Browse > Article

Single-Balanced Low IF Resistive FET Mixer for the DBF Receiver  

Ko Jee-Won (Dept. of Radio Sciences & Engineering, Korea Maritime University)
Min Kyeong-Sik (Dept. of Radio Sciences & Engineering, Korea Maritime University)
Publication Information
Abstract
This paper describes characteristics of the single-balanced low IF resistive FET mixer for the digital beam forming(DBF) receiver. This DBF receiver based on the direct conversion method is designed with Low IF I and Q channel. A radio frequency(RF), a local oscillator(LO) and an intermediate frequency(IF) considered in this research are 1950 MHz, 1940 MHz and 10 MHz, respectively. Super low noise HJ FET of NE3210S01 is considered in design. The measured results of the proposed mixer are observed IF output power of -22.8 dBm without spurious signal at 10 MHz, conversion loss of -12.8 dB, isolation characteristics of -20 dB below, 1 dB gain compression point(PldB) of -3.9 dBm, input third order intercept point(IIP3) of 20 dBm, output third order intercept point(OIP3) of 4 dBm and dynamic range of 30 dBm. The proposed mixer has 1.0 dB higher IIP3 than previously published single-balanced resistive and GaAs FET mixers, and has 3.0 dB higher IIP3 and 4.3 dB higher PldB than CMOS mixers. This mixer was fabricated on 0.7874 mm thick microstrip $substrate(\varepsilon_r=2.5)$ and the total size is $123.1\;mm\times107.6\;mm$.
Keywords
DBF; Receiver; FET; Single-Balanced Mixer; Resistive Mixer;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Applied Wave Research, Inc., www.mwoffice.com
2 S. Lee, C. Yoo, W. Kim, H. K. Ryu, and W. Song, '1 GHz CMOS down-conversion mixer', Proc. IEEE Int. Symp. Consumer Electronics, pp. 125-127, 1997
3 M. Lehne, J. T. Stonick, and U. Moon, 'An adaptive offset cancellation mixer for direct conversion receivers in 2.4 GHz CMOS', Proc. ISCAS, vol. 1, pp. 319-322, 2000
4 David M. Pozar, Microwave Engineering, John Wiley & Sons, Inc., Second Edition, 1998
5 Stephen A. Maas, Microwave Mixers, Artech House, Inc., Second Edition, 1993
6 C. C. Tang, C. H. Wu, W. S. Feng, and S. I. Liu, 'A 2.4 GHz low voltage CMOS down conversion double-balanced mixer', IEICE Trans. Electron., vol. E84-C, no. 8, pp. 1084-1091, Aug. 2001
7 P. J. Sullivan, B. A. Xavier, and W. J. Ku, 'Doubly balanced dual-gate CMOS mixer', IEEE J. Solid-State Circuits, vol. 34, no. 6, Jun. 1999
8 D. A. Kruger, 'Monolithic dual-quadrature mixer using GaAs FETs', Microwave Journal, pp. 201206, Sep. 1990
9 M. Hasegawa, T. Fukagawa, M. Mimura, and Makimoto, 'Homodyne receiver technology for small and low power consumption mobile communications equipment', Proceedings 1995 URSI International Symposium on Signals, Systems, and Electronics, pp. 259-262, 1995
10 F. Ellinger, R. Vogt, and W. Bachtold, 'Compact monolithic integrated resistive mixers with low distortion for HIPERLAN', IEEE Trans. Microwave Theory Tech., vol. 50, no. 1, pp. 178-182, Jan. 2002   DOI   ScienceOn
11 Jee-Won Ko, Kyeong-Sik Min, and HiroyukiARAI, 'Design for the Low IF Resistive FET mixer for the 4-Ch DBF receiver', Journal of the Korea Electromagnetic Engineering Society, vol. 2, no. 2, Nov. 2002
12 J. H. Kim, H. J. Park, J. C. Lee, and N. Y. Kim, 'Ku-Band sub-harmonically pumped single balanced resistive mixers with a low pass filter using photonic band gap', Journal of the Korea Electromagnetic Engineering Society, vol. 11, no. 4, pp. 599-609, Jun. 2000
13 S. H. Lee, J. S. Kim, C. S. Hwang, I. M. Park, K. H. Ra, and C. C. Shim, 'The design of GaAs MESFET resistive mixer with high linearity', Journal of the Korea Electromagnetic Engineering Society, vol. 10, no. 2, pp. 169-179, Dec. 2003
14 P. J. Sullivan, B. A. Xavier, and W. H. Ku, 'Low voltage performance of a microwave CMOS Gilbert cell mixer', IEEE J. Solid-State Circuits, vol. 32, no. 7, pp. 1151-1155, Jul. 1997   DOI   ScienceOn
15 Stephen A. Maas, 'A GaAs MESFET balanced mixer with very low intermodulation', IEEE Trans. Microwave Theory Tech., vol. 35, no. 4, pp. 425-429, Apr. 1987   DOI
16 H. Kilicaslan, H. S. Kim, and M. Ismail, 'A 1.9 GHz CMOS RF down-conversion mixer', Proc. 40th Midwest Symp. Circuits System., vol. 2, pp. 1172-1174, 1998
17 M. Nakayama, K. Horiguchi, K. Yamamoto, Y. Yoshii, S. Sugiyama, N. Suematsu, and T. Takagi, 'A 1.9 GHz single-chip RF front-end GaAs MMIC with low-distortion cascode FET mixer', IEICE Trans. Electron., vol. E82-C, no. 5, pp. 717-724, May 1999
18 A. N. Karanicolas, 'A 2.7 V 900-MHz CMOS LNA and mixer', IEEE J. Solid-State Circuits, vol. 31, no. 12, pp. 1939-1996, Dec. 1996   DOI   ScienceOn