Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 20
Page No. 8574 - 8578

InP-Based Gunn Diodes with Stable Depletion Layer for W-Band Waveguide Oscillator Applications

Authors : Seok-Gyu Choi, Won-Young Uhm and Sung Chan Kim

References

Amir, F., C. Mitchell and M. Missous, 2010. Development of advanced Gunn diodes and Schottky multipliers for high power THz sources. Proceedings of the 2010 8th International Conference on Advanced Semiconductor Devices and Microsystems (ASDAM), October 25-27, 2010, IEEE, Smolenice, Slovakia, ISBN:978-1-4244-8575-8, pp: 29-32.

Amir, F., N. Farrington, T. Tauqeer and M. Missous, 2008. Physical modelling of a step-graded AlGaAs/GaAs Gunn Diode and investigation of hot electron injector performance. Proceedings of the 2008 International Conference on Advanced Semiconductor Devices and Microsystems ASDAM, October 12-16, 2008, IEEE, Smolenice, Slovakia, ISBN:978-1-4244-2325-5, pp: 51-54.

Eisele, H. and G.I. Haddad, 1995. High-performance InP Gunn devices for fundamental-mode operation in D-band (110-170 GHz). IEEE. Microwave Guided Wave Lett., 5: 385-387.
CrossRef  |  Direct Link  |  

Franklin, J., H.C. Kuo, J. Liu, R. Vizcarra and Y.C. Pao et al., 2000. Gas source molecular beam epitaxial growth of 77 GHz InP Gunn diodes for automotive forward looking radar applications. J. Vac. Sci. Technol. B. Microelectron. Nanometer Struct. Process. Meas. Phenom., 18: 1645-1649.
Direct Link  |  

Friscourt, M.R. and P.A. Rolland, 1983. Optimum design of n+-n-n+ InP devices in the millimeter-range frequency limitation-RF performances. IEEE. Electron Device Lett., 4: 135-137.
CrossRef  |  Direct Link  |  

Jones, S.H., M.F. Zybura, J.E. Carlstrom and T.M. O'Brien, 1999. A 63-170 GHz second-harmonic operation of an InP transferred electron device. IEEE. Trans. Electron Devices, 46: 17-23.
CrossRef  |  Direct Link  |  

Judaschke, R., 2000. Comparison of modulated impurity-concentration InP transferred electron devices for power generation at frequencies above 130 GHz. IEEE. Trans. Microwave Theory Tech., 48: 719-724.
CrossRef  |  Direct Link  |  

Kamoua, R., H. Eisele, G.I. Haddad, G. Munns and M. Sherwin, 1993. Development of an appropriate model for the design of D-band InP Gunn devices. Proceedings of the IEEE/Cornell International Conference on Advanced Concepts in High Speed Semiconductor Devices and Circuits, August 2-4, 1993, IEEE, Ithaca, New York, USA., pp: 338-346.

Khalid, A., C. Li, V. Papageogiou, G.M. Dunn and M.J. Steer, et al., 2013. In0.53Ga0.47 as planar Gunn diodes operating at a fundamental frequency of 164 GHz. IEEE. Electron Device Lett., 34: 39-41.
CrossRef  |  Direct Link  |  

Khalid, A., N.J. Pilgrim, G.M. Dunn, M.C. Holland and C.R. Stanley et al., 2007. A planar Gunn diode operating above 100 GHz. IEEE. Electron Device Lett., 28: 849-851.
CrossRef  |  Direct Link  |  

Kurita, H., A. Yokohata, A. Kodama, K. Suga and S. Kato et al., 1991. W-band InP Gunn diodes with optimized linearly graded profiles. Proceedings of the 3rd International Conference on Indium Phosphide and Related Materials, April 8-11, 1991, IEEE, Cardiff, UK., pp: 280-283.

Li, C., L.B. Lok, A. Khalid, I.G. Thayne and D.R. Cumming, 2011. Investigation of loading effect on power performance for planar Gunn diodes using load-pull measurement technique. IEEE. Microwave Wireless Components Lett., 21: 556-558.
CrossRef  |  Direct Link  |  

Panda, A.K., D. Pavlidis and E.A. Alekseev, 2001. Noise characteristics of GaN-based IMPATTs. IEEE. Trans. Electron Devices, 48: 1473-1475.
CrossRef  |  Direct Link  |  

Panda, A.K., G.N. Dash, N.C. Agrawal and R.K. Parida, 2009. Studies on the characteristics of GaN-based Gunn diode for THz signal generation. Proceedings of the International Conference on Microwave Asia Pacific APMC, December 7-10, 2009, IEEE, Singapore, Singapore, ISBN:978-1-4244-2801-4, pp: 1565-1568.

Zybura, M.F., S.H. Jones, B.W. Lim, J.D. Crowley and J.E. Carlstrom, 1996. 125-145 GHz stable depletion layer transferred electron oscillators. Solid State Electron., 39: 547-553.
Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved