Product parameter:
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds2.5 |
Rds4.5 |
Rds10 |
Technology |
| TO220 |
Single-N |
500V |
|
3.1V |
13A |
|
|
660mΩ |
Plannar |
| VB Package |
Configuration |
VCE |
VGE |
VGEth(V) |
VCEsat15V |
ICE |
Technology |
| TO220 |
Single-N |
|
|
|
|
|
Plannar |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds18 |
Technology |
| TO220 |
Single-N |
500V |
|
3.1V |
13A |
|
Plannar |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds6 |
Technology |
| TO220 |
Single-N |
500V |
|
3.1V |
13A |
|
Plannar |
| VB Package |
Polarity |
Vz / VR |
Pd |
VF |
IF |
IR |
Cd |
Type |
| TO220 |
Single-N |
|
|
|
|
|
|
|
Detailed product parameter description
- **VDS (maximum drain-source voltage)**: 500V
SWP730-VB supports a maximum drain-source voltage of 500V, making it suitable for medium and high voltage applications such as power supplies, inverters, etc.
- **VGS (gate-source voltage)**: ±30V
The MOSFET supports a maximum gate-source voltage of ±30V, which is compatible with a variety of gate drive circuits and can withstand large drive signals.
- **Vth (threshold voltage)**: 3.1V
With a lower threshold voltage (3.1V), it can quickly turn on at a lower gate voltage, which helps to improve switching efficiency.
- **RDS(ON) (On-resistance)**: 660mΩ (@VGS=10V)
At VGS of 10V, the SWP730-VB has a low on-resistance, which helps reduce conduction losses, thereby improving the overall efficiency and performance of the circuit.
- **ID (Maximum drain current)**: 13A
The MOSFET can withstand a drain current of 13A and is suitable for use in higher power applications, providing high-efficiency power conversion and current control.
- **Package type**: TO220
The TO220 package provides excellent heat dissipation performance and is suitable for medium and high power applications. It can operate at higher loads and maintain a stable temperature.
- **Technology**: Plannar
Manufactured using planar technology, this technology gives the MOSFET good switching characteristics and low conduction losses, making it suitable for high-frequency switching power supplies and other applications requiring low losses.
Domain and module applications:
Applicable fields and modules
With its good switching performance and low on-resistance, SWP730-VB is suitable for various medium and high voltage power management and power control applications. The following are some of the main application scenarios:
1. **Switching Power Supply (SMPS) and DC-DC Converter**:
With low on-resistance and high current carrying capacity, SWP730-VB is suitable for efficient switching power supply design, especially in buck, boost and reverse converter circuits. It can reduce power loss in the power conversion process and improve overall efficiency. It is widely used in high-efficiency power modules and power supply systems.
2. **Inverter and Solar Power System**:
In inverters (such as DC-AC inverters) and solar power systems, SWP730-VB can work stably within a voltage range of 500V and is suitable for high voltage power conversion. Its low RDS(ON) characteristics help reduce the heat generated during the inverter process, improve the efficiency and stability of the inverter, and improve energy conversion efficiency.
3. **Power Tools and Appliances**:
The high current carrying capacity (13A) of the SWP730-VB makes it an ideal choice for power modules in power tools and home appliances. In these applications, MOSFETs are used in battery management, motor control, and load switching to provide stable current control and efficient power conversion.
4. **Battery Management System (BMS)**:
The SWP730-VB is suitable for battery management systems, especially in the battery charging and discharging process where efficient power control and accurate current monitoring are required. Its low on-resistance can reduce the power loss generated during the battery charging and discharging process and improve the battery charging efficiency.
5. **Consumer Electronics**:
This MOSFET is widely used in power management of consumer electronics such as TVs, stereos, and laptops. Its low RDS(ON) performance helps improve the efficiency of power modules, extend the life of equipment, and reduce energy loss.
6. **LED driver power supply**:
SWP730-VB is suitable for power driver circuits of LED lighting, especially in applications that require high efficiency and low heat. By optimizing the power conversion process and reducing conduction losses, this MOSFET can help the LED driver power supply maintain high efficiency and low operating temperature, thereby improving the overall performance and reliability of the LED lighting system.
7. **Automotive electronics**:
In automotive power systems, SWP730-VB can be used for battery management, on-board chargers, and power conversion systems. Its high power density and high efficiency characteristics make it widely used in automotive electrical systems, especially in battery management systems for electric and hybrid vehicles.
* 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
Technical support:
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