Publications:
Refereed Journals
1. P.
Roy and D. Dawn, "A high-power and
high-efficiency CMOS VCO", Microw. Opt.
Technol. Lett., 57: 2437–2441, Oct 2015.
2. P.
Roy and D. Dawn, "High-power and
high-efficiency complementary metal–oxide–semiconductor voltage-controlled
oscillator for automatic dependent surveillance-broadcast system", IET Microw. Antennas & Propag., Vol
10, Oct 2015.
3. E.
Juntunen, D. Dawn, J. Laskar, and J.
Papapolymerou, "CMOS 45GHz Vector Modulator with Gain/Phase Correction Through
Calibration", Electronics Letters, vol.
49 iss. 4, pp 267-269, Feb. 2013.
4. E.
Juntunen, D. Dawn, J. Laskar, and J.
Papapolymerou, "High-Power, High-Efficiency CMOS Millimeter-Wave
Oscillators", IET Microw. Antennas
Propag., vol. 6 iss. 10, pp 1158-1163, 2012.
5. E.
Juntunen, Debasis Dawn, Stephane
Pinel, and Joy Laskar, correction to
"A High-Efficiency, High-Power Millimeter-Wave Oscillator Using A Feedback
Class-E Power Amplifier in 45-nm CMOS", IEEE
Microwave and Wireless Components Letters, vol. 21, no. 10, pp. 574, Oct. 2011.
6. E.
Juntunen, Debasis Dawn, Stephane
Pinel, and Joy Laskar, "A High-Efficiency, High-Power Millimeter-Wave
Oscillator Using A Feedback Class-E Power Amplifier in 45-nm CMOS", IEEE Microwave and Wireless Components
Letters, vol. 21, no. 8, pp. 430-432, Aug. 2011.
7. E.
Juntunen, M.C.-H Leung, F. Barale,
A. Rachmadugu, D. A. Yeh, B. G. Perumana, P. Sen, D. Dawn, S. Sarkar, S.
Pinel, and J. Laskar, "A 60-GHz 38-pJ/bit 3.5-Gb/s 90-nm CMOS OOK Digital Radio", IEEE Trans. Microwave Theory Tech., vol.
58, No. 2, pp. 348-355, Feb. 2010.
8. Debasis Dawn, Padmanava Sen, Saikat Sarkar, Bevin Perumana, Stephane
Pinel, and Joy Laskar, "60-GHz Integrated Transmitter Development in 90-nm
CMOS", IEEE Trans. Microwave Theory Tech.,
vol. 57, No. 10, pp. 2354-2367, Oct. 2009.
9. S.
Pinel, P. Sen, S. Sarkar, B. Perumana, D.
Dawn, D. Yeh, F. Barale, M. Leung, E. Juntunen, P. Vadivelu, K. Chuang, P.
Melet, G. Iyer, and J. Laskar, "60GHz Single-Chip CMOS Digital Radios and
Phased Array Solutions for Gaming and Connectivity", IEEE Journal on Selected Areas in Comm., vol. 27, No. 8, pp.
1347-1357, Oct. 2009.
10. Padmanava
Sen, Saikat Sarkar, Debasis Dawn, Stephane Pinel, and Joy
Laskar, "Integrated VCO with UP/Down Converter for Si-based 60GHz WPAN
Applications", IEEE Microwave and Wireless Components
Letters, vol. 18, No. 2, pp . 139-141, Feb. 2008.
11. Joy
Laskar, Stephane Pinel, Debasis Dawn,
Saikat Sarkar, Bevin Perumana, and Padmanava Sen, "The Next Wireless Wave is a
Millimeter Wave", Microwave Journal, vol.
50, No. 8, pp. 22-36, Aug. 2007.
12. Debasis Dawn, Yoji Ohashi, and
Toshihiro Shimura, "A Novel Electromagnetic Bandgap Metal Plate for Parallel
Plate Mode Suppression in Shielded Structures", IEEE Microwave and Wireless Components Letters, vol. 12, No. 5, pp.
