The SIPC14N80C3X1SA2 is a semiconductor product belonging to the category of power MOSFETs. This entry provides an overview of its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The SIPC14N80C3X1SA2 typically has three pins: 1. Gate (G): Input for controlling the switching operation 2. Drain (D): Output terminal connected to the load 3. Source (S): Common terminal
The SIPC14N80C3X1SA2 operates based on the principle of field-effect transistors, where the control of current flow between the drain and source terminals is governed by the voltage applied to the gate terminal.
The SIPC14N80C3X1SA2 finds applications in various fields including: - Switched-mode power supplies - Motor control systems - Inverters and converters - Lighting systems - Industrial automation
Some alternative models to the SIPC14N80C3X1SA2 include: - IRFP4668PBF - STW20NK50Z - FDPF18N50T
In conclusion, the SIPC14N80C3X1SA2 is a high-voltage power MOSFET with characteristics that make it suitable for diverse power switching applications. Its specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models provide a comprehensive understanding of this semiconductor product.
What is SIPC14N80C3X1SA2?
What are the key features of SIPC14N80C3X1SA2?
What are the typical applications of SIPC14N80C3X1SA2?
What is the maximum voltage and current rating for SIPC14N80C3X1SA2?
What is the thermal resistance of SIPC14N80C3X1SA2?
Does SIPC14N80C3X1SA2 require a heat sink for operation?
Is SIPC14N80C3X1SA2 suitable for automotive applications?
What is the gate-source threshold voltage of SIPC14N80C3X1SA2?
Can SIPC14N80C3X1SA2 be used in parallel configurations for higher current handling?
Are there any recommended driver ICs for driving SIPC14N80C3X1SA2?