BSC098N10NS5ATMA1 Overview
The BSC098N10NS5ATMA1 is a high-performance N-channel MOSFET designed for demanding power management and switching applications. Engineered for low on-resistance and high efficiency, this device offers robust performance in industrial, automotive, and telecom systems. Its advanced process technology ensures reliable operation and optimized thermal characteristics, making it suitable for high-current environments. The component??s compact footprint and enhanced switching performance help engineers achieve superior system integration and reduced energy losses. For more information, visit IC Manufacturer.
BSC098N10NS5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 100 V |
| Continuous Drain Current (ID) | 75 A |
| RDS(on) (Max) | 9.8 m?? |
| Gate Charge (Qg) | Not specified |
| Package / Case | TO-263-3 |
| Mounting Type | Surface Mount |
| Operating Temperature Range | -55??C to +175??C |
| Polarity | N-Channel |
BSC098N10NS5ATMA1 Key Features
- Low RDS(on) of 9.8 m?? enables reduced conduction losses, improving overall energy efficiency in power circuits.
- High drain-source voltage rating up to 100 V supports robust operation in demanding high-voltage environments.
- Surface mount TO-263-3 package offers excellent thermal performance and compact design for high-density PCB layouts.
- Wide operating temperature range (-55??C to +175??C) ensures reliability in harsh industrial and automotive conditions.
BSC098N10NS5ATMA1 Advantages vs Typical Alternatives
This device stands out from typical N-channel MOSFETs due to its combination of low on-resistance and high current handling, which results in lower power loss and greater system efficiency. Its robust voltage rating and reliable thermal performance further enhance suitability for critical power management and motor drive designs, reducing the need for frequent maintenance or overdesign.
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Typical Applications
- Power supply switching: Ideal for use in switch-mode power supplies and DC-DC converters where high efficiency and low heat generation are critical for reliable operation.
- Motor control systems: Serves as a primary switching device in industrial and automotive motor drivers, supporting high current loads.
- Telecommunications equipment: Used in power distribution and protection circuits, ensuring stable operation under variable loads.
- Battery management: Facilitates efficient charging and discharging cycles in battery-powered systems due to its low conduction losses.
BSC098N10NS5ATMA1 Brand Info
The BSC098N10NS5ATMA1 is part of a leading-edge MOSFET portfolio from a recognized manufacturer committed to high quality and innovation in the semiconductor industry. This product is engineered with advanced process technology to deliver superior efficiency, reliability, and thermal management. Its robust design and compliance with stringent industry standards make it a preferred choice for engineers seeking dependable solutions in high-power and high-reliability applications.
FAQ
What makes the BSC098N10NS5ATMA1 suitable for high-current applications?
Its low on-resistance and high continuous drain current rating allow it to handle significant power loads with minimal energy loss. This makes it ideal for power management and motor control tasks requiring efficiency and thermal reliability.
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Is this MOSFET appropriate for automotive environments?
Yes, the wide operating temperature range from -55??C to +175??C supports use in demanding automotive conditions. The device??s robust voltage and current ratings further enhance its suitability for vehicle powertrain and control systems.
How does the surface mount TO-263-3 package benefit my design?
The TO-263-3 package offers a compact footprint for space-constrained boards while delivering superior heat dissipation. This enables higher power density and supports automated assembly processes in industrial production.
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Can this device be used in battery management systems?
Absolutely. Its low conduction losses help maximize battery life and efficiency during charge and discharge cycles, making it well-suited for modern battery-powered equipment and backup systems.
What are the main advantages over other MOSFETs with similar voltage ratings?
The combination of lower RDS(on), higher current handling, and robust package design allows for greater efficiency, reduced system losses, and improved thermal performance compared to many standard alternatives in the same voltage class.





