Category: Transistor
Use: Power switching applications
Characteristics: High voltage, low power consumption
Package: SOT-223
Essence: NPN Silicon Transistor
Packaging/Quantity: Tape & Reel, 3000 units per reel
The NSVMMUN2235LT1G has three pins: Collector (C), Base (B), and Emitter (E). The pin configuration is as follows: - Collector (C): Pin 1 - Base (B): Pin 2 - Emitter (E): Pin 3
Advantages: - Suitable for high voltage applications - Low power dissipation - Compact SOT-223 package
Disadvantages: - Limited maximum current rating - Moderate frequency transition capability
The NSVMMUN2235LT1G operates as an NPN transistor, allowing current to flow from the collector to the emitter when a small current is applied to the base. This enables it to function as a switch in power control applications.
The NSVMMUN2235LT1G is commonly used in various power switching applications such as: - Switching power supplies - LED lighting - Motor control - Battery management systems
Some alternative models to NSVMMUN2235LT1G include: - BC337-40 - 2N3904 - MMBT3904 - KSC945C
In conclusion, the NSVMMUN2235LT1G is a versatile NPN silicon transistor suitable for power switching applications, offering high voltage capability and low power consumption. Its compact SOT-223 package makes it ideal for space-constrained designs.
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What is NSVMMUN2235LT1G?
What are the key features of NSVMMUN2235LT1G?
How does NSVMMUN2235LT1G help in technical solutions?
What are the typical applications of NSVMMUN2235LT1G?
What is the input voltage range for NSVMMUN2235LT1G?
How can NSVMMUN2235LT1G be configured for specific voltage requirements?
Does NSVMMUN2235LT1G have built-in fault detection features?
Is NSVMMUN2235LT1G suitable for battery-powered applications?
Can NSVMMUN2235LT1G be used in automotive electronics?
Are there any design considerations when integrating NSVMMUN2235LT1G into a technical solution?