This lecture explains the concept of conditional jump instructions (like JC, JNC, JZ, JNZ, JB and JNB) and the method to calculate the relative address for conditional jump instruction.
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Lecture 11: Interfacing of a switch
Lecture 10: Display on Serial Monitor
Lecture 45: Darlington Pair- Av
Lecture 44: Darlington Pair- Ai and Ri
Lecture 43: Hybrid Conductance
Lecture 42: Numerical
Lecture 41: CE short circuit current gain of a Hybrid π-Model
Lecture 40: Hybrid π-Model
Lecture 39: Effect of internal capacitor on Av and Hybrid π-Model
Lecture 38: Effect of bypass capacitor on Av
Lecture 37: Effect of coupling capacitor on Av
Lecture 36: Voltage Gain vs Frequency curve
Lecture 35: Dual of Millers Theorem
Lecture 34: Millers Theorem
Lecture 33: Millers Theorem
Lecture 32: Common Gate JFET and Millers Theorem
Lecture 31: Common Source-JFET Analysis and Common Drain JFET
Lecture 30: Common Source JFET
Lecture 29: JFET Model
Lecture 28: Numerical and JFET Revision
Lecture 27: Numerical on h-parameters
Lecture 26: Numerical on h-parameters
Lecture 25: Approximate Analysis
Lecture 24: Ais (Exact Analysis) and Approximate Analysis Model