Title :
New PSPICE computational method for single and double-mode ECAM
Author :
Vizireanu, D.N. ; Udrea, R.M. ; Pirnog, I.
Author_Institution :
Fac. of Electron. & Telecommun., Politehnica Univ. Bucharest, Romania
Abstract :
PSPICE has become one of the most well known circuit analysis programs. This work presents new methods of simulating the algebraic functions as well as the solving of non-linear differential equations. A new negative resistance oscillator model was used for the single and double mode LCR networks of ECAM. Analytic approximations are compared with the results obtained by numerical integration of the differential equations using a new PSPICE method.
Keywords :
SPICE; circuit simulation; integration; multivibrators; negative resistance; nonlinear differential equations; oscillators; passive networks; SPICE computational method; algebraic functions; circuit analysis programs; double mode LCR networks; emitter coupled astable multivibrator; negative resistance oscillator model; nonlinear differential equations; numerical integration; simulation program with integrated circuit emphasis; single mode LCR networks; Capacitors; Circuit simulation; Differential equations; Integrated circuit modeling; Oscillators; Polynomials; SPICE; Telecommunication computing; Tires; Voltage;
Conference_Titel :
Semiconductor Conference, 2004. CAS 2004 Proceedings. 2004 International
Print_ISBN :
0-7803-8499-7
DOI :
10.1109/SMICND.2004.1403054