100 years of Colpitts Oscillators: Ontology Review of Common Oscillator Circuit Topologies
暂无分享,去创建一个
[1] Kenzo Watanabe,et al. A Linear Temperature-to-Frequency Converter Using an Integrable Colpitts Oscillator , 1985, IEEE Transactions on Instrumentation and Measurement.
[2] Guangjun Wen,et al. A low-voltage high-swing colpitts VCO with Inherent tapped capacitors based dynamic body bias technique , 2017, 2017 IEEE International Symposium on Circuits and Systems (ISCAS).
[3] G. H. Stevenson. Stabilized feedback oscillators , 1938 .
[4] J.P. Jordan. Design of Electronic Heaters for Induction Heating , 1944, Proceedings of the IRE.
[5] C.K. Jen. A New Treatment of Electron Tube Oscillators with Feed-Back Coupling , 1931, Proceedings of the Institute of Radio Engineers.
[6] Brian Otis,et al. A 22µW, 2.0GHz FBAR oscillator , 2011, 2011 IEEE Radio Frequency Integrated Circuits Symposium.
[7] J. B. Oakes. Analysis of Junction Transistor Audio Oscillator Circuits , 1954, Proceedings of the IRE.
[8] Mehdi Azadmehr,et al. A Differential Complementary Colpitts Oscillator based on Common Drain Topology , 2018 .
[9] AMIR EBRAHIMI,et al. A New Enhanced differential CMOS Colpitts oscillator , 2014, J. Circuits Syst. Comput..
[10] Yves Rolain,et al. A 7 GHz FBAR overtone-based oscillator , 2009, 2009 European Microwave Conference (EuMC).
[11] F.B. Llewellyn,et al. Constant Frequency Oscillators , 1931, Proceedings of the Institute of Radio Engineers.
[12] Ali Hajimiri,et al. A general theory of phase noise in electrical oscillators , 1998 .
[13] Takehiko Adachi,et al. A cascode crystal oscillator suitable for integrated circuits , 2002, Proceedings of the 2002 IEEE International Frequency Control Symposium and PDA Exhibition (Cat. No.02CH37234).
[14] J. Bell,et al. Triodes for very short waves—oscillators , 1946 .
[15] Robert Weigel,et al. Comparison of gm-boosted oscillators in silicon field effect transistor and silicon-germanium hetero-junction bipolar transistor technology , 2009, 2009 European Microwave Integrated Circuits Conference (EuMIC).
[16] Ali Hajimiri,et al. Concepts and methods in optimization of integrated LC VCOs , 2001, IEEE J. Solid State Circuits.
[17] K. Van Dyke. The Piezo-Electric Resonator and Its Equivalent Network , 1928, Proceedings of the Institute of Radio Engineers.
[18] A. L. Samuel,et al. Vacuum Tubes as High Frequency Oscillators , 1934, Transactions of the American Institute of Electrical Engineers.
[19] Yao Huang Kao,et al. A balanced Colpitts SAW oscillator with cross-coupled pair enhancement , 2011, Asia-Pacific Microwave Conference 2011.
[20] Domenico Zito,et al. Analyses of phase noise reduction techniques in CMOS Colpitts oscillator topology at the mm-waves: Noise filter and optimum current density , 2015, 2015 11th Conference on Ph.D. Research in Microelectronics and Electronics (PRIME).
[21] Aslam Abbasi. Systemization of Sinusoidal Feedback Oscillators (A Teaching Aid) , 1964 .
[22] X Li,et al. Gm-boosted common-gate LNA and differential colpitts VCO/QVCO in 0.18-μm CMOS , 2005 .
[23] E. Stikvoort,et al. An enhanced colpitts UHF oscillator for TV tuners , 1998, Proceedings of the 24th European Solid-State Circuits Conference.
[24] M. Prigent,et al. Phase noise in oscillators - Leeson formula revisited , 2003 .
[25] Yi-Jen Chan,et al. A 2.4 GHz low phase noise VCO fabricated by 0.18 /spl mu/m pMOS technologies , 2003, 2003 International Symposium on VLSI Technology, Systems and Applications. Proceedings of Technical Papers. (IEEE Cat. No.03TH8672).
