Emitter Voltage to Turn On UJT based Thyristor Firing Circuit Formula

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Emitter Voltage is defined as the voltage across the emitter terminal of any transistor device. Check FAQs
VE=VRB1+Vd
VE - Emitter Voltage?VRB1 - Emitter Resistance Base 1 Voltage?Vd - Diode Voltage?

Emitter Voltage to Turn On UJT based Thyristor Firing Circuit Example

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Here is how the Emitter Voltage to Turn On UJT based Thyristor Firing Circuit equation looks like with Values.

Here is how the Emitter Voltage to Turn On UJT based Thyristor Firing Circuit equation looks like with Units.

Here is how the Emitter Voltage to Turn On UJT based Thyristor Firing Circuit equation looks like.

60Edit=40Edit+20Edit
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Emitter Voltage to Turn On UJT based Thyristor Firing Circuit Solution

Follow our step by step solution on how to calculate Emitter Voltage to Turn On UJT based Thyristor Firing Circuit?

FIRST Step Consider the formula
VE=VRB1+Vd
Next Step Substitute values of Variables
VE=40V+20V
Next Step Prepare to Evaluate
VE=40+20
LAST Step Evaluate
VE=60V

Emitter Voltage to Turn On UJT based Thyristor Firing Circuit Formula Elements

Variables
Emitter Voltage
Emitter Voltage is defined as the voltage across the emitter terminal of any transistor device.
Symbol: VE
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Emitter Resistance Base 1 Voltage
Emitter resistance base 1 voltage is the voltage across the resistance connected to the base 1 terminal of an UJT.
Symbol: VRB1
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Diode Voltage
Diode voltage is defined as the voltage developed across diode when it is in on state in a thyristor based circuit.
Symbol: Vd
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.

Other formulas in SCR Firing Circuit category

​Go Derating Factor of Series Connected Thyristor String
DRF=1-VstringVssn
​Go Leakage Current of Collector-Base Junction
ICBO=IC-αIC
​Go Power Dissipated by Heat in SCR
Pdis=Tjunc-Tambθ
​Go Thermal Resistance of SCR
θ=Tjunc-TambPdis

How to Evaluate Emitter Voltage to Turn On UJT based Thyristor Firing Circuit?

Emitter Voltage to Turn On UJT based Thyristor Firing Circuit evaluator uses Emitter Voltage = Emitter Resistance Base 1 Voltage+Diode Voltage to evaluate the Emitter Voltage, The Emitter voltage to turn on UJT based Thyristor firing circuit formula is defined as the magnitude of the emitter voltage required in order to turn the UJT on for firing the thyristor circuit. Emitter Voltage is denoted by VE symbol.

How to evaluate Emitter Voltage to Turn On UJT based Thyristor Firing Circuit using this online evaluator? To use this online evaluator for Emitter Voltage to Turn On UJT based Thyristor Firing Circuit, enter Emitter Resistance Base 1 Voltage (VRB1) & Diode Voltage (Vd) and hit the calculate button.

FAQs on Emitter Voltage to Turn On UJT based Thyristor Firing Circuit

What is the formula to find Emitter Voltage to Turn On UJT based Thyristor Firing Circuit?
The formula of Emitter Voltage to Turn On UJT based Thyristor Firing Circuit is expressed as Emitter Voltage = Emitter Resistance Base 1 Voltage+Diode Voltage. Here is an example- 60 = 40+20.
How to calculate Emitter Voltage to Turn On UJT based Thyristor Firing Circuit?
With Emitter Resistance Base 1 Voltage (VRB1) & Diode Voltage (Vd) we can find Emitter Voltage to Turn On UJT based Thyristor Firing Circuit using the formula - Emitter Voltage = Emitter Resistance Base 1 Voltage+Diode Voltage.
Can the Emitter Voltage to Turn On UJT based Thyristor Firing Circuit be negative?
No, the Emitter Voltage to Turn On UJT based Thyristor Firing Circuit, measured in Electric Potential cannot be negative.
Which unit is used to measure Emitter Voltage to Turn On UJT based Thyristor Firing Circuit?
Emitter Voltage to Turn On UJT based Thyristor Firing Circuit is usually measured using the Volt[V] for Electric Potential. Millivolt[V], Microvolt[V], Nanovolt[V] are the few other units in which Emitter Voltage to Turn On UJT based Thyristor Firing Circuit can be measured.
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