An improved HBT small-signal parameter extraction procedure is presented in which all the equivalent circuit elements are extracted analytically without reference to numerical optimization. Approximations required for simplified formulae used in the extraction routine are revised, and it is shown that the present method has a wide range of applicability, which makes it appropriate for GaAs- and InP-based single and double HBT’s. Additionally, a new method is developed to extract the total delay time of HBT’s at low frequencies, without the need to measure 21 at very high frequencies and/or extrapolate it with 20 dB/dec roll-off. The existing methods of finding the forward transit time are also modified to improve the accuracy of ...
A new practical technique for estimating the junction temperature and the thermal resistance of an H...
We present a systematic method for calculating the frequency-dependent collector signal delay time t...
A new method to extract extrinsic base resistance and collector resistance is presented using cutoff...
An improved HBT small-signal parameter extraction procedure is presented in which all the equivalen...
A new method is presented to evaluate the base and collector transit times, tB and 'te, in Heteroj...
A new method is presented to evaluate the base and collector transit times, τB and τC in heterojunct...
A novel and accurate method for the direct extraction of HBT small-signal hybrid-Pi model parameters...
Direct extraction is the most accurate method for the determination of equivalent-circuits of hetero...
A method to extract the elements of the small-signal equivalent circuit and the noise parameters (NP...
This work for the first time shows that physically meaningful, wideband, multi-bias small-signal mod...
Abstract- New analytical expressions for the dynamic resistance, transconductance, base-collector in...
Correct measurement of low frequency noise in a transistor requires prior knowledge of its s-paramet...
The suitability of the compact model HICUM for modeling III-V HBTs is evaluated. For this purpose, a...
Abstract — Transcapacitances and bias dependent total time delay and base resistance expressions fo...
This work shows that physically meaningful wideband, multi-bias small-signal modeling of HBTs can be...
A new practical technique for estimating the junction temperature and the thermal resistance of an H...
We present a systematic method for calculating the frequency-dependent collector signal delay time t...
A new method to extract extrinsic base resistance and collector resistance is presented using cutoff...
An improved HBT small-signal parameter extraction procedure is presented in which all the equivalen...
A new method is presented to evaluate the base and collector transit times, tB and 'te, in Heteroj...
A new method is presented to evaluate the base and collector transit times, τB and τC in heterojunct...
A novel and accurate method for the direct extraction of HBT small-signal hybrid-Pi model parameters...
Direct extraction is the most accurate method for the determination of equivalent-circuits of hetero...
A method to extract the elements of the small-signal equivalent circuit and the noise parameters (NP...
This work for the first time shows that physically meaningful, wideband, multi-bias small-signal mod...
Abstract- New analytical expressions for the dynamic resistance, transconductance, base-collector in...
Correct measurement of low frequency noise in a transistor requires prior knowledge of its s-paramet...
The suitability of the compact model HICUM for modeling III-V HBTs is evaluated. For this purpose, a...
Abstract — Transcapacitances and bias dependent total time delay and base resistance expressions fo...
This work shows that physically meaningful wideband, multi-bias small-signal modeling of HBTs can be...
A new practical technique for estimating the junction temperature and the thermal resistance of an H...
We present a systematic method for calculating the frequency-dependent collector signal delay time t...
A new method to extract extrinsic base resistance and collector resistance is presented using cutoff...