[26] K. M. Lakin,et al. Frequency Control Devices. , 1995 .
[27] J.M. Diamond,et al. Circle Diagrams for Cathode Followers , 1948, Proceedings of the IRE.
[28] P. Wambacq,et al. A low-power 6.3 GHz FBAR overtone-based oscillator in 90 nm CMOS technology , 2007, 2007 Ph.D Research in Microelectronics and Electronics Conference.
[29] Shurong Dong,et al. Processing chip for thin film bulk acoustic resonator mass sensor , 2012 .
[30] Domenico Zito,et al. Analyses of phase noise reduction techniques in CMOS Colpitts oscillator topology at the mm-waves: Inductive degeneration and optimum current density , 2015, 2015 26th Irish Signals and Systems Conference (ISSC).
[31] Ahmed S. Elwakil. On the two-port network classification of Colpitts oscillators , 2009, IET Circuits Devices Syst..
[32] H J. Van der Bijl,et al. The Thermionic Vacuum Tube and Its Applications , 2005 .
[33] R. A. Heising. The audion oscillator , 1920, Journal of the American Institute of Electrical Engineers.
[34] H. Sekimoto,et al. A dual mode oscillator based on narrow-band crystal oscillators with resonator filters , 1997, Proceedings of International Frequency Control Symposium.
[35] Fernando Rangel de Sousa,et al. A 20 mV Colpitts Oscillator powered by a thermoelectric generator , 2012, 2012 IEEE International Symposium on Circuits and Systems.
[36] Fernando Rangel de Sousa,et al. Ultra-low-power, ultra-low-voltage 2.12 GHz colpitts oscillator using inductive gate degeneration , 2013, 2013 IEEE 11th International New Circuits and Systems Conference (NEWCAS).
[37] Y. Tsuzuki,et al. Analysis of start-up characteristics of crystal oscillators , 1991, Proceedings of the 45th Annual Symposium on Frequency Control 1991.
[38] Mehdi Azadmehr,et al. Q-Loading of Colpitts-Based Mass-Sensing Oscillators in Resonator-based MEMS Airborne Particulate Matter (PM) Sensors , 2019, 2019 IEEE International Conference on Consumer Electronics (ICCE).
[39] Sakir Sezer,et al. Low power Gm-boosted differential Colpitts VCO , 2011, 2011 IEEE International SOC Conference.
[40] Eric A. Vittoz,et al. High-performance crystal oscillator circuits: theory and application , 1988 .
[41] Han Chang,et al. The Reactance-Tube Oscillator , 1949, Proceedings of the IRE.
[42] Marian K. Kazimierczuk,et al. Loop gain of the common-gate Colpitts oscillator , 2011, IET Circuits Devices Syst..
[43] Juliane Jung. Principles Of Transistor Circuits , 2016 .
[44] P. Schvan,et al. A balanced 1.5 GHz voltage controlled oscillator with an integrated LC resonator , 1997, 1997 IEEE International Solids-State Circuits Conference. Digest of Technical Papers.
[45] M. O / P. crystal oscillator circuits , 2018 .
[46] Huei Wang,et al. A 5-GHz low phase noise differential colpitts CMOS VCO , 2005, IEEE Microwave and Wireless Components Letters.
[47] H. E. Gruen,et al. A STUDY OF CRYSTAL OSCILLATOR CIRCUITS , 1957 .
[48] Domenico Zito,et al. Comparative analyses of phase noise in differential oscillator topologies in 28 nm CMOS technology , 2014, 2014 10th Conference on Ph.D. Research in Microelectronics and Electronics (PRIME).
[49] F.J. Kamphoefner. Feedback in Very-High-Frequency and Ultra-High-Frequency Oscillators , 1950, Proceedings of the IRE.
[50] Xianhe Huang,et al. A Revisit To Phase Noise Model Of Leeson , 2007, 2007 IEEE International Frequency Control Symposium Joint with the 21st European Frequency and Time Forum.
[51] Sheng-Fuh Chang,et al. An Amplitude-Balanced Current-Reused CMOS VCO Using Spontaneous Transconductance Match Technique , 2009, IEEE Microwave and Wireless Components Letters.
