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11N90C N-Channel Mosfet Transistor 900V 11A
₹250.00 Original price was: ₹250.00.₹200.00Current price is: ₹200.00. inc. GST
- 11A, 900V, RDS(on) = 1.1Ω  at VGS = 10 V, ID = 3.5A
- Low gate charge ( typical 60 nC)
- Low Crss ( typical 23pF)
- Package: TO-3PN
- N-Channel Mosfet
- Fast switching
- 100% avalanche tested
- Improved dv/dt capability
These N-Channel enhancement mode power field-effect transistors are designed based on Fairchild’s proprietary, planar stripe, DMOS technology. This advanced technology specially tailored to attenuate on-state resistance provides superior switching performance. And also withstand high energy pulse within the avalanche and commutation mode. These devices are compatible with high-efficiency switching DC/DC converters, switch-mode power supplies, also active power supply correction, electronic lamp ballast based n half-bridge topology. 11N90C manufactured in TO-PN package that is universally accepted for all commercial-industrial applications.11N90C provides a Drain Source Voltage of 900V at a drain current 11A. These MOSFET Transistors are designed explicitly to achieve extremely low on-resistance per silicon area and lower gate charge performance. This feature makes this device ideal for use as a primary switch in advanced high-efficiency isolated DC-DC converters.
A MOSFET is designed as a special type of metal–oxide–semiconductor field-effect transistor (MOSFET) explicitly to handle significant power levels. This N-Channel MOSFET is defined as a type of MOSFET in which the channel of the MOSFET is made up of a majority of electrons as current carriers. When the MOSFET is activated and is on, the majority of the current flowing are electrons moving through the channel. It is one of the prominent power semiconductor devices in the world, due to its low gate drive power, wide bandwidth. This makes it ideal for use in a wide range of applications such as in low-voltage (less than 200V) switches.
- Â Used in various power switching circuits for system miniaturization and higher efficiency.
- Â Power switch circuit of adaptor and charger

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