Nodes [chapter]

Malcolm H. Smith
2021 Smart Manufacturing - When Artificial Intelligence Meets the Internet of Things  
We will look at some examples to understand the choice of radio system for communication. We will also consider the use of radio in the sensor itself with a radar sensor system.  ...  Many Internet of Things (IoT) applications use wireless links to communicate data back. Wireless system performance limits data rates.  ...  Figure 2 . 2 Quadrature upconverter with local oscillator (LO) and quadrature local oscillator generation.  ... 
doi:10.5772/intechopen.92987 fatcat:noal6kk7f5cuvimgz4gcy564sm

Wireless body sensor networks for health-monitoring applications

Yang Hao, Robert Foster
2008 Physiological Measurement  
A generic miniature platform and other available technologies for wireless sensors have been studied in terms of hardware and software structural requirements for a low cost, low power, non-invasive and  ...  With the increasing sophistication of wearable and implantable medical devices and their integration with wireless sensors, an ever-expanding range of therapeutic and diagnostic applications is being pursued  ...  wireless standard for low data rate, very low-power applications.  ... 
doi:10.1088/0967-3334/29/11/r01 pmid:18843167 fatcat:l4yhnxbri5azxk6kdclyk6lgom

The v2.0+EDR Bluetooth SOC Architecture for Multimedia

Jeonghun Kim, Youngwhan Choi, Jungwon Jeong, Suhho Lee, Suki Kim
2006 IEEE transactions on consumer electronics  
The receiver uses an optimized Low-IF (1.5MHz) architecture which is trade-off between power and performance on CMOS technology. The transmitter uses a direct up conversion architecture.  ...  This paper presents a Bluetooth System on Chip (SOC) architecture for multimedia applications.  ...  They also thank the numerous reviewers for their suggestions.  ... 
doi:10.1109/tce.2006.1649661 fatcat:zsbbpqld45cghas7reire3gz2u

A 0.4–6-GHz Frequency Synthesizer Using Dual-Mode VCO for Software-Defined Radio

Jin Zhou, Wei Li, Deping Huang, Chen Lian, Ning Li, Junyan Ren, Jinghong Chen
2013 IEEE transactions on microwave theory and techniques  
This paper presents a dual-mode voltage-controlled oscillator (DMVCO) and a DMVCO-based wideband frequency synthesizer for software-defined radio applications.  ...  The DMVCO allows the synthesizer to leverage single-sideband (SSB) mixing, a power efficient approach, for high-frequency local oscillator (LO) signal generation, without the need of poly-phase filter  ...  Li, Fudan University, Shanghai, China, for supporting the chip measurements.  ... 
doi:10.1109/tmtt.2012.2233493 fatcat:romy6hhwizdotitoc5jmqpxyya

2020 Index IEEE Microwave and Wireless Components Letters Vol. 30

2020 IEEE Microwave and Wireless Components Letters  
., LMWC Nov. 2020 1112-1115 Bluetooth A 2.4-GHz Quadrature Local Oscillator Buffer Insensitive to Frequen- cy-Dependent Loads for Bluetooth Low Energy Applications.  ...  ., +, LMWC March 2020 292-295 A 2.4-GHz Quadrature Local Oscillator Buffer Insensitive to Frequency-Dependent Loads for Bluetooth Low Energy Applications.  ... 
doi:10.1109/lmwc.2021.3055080 fatcat:2yn4ofvchnggvjguzlz2kv3qyi

2019 Index IEEE Journal of Solid-State Circuits Vol. 54

2019 IEEE Journal of Solid-State Circuits  
., +, JSSC Oct. 2019 2754-2764 A 4-GHz Low-Power, Multi-User Approximate Zero-IF FM-UWB Transceiver for IoT.  ...  ., +, JSSC Aug. 2019 2327-2338 Analysis and Design of an Ultra-Low-Power Bluetooth Low-Energy Transmitter With Ring Oscillator-Based ADPLL and 4# Frequency Edge Combiner.  ... 
doi:10.1109/jssc.2019.2956675 fatcat:laiuae7dtragjijttgfatsldmu

ALL-DIGITAL PHASE LOCKED LOOP (ADPLL) TOPOLOGIES FOR RFID SYSTEM APPLICATION: A REVIEW

S. N. Ishak, J. Sampe, Z. Yusoff, M. Faseehuddin
2021 Jurnal Teknologi  
Based on the review, the reduction in CMOS scaling decreases the transistor size in ADPLL design which leads to a smaller area and a low power dissipation.  ...  An all-digital phase locked loop (ADPLL)-based local oscillator (LO) of RF transceiver application such as radio-frequency identification (RFID) system has gained popularity by accessing the benefits in  ...  the 860 to 960 MHz [14], at 2.4 GHz [15], and 5.8 GHz for conventional PLL oscillator as reported in [18], [22], satellite application [16].  ... 
doi:10.11113/jurnalteknologi.v84.17123 fatcat:2l43g6nrofeirksy3el7ic5eja

A Bluetooth Low-Energy Transceiver With 3.7-mW All-Digital Transmitter, 2.75-mW High-IF Discrete-Time Receiver, and TX/RX Switchable On-Chip Matching Network

Feng-Wei Kuo, Sandro Binsfeld Ferreira, Huan-Neng Ron Chen, Lan-Chou Cho, Chewn-Pu Jou, Fu-Lung Hsueh, Iman Madadi, Massoud Tohidian, Mina Shahmohammadi, Masoud Babaie, Robert Bogdan Staszewski
2017 IEEE Journal of Solid-State Circuits  
We present an ultra-low-power Bluetooth lowenergy (BLE) transceiver (TRX) for the Internet of Things (IoT) optimized for digital 28-nm CMOS.  ...  Index Terms-All-digital PLL (ADPLL), Bluetooth low energy (BLE), digitally controlled oscillator (DCO), discrete-time (DT) receiver (RX), Gaussian frequency shift keying (GFSK), intermediate frequency  ...  Bluetooth low energy (BLE) [11] is currently the most popular standard for short-range IoT communications.  ... 
doi:10.1109/jssc.2017.2654322 fatcat:wxci5dae6rdwvkfkv35lih3k5u
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