Using LTSpice, simulate the circuit below, use 2N3904 for the transistor. Part! DC simulation: Measure VCE and Ic. Use op for the simulation cmd. Remove all capacitors and input signals first. Part 2 AC simulation: Connect all capacitors now and apply an AC signal at the input with an amplitufe of 1mV and a frequency of 1kHz. Determine the Voltage gain of the circuit by dividing Vo with Vin. Show the output for both the DC and AC analysis. Take a screenshot of the circuit and the output voltages and waveforms. Paste in a word file, write your answers, then save as pdf. 0.5 k 50 k 9 Vcc=20 V wh Ca Ca = 1 µF = Ca Cg=50 µF 5.6 km B-100 Ca IST 3.3 k2 ΤΩΣ
Power Amplifier
The power amplifier is an electronic amplifier designed to maximize the signal strength of a given input. The input signal strength is enhanced to a high enough level to drive output devices such as speakers, headphones, RF (Radio frequency) transmitters, etc. Unlike voltage / current amplifiers, the power amplifier is designed to drive core loads directly and is used as a storage block in the amplifier series.
Maximum Efficiency Criterion
In every field of engineering, there is a tremendous use of the machine and all those machines are equipped for their popular work efficiency so it very much important for operation engineers to monitor the efficiency of the machine, planning engineers to check out the efficiency of the machine before installing the machine and design engineers to design machine for higher efficiency than and then the utility will procure their products that will ultimately lead to profit and loss of the company. It indicates the importance of efficiency right from the initial stage as manufacturing units, intermediate stage as planning coordinators, and end-users stage as a utility.
![Using LTSpice, simulate the circuit below, use 2N3904 for the transistor.
Part ! DC simulation: Measure VCE and Ic. Use .op for the simulation cmd. Remove all capacitors and input signals first.
Part 2 AC simulation: Connect all capacitors now and apply an AC signal at the input with an amplitufe of 1mV and a frequency of 1kHz. Determine the Voltage gain of the circuit by dividing Vo with Vin.
Show the output for both the DC and AC analysis.
Take a screenshot of the circuit and the output voltages and waveforms. Paste in a word file, write your answers, then save as pdf.
50 kΩ Σ
20
0,5 ΚΩ
wwwh
9 Vcc=20 V
Ca=1 µF = Cc₂
Cg=50 μF
5.6 kn B=100
Ca
IST
• 3.3 ΚΩ
5 ΚΩΣ
CE](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F85cacfc0-602e-447b-a7b4-351183e863e9%2F8a522c40-edd8-4411-8365-82e9729b54f2%2Fn0k7qef_processed.jpeg&w=3840&q=75)
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