Examples of 'frequency of the oscillator' in a sentence

Meaning of "frequency of the oscillator"

Frequency of the oscillator refers to the rate at which an oscillator, such as an electronic circuit or mechanical device, completes a full cycle of oscillation per unit of time. It is a measure of how often a repeating event, such as an alternating current or vibration, occurs within a given time frame and is typically measured in Hertz (Hz)

How to use "frequency of the oscillator" in a sentence

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frequency of the oscillator
See the frequency of the oscillator.
They are reacting to the ultrasound frequency of the oscillator.
The frequency of the oscillator is inversely proportional to the moisture content.
Introducing a sample changes the resonance frequency of the oscillator.
The resonant frequency of the oscillator is.
Frequency of the oscillator.
The cylinder is thus excited at the frequency of the oscillator.
The frequency of the oscillator is set by linking pins or adding external resistors.
This results in an increase in the frequency of the oscillator signal.
Where ν is the frequency of the oscillator and h is a universal constant with the.
This decreases capacitance which increases the frequency of the oscillator.
This means that the output frequency of the oscillator should vary as little as possible.
The choice of the type of changeover depends on the frequency of the oscillator.
The frequency of the oscillator becomes,.
The dynamo may include an adjuster configured to adjust a natural frequency of the oscillator.

See also

The frequency of the oscillator circuit 1 is regulated by a classic regulation circuit 4.
The filter has a relatively low cutoff frequency relative to the frequency of the oscillator.
Typically, the free-running frequency of the oscillator is determined by a capacitance.
Preferably, the initial vibration frequency is a resonance frequency of the oscillator.
The frequency of the oscillator 13 may be optimised for the double conversion receiving principle.
This voltage i is used to modify the frequency of the oscillator VCO.
The frequency of the oscillator is determined by the inductance I and the following combinations,.
Resistance 89 is variable and makes it possible to vary the frequency of the oscillator.
The microprocessor U1 controls the frequency of the oscillator by switching transistor Q8 on and off.
A potentiometer 22 enables one to effect a first adjustment of the frequency of the oscillator.
Represents the nominal frequency of the oscillator in Hz ;.
Detecting a modification of the frequency relative to the initial vibration frequency of the oscillator 1.
Frequency - Sets the frequency of the oscillator.
The resonator-varactor assembly behaves like a resonant circuit setting the oscillation frequency of the oscillator.
The oscillation frequency of the oscillator 22 is denoted as f t.
Tank circuit 32 can be configured to resonate at the predetermined frequency of the oscillator signal.
The frequency of the oscillator 226 is controlled by the frequency control input.
It is the register R1 that controls the automatic adjusting of the frequency of the oscillator.
A pre-setting of the frequency of the oscillator VC0 is done.
The PLL generates an output frequency based on a fixed reference frequency of the oscillator 24.
The frequency of the oscillator signal in the Sense Circuit 206 may dynamically adapt.
A circuit 42 determines the frequency of the oscillator.
The frequency of the oscillator is fed on line 26 to a frequency sensing circuit 28.
Node 22 receives a voltage input from 8 to select the operating frequency of the oscillator in use.
Fixed prescaler 376 divides down the output frequency of the oscillator OSC1 to a first frequency.
A frequency that solves for a loop gain equal to " -1 " determines an output frequency of the oscillator.
As mentioned above, in this example the frequency of the oscillator 12 is 64 MHz.
In a voltage-controlled oscillator ( VCO ), resonator tuning affects the output frequency of the oscillator.
The step S1also has for its object to fix the initial frequency of the oscillator F 0 ( 0 ) = F C.
Shifting of the adjuster 22 inside the oscillator 12 changes the natural frequency of the oscillator 12.
Moreover, the PLL uses feedback acting on the oscillation frequency of the oscillator 12.
The delay line 8 is characterized by its time-delay t = K / F, F being the frequency of the oscillator 9.

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