[52] S.-L. Jang,et al. A Low Power and Low Phase Noise Complementary Colpitts Quadrature VCO , 2005 .
[53] W. Cady,et al. The Piezo-Electric Resonator , 1922, Proceedings of the Institute of Radio Engineers.
[54] R. Tempel,et al. Comparison of a fully integrated differential voltage controlled Colpitts oscillator to the cross-coupled oscillator topology , 2006, Digest of Papers. 2006 Topical Meeting on Silicon Monolithic Integrated Circuits in RF Systems.
[55] A. L. Kolz,et al. A Radio-Frequency Beacon Transmitter for Small Mammals , 1972 .
[56] Chaang Huang,et al. Field effect transistor applications , 1955, Transactions of the American Institute of Electrical Engineers, Part I: Communication and Electronics.
[57] Ban-Leong Ooi,et al. A Novel Technique to Enhance the Negative Resistance for Colpitts Oscillators by Parasitic Cancellation , 2007, 2007 IEEE Conference on Electron Devices and Solid-State Circuits.
[58] Y. Aoyagi,et al. Colpitts-type oscillator for high frequency application , 2004, Proceedings of the 2004 IEEE International Frequency Control Symposium and Exposition, 2004..
[59] Takayasu Sakurai,et al. 5.7 A 39.25MHz 278dB-FOM 19µW LDO-free stacked-amplifier crystal oscillator (SAXO) operating at I/O voltage , 2016, 2016 IEEE International Solid-State Circuits Conference (ISSCC).
[60] J.K. Clapp,et al. An Inductance-Capacitance Oscillator of Unusual Frequency Stability , 1948, Proceedings of the IRE.
[61] A. Fard,et al. A study of phase noise in colpitts and LC-tank CMOS oscillators , 2005, IEEE Journal of Solid-State Circuits.
[62] The transistor — A new amplifier , 1948, Electrical Engineering.
[63] Laurence G. Cowles. Transistor Circuits and Applications , 1968 .
[64] J.E. Brittain. Edwin H. Colpitts: A pioneer in communications engineering [Scanning the Past] , 1997, Proceedings of the IEEE.
[65] G. Pierce,et al. Piezoelectric Crystal Resonators and Crystal Oscillators Applied to the Precision Calibration of Wavemeters , 1923 .
[66] Domenico Zito,et al. Phase noise analysis of Colpitts and Hartley CMOS oscillators , 2013 .
[67] Behzad Razavi,et al. A study of phase noise in CMOS oscillators , 1996, IEEE J. Solid State Circuits.
[68] F.G.R. Rockstuhl. A method of Analysis of Fundamental and Overtone Crystal-Oscillator Circuits , 1952 .
[69] Takayasu Sakurai,et al. A Low-Power CMOS Crystal Oscillator Using a Stacked-Amplifier Architecture , 2017, IEEE Journal of Solid-State Circuits.
[70] Eric A. Vittoz,et al. Low-Power Crystal and MEMS Oscillators - The Experience of Watch Developments , 2010, Integrated Circuits and Systems.
[71] Sheng-Lyang Jang,et al. A complementary Colpitts VCO implemented with ring inductor , 2008, 2008 IEEE International Symposium on VLSI Design, Automation and Test (VLSI-DAT).
[72] Pietro Andreani,et al. A 1.4mW 4.90-to-5.65GHz Class-C CMOS VCO with an Average FoM of 194.5dBc/Hz , 2008, 2008 IEEE International Solid-State Circuits Conference - Digest of Technical Papers.
[73] Ali Hajimiri,et al. A noise-shifting differential Colpitts VCO , 2002, IEEE J. Solid State Circuits.
[74] Seok-Kyun Han,et al. A 0.5V 2.41GHz, 196.3dBc/Hz FoM differential colpitts VCO with an output voltage swing exceeding supply and ground potential requiring no additional inductor , 2013, 2013 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[75] H. Ikeda,et al. An MOS transistor RF oscillator suitable for MOS-IC , 1968 .
