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Birsa Institute of Technology (BIT), Sindri
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Output resistance in small-signal operation of current mirrors Solution

STEP 0: Pre-Calculation Summary
Formula Used
resistance_output = 1*Finite output resistance
Ro = 1*Ro
This formula uses 1 Variables
Variables Used
Finite output resistance - The finite output resistance is the measure of the opposition to current flow, both static and dynamic, into the load network being connected that is internal to the electrical source. (Measured in Ohm)
STEP 1: Convert Input(s) to Base Unit
Finite output resistance: 100 Ohm --> 100 Ohm No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ro = 1*Ro --> 1*100
Evaluating ... ...
Ro = 100
STEP 3: Convert Result to Output's Unit
100 Ohm --> No Conversion Required
100 Ohm <-- Output resistance
(Calculation completed in 00.000 seconds)

< 10+ Building Blocks of Integrated-Circuit Amplifiers Calculators

Output current of the IC Amplifier when incremental voltage is given
output_current = (Aspect ratio 2/Aspect Ratio)*Reference current*(1+(Threshold voltage-Voltage between gate and source)/Incremental Voltage) Go
Current transfer ratio of IC Amplifier in terms of β
output_current = Reference current*(Current transfer ratio/(1+(Current transfer ratio+1)/Common emitter current gain)) Go
Output current of IC Amplifier when Io = Ic
output_current = (Reference current*Collector current)/(Collector current*(1+(2/Common emitter current gain))) Go
Current transfer ratio of IC Amplifier
output_current = Reference current*(Electric Current in Conductor 2/Electric Current in Conductor 1) Go
Output current of the IC amplifier
output_current = Reference current*(Aspect ratio 2/Aspect Ratio) Go
Finite output resistance of IC Amplifier
finite_output_resistance = Change in threshold voltage/Change in current Go
Output current of IC amplifier in terms of β
output_current = Reference current/(1+2/Common emitter current gain) Go
Finite output resistance of the IC Amplifier in terms of output resistance
finite_output_resistance = Incremental Voltage/output current Go
Output current in terms of the reference current
output_current = Current transfer ratio*Reference current Go
Finite output resistance of the IC Amplifier in terms of the output resistance
finite_output_resistance = 1*Incremental output resistance Go

Output resistance in small-signal operation of current mirrors Formula

resistance_output = 1*Finite output resistance
Ro = 1*Ro

What is meant by IC? How many types of IC are there?

Integrated circuit (IC), also called microelectronic circuit, microchip, or chip, an assembly of electronic components, fabricated as a single unit, in which miniaturized active devices (e.g., transistors and diodes) and passive devices (e.g., capacitors and resistors). There are two main types of integrated circuits: digital ICs or analog ICs.

How to Calculate Output resistance in small-signal operation of current mirrors?

Output resistance in small-signal operation of current mirrors calculator uses resistance_output = 1*Finite output resistance to calculate the Output resistance, The Output resistance in small-signal operation of current mirrors formula is equal to the finite output resistance of the current mirrors. Output resistance and is denoted by Ro symbol.

How to calculate Output resistance in small-signal operation of current mirrors using this online calculator? To use this online calculator for Output resistance in small-signal operation of current mirrors, enter Finite output resistance (Ro ) and hit the calculate button. Here is how the Output resistance in small-signal operation of current mirrors calculation can be explained with given input values -> 100 = 1*100.

FAQ

What is Output resistance in small-signal operation of current mirrors?
The Output resistance in small-signal operation of current mirrors formula is equal to the finite output resistance of the current mirrors and is represented as Ro = 1*Ro or resistance_output = 1*Finite output resistance. The finite output resistance is the measure of the opposition to current flow, both static and dynamic, into the load network being connected that is internal to the electrical source.
How to calculate Output resistance in small-signal operation of current mirrors?
The Output resistance in small-signal operation of current mirrors formula is equal to the finite output resistance of the current mirrors is calculated using resistance_output = 1*Finite output resistance. To calculate Output resistance in small-signal operation of current mirrors, you need Finite output resistance (Ro ). With our tool, you need to enter the respective value for Finite output resistance and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Output resistance?
In this formula, Output resistance uses Finite output resistance. We can use 10 other way(s) to calculate the same, which is/are as follows -
• output_current = Reference current*(Aspect ratio 2/Aspect Ratio)
• finite_output_resistance = Change in threshold voltage/Change in current
• finite_output_resistance = 1*Incremental output resistance
• finite_output_resistance = Incremental Voltage/output current
• output_current = (Aspect ratio 2/Aspect Ratio)*Reference current*(1+(Threshold voltage-Voltage between gate and source)/Incremental Voltage)
• output_current = Reference current*(Electric Current in Conductor 2/Electric Current in Conductor 1)
• output_current = Current transfer ratio*Reference current
• output_current = (Reference current*Collector current)/(Collector current*(1+(2/Common emitter current gain)))
• output_current = Reference current/(1+2/Common emitter current gain)
• output_current = Reference current*(Current transfer ratio/(1+(Current transfer ratio+1)/Common emitter current gain))
Where is the Output resistance in small-signal operation of current mirrors calculator used?
Among many, Output resistance in small-signal operation of current mirrors calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
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