166-168 May 2002.
13. Debasis Dawn, "Analysis and Design of a
Novel Radial Folded Waveguide Structure for Feeder of a Planar Radial Line
Antenna", International Journal of RF and
Microwave Computer-Aided Engineering, vol. 9 No. 5, pp. 415-423, Sept.
1999.
14. Debasis Dawn, "Analysis and Design of
Folded Waveguide as Feeder for Planar Radiating Structure", Journal of Electromagnetic Waves and
Applications, vol. 13, No. 6 pp. 767-780 1999.
15. Tsukasa
Yoneyama and Debasis Dawn, "Optical
Intensity Modulator Using Inverted Slot Line at 60 GHz", "Optical
Quantum Electronics, Chapman & Hall, U. K.", the special issue on
"Microwave-Optical Interactions", vol.30, No. 11-12, pp. 985-993 Dec. 1998.
16. Debasis Dawn and Tsukasa Yoneyama,
"Periodic Metal Plate Loaded Dielectric Slab Antenna with Broadside Radiation",
IEEE Transactions on Antennas and
Propagation, Vol. 43, No, 10, pp. 1076-1081 Oct.1995.
Refereed Conference Proceedings
17. Palash
Roy and Debasis Dawn, "A High-Power
and High-Efficiency CMOS VCO for Automatic Dependent Surveillance-Broadcast
(ADS-B) System", IEEE International Conf.
on Electro/Information Technology (EIT), May 2015.
18. Debasis Dawn, "60GHz CMOS Transmitter
Front-end with Built-in Temperature Sensor", Asia Pacific Microwave Conference
(APMC), Sendai, Japan, Nov. 2014.
19. Debasis Dawn, "Millimeter-Wave CMOS
Radio Frequency Integrated Circuits Development and its Potential Applications"
(Invited), Asia Pacific Microwave
Conference (APMC), Sendai, Japan, Nov. 2014.
20. Debasis Dawn "Millimeter-Wave CMOS Switching
Power Amplifiers", IEEE MTT International
Microwave and RF Conference (IMaRC) Dec. 2013.
21. A.
Sanyal, A. Mendoza-Radal, B. Ijaz, and D.
Dawn "CMOS Phase Shifter for Conformal Phased Array Beamformer Applications",
IEEE International Conference on Wireless
for Space and Extreme Environments (WiSEE) Nov. 2013.
22. B.
Ijaz, A. Sanyal, A. Mendoza-Radal, S. Roy, I. Ullah, M. Reich, D. Dawn, B. Braaten, N. Chamberlain,
and D. E. Anagnostou "Gain Limits of Phase Compensated Conformal Antenna Arrays
on Non-Conducting Spherical Surfaces using the Projection Method", IEEE International Conference on Wireless
for Space and Extreme Environments (WiSEE) Nov. 2013.
23. C.
Patterson, D. Dawn, and J.
Papapolymerou "A W-Band CMOS PA Encapsulated in an Organic Flip-Chip Package", IEEE MTT-S Int. Microwave Symp. Montreal,
Canada, June 2012.
24. E.
Juntunen, W. Khan, C. Patterson, S. Bhattacharya, D. Dawn, J. Laskar and J. Papapolymerou "An LCP Packaged
High-Power, High-Efficiency CMOS Millimeter-Wave Oscillator", IEEE MTT-S Int. Microwave Symp. Baltimore,
MD, June 2011.
25. S.
Shin, D. Dawn, D. Yeh and J. Laskar
"A Model Inaccuracy Aware
Design Methodology of Millimeter-wave CMOS Tuned Amplifiers", Wireless and Microwave Technology Conference
(WAMICON), 2011 IEEE 12th Annual, April 2011.
26. N.
Mallavarpu, D. Dawn, and J. Laskar
"Temperature-Dependent Scalable Large-Signal CMOS Device Model Developed for
Millimeter-Wave Power Amplifier Design", IEEE
MTT-S Int. RFIC Symp. Baltimore, MD, June 2011.
