Product introduction:
Product Introduction: SUP90N08-6m8P-VB
SUP90N08-6m8P-VB is a high-performance N-channel MOSFET in TO220 package, designed for high-current, high-power power management and power conversion systems. The maximum drain-source voltage (VDS) of this type of MOSFET is 80V, the maximum gate-source voltage (VGS) is ±20V, and it supports a maximum drain current (ID) of 100A. Its threshold voltage (Vth) is 3V, and the on-resistance (RDS(ON)) is 9mΩ (@VGS=4.5V) and 7mΩ (@VGS=10V) at different gate voltages, respectively, with very low conduction loss and high efficiency. The use of advanced Trench technology can reduce the loss in current flow and improve power conversion efficiency. It is widely used in high-efficiency power conversion, battery management, electric vehicles, industrial automation and other fields.
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Domain and module applications:
Applications and modules:
1. **Power management and efficient power conversion**:
SUP90N08-6m8P-VB performs well in high voltage and high current power management applications, especially for DC-DC converters, AC-DC power conversion, UPS (uninterruptible power supply system), etc. Due to its low on-resistance (7mΩ@VGS=10V), this MOSFET can reduce conduction losses and improve power efficiency, playing an important role in systems with efficient power conversion and low heat generation. It is very suitable for power systems that require high current and high efficiency, such as server power supplies, industrial power supplies, etc.
2. **Battery Management System (BMS) and Battery Charger**:
The high current carrying capacity (maximum 100A) and low RDS(ON) characteristics of SUP90N08-6m8P-VB make it very suitable for battery management systems (BMS) and battery chargers. Whether in power tools, electric vehicle batteries, or charging applications for large-capacity lithium batteries, this MOSFET can efficiently manage the battery charging and discharging process to ensure battery safety and long life. In addition, its low on-resistance can reduce energy loss during the charging process and improve charging efficiency.
3. **Electric Vehicles (EV) and Hybrid Electric Vehicles (HEV)**:
Because the SUP90N08-6m8P-VB can handle higher voltages (80V) and currents (100A), it has a wide range of applications in electric vehicles (EV) and hybrid electric vehicles (HEV), especially in battery management systems (BMS), on-board chargers, and electric drive systems. Its excellent current handling capability and low on-resistance enable it to increase the charging speed of electric vehicles, reduce power losses, and improve the overall efficiency of the power system.
4. **Industrial Automation and Motor Control**:
In industrial automation and motor control systems, the SUP90N08-6m8P-VB is often used in drive control, inverters, and servo systems. The high current handling capability of MOSFET ensures efficient operation of motor drives in industrial equipment and is suitable for a variety of high-power motor control applications, such as robots, motor drive control for automated production lines, and fan and pump systems.
5. **Communication and Data Center Power Systems**:
SUP90N08-6m8P-VB is also widely used in power management systems for data centers, telecom base stations, and communication equipment. Its high current carrying capacity and low on-resistance characteristics make it very suitable for use in high-efficiency power conversion, voltage-stabilized power supplies, and power amplifier circuits, ensuring the high efficiency and stability of communication equipment, especially in high-load and high-power demand environments.
6. **Automotive Electronics and On-Board Power Systems**:
SUP90N08-6m8P-VB is also used in modern automotive electronic systems, especially in on-board power systems, DC-DC converters, and power management systems for electric vehicles. This MOSFET can operate stably at higher voltages and can carry larger currents, meeting the needs of automotive electronics for high efficiency and high stability.
* Please note: the above is only an example application scenario, the specific application depends on the requirements and conditions of the system design. When using this device, consult its data sheet for detailed technical specifications and features