Hybrid Parameters are the values which is used to find FREQUENCY RESPONSE of a low frequency transistors.
you may have doubt like why we are using only H-PARAMETERS why not HYBRID-PI models because...,
h-parameters values are constant at low frequency
moreover, at low frequency transition model we have assumed that the response of transistor to changes of input current or input voltage is instantaneous this is the reason why we had neglected shunt capacitances . as there were no shunt capacitances there is no chance of using hybrid-pi model.
i hope you got answer for your question
H. E. Bethel has written: 'On the convergence and exactness of solutions of the laminar boundry-layer equations using the N- parameter integral formulation of Galerkin - Kantorovich - Dorodnitsyn'
F. H. Mitchell has written: 'Essentials of electronics' -- subject(s): Electronics
small signal operations
The output conductance is assumed to tend to infinity and the collector current is assumed to be equal to beta multiplied by the base current.
E. H. Schulz has written: 'Experiments in electronics and communication engineering' -- subject(s): Electronics
up to radio frequencies i.e 20-20kh
That's physically impossible!
Johann H. Hinken has written: 'Superconductor electronics' -- subject(s): Electronics, Microwave devices, Superconductors
Keith H. Sueker has written: 'Power electronics design' -- subject(s): Design and construction, Power electronics
Type your answer here... TO DECREASE THE COMPLEXITY . ANSWER: h parameters are used to analyze small signal behavior o a transistor.
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it's easy! n.lambda=2d.sin theta d=n.lambda/(2 sin theta) for orthorombic structure, d=1/rms{h^2/a^2+k^2/b^2+l^2/c^2} n.lambda/(2 sin theta)=1/rms{h^2/a^2+k^2/b^2+l^2/c^2} By knowing lambda, theta for the corresponding h, k, l, and h, k, l y you can find a, b and c. but wait, you have to solve d100, d010 and d001 to find a, b and c respectively. My question, how diffractometer system determines the h, k, l or a, b and c for each d and theta respectively?