ON Semiconductor NTMFS4823NT1G - Power MOSFET
The NTMFS4823NT1G is a high-performance Power MOSFET brought to you by ON Semiconductor, a leader in energy-efficient innovations. This N-channel MOSFET is a testament to the company's commitment to providing advanced power management solutions that cater to a wide range of applications, including computing, automotive, consumer, and industrial markets.
Key Features:
- Low On-Resistance: The NTMFS4823NT1G boasts an exceptionally low on-resistance (RDS(on)), which translates to reduced conduction losses and improved power efficiency in applications.
- High Current Capability: Designed to handle high currents, this MOSFET can support demanding power requirements, making it suitable for high-performance environments.
- Low Gate Charge: With a low total gate charge (Qg), it enables fast switching speeds, which is crucial for applications that require rapid power regulation.
- Single Power Supply Operation: The NTMFS4823NT1G can operate on a single power supply, simplifying circuit design and reducing component count.
- RoHS Compliant: This product is compliant with the Restriction of Hazardous Substances (RoHS) directive, ensuring an environmentally friendly footprint.
Applications:
The versatile nature of the NTMFS4823NT1G makes it suitable for a wide array of applications, including:
- DC/DC converters
- Motor drives
- Power management systems
- Switching regulators
- Synchronous rectification
- Load switch applications
Product Specifications:
The NTMFS4823NT1G offers a VDS (drain-to-source voltage) of 30V, with a continuous drain current (ID) of 13A at 25°C. It is housed in a compact, surface-mount package, which is ideal for space-constrained applications.
Quality and Reliability:
ON Semiconductor is renowned for its commitment to quality and reliability. The NTMFS4823NT1G is subjected to rigorous testing and quality control measures to ensure that it meets the high standards expected from ON Semiconductor products. Customers can rely on this MOSFET to deliver consistent performance and durability.