2008-05-06
Design of L-Band High Speed Pulsed Power Amplifier Using LDMOS Fet
By
Progress In Electromagnetics Research M, Vol. 2, 153-165, 2008
Abstract
Citation
Huimin Yi, and Sung-Yong Hong, "Design of L-Band High Speed Pulsed Power Amplifier Using LDMOS Fet," Progress In Electromagnetics Research M, Vol. 2, 153-165, 2008.
doi:10.2528/PIERM08032805
References

1. Lee, K.-C., C.-W. Huang, and M.-C. Fang, "Radar target recognition by projected features of frequency-diversity RCS," Progress In Electromagnetics Research, Vol. 81, 121-133, 2008.
doi:10.2528/PIER08010206        Google Scholar

2. Zhao, S.-C., B.-Z. Wang, and Q.-Q. He, "Broadband radar cross section reduction of a rectangular patch antenna," Progress In Electromagnetics Research, Vol. 79, 263-275, 2008.
doi:10.2528/PIER07101002        Google Scholar

3. Shi, Z.-G., S. Qiao, K. S. Chen, W.-Z. Cui, W. Ma, T. Jiang, and L.-X. Ran, "Ambiguity functions of direct chaotic radar employing microwave chaotic colpitts oscillator," Progress In Electromagnetics Research, Vol. 77, 1-14, 2007.
doi:10.2528/PIER07072001        Google Scholar

4. Chen, X.-J. and X.-W. Shi, "An expression for the radar cross section computation of an electrically large perfect conducting cylinder located over a dielectric half-space," Progress In Electromagnetics Research, Vol. 77, 267-272, 2007.
doi:10.2528/PIER07081702        Google Scholar

5. Pinel, N., C. Bourlier, and J. Saillard, "Forward radar propagation over oil slicks on sea surfaces using the ament model with shadowing effect ," Progress In Electromagnetics Research, Vol. 76, 95-126, 2007.
doi:10.2528/PIER07062004        Google Scholar

6. Angell, A. J. and C. M. Rappaport, "Computational modeling analysis of radar scattering by clothing covered arrays of metallic body-worn explosive devices ," Progress In Electromagnetics Research, Vol. 76, 285-298, 2007.
doi:10.2528/PIER07070905        Google Scholar

7. Qiao, S., Z.-G. Shi, T. Jiang, and L.-X. Ran, "A new architecture of UWB radar utilizing microwave chaotic signals and chaos synchronization," Progress In Electromagnetics Research, Vol. 75, 225-237.
doi:10.2528/PIER07052403        Google Scholar

8. Lee, K.-C., J.-S. Ou, and C.-H. Huang, "Angular-diversity radar recognition of ships by transformation based approaches --- Including noise effects," Progress In Electromagnetics Research, Vol. 72, 145-148, 2007.
doi:10.2528/PIER07030901        Google Scholar

9. Wang, S., X. Guan, D. Wang, X. Ma, and Y. Su, "Fast calculation of wide-band responses of complex radar targets," Progress In Electromagnetics Research, Vol. 68, 185-196, 2007.
doi:10.2528/PIER06081702        Google Scholar

10. Chan, Y. K., B.-K. Chung, and H.-T. Chuah, "Transmitter and receiver design of an experimental airborne synthetic aperture radar sensor," Progress In Electromagnetics Research, Vol. 49, 203-218, 2004.
doi:10.2528/PIER04031601        Google Scholar

11. Wang, S., X. Guan, X. Ma, D. Wang, and Y. Su, "Calculating the poles of complex radar targets," Journal of Electromagnetic Waves and Applications, Vol. 20, No. 14, 2065-2076, 2006.
doi:10.1163/156939306779322657        Google Scholar

12. Skolnik, M., Radar Handbook, 2nd Ed., McGraw-Hill, 1990.

13., MA-COM, RF Transistor Data Sheets.

14. Sedra, A. S. and K. C. Smith, "Microelectronic Circuits," Oxford University Press, 1992.        Google Scholar