LM2936 Ultra-Low Quiescent Current 5.0V Regulator – Datasheet
The LM2936 ultra-low quiescent current regulator features low dropout voltage and low current in the standby mode. With … Read more
The LM2936 ultra-low quiescent current regulator features low dropout voltage and low current in the standby mode. With … Read more
IRF634 8.1A 250V N-Channel Power MOSFET is advanced technology has been especially tailored to minimize on-state resistance, provide … Read more
1N4730 3.9 Volt 1W Zener diode is a two-way switch means that it can conduct current in forward … Read more
The LM2931 positive voltage regulator features a very low quiescent current of 1mA or less when supplying 10mA … Read more
MUR8100E 8A & 1000V Ultrafast Recovery Diode is a series of switch mode power rectifiers and is designed … Read more
1N4729 3.6 Volt 1W Zener diode is a two-way switch means that it can conduct current in forward … Read more
The LM1117 is a low dropout voltage regulator with a dropout of 1.2V at 800mA of load current. … Read more
MUR3060PTG 30A & 600V Dual Ultrafast Recovery Diode is a series of switch mode power rectifiers and is … Read more
The LM217 is a monolithic integrated circuit in TO-220, ISOWATT220, TO-3, and D2 PAK packages intended for use … Read more
1N4728 3.3 Volt 1W Zener diode is a two-way switch means that it can conduct current in forward … Read more
The LM2599 regulator is a monolithic integrated circuit that provides all the active functions for a step-down (buck) … Read more
1N5250 20 Volt 500mW Zener diode is a two-way switch means that it can conduct current in forward … Read more
MUR3040PTG 30A & 400V Dual Ultrafast Recovery Diode is a series of switch mode power rectifiers and is … Read more
The LM1117 is a low dropout voltage regulator with a dropout of 1.2V at 800mA of load current. … Read more
The LM1117 is a low dropout voltage regulator with a dropout of 3.3V at 800mA of load current. … Read more
1N5245 15 Volt 500mW Zener diode is a two-way switch means that it can conduct current in forward … Read more