Features: SpecificationsDescription The 2SK2382 is a Silicon N-channel MOS type Transistor designed for high speed,high voltage switching applications and switching regulator,DC-DC converter and motor drive applications.The 2SK2382 has 4 features including low drain-source on resistance;high forwa...
2SK2382: Features: SpecificationsDescription The 2SK2382 is a Silicon N-channel MOS type Transistor designed for high speed,high voltage switching applications and switching regulator,DC-DC converter and mot...
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Features: High Speed SwitchingLow On-ResistanceNo Secondary BreakdownLow Driving PowerHigh Voltage...
Features: - High Speed Switching- Low On-Resistance- No Secondary Breakdown- Low Driving Power- Hi...
The 2SK2382 is a Silicon N-channel MOS type Transistor designed for high speed,high voltage switching applications and switching regulator,DC-DC converter and motor drive applications.The 2SK2382 has 4 features including low drain-source on resistance;high forward transfer admittance;low leakage current;enhancement-mode.
The absolute maximun ratings of the 2SK2382 are at Ta=25°C, Drain-source breakdown voltage VDSS is 200V;drain-gate voltage VDGR is 200V;Gate to source voltage VGSS is ±20V;drain Current ID(DC) is 15A;drain power dissipation is 45 W;channel temperature is 150°C maxnimum;Storage temperature is -55 to +150°C.
A decoupling capacitor of 0.01µF must be connected between VDD (pin 2 & 7) and GND (pin 4), as close to these pins as possible. For optimum device performance, the decoupling capacitor should be mounted on the component side of the PCB. Avoid the use of vias in the decoupling circuit. The LTC ®2439-1 is a 16-channel (8-differential) micropower 16-bit analog-to-digital converter. It op- erates from 2.7V to 5.5V and includes an integrated oscillator, 0.12LSB INL and 1µV RMS noise. It uses delta- sigma technology and provides single cycle settling time for multiplexed applications. Through a single pin, the LTC2439-1 can be configured for better than 87dB differ- ential mode rejection at 50Hz and 60Hz 2%, or it can be driven by an external oscillator for a user-defined rejec- tion frequency. The internal oscillator requires no external frequency setting components.
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