Examples of 'voltage vdd' in a sentence

Meaning of "voltage vdd"

voltage vdd ~ In electronics, VDD is the supply voltage that powers an integrated circuit or component. It is an essential parameter that determines the performance and functionality of the device

How to use "voltage vdd" in a sentence

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voltage vdd
The power unit supplies a supply voltage Vdd.
The voltage Vdd can be higher than the threshold voltage of the transistor.
Here this determination is based on the rail voltage Vdd.
The positive supply voltage Vdd of the pixel can advantageously be used for this purpose.
The drain areas of the transistors are connected to voltage Vdd.
A voltage Vdd of 4 volts is therefore also provided to provide power to the slave device 3.
This indirectly amounts to regulating power supply voltage Vdd.
In practice, operations at low supply voltage Vdd often also require a low supply current.
It is then formed of a MOS transistor controlled by an integrated circuit regulating voltage Vdd.
The circuit is polarized between a voltage Vdd and the ground.
The voltage Vdd is derived from a rectification, filtering and regulation circuit RD.
This restarting causes a progressive increase of local supply voltage Vdd.
Conventionally, voltage Vdd is higher than voltage Vss.
The other end of the tank circuit is linked to a supply voltage Vdd.
Thus, the logic supply voltage Vdd is switched over to the node N.

See also

It has its gate controlled by the core power supply voltage Vdd.
Switch 9 thus allows voltage Vdd to be selectively applied to connection D when it is closed.
The purpose of this phase is to charge the control lines to a positive voltage Vdd.
These two inverters are placed between a supply voltage Vdd and the differential stage.
The importance of asymmetry between both gates depends on the power supply voltage Vdd.
In the presently preferred embodiment, the supply voltage Vdd is applied to this input E.
The drain voltage NCAP of this transistor then increases to the supply voltage Vdd.
Supply voltage Vdd may be on the order of 1 V.
The output line Sk is thus precharged to the voltage Vdd.
The supply voltage Vdd is then supplied to the integrated circuit IC through the resistor R 5.
The voltage VPC is less than the voltage Vdd.
The voltage Vdd is conventionally equal to about 5 volts or 3 volts.
The first precharging circuit is connected between the logic supply voltage Vdd and the output S D.
Low positive voltage Vdd is provided between a terminal 25 at a positive potential Vdd and terminal 22.
Inverter 5 is an inverter supplied with voltage Vdd.
Similarly, the supply voltage Vdd and output signal OUT2 will be effectively connected to electrode 12.
The region 5 receives the supply voltage Vdd.
In practice, voltage Vdd is a low voltage as compared with voltages Vac, Vr, and Vdc.
The source of the transistor 4 is connected to the voltage Vdd.
The value of the voltage Vdd is defined by the values of the resistors R 1, R 2.
For most of the stimulations, this voltage is higher than the supply voltage Vdd.
Voltages Vmin and Vmax may be generated from voltage Vdd by DC / DC voltage converters.
The output of I3 therefore remains easily close to the supply voltage Vdd.
Local supply voltage Vdd is also provided to a terminal 23 of circuit 20.
As a result, the line NAC charges to the supply voltage Vdd.
Such a converter is supplied by a D.C. voltage Vdd applied between two terminals 2 and 3 of circuit 1.
Transistor MP1 is off and line Bo is not forced to voltage Vdd.
The pMOS transistor Q 5 is connected between the supply voltage Vdd and the output terminal OUT.
Nonetheless, the value of the current I is relatively independent of the supply voltage Vdd.
Region 46 may then be connected to the source of voltage Vdd to bias protection shield 44.
Moreover, the value of the current I depends greatly on the supply voltage Vdd.
A limiter allows to maintain the power supply voltage Vdd below a threshold, e.g. of 4V.
Outside these cycles, the node N is taken to the logic supply voltage Vdd.
During the pre-charge phase, charge the capacitor to the voltage Vdd and discharge the capacitor ;.
Accordingly, the voltage on output terminal S can reach a level very close to voltage Vdd.

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