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SFP9510-VB Product details

Product introduction:

**SFP9510-VB Product Introduction**

**SFP9510-VB** is a high-performance **P-type MOSFET**, packaged in **TO220**, designed for applications that handle higher voltages and currents. This model has a maximum drain-source voltage withstand capability of **-100V** and a maximum drain current of **-18A**, suitable for applications that require high power control, such as **DC-DC power converters**, **battery management systems (BMS)**, and **industrial motor drives**. Its low **RDS(ON)**, **167mΩ** at **VGS=10V**, can effectively reduce power loss and improve system efficiency. In addition, the use of **Trench technology** gives it excellent switching performance and low conduction loss, making it an ideal choice for power switches and high-efficiency power modules.

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Product parameter:

VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds2.5 Rds4.5 Rds10 Technology
TO220 Single-P -100V -2V -18A 167mΩ Trench
VB Package Configuration VCE VGE VGEth(V) VCEsat15V ICE Technology
TO220 Single-P Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds18 Technology
TO220 Single-P -100V -2V -18A Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds6 Technology
TO220 Single-P -100V -2V -18A Trench
VB Package Polarity Vz / VR Pd VF IF IR Cd Type
TO220 Single-P
**Detailed parameter description**

- **VDS (drain-source voltage)**: **-100V**
**SFP9510-VB** supports a maximum drain-source voltage of **-100V**, suitable for use in medium and high voltage power and current applications, and can handle high power loads.

- **VGS (gate-source voltage)**: **±20V**
Supports **±20V** gate drive voltage, making it compatible with a variety of control circuits, especially suitable for most logic control and drive circuits.

- **Vth (threshold voltage)**: **-2V**
The threshold voltage of this **P-type MOSFET** is **-2V**, operating under low to medium voltage control, suitable for standard logic level drive, and can meet most power management needs.

- **RDS(ON)(On-resistance)**: **167mΩ @ VGS=10V**
At **VGS=10V**, the on-resistance is **167mΩ**, which means that the device has lower power loss during operation, ensuring efficient operation and reducing heat generation.

- **ID(Drain Current)**: **-18A**
The maximum drain current is **-18A**, which is suitable for high-power applications and can stably transmit large current loads to ensure the stability and reliability of the power supply system.

- **Package Type**: **TO220**
The **TO220** package provides better heat dissipation capability, which is suitable for high-current and high-power applications, and can effectively reduce thermal resistance and improve device stability and working life.

- **Technology**: **Trench**
Using **Trench technology**, it provides lower on-resistance and excellent switching characteristics, suitable for high-frequency and high-power switching applications, can reduce conduction loss and improve work efficiency.

Domain and module applications:

**Product Application Fields and Modules**

1. **DC-DC Converter**
**SFP9510-VB** is suitable for **DC-DC converter**, especially in high-power demand occasions such as battery-powered devices, power electronic systems and high-efficiency power modules. Its **-100V** withstand voltage and **-18A** current capability can efficiently handle high-power loads and provide stable power output.

2. **Battery Management System (BMS)**
This MOSFET is widely used in **battery management systems**, especially in **electric vehicles**, **energy storage systems** and **mobile device battery management**. Its **-100V** drain voltage and **-18A** maximum drain current are very suitable for controlling the charging and discharging process of large-capacity batteries, improving the efficiency and safety of battery management.

3. **Industrial Motor Drive System**
**SFP9510-VB** has **low on-resistance** and **high current carrying capacity**, which is very suitable for **industrial motor drive**, such as **DC Motor** or **stepper motor drive**. By efficiently controlling the current, the operating efficiency and stability of the motor can be improved, heat generation can be reduced, and the service life of the motor can be extended.

4. **Power Management Module**
In the **power management module**, **SFP9510-VB** can be used as an efficient switch controller to optimize the flow of current and provide efficient power conversion. It is widely used in **power adapters**, **battery-powered devices**, and **high-frequency power modules**, etc., which can significantly improve the power efficiency and working stability of the system.

5. **Solar inverter**
As a **P-type MOSFET**, **SFP9510-VB** is suitable for **solar inverter** to provide efficient DC to AC conversion. Its high current capability and low on-resistance can effectively improve the overall efficiency of the solar system, especially for power conversion in large solar power generation systems.

6. **Automotive electronic system**
In the **electric drive system** of **electric vehicles (EV)** or **hybrid electric vehicles (HEV)**, **SFP9510-VB** can be used in key links such as battery charge and discharge control and drive motors. Its **-100V** maximum withstand voltage and **-18A** maximum current can provide stable performance to ensure the safety and efficiency of the electric drive system.

7. **Power switching power supply**
**SFP9510-VB** can be used in **power switching power supply** to provide fast and stable current control in high voltage and high current environments. It is suitable for various industrial power supply systems, especially for applications with high precision requirements for **voltage conversion** and **current regulation**.

8. **High-power battery power system**
This model **P-type MOSFET** performs well in **high-power battery power systems**, especially **inverters** and **DC-DC converters**, which can improve the energy transmission efficiency of the battery, reduce energy loss, and ensure efficient and stable operation of the system.

* 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

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