XOR Phase Detector Current Solution

STEP 0: Pre-Calculation Summary
Formula Used
XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage
ipd = Φerr*Kpd
This formula uses 3 Variables
Variables Used
XOR Phase Detector Current - (Measured in Ampere) - XOR Phase Detector Current is defined as an electric current(which is a stream of charged particles, such as electrons or ions)moving through an electrical conductor or space.
XOR Phase Detector Phase - (Measured in Radian) - XOR Phase Detector Phase where phase detector is a frequency mixer, an analog multiplier that generates a voltage signal which represents the difference in phase between two signal inputs.
XOR Phase Detector Average Voltage - (Measured in Volt) - XOR Phase Detector Average Voltage is the averaging of all the instantaneous values along the time axis with time being one full period, (T).
STEP 1: Convert Input(s) to Base Unit
XOR Phase Detector Phase: 9.3 Degree --> 0.162315620435442 Radian (Check conversion ​here)
XOR Phase Detector Average Voltage: 3.08 Volt --> 3.08 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ipd = Φerr*Kpd --> 0.162315620435442*3.08
Evaluating ... ...
ipd = 0.499932110941161
STEP 3: Convert Result to Output's Unit
0.499932110941161 Ampere -->499.932110941161 Milliampere (Check conversion ​here)
FINAL ANSWER
499.932110941161 499.9321 Milliampere <-- XOR Phase Detector Current
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
Shobhit Dimri has created this Calculator and 900+ more calculators!
Verifier Image
Verified by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
Urvi Rathod has verified this Calculator and 1900+ more calculators!

17 CMOS Time Characteristics Calculators

XOR Voltage NAND Gate
​ Go XOR Voltage Nand Gate = (Capacitance 2*Base Collector Voltage)/(Capacitance 1+Capacitance 2)
XOR Phase Detector Phase with reference to Detector Current
​ Go XOR Phase Detector Phase = XOR Phase Detector Current/XOR Phase Detector Average Voltage
Phase Detector Average Voltage
​ Go XOR Phase Detector Average Voltage = XOR Phase Detector Current/XOR Phase Detector Phase
XOR Phase Detector Voltage
​ Go XOR Phase Detector Voltage = XOR Phase Detector Phase*XOR Phase Detector Average Voltage
XOR Phase Detector Current
​ Go XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage
XOR Phase Detector Phase
​ Go XOR Phase Detector Phase = XOR Phase Detector Voltage/XOR Phase Detector Average Voltage
Aperture Time for Falling Input
​ Go Aperture Time for Falling Input = Setup Time at Low Logic+Hold Time at High Logic
Setup Time at Low Logic
​ Go Setup Time at Low Logic = Aperture Time for Falling Input-Hold Time at High Logic
Hold Time at High logic
​ Go Hold Time at High Logic = Aperture Time for Falling Input-Setup Time at Low Logic
Aperture Time for Rising Input
​ Go Aperture Time for Rising Input = Setup Time at High Logic+Hold Time at Low Logic
Setup Time at High Logic
​ Go Setup Time at High Logic = Aperture Time for Rising Input-Hold Time at Low Logic
Hold Time at Low logic
​ Go Hold Time at Low Logic = Aperture Time for Rising Input-Setup Time at High Logic
Small Signal Offset Voltage
​ Go Small Signal Offset Voltage = Initial Node Voltage-Metastable Voltage
Initial Voltage of Node A
​ Go Initial Node Voltage = Metastable Voltage+Small Signal Offset Voltage
Metastable Voltage
​ Go Metastable Voltage = Initial Node Voltage-Small Signal Offset Voltage
Probability of Synchronizer Failure
​ Go Probability of Synchronizer Failure = 1/Acceptable MTBF
Acceptable MTBF
​ Go Acceptable MTBF = 1/Probability of Synchronizer Failure

XOR Phase Detector Current Formula

XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage
ipd = Φerr*Kpd

What is XOR Gate?

XOR gate (sometimes EOR, or EXOR and pronounced as Exclusive OR) is a digital logic gate that gives a true (1 or HIGH) output when the number of true inputs is odd. An XOR gate implements an exclusive or; that is, true output results if one, and only one, of the inputs to the gate is true.

How to Calculate XOR Phase Detector Current?

XOR Phase Detector Current calculator uses XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage to calculate the XOR Phase Detector Current, The XOR Phase Detector Current formula is defined as an electric current, a stream of charged particles, such as electrons or ions, moving through an electrical conductor or space. It is measured as the net rate of flow of electric charge through a surface or into a control volume. XOR Phase Detector Current is denoted by ipd symbol.

How to calculate XOR Phase Detector Current using this online calculator? To use this online calculator for XOR Phase Detector Current, enter XOR Phase Detector Phase err) & XOR Phase Detector Average Voltage (Kpd) and hit the calculate button. Here is how the XOR Phase Detector Current calculation can be explained with given input values -> 499932.1 = 0.162315620435442*3.08.

FAQ

What is XOR Phase Detector Current?
The XOR Phase Detector Current formula is defined as an electric current, a stream of charged particles, such as electrons or ions, moving through an electrical conductor or space. It is measured as the net rate of flow of electric charge through a surface or into a control volume and is represented as ipd = Φerr*Kpd or XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage. XOR Phase Detector Phase where phase detector is a frequency mixer, an analog multiplier that generates a voltage signal which represents the difference in phase between two signal inputs & XOR Phase Detector Average Voltage is the averaging of all the instantaneous values along the time axis with time being one full period, (T).
How to calculate XOR Phase Detector Current?
The XOR Phase Detector Current formula is defined as an electric current, a stream of charged particles, such as electrons or ions, moving through an electrical conductor or space. It is measured as the net rate of flow of electric charge through a surface or into a control volume is calculated using XOR Phase Detector Current = XOR Phase Detector Phase*XOR Phase Detector Average Voltage. To calculate XOR Phase Detector Current, you need XOR Phase Detector Phase err) & XOR Phase Detector Average Voltage (Kpd). With our tool, you need to enter the respective value for XOR Phase Detector Phase & XOR Phase Detector Average Voltage and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!