overdrive voltage造句
例句與造句
- "' Overdrive voltage "', usually abbreviated as V OV, is typically referred to in the context of MOSFET transistors.
- When the voltage between transistor gate and source ( V GS ) exceeds the threshold voltage ( V th ), it is known as overdrive voltage.
- Due to this definition, overdrive voltage is also known as " excess gate voltage " or " effective voltage . " Overdrive voltage can be found using the simple equation : V OV = V GS " V t.
- Due to this definition, overdrive voltage is also known as " excess gate voltage " or " effective voltage . " Overdrive voltage can be found using the simple equation : V OV = V GS " V t.
- The overdrive voltage is defined as the voltage between transistor gate and source ( V GS ) in excess of the threshold voltage ( V t ) where V t is defined as the minimum voltage required between gate and source to turn the transistor on ( allow it to conduct electricity ).
- It's difficult to find overdrive voltage in a sentence. 用overdrive voltage造句挺難的
- Overdrive voltage is also important because of its relationship to V DS, the drain voltage relative to the source, which can be used to determine the region of operation of the MOSFET . The table below shows how to use overdrive voltage to understand what region of operation the MOSFET is in:
- Overdrive voltage is also important because of its relationship to V DS, the drain voltage relative to the source, which can be used to determine the region of operation of the MOSFET . The table below shows how to use overdrive voltage to understand what region of operation the MOSFET is in:
- As we increase this voltage, V GS, beyond V t, we are said to be then OVERDRIVING the gate by creating a stronger channel, hence the OVERDRIVE VOLTAGE ( Called often V ov, V od, or V on ) is defined as ( V GS " V t)
- where the combination " V ov = V GS V th " is called the overdrive voltage, and where " V DSsat = V GS V th " accounts for a small discontinuity in I _ D which would otherwise appear at the transition between the triode and saturation regions.