Question

In: Electrical Engineering

Design a common emitter transistor so that it will operate in the linear region with a...

Design a common emitter transistor so that it will operate in the linear region with a max swing on the output. Use a voltage divider configuration with a collector current of Ic = 2mA and a supply voltage of 12 V.Choose Ve =10% of Vcc.

Draw the circuit diagram and calculate all the resistor values

Solutions

Expert Solution

All capacitors in the design are large values


Related Solutions

Design a common-emitter amplifier that has a dc input value of 15v and that meets the...
Design a common-emitter amplifier that has a dc input value of 15v and that meets the following requirements 1. a gain of at least 80 2. low frequency -3dB less than 100Hz
why is the N region of a PNP transistor smaller than the P region? why wouldn't...
why is the N region of a PNP transistor smaller than the P region? why wouldn't it work if the N region were bigger?
design a heat sensing circuit,consisting of transistor and a comparator
design a heat sensing circuit,consisting of transistor and a comparator
One transistor amplifier BJT 1.Design a single transistor amplifier BJT with appropriate coupling and bypassing capacitors....
One transistor amplifier BJT 1.Design a single transistor amplifier BJT with appropriate coupling and bypassing capacitors. 2.Draw the DC equivalent circuit and find the Q point. Draw the AC equivalent circuit and find parameters of your full amplifier circuit (gain and input resistance) . 3.Simulate the FULL amplifier circuit in DC state, indicate the Q point on the diagram and compare with theoretical results. 4.Simulate the FULL amplifier circuit using appropriate sin input signal(s). Using the simulation results from the...
Topic 6. One transistor amplifier (BJT) 1. Design a single transistor amplifier (BJT) with appropriate coupling...
Topic 6. One transistor amplifier (BJT) 1. Design a single transistor amplifier (BJT) with appropriate coupling and bypassing capacitors. You can use the examples from the book or homework, but need to change the parameters values . 2. Draw the DC equivalent circuit and find the Q point. Draw the AC equivalent circuit and find parameters of your full amplifier circuit (gain and input resistance) . 3. Simulate the FULL amplifier circuit in DC state (you cannot use DC operating...
Explain the concept of operating point and how it is achieved with a common emitter amp,...
Explain the concept of operating point and how it is achieved with a common emitter amp, common source amp, and the op amp-based amplifiers (differentiator, integrator, inverting, and non-inverting amplifiers). *I understand that the operating point of a transistor can be obtained by using the load line method( IV characteristics) but i don't know how to find the operating point specifically for the common emitter amp , common source amp, and the op amp-based amplifiers
1) A. In a 1 bit half adder which design is the sizing of the transistor...
1) A. In a 1 bit half adder which design is the sizing of the transistor most area efficient, CMOS logic, transmission gate, or dynamic logic. Explain. B. If the W/L of the transistors at gate level are the same, which one will be the fastest driving the same amount of load. Explain. C. Which is the most power efficient?
Consider a BJT transistor acting as a switch. How to determine the design resistances if we...
Consider a BJT transistor acting as a switch. How to determine the design resistances if we want to transition between cut off and saturation region to active region?
Q) a) Explain the effect of bypass capacitor on the common-emitter amplifier? b) Explain the effect...
Q) a) Explain the effect of bypass capacitor on the common-emitter amplifier? b) Explain the effect of swamping on the common-emitter amplifier?
Draw the circuit required to obtain the characteristic current voltage curve of the common emitter NPN...
Draw the circuit required to obtain the characteristic current voltage curve of the common emitter NPN silicon transistor. Show how this circuit works. Draw the voltage sources in the circuit, potential disconnectors, current lines, voltage drops measurement devices, circuit elements.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT