N-channel enhancement mode vertical D-MOS transistor in TO-92 variant envelope and intended for use in relay, high-speed and line-transformer drivers. BS170 Pinout BS170 Pin Configuration Pin No Pin Name 1 Drain 2 Gate 3 Source … Read more
N Channel MOSFET
BUZ91 8.5A 600V N-Channel Power MOSFET N-channel enhancement mode field-effect power transistor in a plastic envelope. The device is intended for use in Switched Mode Power Supplies (SMPS), motor control, welding, DC/DC and AC/DC converters, … Read more
BUZ91 8.5A 600V N-Channel Power MOSFET – Datasheet
BUZ90 4.5A 600V N-Channel Power MOSFET is lot of variations for robust device performance and reliable operation designed for use in switch mode power supplies and general purpose applications BUZ90 Pinout BUZ90 Pin Configuration Pin … Read more
BUZ90 4.5A 600V N-Channel Power MOSFET – Datasheet
BUZ80 3.4A 800V N-Channel Power MOSFET is lot of variations for robust device performance and reliable operation High current , high speed switching mode power supplies DC-DC & DC-AC converter. BUZ80 Pinout BUZ80 Pin Configuration … Read more
BUZ80 3.4A 800V N-Channel Power MOSFET – Datasheet
BUZ77 2.7A 600V N-Channel Power MOSFET is Lot of variations for the robust device performance and reliable operation for Automotive power actuator drivers Motor controls and DC-DC converters. BUZ77 Pinout BUZ77 Pin Configuration Pin No … Read more
BUZ77 2.7A 600V N-Channel Power MOSFET – Datasheet
BUZ74 2.4A 500V N – channel enhancement mode POWER MOS field effect transistor. Easy drive and very fast Switching times make this POWER MOS transistor ideal for high speed switching applications. Typical applications include switching … Read more
BUZ74 2.4A 500V N-Channel Power MOSFET – Datasheet
BUZ72 10A 100V N-Channel Power MOSFET is Lot of variations for the robust device performance and reliable operation High current , high speed switching Solenoid and relay drivers DC-DC & DC-AC converters. BUZ72 Pinout BUZ72 … Read more
BUZ72 10A 100V N-Channel Power MOSFET – Datasheet
BUZ71 14A 50V N-Channel Power MOSFET is an N-Channel enhancement mode silicon gate power field effect transistor designed for applications such as switching regulators, switching converters, motor drivers, relay drivers, and drivers for high power … Read more
BUZ71 14A 50V N-Channel Power MOSFET – Datasheet
BUZ60 5.5A 400V is an N-Channel enhancement mode silicon gate power field effect transistor designed for applications such as switching regulators, switching converters, motor drivers, relay drivers, and drivers for high power bipolar switching transistors … Read more
BUZ60 5.5A 400V N-Channel Power MOSFET – Datasheet
BUZ41 4.5A 500V is an N-Channel enhancement mode silicon gate power field effect transistor designed for applications such as switching regulators, switching converters, motor drivers, relay drivers and drivers for high power bipolar switching transistors … Read more
BUZ41 4.5A 500V N-Channel Power MOSFET – Datasheet
BUZ31 14.5A 200V N-Channel Power MOSFET Enhancement mode is Fast Switching Speed and Minimum Lot-to-Lot variations for robust device performance and reliable operation for device use in a wide variety of applications BUZ31 Pinout BUZ31 … Read more
BUZ31 14.5A 200V N-Channel Power MOSFET – Datasheet
BUZ22 34A 100V N-Channel Power MOSFET is designed for applications such as switching regulators, switching converters, motor drivers, relay drivers and drivers for high power bipolar switching transistors requiring high speed and low gate drive … Read more
BUZ22 34A 100V N-Channel Power MOSFET – Datasheet
BUZ21 19A 100V is an N-Channel enhancement mode silicon gate power field effect transistor designed for applications such as switching regulators, switching converters, motor drivers, relay drivers, and drivers for high power bipolar switching transistors … Read more
BUZ21 19A 100V N-Channel Power MOSFET – Datasheet
The CD4007M/CD4007C consists of three complementary pairs of N- and P-channel enhancement mode MOS transistors suitable for series/shunt applications. The IC has a wide range of working conditions and directly interfaces with CMOS, NMOS, and … Read more