Use Multisim and create the schematic diagram shown below and change V1 settings. DC_INTERACTIVE_VOLTAGE Label Display V

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Use Multisim and create the schematic diagram shown below and change V1 settings. DC_INTERACTIVE_VOLTAGE Label Display V

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Use Multisim And Create The Schematic Diagram Shown Below And Change V1 Settings Dc Interactive Voltage Label Display V 1
Use Multisim And Create The Schematic Diagram Shown Below And Change V1 Settings Dc Interactive Voltage Label Display V 1 (88.05 KiB) Viewed 30 times
Use Multisim And Create The Schematic Diagram Shown Below And Change V1 Settings Dc Interactive Voltage Label Display V 2
Use Multisim And Create The Schematic Diagram Shown Below And Change V1 Settings Dc Interactive Voltage Label Display V 2 (25.01 KiB) Viewed 30 times
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Use Multisim and create the schematic diagram shown below and change V1 settings. DC_INTERACTIVE_VOLTAGE Label Display Value Fault Pins Key: Maximum value: Minimum value: Increment: Question 1 Add your answer Variant Question 2 10 0 Measure the collector current Ic2 Record the measure in mA Add your answer 1 R1 Adjust the V1 until you get a Collector voltage at Q2 (VC2 = -5.8V) 27022 V1 4.4V Key=A Measure the current flowing at R2 or at base terminal of Q1 Record the results in UA R2 ww 10ΚΩ R3 10k Q1 2N2219 R4 4700 Q2 2N2219 R5 1002 V2 -15V 1 Point 1 Point
Question 3 Calculate the Beta using the measured values (B2 = Ic2/1R2) Add your answer Question 4 What feature of the circuit indicates or identifies it is a Darlington Pair? A There are 2 transistors present (B) The Q1 emitter is directly connected to the Q2 Base The Q1 has a Beta greater than the currents multiplied through the base of Transistor Q2 D) The Q1 voltages are unique in some ways 1 Point 1 Point
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