27. V.
Sridharan, A. Goyal, S. Sitaraman, N. Kumbhat, N. Sankaran, H. Chan, F. Liu, D. Dawn, V. Nair, T. Kamgaing, F.
Juskey, V. Sundaram, and R. Tummala "Ultra-miniaturized WLAN RF receiver with chip-last
GaAs embedded active", 61st
IEEE Electronic Components and Technology Conference (ECTC), pp. 1371-1376,
2011.
28. J. Laskar,
S. Pinel, S. Sarkar, P. Sen, B. Perumana, D.
Dawn, M. Leung, F. Barale, D. Yeh, J. Shin, S. Hsiao, K. Chuang, E.
Juntunen, G. Iyer, A. Muppalla and P. Melet "On the Development of CMOS Sub-THz
Phased Array Technology for Communication/Sensing Nodes", IEEE MTT-S Int. Microwave Symp. Anaheim, CA, May 2010.
29. Debasis Dawn, S. Sarkar, P. Sen, B.
Perumana, M. Leung, N. Mallavarpu, S. Pinel, and J. Laskar "60GHz CMOS Power
Amplifier with 20-dB-Gain and 12dBm Psat", IEEE
MTT-S Int. Microwave Symp. Boston, MA, pp. 537-540, Jun. 2009.
30. P.
B. Vadivelu, P. Sen, S. Sarkar, D. Dawn,
S. Pinel, and J. Laskar "Integrated CMOS mm-wave Phase Shifters for Single
Chip Portable Radar", IEEE MTT-S Int.
Microwave Symp. Boston, MA, pp. 565-568, Jun. 2009.
31. Joy
Laskar, Stephane Pinel, Saikat Sarkar, Padmanava Sen, Bevin Perumana, M. Leung,
Debasis Dawn, David Yeh, F. Barale,
K. Chuang, G. Iyer, J-H. Lee, and P. Melet, "60GHz CMOS/PCB Co-Design And
Phased Array Technology", IEEE Custom
Integrated Circuits Conference (CICC) pp. 453-458, 2009.
32. Joy Laskar,
Stephane Pinel, Debasis Dawn, Saikat
Sarkar, Padmanava Sen, Bevin Perumana, David Yeh, and F. Barale, "60GHz
Entertainment Connectivity Solution", 2009
IEEE International Conference on Ultra-WideBand, pp. 17-21, Sept. 2009.
33. D.
Yeh, A. Chowdhury, R. Pellard, S. Pinel, S. Sarkar, P. Sen, B. Perumana, D. Dawn, E. Juntunen, M. Leung, H-C.
Chien, Y-T. Hsueh, Z. Jia, J. Laskar and G-K. Chang "Millimeter-wave
Multi-gigabit IC Technologies for Super- Broadband Wireless Over Fiber
Systems", Optical Fiber Communication
(OFC), 2009.
34. N.
Mallavarpu, D. Dawn, S. Sarkar, P.
Sen, S. Pinel, and J. Laskar "Temperature-Dependent Millimeter-Wave Scalable
Large-Signal Model for 90nm CMOS", Asia
Pacific Microwave Conference (APMC), Singapore, pp. 1-4, Dec. 2008.
35. Debasis Dawn, Saikat Sarkar, Padmanava
Sen, Stephane Pinel, and Joy Laskar "60GHz Silicon-Based Tunable Amplifier", 38th European Microwave Conf.
(EuMC), Amsterdam, The Netherlands, pp. 452-455, Oct. 2008.
36. Joy
Laskar, Stephane Pinel, Debasis Dawn, Saikat Sarkar, Padmanava
Sen, Bevin Perumana, David Yeh, and Francesco Barale "Co-Design of Fully
Integrated 60GHz CMOS Digital Radio in QFN Package", 38th European Microwave Conf. (EuMC), Amsterdam, The
Netherlands, pp. 5-8, Oct. 2008.
