Questions

Can we use MOSFET in rectifier?

Can we use MOSFET in rectifier?

All discrete MOSFETs have an inherent reverse ‘body’ diode between Source and Drain. This diode is as good as normal silicon rectifier, so the FET will work quite well as a rectifier provided that it is not turned on at the wrong time (ie.

What are the advantages of controlled rectifier over uncontrolled rectifier?

By varying the firing angle, we can change the output in a controlled rectifier and there is no firing or triggering concept in the uncontrolled rectifier. The cost of an uncontrolled rectifier is less compared to the cost of a controlled rectifier. Output can be smoothly controlled in a controlled rectifier.

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Why is power Mosfet used than MOSFET list the different types of power Mosfet?

Power MOSFET is a type of MOSFET which is specially meant to handle high levels of power. These exhibit high switching speed and can work much better in comparison with other normal MOSFETs in the case of low voltage levels. However its operating principle is similar to that of any other general MOSFET.

What is a MOSFET regulator rectifier?

The rectifier function is responsible for converting stator output to direct current (DC), which the battery requires for charging. The regulation function is just as important, preventing damage to the battery from high voltages due to overcharging.

Why MOSFET is current controlled?

MOSFET Drive Circuits. The power MOSFET is a voltage-controlled device. By providing a positive voltage to the gate, with respect to the source, current will be made to flow in the drain. Reducing the voltage to zero will turn the drain current off.

What is the difference between uncontrolled rectifier and controlled rectifier which is advantageous and why?

1. Uncontrolled Rectifiers : Provide a fixed d.c. output voltage for a given a.c. supply where diodes are used only. 2. Controlled Rectifiers : Provide an adjustable d.c. output voltage by controlling the phase at which the devices are turned on, where thyristors and diodes are used.

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What is the major drawback of controlled rectifier?

The SCR (silicon controlled rectifier) is unidirectional devices, so it can control power only in DC power during positive half cycle of AC supply, thus only DC power is controlled with the help of SCR. The gate current cannot be negative. In AC circuit, it needs to be turned on each cycle.

How is power Mosfet different from regular MOSFET?

the very basic difference between two is that for power mosfet the gate oxide is thick and has high threshold voltage and can withstand high input voltage. where as for normal mosfet,the gate oxide is thin and cannot withstand high voltage and gate oxide damages when high voltage is applied.

What are the applications of a MOSFET?

MOSFET is a voltage controlled device and has some decent applications. There are some advantages of using MOSFET in electronics circuits. Some important applications of MOSFET are given below : 1. Mosfet is used for some switching applications an in electronics device. 2. It is used in some amplifying circuits.

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What is the difference between a JFET and A MESFET?

The difference is that instead of using a p-n junction for a gate, a Schottky ( metal – semiconductor) junction is used. MESFETs are usually constructed in compound semiconductor technologies lacking high quality surface passivation such as GaAs, InP, or SiC, and are faster but more expensive than silicon-based JFETs or MOSFETs.

What is the difference between depletion type and enhancement type MOSFET?

In depletion type MOSFET channel is prebuilt and In enhancement type MOSFET Channel is made during the operation of MOSFET device. As above we saw there are two types of MOSFET. Here we know the application of MOSFET using Enhancement type MOSFET.

What is the difference between BJT and MOSFET?

MOSFET generates very less heat loss compared to BJT at high currents. So it has high efficiency than other devices. So it is used extensively in power electronics. However, MOSFET require special care in handling and has a problem of electrostatic discharge.