Total Acceptor Charge Formula

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Total Acceptor Charge refers to the overall net charge associated with the acceptor atoms in a semiconductor material or device. Check FAQs
|Q|=[Charge-e]xnoAjNa
|Q| - Total Acceptor Charge?xno - Charge Penetration N-type?Aj - Junction Area?Na - Acceptor Concentration?[Charge-e] - Charge of electron?

Total Acceptor Charge Example

With values
With units
Only example

Here is how the Total Acceptor Charge equation looks like with Values.

Here is how the Total Acceptor Charge equation looks like with Units.

Here is how the Total Acceptor Charge equation looks like.

12.9894Edit=1.6E-190.019Edit5401.3Edit7.9E+35Edit
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Total Acceptor Charge Solution

Follow our step by step solution on how to calculate Total Acceptor Charge?

FIRST Step Consider the formula
|Q|=[Charge-e]xnoAjNa
Next Step Substitute values of Variables
|Q|=[Charge-e]0.019μm5401.3µm²7.9E+351/m³
Next Step Substitute values of Constants
|Q|=1.6E-19C0.019μm5401.3µm²7.9E+351/m³
Next Step Convert Units
|Q|=1.6E-19C1.9E-8m5.4E-97.9E+351/m³
Next Step Prepare to Evaluate
|Q|=1.6E-191.9E-85.4E-97.9E+35
Next Step Evaluate
|Q|=12.9894087029866C
LAST Step Rounding Answer
|Q|=12.9894C

Total Acceptor Charge Formula Elements

Variables
Constants
Total Acceptor Charge
Total Acceptor Charge refers to the overall net charge associated with the acceptor atoms in a semiconductor material or device.
Symbol: |Q|
Measurement: Electric ChargeUnit: C
Note: Value should be greater than 0.
Charge Penetration N-type
Charge Penetration N-type refers to the phenomenon where additional electrons from dopant atoms, typically phosphorus or arsenic, penetrate the crystal lattice of the semiconductor material.
Symbol: xno
Measurement: LengthUnit: μm
Note: Value should be greater than 0.
Junction Area
The Junction Area is the boundary or interface area between two types of semiconductor materials in a pn diode.
Symbol: Aj
Measurement: AreaUnit: µm²
Note: Value should be greater than 0.
Acceptor Concentration
Acceptor concentration is the concentration an acceptor or dopant atom that when substituted into a semiconductor lattice forms a p-type region.
Symbol: Na
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.
Charge of electron
Charge of electron is a fundamental physical constant, representing the electric charge carried by an electron, which is the elementary particle with a negative electric charge.
Symbol: [Charge-e]
Value: 1.60217662E-19 C

Other formulas in SSD Junction category

​Go N-Type Width
xno=|Q|AjNa[Charge-e]
​Go Junction Capacitance
Cj=(Aj2)2[Charge-e]kNBV-V1
​Go Junction Voltage
Vj=V-(Rse(p)+Rse(n))I
​Go Series Resistance in P-type
Rse(p)=(V-VjI)-Rse(n)

How to Evaluate Total Acceptor Charge?

Total Acceptor Charge evaluator uses Total Acceptor Charge = [Charge-e]*Charge Penetration N-type*Junction Area*Acceptor Concentration to evaluate the Total Acceptor Charge, The Total Acceptor Charge formula is defined as an image charge in the tip that leads to an additional charge-induced attractive force, which is detectable as a change in the phase of the tip oscillation. Total Acceptor Charge is denoted by |Q| symbol.

How to evaluate Total Acceptor Charge using this online evaluator? To use this online evaluator for Total Acceptor Charge, enter Charge Penetration N-type (xno), Junction Area (Aj) & Acceptor Concentration (Na) and hit the calculate button.

FAQs on Total Acceptor Charge

What is the formula to find Total Acceptor Charge?
The formula of Total Acceptor Charge is expressed as Total Acceptor Charge = [Charge-e]*Charge Penetration N-type*Junction Area*Acceptor Concentration. Here is an example- 12.98941 = [Charge-e]*1.9E-08*5.4013E-09*7.9E+35.
How to calculate Total Acceptor Charge?
With Charge Penetration N-type (xno), Junction Area (Aj) & Acceptor Concentration (Na) we can find Total Acceptor Charge using the formula - Total Acceptor Charge = [Charge-e]*Charge Penetration N-type*Junction Area*Acceptor Concentration. This formula also uses Charge of electron constant(s).
Can the Total Acceptor Charge be negative?
No, the Total Acceptor Charge, measured in Electric Charge cannot be negative.
Which unit is used to measure Total Acceptor Charge?
Total Acceptor Charge is usually measured using the Coulomb[C] for Electric Charge. Kilocoulomb[C], Millicoulomb[C], Picocoulomb[C] are the few other units in which Total Acceptor Charge can be measured.
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