Examples of 'switching transistor' in a sentence
Meaning of "switching transistor"
switching transistor - refers to the process of changing the state of a transistor in electronics
How to use "switching transistor" in a sentence
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switching transistor
Failure of the switching transistor is common.
Thus it guarantees the complete safety of the switching transistor.
A double gate switching transistor structure is thus obtained.
Emitter finger structure in a switching transistor.
If the switching transistor is correctly saturated.
The controlled interruptor may be a switching transistor or a relay.
Switching transistor handbook.
The cell is bypassed through fast switching transistor.
The resistor and switching transistor together form a drop generator.
Said switch means advantageously comprise at least one switching transistor.
The control electrode of the second switching transistor is coupled to a horizontal oscillator.
The switching means may be in the form of at least one switching transistor.
MOS switching transistor.
Monitoring of the desaturation of the switching transistor during the conduction.
This results in an effective damping of the deactivation voltage over the switching transistor.
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According to one embodiment, the switching transistor is a field-effect transistor.
The peak is relatively small and represents no risk to the switching transistor.
In one previously used arrangement, a switching transistor is connected in series with each resistor.
The output voltage is adjustable based on the duty cycle of the switching transistor.
Finally, the short-circuit switching transistor has some residual conductivity during its disabling.
But none has a stage of sufficient power to directly control the switching transistor.
The switching transistor TR1 controls the voltage to the output in this circuit.
A further aim of the invention is to integrate the protection means with the switching transistor.
According to one embodiment, the switching transistor is a native MOS transistor with a low threshold voltage.
A particular emitter finger structure in an NPN type switching transistor.
The collector of the second switching transistor Q 3 forms a second switching input EC 2.
Further, a diode for protection is connected in parallel to each switching transistor.
The MOSFET used as a switching transistor is off at a control voltage U2 of below approximately 2 volts.
Double-diffused silicon switching transistor.
The second switching transistor T2 is controlled at its gate by the inverted detection signal / D.
This level Vgoff is such that the switching transistor is turned off.
The switching circuit comprises two transistors 1 arranged in a Darlington configuration, forming the switching transistor.
The other side of the switching transistor 14 is connected to electrical ground.
In this arrangement, the control circuit is used to drive the switching transistor.
The switching transistor includes an intrinsic ( internal ) diode across its drain / source terminals.
This can be achieved, for example, by adjusting the duty cycle of the switching transistor.
Output OUT2 is a switching transistor structure as an “ open collector ”.
When a pulse is applied to a selection line Li, the switching transistor T is turned on.
The switching transistor ( Tsw ) is then conductive and in fact forms a short-circuit.
The sensing circuit 1 also includes a discharge circuit comprising a switching transistor T1.
The switching transistor ( Tsw ) is then non-conductive and in fact forms an open circuit.
A comparison output of the voltage comparator A1 is connected to a base of the switching transistor Q1.
The switching transistor TCM 20 therefore comes on, consequently turning the transistor T 4 off.
The cathode of diode D1 is coupled to a drain electrode of switching transistor Q1.
The switching transistor 25 becomes blocked, putting the storage battery 16 out of circuit.
The output of the third comparator A3 is connected to the base of the switching transistor T1.
The conduction path of a sampling switching transistor N11 is connected between terminal 11 and a node 12.
The microprocessor U1 controls the frequency of the oscillator by switching transistor Q8 on and off.
Power switching transistor Q1 144 provides for an approximately 99 % power factor and also a multiple voltage capability.
The switching element may be, for instance, a switching transistor.
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