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SP8K70-VB Product details

Product introduction:

SP8K70-VB Product Introduction

**SP8K70-VB** is a **dual N+P channel MOSFET** in **SOP8 package**, with **±250V** maximum drain-source voltage (VDS) and **±1.1A** maximum drain current. It uses advanced **Trench technology** to ensure low on-resistance while having excellent switching performance and high efficiency. This model is particularly suitable for applications requiring bipolar current control, such as **H-bridge circuits** and **reverse power conversion**. Its **on-resistance** at **VGS=10V** is **95mΩ** (N channel) and **243mΩ** (P channel), respectively, showing extremely low power loss and efficient current management.

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Product parameter:

VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds2.5 Rds4.5 Rds10 Technology
SOP8 Dual-N+P ±250V 3/-3V ±1.1A 95/243mΩ Trench
VB Package Configuration VCE VGE VGEth(V) VCEsat15V ICE Technology
SOP8 Dual-N+P Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds18 Technology
SOP8 Dual-N+P ±250V 3/-3V ±1.1A Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds6 Technology
SOP8 Dual-N+P ±250V 3/-3V ±1.1A Trench
VB Package Polarity Vz / VR Pd VF IF IR Cd Type
SOP8 Dual-N+P
SP8K70-VB Detailed parameter description

- **Package type**: SOP8
- **Configuration**: Dual N+P channel MOSFET (N+P-Channel)
- **Maximum drain-source voltage (VDS)**: ±250V
- **Maximum gate-source voltage (VGS)**: ±20V
- **Threshold voltage (Vth)**:
- N channel: 3V
- P channel: -3V
- **On-resistance (RDS(ON))**:
- N channel:
- **RDS(ON) @ VGS=10V**: 95mΩ
- **RDS(ON) @ VGS=4.5V**: 135mΩ
- P channel:
- **RDS(ON) @ VGS=10V**: 243mΩ
- **RDS(ON) @ VGS=4.5V**: 285mΩ
- **Maximum drain current (ID)**: ±1.1A
- **Technology**: Trench technology

Domain and module applications:

SP8K70-VB application areas and module examples

1. **H-bridge circuit**:
The dual N+P channel configuration of SP8K70-VB makes it very suitable for **H-bridge circuit**, which is widely used in **motor control** and **inverter**. In motor drive applications, the direction and speed of the motor can be effectively controlled, and the precise control of the motor can be achieved by changing the direction of the current flow. SP8K70-VB provides efficient current switching capabilities, which helps to improve the efficiency and response speed of motor control.

2. **Reverse power conversion**:
In **DC-DC converter** or **AC-DC converter**, SP8K70-VB can be used as a switching element for current reverse conversion. Due to its bipolar configuration and low **RDS(ON)**, it can effectively perform power conversion and reduce the loss generated during the conversion process. It is suitable for power systems that require bipolar current switching.

3. **Battery Management System (BMS)**:
In the battery management system, SP8K70-VB can be used for **battery charge and discharge control** and **battery protection**. Its dual N+P channel structure allows precise control during battery charging and discharging, and is particularly suitable for battery management in **renewable energy systems** or **electric vehicles**. Low on-resistance and efficient switching performance can reduce the loss of the battery pack and extend battery life.

4. **Inverter**:
In **solar inverter** or **wind inverter**, SP8K70-VB, as a **dual N+P channel** MOSFET, can efficiently process and convert current, thereby improving the efficiency of the inverter. Its stable performance and low power loss make it an ideal choice for high-efficiency power supply systems.

5. **Power amplifier**:
In the design of **RF power amplifier** or **high frequency amplifier**, SP8K70-VB can be used for **switching control** of current. Due to its low on-resistance and high current handling capability, this MOSFET can effectively reduce power loss and improve the transmission efficiency of the system, and is widely used in **wireless communication** and **radar systems**.

6. **Load switch**:
SP8K70-VB is suitable for **load switch** applications, especially in **power control** and **power distribution** systems. Due to its efficient switching performance, it can reduce power loss when switching and supports higher current carrying capacity, which is suitable for **power distribution system** or **battery-powered equipment** current control.

7. **Automotive electronics applications**:
SP8K70-VB is also suitable for **electric drive control systems** in **automotive electronics**. It can efficiently regulate the flow of current and reduce power loss, especially in the drive system of **electric vehicles** or **battery management system**, ensuring stable and reliable current switching, thereby improving the overall energy efficiency of the vehicle.

* 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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