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Application of VBGP1201N MOSFET in inverter and battery management of renewable
time:2024-08-07
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VBGP1201N MOSFET in inverter and battery management for renewable energy systems: solving high-power energy conversion and storage challenges

In the context of the current global energy transformation, the utilization rate of renewable energy continues to increase. Clean energy such as solar energy and wind energy has become an important part of the energy structure. However, the efficient conversion and energy storage technology of these renewable energy sources still faces challenges. The VBGP1201N MOSFET launched by VBsemi, with its excellent performance and reliability, has become a key component to solve these problems.


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Highly efficient inverter core

Inverters are important devices that convert DC power into AC power and are widely used in solar power generation systems and wind power generation systems. The emergence of VBGP1201N provides strong support for the efficient energy conversion of inverters. Its 250V drain-source voltage (VDS) and 60A drain current (ID) capabilities enable this MOSFET to handle high-power power conversion.


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In addition, VBGP1201N adopts advanced Trench technology, which enables it to have low on-resistance (RDS(on)), with a typical value of only 40mΩ when VGS=10V. This feature significantly reduces energy loss, improves the conversion efficiency of the inverter, helps the system maintain low heat accumulation at high power output, and extends the service life of the equipment.

A reliable choice in battery management systems

In renewable energy systems, the battery management system (BMS) is critical to the performance of energy storage devices. VBGP1201N has become a reliable choice in battery management systems due to its stable performance and high threshold voltage (Vth, typ 3.5V). This MOSFET can effectively control the current flow during charging and discharging, ensuring the safe and efficient operation of the battery pack under different working conditions.

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 Its ±20V gate-source voltage (VGS) characteristic enables VBGP1201N to maintain stable working state under extreme conditions. This is particularly important for the fast response and high reliability requirements in energy storage systems, ensuring that under various load conditions, the system can quickly adjust the current flow to avoid overcharging or over-discharging of the battery and extend the battery life.

Application prospects and advantages

The high performance of VBGP1201N makes its application prospects in renewable energy systems very broad. Whether it is an inverter or a battery management system, this MOSFET performs well. Its excellent performance in high-power energy conversion and energy storage applications has perfectly overcome related technical difficulties and provided a solid guarantee for the efficiency and reliability of energy systems.

Detailed parameter description

1. Product model: VBGP1201N

2. Package: TO247

3. Configuration: Single pole

4. Polarity: N-channel

5. Drain-source voltage (VDS): 250V

6. Gate-source voltage (VGS): ±20V

7. Threshold voltage (Vth, typ): 3.5V

8. On-resistance (RDS(on)@VGS=10V, typ): 40mΩ

9. Drain current (ID): 60A

10.Technique: Trench

11. Seamless replacement models: IXTH50N25T, IRFP4229

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Examples of other applicable areas of the product

1. Industrial Automation: The VBGP1201N can be used in motor drive and control systems in industrial automation. Its high current handling capability and low on-resistance make it an ideal choice for high-efficiency motor drivers. Whether in factory automation equipment or in robotic control, the device provides reliable power transmission and stable performance.

2. Power management: VBGP1201N performs well in power management modules, especially in high-efficiency switching power supplies and DC-DC converters. Its low on-resistance and high threshold voltage characteristics ensure the high efficiency of energy transmission and the stability of the system, and it is a core component for building an efficient power management system.

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 As a high-performance device designed specifically to solve high-power energy conversion and storage problems.

It not only improves the overall efficiency and stability of renewable energy systems, but also provides strong support for the further development of green energy. In the future, with the continuous advancement of technology, VBGP1201N will continue to play its unique advantages in more fields and promote the innovation and application of energy technology.

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