Need to design and construct a two-stage amplifier with a total voltage gain of A = A1 ∙ A2 = -Z where Z is 35. Let A1 be the gain of the first amplifier and A2 be the gain of the second amplifier. The output of Stage 1 becomes the input of Stage 2. Choose any suitable values |A|1 > 1 and |A2| >1 that you wish (Note that both gains must be strictly larger than 1. No buffers). Assume that the available batteries are 9V and -9V. Using the PSPICE cursor to check whether the overall gain that you get and each stage’s gain are exactly as planned. Observe the output for a VSIN input of amplitude 0.1V and frequency of 1KHz (in Transient). Use resistors that are in the KΩ range.
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Channel 1 input waveform
Channel 2 output waveform

Need to design and construct a two-stage amplifier with a total voltage gain of A =...
You are required to design a 2-stage voltage amplifier (find
values for RE, RC1, RC2) to meet the following criteria: an input
resistance of 400 kΩ and an overall voltage gain equal to or
greater than 250, with a resistor output load, RL. Use a
common-emitter with emitter degradation (RE) stage for the input,
followed by a commonemitter amplifier with bias current equal to
0.5 mA. (VCC = 20 V, βo = 200 and the DC levels of the first...
how to draw this circuit in pspice
PRE-LAB Resistors 150kQ, 180k2, 220k2, 270k2, 330k2, 39k02, 470k2, 560kQ Part A. Inverting Amplifier. Deliverables - PSpice schematie and graphs 1. Draw the circuit for a standard inverting amplifier (see text). You can leave the resistors variables for now: Ai 2. Choose the resistor values from components available for this lab in the list above to give a gain between 5 and 10. Use values of 5.6 kΩ or greater. Record the resistor...
please do as soon as possible an use PSPICE I just need
the pspice part
please use Pspice
use pspice to slove
Resistors 1.0kΩ, 1.2KΩ, 1.5ΚΩ, 1.8ΚΩ, 2.2kΩ, 2.7KΩ, 3.3kΩ, 3.9kΩ, 4.7kΩ, 5.6kΩ, 6.8ΚΩ, 8.2kΩ, 10kΩ, 12kΩ, 15kΩ, 18kΩ, 22kΩ, 27kg, 33kΩ, 30kΩ, 47ΚΩ, 56kΩ, 68kΩ, 82kΩ, 100kΩ. 120kΩ, 150kΩ, 180kΩ, 220kΩ, 270kΩ, 330kΩ, 39kΟΩ, 470kΩ, 560kΩ ** Put 60% 11:42 AM You Just now Part B. Non-Inverting Amplifier. Deliverables - PSpice schematic and graph 1. Draw the circuit for...
A.
B.
1.Choosing the appropriate one of the two circuits above, design
an amplifier that has a voltage amplification factor of +10 (i.e.,
the output signal should be 10 times larger than the input signal,
and also be in-phase with the input signal). You may use any values
for your resistors, but avoid values greater than 100 kΩ.
2. construct the circuit using multisim, and perform a transient
analysis
U1 .V43 0.707 Vrms: 60 Hz O° 0PAMP 3T BASIC 2.R1...
I
need help with 3.1 through 3.5 if possible .
3. For the two stage amplifier Vcc-15V, Rsig-10Kohm, RL 2Kohm, First stage amplifier, RG 90Kohm, SV R3 RD115Kohm, RSI-2Kohm, gm 1mS and ro -20Kohm for transistor M1, Second stage amplifier, R3-40Kohm, . CI C4 7Kohm Lower corner frequency fi 3KHz. RSI Determine the configuration of the first and second stage amplifier. Configuration of first stage is Configuration of second stage is For Q3, find r,, gm. Rm"Re:9oka 1. - 2....
please I need details
l and....Debate Club | Offic A) Theoretical Design Design a common emitter BJT amplifier with the following requirements: -Rin-10 K2, and Ro-45 ㏀ (Neglect the Early voltage Effect) Vo/Vsig- Gv-40 VIV or 32 dB " VCC-9 V V, IC-1mA, VCE-3.25V and β-100 RL-40 kQ, Rsige I ka, R 1-3R2, and C1-C2-1 μF Voc RC C2 R1 Rsig C1 RL R2 RE B) Verify your design using Orcad Capture Pspice by doing 1) AC sweep (frequency response):...
im currently doing an assignment where i must design a two stage
bipolar transistor, i just need the calculations and values for
each component and then i can run simulated experiments and
complete my work
here is the schematic
the transistor used is the BC846B
the supply voltage is 15 v
the collector currents 1 (ICq1) = 1.5mA
the collector current 2 (ICq2) = 7.5 mA
output voltage swing= max
frequency response = 50- 20 khz
i must calculate the...
Vout should be a sinusoid signal of 12Vp-p
Dc voltage to uA741 : +/-8.5V
Please simulate as well
please help, im completely lost on this
this is all of the information
Experiment 5. RC Sinusoidal Oscillators PURPOSE: This laboratory provides an introduction to the background, analysis and design of sinusoidal oscillators using RC feedback networks and active devices to achieve the criteria for continuous oscillations to occur. EQUIPMENT REQUIRED : 1 Operational amplifier u.A741 1 CEU development station Resistors and...