37. Debasis Dawn, S. Sarkar, P. Sen, B.
Perumana, D. Yeh, S. Pinel, and J. Laskar "17-dB-Gain CMOS Power Amplifier at
60GHz", IEEE MTT-S Int. Microwave Symp. Atlanta,
GA, pp. 859-862, Jun. 2008.
38. Saikat Sarkar, Padmanava Sen, Bevin Perumana, David
Yeh, Debasis Dawn, Stephane Pinel,
and Joy Laskar, "60GHz Single-Chip 90nm CMOS Radio with Integrated Signal
Processor", IEEE MTT-S Int. Microwave Symp. Atlanta, GA, Jun. 2008.
39. Joy Laskar, Stephane Pinel, Saikat Sarkar, Padmanava
Sen, Bevin Perumana, David Yeh, F. Barale, and Debasis Dawn, "A Transceiver for 60GHz High Data Rate Wireless
Transmission", IEEE MTT-S Int. Microwave Symp. Workshop, Atlanta, GA, Jun. 2008.
40. Joy Laskar, Stephane Pinel, Saikat Sarkar, Padmanava
Sen, Bevin Perumana, Debasis Dawn, David
Yeh, and F. Barale, "A SOC/SOP Co-design
approach for mmW CMOS in QFN Technology", IEEE
Custom Integrated Circuits Conference (CICC) pp. 73-80, 2008.
41. S. Pinel, S. Sarkar, P. Sen, B. Perumana, D. Yeh, Debasis Dawn, and J. Laskar, "A 90nm
CMOS 60GHz Radio", ISSCC Dig. Tech Papers,
pp. 130-131, Feb. 2008.
42. Joy
Laskar, Stephane Pinel, Debasis Dawn,
Saikat Sarkar, Padmanava Sen, Bevin Perumana, and David Yeh, "FR-4 and CMOS:
Enabling Technologies for Consumer Volume Millimeter-wave Applications", Electron Devices Meeting, 2007. IEDM 2007.
IEEE International, pp. 981-984, Dec. 2007.
43. Bevin
George Perumana, Anand Raghavan, Sudipto Chakraborty, Chang-Ho Lee, Debasis Dawn, Stephane Pinel, and Joy
Laskar "A SiGe Sub-harmonic Mixer for Millimeter-Wave Applications", 37th European Microwave Conf.
(EuMC), Munich, Germany, Oct. 2007.
44. Debasis Dawn, S. Pinel, S. Sarkar, P.
Sen, B. Perumana, D. Yeh and J. Laskar "Development of CMOS Based Circuits for
60GHz WPAN applications", 2007 IEEE
International Conference on Ultra-WideBand, Singapore, pp. 129-133, Sept.
2007.
45. Javier
Alvarado Jr., Kevin T. Kornegay, Debasis
Dawn, Stephane Pinel, and Joy Laskar "60GHz LNA using a Hybrid Transmission
Line and Conductive Path to Ground Technique in Silicon", 2007 IEEE RFIC Symp., Honolulu, Hawaii, Jun. 2007.
46. Debasis Dawn, Yoji Ohashi, and Satoshi
Nakamura, "A Novel Planar Transition from Microstrip to Waveguide", Asia Pacific Microwave Conference (APMC) Kyoto,
Japan, Nov. 2002.
47. Debasis Dawn, Yoji Ohashi, and
Toshihiro Shimura, "Parallel Plate Mode Suppression in Shielded Structures by
Using Electromagnetic Band Gap Metal Plate", Asia Pacific Microwave Conference (APMC), Sydney, Australia, pp.
400-403, Dec. 2000.
48. Debasis Dawn, Yoji Ohashi, and
Toshihiro Shimura, "Probe Pad Structures for Multi Module Scheme at 76 GHz
Band", 30th European Microwave
Conf. (EuMC), Paris, France, pp. 361-364, Oct. 2000.
49. T.
Taniuchi, N. Mashio, Y. Konno, T. Sato, D.
Dawn, and T. Yoneyama, "60 GHz Radiation Detection Using Electro-Optic
Effect of DAST Crystal", International
Topical Meeting on MICROWAVE PHOTONICSATRI, Kyoto, Japan, pp. 317-320, Dec.
