BSC035N04LSGATMA1 Overview
The BSC035N04LSGATMA1 is a high-performance N-channel MOSFET optimized for demanding applications requiring low on-resistance and efficient switching. Designed for use in industrial, automotive, and power management systems, it delivers robust operation and reliability in compact form factors. With its advanced silicon technology and low RDS(on), this device enables designers to achieve higher efficiency and thermal performance in switching converters, motor drives, and battery-powered equipment. For sourcing and additional details, visit IC Manufacturer.
BSC035N04LSGATMA1 Technical Specifications
| Attribute | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 40 V |
| Continuous Drain Current (ID) | 100 A |
| RDS(on) (Max) | 3.5 m?? |
| Gate Charge (Qg) | 64 nC |
| Package | SuperSO8 |
| Mounting Type | Surface Mount |
| Operating Temperature Range | -55??C to +175??C |
BSC035N04LSGATMA1 Key Features
- Ultra-low RDS(on) of 3.5 m?? enables minimal conduction losses, boosting overall system efficiency in high-current designs.
- High continuous drain current capability (100 A) supports power-hungry circuits and demanding load profiles.
- Compact SuperSO8 package allows for dense PCB layouts and efficient thermal management, critical in space-constrained environments.
- Wide operating temperature range from -55??C to +175??C ensures reliability in harsh industrial and automotive settings.
BSC035N04LSGATMA1 Advantages vs Typical Alternatives
Compared to standard MOSFET alternatives, this device stands out by offering a much lower RDS(on) and high current handling in a small package. These characteristics translate to enhanced efficiency, reduced heat generation, and more compact designs. The robust temperature range and surface-mount package further simplify integration into modern power electronics, ensuring reliable operation over the product lifecycle.
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Typical Applications
- Switching power supplies: Suitable for synchronous rectification and primary-side switching, providing improved efficiency and thermal management in SMPS designs.
- Motor drive circuits: Efficiently controls high-current loads in industrial and automotive motor applications, supporting precise speed and torque control.
- Battery management systems: Handles large transient currents with low conduction losses, extending battery life in portable and backup power systems.
- DC-DC converters: Optimized for low-loss, high-frequency switching, benefiting compact and energy-sensitive electronics.
BSC035N04LSGATMA1 Brand Info
This MOSFET is part of a reputable line of power semiconductors engineered for modern electronic applications. It leverages advanced process technology to achieve low on-resistance and high current capability, empowering designers to meet stringent efficiency and reliability requirements. The SuperSO8 package offers a balance of size, thermal performance, and ease of assembly, making it a preferred choice for high-density and high-power circuit designs.
FAQ
What are the primary benefits of using this MOSFET in power supply designs?
The device??s low RDS(on) and high current capability make it ideal for reducing conduction losses and improving efficiency in switching power supplies. Its robust thermal characteristics further enable reliable operation under heavy load conditions, supporting longer system lifetimes.
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Is this MOSFET suitable for automotive or industrial environments?
Yes, the wide operating temperature range and high current rating make it well-suited for demanding automotive and industrial settings. Its surface-mount SuperSO8 package also allows for easy integration into densely populated PCBs found in these sectors.
How does the SuperSO8 package benefit circuit designers?
The SuperSO8 package combines a compact footprint with efficient heat dissipation, allowing designers to save board space without sacrificing thermal performance. This is especially useful in high-power or space-constrained applications.
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What are the key considerations when integrating this component into a battery-powered device?
Low on-resistance helps to minimize energy losses, making it advantageous for battery-powered applications. The high current handling ensures safe operation during peak loads, while surface mountability supports automated assembly processes.
Can this MOSFET be used in synchronous rectification circuits?
Absolutely. Its low RDS(on) and fast switching characteristics make it an excellent choice for synchronous rectification, where minimizing losses is critical to achieving high system efficiency and performance.






