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[2] Gupta, K.C., Lumped Elements for MICs," in Microwave Integrated arcuits, КС Gupta and A Singh (Eds) New Delhi Wiley Eastern 1974, Ch. 6.

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[6] Gopinath, A , and P Silvester, "Calculation of Inductance of Finite-Length Strips and its Variations with Frequency," IEEE Trans Microwave Theory Tech Vol MTT-21,1973 pp 380-386

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[11] Wolff, I., and N. Knoppik, "Rectangular and Circular Micro strip Disk Capacitors and Resonators," IEEE Trans. Microwave Theory Tech, Vol. MTT-22, Oct. 1974, pp. 857-864

[ 12] Alley, G.D., "interdigital Capacitors and Their Apphcations to Lumped-element Microwave Integrated Circuits," IEEE Trans Microwave Theory Tech., Vol. MTT-18, Dec. 1970 pp 1028-1033

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[I] Okoshi, т., et а/. "Planar 3-db Hybrid Circuit," £/ectron. Commun. Japan, Vol. 68-B, August 1976, pp. 80 90

[2] Miyoshi Т., and S Miyauchi, "The Design of Planar Cur culators for Wide-band Operation," IEEE Trans. Microwave Theory Tech Vol MTT-28 March 1980 pp 210-214

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[6] Chadha, R., and K.C. Gupta, "Segmentation Method Using Impedance-Matrices for Analysis of Planar Mfctowave Cir cuits," IEEE Trans. Microwave Theory Tech Vol MTT 29, Jan. 1981, pp 71-74

[7] Morse, P M., and H. Feshbach,Methods of Theoretical Physics New York- McGraw Hill, 1963, Ch. 7

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[9] Chadha R and K.C. Gupta, "Green s Functions for Tri angular Segments in Planar Microwave Circuits," IEEE Trans. Microwave Theory Tech Vol MTT 28, Oct 1980, pp 1139-1143

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[II] Okoshi, T, e( of., "The Segmentation Method - An Approach to the Analysis of Microwave Planar Cu-cuits," IEEE Trans. Microwave Theory Tech Vol MTT-24, October 1976,

[12] Sharma, PC, and K.C. Gupta, "Desegmentation Method for Analysis of Two-Dimensional Microwave Circuits," IEEE Trans Microwave Theory Tech. Vol. MTT 29 Oct. 1981 (to appear)

[13] Silvester, P., "Finite Element Analysis of Planar Microwave

Networks," IEEE Trans. Microwave Theory Tech , Vol

MTT 21, Feb 1973, pp. 104-108 [14] 2депкхешсг,0.С., The Finite Elements Method London

McGraw-Hill, 1977. [16] Schneider, M.V., "Milhmeter wave Integrated Circuits,"

IEEE G-MTTIm. Microwave Symp Digest, 1973, pp. 16 18 [16] Schneider, M.V., and W.W. Snell, Jr., "AScaled Hybrid Inte

grated Multiplier from 10 to 30 GHz "BSTJ Vol 60

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[1 ] "Selection and Use of Microwave Diode Switches and Limit ers " Hewlett Packard Application Note No. 932 May 1973

[2] Gupta КС Microwaves New Delhi-Wiley Eastern 1979 Ch.4

[3] White M,.H., and M.O. Thurston, Characterization of Microwave Transistors " Solid-State electron Vol 13 1970, pp 623-642

[4] Cooke, HF., Microwave Transistors: Theory and Design," Proc. IEEE Vol. 69, Aug. 1971, pp. 1163-1181.

[6] Hartmann, K., e( оД, "Equivalent Network for Three Differ ent Microwave Bipolar Transistor Packages in the 2-10 GHz Range," Electron Lett, Vol. 7, Sept. 9,1971, pp 610-611

[6] Liechti, C.A., "Characteristics of Dual-gate GaAs MESFETs Proc. 1974 European Microwave Conf, pp. 87-91

[7] Mimura, Т., e( al., "GaAs Microwave MOSFET,"ffiEE J>Bns Electron. Devices, Vol ED-26, June 1978, pp. 673-679.