1996.
50. Tsukasa
Yoneyama, Debasis Dawn, and Tatsuya
Hanasaka, "Optical Intensity Modulator Using Inverted Slot Line at 60 GHz", International Topical Meeting on MICROWAVE
PHOTONICS, ATRI, Kyoto, Japan, pp. 305-308, Dec. 1996.
51. Tsukasa
Yoneyama and Debasis Dawn, "Optical
Modulator Using Inverted Slot Line at 60 GHz", Proc. (DC Microwave / Optical Interactions) of U.R.S.I. General
Assembly at Lille, France, Sept. 1996.
52. Debasis Dawn and Tsukasa Yoneyama, "Optical
Intensity Modulator Using Inverted Slot Line at 60 GHz", Proceedings of 1996 China-Japan Joint Meeting on Microwaves, Hefei,
P. R. China, pp. 48-51, Apr. 1996.
53. Debasis Dawn and Tsukasa Yoneyama, "A
Periodic Metal Plate Loaded Dielectric Slab Antenna", 4th International Symposium on Recent Advances in Microwave
Technology (ISRAMT Õ93), New Delhi /Agra, India, Dec. 1993.
54. Debasis Dawn and M. Sachidananda,
"Analysis and Design of Strip Line to NRD Guide Transition", The 3rd Asia-Pacific Microwave
Conference (APMC Õ90), pp. 15-18, Tokyo, Japan, Sept. 1990.
Invited Talks
1. Debasis Dawn "Millimeter-Wave CMOS Radio Frequency Integrated Circuits Development
and its Potential Applications", Asia
Pacific Microwave Conference (APMC), Sendai, Japan, Nov. 2014.
2. Debasis Dawn "Silicon Microelectronic Circuits: Radio
Frequency and Beyond", UGC
Sponsored Refresher Course " Nano devices and low-power VLSI Design", Jadavpur
University, India, Dec. 2013.
3. Debasis Dawn "CMOS Integrated Beam Former with Conformal
Phased Array Antenna for Wireless Communications", NASA Jet Propulsion Laboratory (JPL), Pasadena, CA, USA, Jun. 2013.
4. Debasis Dawn "Millimeter-Wave CMOS Integrated Circuits Development and its Potential
Applications", National Institute
of Information and Communications Technology (NICT), Tokyo, Japan, May
2012.
5. Debasis Dawn "Layout and Temperature
Dependent CMOS Device Models and their Application for Millimeter-Wave Transmitter
Design", Agilent Goldengate Users
Networking Event during IEEE RFIC Symposium, Anaheim, CA, May 2010.
6. Debasis Dawn "Development of 60GHz
Radio in CMOS", IEEJ Research Committee
on Millimeter-Wave Engineering and Science, The Institute of Electrical
Engineering of Japan, Hyogo, Japan, June 2009.
7. Debasis Dawn, S. Pinel, S. Sarkar, P. Sen,
B. Perumana, D. Yeh and J. Laskar "Development of CMOS Based Circuits for 60GHz
WPAN applications", 2007 IEEE International
Conference on Ultra-WideBand, Singapore, pp. 129-133, Sept. 2007.
Patents:
1. Debasis Dawn, Yoji Ohashi, and
Toshihiro Shimura, "Millimeter Wave Module having Probe Pad Structure and
Millimeter Wave System using Plurality of Millimeter Wave Modules" United
States of America Patent Number: US 6,867,661 B2 March 15, 2005.
2. Debasis Dawn, Yoji Ohashi and Edmar
Camargo, "Transmission Line to Waveguide Transition Including Antenna Patch and
Ground Ring", United States of America Patent Number: US 6,822,528 B2 Nov.
23, 2004.
3. Debasis Dawn, Yoji Ohashi, and
Toshihiro Shimura, "Metal Plate with Three Dimensional Photonic Band Gap
Structures for Parallel Plate Mode Suppressor", submitted to Japanese patent
office for international patents, No. 99-51703.