[76] Peter R. Kinget,et al. Integrated GHz Voltage Controlled Oscillators , 1999 .
[77] Abdolreza Nabavi,et al. A low-phase-noise millimeter wave quadrature VCO in 180nm CMOS process , 2015, 2015 2nd International Conference on Knowledge-Based Engineering and Innovation (KBEI).
[78] Igor Paprotny,et al. Enhanced Capture of Aerosol Particles on Resonator-Based PM Mass Sensors Using Staggered Arrays of Micro-Pillars , 2020, Journal of Microelectromechanical Systems.
[79] Keith A. Jenkins,et al. A 2.4-GHz silicon bipolar oscillator with integrated resonator , 1996 .
[80] D. Leeson. A simple model of feedback oscillator noise spectrum , 1966 .
[81] Domenico Zito,et al. A novel differential Colpitts CMOS oscillator circuit topology , 2016, 2016 27th Irish Signals and Systems Conference (ISSC).
[82] Asad A. Abidi,et al. How Phase Noise Appears in Oscillators , 1997 .
[83] Sang-Gug Lee,et al. Low Phase Noise G$ _{m}$-Boosted Differential Gate-to-Source Feedback Colpitts CMOS VCO , 2009, IEEE Journal of Solid-State Circuits.
[84] Edward Keonjian. Stable transistor oscillator , 1955, Electrical Engineering.
[85] R. F. Kopf,et al. Compact InP-based HBT VCOs with a wide tuning range at W- and D-band , 2000 .
[86] Minkyu Je,et al. Gm-enhanced differential colpitts VCO , 2011, 2011 International Symposium on Integrated Circuits.
[87] P. J. Baxandall. Transistor crystal oscillators and the design of a 1-Mc/s oscillator circuit capable of good frequency stability , 1965 .
[88] B. R. Nag. A two-state device with two inductively coupled colpitts oscillators , 1962 .
[89] N. Nomura,et al. A Colpitts-Type Crystal Oscillator for Gigahertz Frequency , 2006, 2006 IEEE International Frequency Control Symposium and Exposition.
[90] Liang-Hung Lu,et al. A High-Performance CMOS Voltage-Controlled Oscillator for Ultra-Low-Voltage Operations , 2007, IEEE Transactions on Microwave Theory and Techniques.
[91] K. Schlesinger. Cathode-Follower Circuits , 1945, Proceedings of the IRE.
[92] Y. Tsuzuki,et al. Analysis of start-up characteristics of CMOS crystal oscillators , 1992, Proceedings of the 1992 IEEE Frequency Control Symposium.
[93] R.G. Meyer,et al. MOS crystal oscillator design , 1980, IEEE Journal of Solid-State Circuits.
[94] B. Razavi. A General Theory of Phase Noise in Electrical Oscillators , 2003 .
[95] Sang-Gug Lee,et al. A 1mW current-reuse CMOS differential LC-VCO with low phase noise , 2005, ISSCC. 2005 IEEE International Digest of Technical Papers. Solid-State Circuits Conference, 2005..
[96] B.R. Cummings. Recent Developments in Vacuum Tube Transmitters , 1925, Proceedings of the Institute of Radio Engineers.
[97] A. Koukab,et al. On Gm-boosting and cyclostationary noise mechanisms in low-voltage CMOS differential Colpitts VCOs , 2012, 2012 IEEE 12th Topical Meeting on Silicon Monolithic Integrated Circuits in RF Systems.
[98] Takehiko Adachi,et al. Fast start-up crystal oscillator circuits , 1995, Proceedings of the 1995 IEEE International Frequency Control Symposium (49th Annual Symposium).
[99] Ulrich L. Rohde,et al. Everything You Always Wanted to Know About Colpitts Oscillators [Applications Note] , 2016, IEEE Microwave Magazine.
[100] Choong-Yul Cha,et al. A Source Coupled Differential CMOS Complementary Colpitts Oscillator With On-Chip Transformer Tank , 2008, IEEE Transactions on Microwave Theory and Techniques.
[101] Brian Otis,et al. A 220dB FOM, 1.9GHz oscillator using a phase noise reduction technique for high-Q oscillators , 2013, 2013 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).