[8) Pucel, R.A, et al, "Signal and Noise Properties of Gaffium Arsenide Microwave Field-effect Transistors," in Advances m Electronics and Electron Physics, h Marton, Ed„ Vol



38, New York Academic Press, 1975, pp 195 266 (9 ] Furutsuka, et al., "GaAs Dual-gate MESFETs," IEEE Trans.

Electron Devices, Vol ED-25, June 1978, pp 680-686 [10] Ogawa M., et al, "Submicron Single-gate and Dual-gate

GaAs MESFETs with Improved Low Noise and High Gain

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MTT 24, June 1976, pp. 300-305 [11] Chua, LO., and Y.W. Sing ANonhnear Lumped Circuit

Model for Gunn Diodes," Int. J. Circuit Theory Applications,

Vol. 6, No 4, Oct. 1978, pp 375-408 [12] Gupta, M S, "A Small-signal and Noise Eiuivalent Circuit

tor IMP ATT Diodes," IEEE Trans. Microwave Theory Tech.,

Vol. MTT 21, Sept. 1973, pp. 691-694 [13] Gupta, M S., "Large-signal Equivalent Circuit tor IMPATT-

diode Characterization and its Application to Amplifiers,"

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[1] Oliver, B.M., and J M. Cage,£lectronicAfeflsiircmen(sanrf

Instrumentation, New York: McGraw-Hill, 1971. [ 2 ] НасЫюгп, R A., "An Automatic Network Analyzer System,"

Microwave J., Vol. 11, Nov. 5, 1968 13 ] Adam, S.F., Microwave Theory and Applications, Englewood

Cliffs (NJ); Prentice-Hall, 1969, pp. 347-602 [ 4 ] Hoer, C.A., "Using Six-port and Eight-port Junctions to

Measure Active and Passive Circuit Parameters " National

Bureau of Standards, Tech. Note 673, 1976 16] Engen, G F., "The Six-port Reflectometer; An Alternative

Network Analyzer," IEEE Trans Microwave Theory Tech ,

Vol. MTT 26, 1977, pp. 1075-1083. [6] Engen, G.F., "Advances in Microwave Measurement Science

Proc. IEEE, Vol. 66,1978, pp 374-384 [7] Engen, G.F., "An Improved Circuit for Implementing the

Six-port Tfechnique for Microwave Measurements," IEEE

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(8) Bauer, R.F., and P Penfield, Jr., "De-embeddingand Un

terminating," IEEE Trans. Microwave Tbeory Tech Vol

МГГ-22,1974, pp 282 288. [9] Rehnmark, S., "On the Cahbration Process of Automatic

Network Analyzer Systems " IEEE Trans Microwave Theory

Tech., Vol. MTT-22,1974 pp. 467-468. [10] Da Silva, E.F., and M.K. McPhun, "Calibration of Micro

wave Network Analyzer for Computer Corrected S-para

meter Measurements," £tec(ron Lett, Vol 9, March 1973,

pp 126-128

[11] Kruppa, W., and K.F. Sodomsky, "An Explicit Solution tor the Scattering Parameters of a Linear Two-port Measured with an Imperfect Test Set," IEEE Trans. Microwave Theory Tech., Vol MTT 19, Jan. 1971, pp 122-123.

[12] Hand, B.P., "Developing Accuracy Specifications for Automatic Network Analyzer Systems Hewlett Packard J Vol 21, Feb 1970, pp. 16-19

[13] Franzen, N.R., and R A Speciale, "A New Procedure for System Olibration and Error Removal in Automated S-parameter Measurements," Proc. 5th European Microwave Conf., Hamburg 1976, pp 69-73

[14] Chua, L.O., and P.M. Lin, Computer Aided Analysis of Electronic Circuits: Algorithms and Computational Tech niques, Englewood Cliffs N.J.; Prentice-Hall, 1976 Chapter 14.

[15] Uhlir, A., Jr., Correction for Adapter m Microwave Mea

surements,"Trans Microwave Theory Tech., Vol

MTT 22, 1974, pp. 330-332. [ 161 Barnett, S., Matrices in Control Tbeory with Applications

to Linear Programming New York Van Nostrand, 1971,

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[2] Monaco V.A., and P. Tiberio, "On the Transformation of a Lumped Element Linear Network into a Circuit Com-



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