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Bit rate of raised cosine filter is the number of bits that are conveyed or processed per unit of time. Check FAQs
Rs=1T
Rs - Bit Rate of Raised Cosine Filter?T - Signal Time Period?

Bit Rate of Raised Cosine Filter given Time Period Example

With values
With units
Only example

Here is how the Bit Rate of Raised Cosine Filter given Time Period equation looks like with Values.

Here is how the Bit Rate of Raised Cosine Filter given Time Period equation looks like with Units.

Here is how the Bit Rate of Raised Cosine Filter given Time Period equation looks like.

142.8571Edit=17Edit
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Bit Rate of Raised Cosine Filter given Time Period Solution

Follow our step by step solution on how to calculate Bit Rate of Raised Cosine Filter given Time Period?

FIRST Step Consider the formula
Rs=1T
Next Step Substitute values of Variables
Rs=17μs
Next Step Convert Units
Rs=17E-6s
Next Step Prepare to Evaluate
Rs=17E-6
Next Step Evaluate
Rs=142857.142857143b/s
Next Step Convert to Output's Unit
Rs=142.857142857143kb/s
LAST Step Rounding Answer
Rs=142.8571kb/s

Bit Rate of Raised Cosine Filter given Time Period Formula Elements

Variables
Bit Rate of Raised Cosine Filter
Bit rate of raised cosine filter is the number of bits that are conveyed or processed per unit of time.
Symbol: Rs
Measurement: BandwidthUnit: kb/s
Note: Value should be greater than 0.
Signal Time Period
Signal Time Period refers to the time it takes for a periodic signal to complete one full cycle. It is the duration between successive occurrences of the same point or phase in the signal waveform.
Symbol: T
Measurement: TimeUnit: μs
Note: Value should be greater than 0.

Other Formulas to find Bit Rate of Raised Cosine Filter

​Go Bit Rate of Raised Cosine Filter using Rolloff Factor
Rs=2fb1+α

Other formulas in Modulation Parameters category

​Go Bit Rate
R=fsBitDepth
​Go Bit Rate using Bit Duration
R=1Tb
​Go Attenuation given Power of 2 Signals
dB=10(log10(P2P1))
​Go Attenuation given Voltage of 2 Signals
dB=20(log10(V2V1))

How to Evaluate Bit Rate of Raised Cosine Filter given Time Period?

Bit Rate of Raised Cosine Filter given Time Period evaluator uses Bit Rate of Raised Cosine Filter = 1/Signal Time Period to evaluate the Bit Rate of Raised Cosine Filter, Bit Rate of Raised Cosine Filter given Time Period is the number of bits that are conveyed or processed per unit of time. In other words, it describes the rate at which bits are transferred from one location to another. Bit Rate of Raised Cosine Filter is denoted by Rs symbol.

How to evaluate Bit Rate of Raised Cosine Filter given Time Period using this online evaluator? To use this online evaluator for Bit Rate of Raised Cosine Filter given Time Period, enter Signal Time Period (T) and hit the calculate button.

FAQs on Bit Rate of Raised Cosine Filter given Time Period

What is the formula to find Bit Rate of Raised Cosine Filter given Time Period?
The formula of Bit Rate of Raised Cosine Filter given Time Period is expressed as Bit Rate of Raised Cosine Filter = 1/Signal Time Period. Here is an example- 0.142857 = 1/7E-06.
How to calculate Bit Rate of Raised Cosine Filter given Time Period?
With Signal Time Period (T) we can find Bit Rate of Raised Cosine Filter given Time Period using the formula - Bit Rate of Raised Cosine Filter = 1/Signal Time Period.
What are the other ways to Calculate Bit Rate of Raised Cosine Filter?
Here are the different ways to Calculate Bit Rate of Raised Cosine Filter-
  • Bit Rate of Raised Cosine Filter=(2*Bandwidth of Raised Cosine Filter)/(1+Rolloff Factor)OpenImg
Can the Bit Rate of Raised Cosine Filter given Time Period be negative?
No, the Bit Rate of Raised Cosine Filter given Time Period, measured in Bandwidth cannot be negative.
Which unit is used to measure Bit Rate of Raised Cosine Filter given Time Period?
Bit Rate of Raised Cosine Filter given Time Period is usually measured using the Kilobit per Second[kb/s] for Bandwidth. Bit Per Second[kb/s], Gigabit per Second[kb/s], Byte per Second[kb/s] are the few other units in which Bit Rate of Raised Cosine Filter given Time Period can be measured.
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