Product parameter:
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds2.5 |
Rds4.5 |
Rds10 |
Technology |
| TO220 |
Single-N |
250V |
|
3.5V |
14A |
|
|
190mΩ |
Trench |
| VB Package |
Configuration |
VCE |
VGE |
VGEth(V) |
VCEsat15V |
ICE |
Technology |
| TO220 |
Single-N |
|
|
|
|
|
Trench |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds18 |
Technology |
| TO220 |
Single-N |
250V |
|
3.5V |
14A |
|
Trench |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds6 |
Technology |
| TO220 |
Single-N |
250V |
|
3.5V |
14A |
|
Trench |
| VB Package |
Polarity |
Vz / VR |
Pd |
VF |
IF |
IR |
Cd |
Type |
| TO220 |
Single-N |
|
|
|
|
|
|
|
**SUP17N25-165-VB Detailed parameter description**
- **Package type**: TO220
- **Configuration**: Single N-channel
- **Maximum drain-source voltage (VDS)**: 250V
- **Maximum gate-source voltage (VGS)**: ±20V
- **Throughput (Vth)**: 3.5V
- **On-resistance (RDS(ON))**:
- **190mΩ @ VGS = 10V**
- **Maximum drain current (ID)**: 14A
- **Technology type**: Trench technology
- **Maximum power loss**: Support medium power applications
- **Switching speed**: Suitable for medium and high frequency switching circuits
- **Thermal resistance (RthJC)**: Low thermal resistance design, supporting higher power density
- **Operating temperature range**: -55°C to +150°C
- **Application Areas**: Suitable for **power management systems, inverters, automotive electronics** and other medium power applications
Domain and module applications:
**Application Fields and Module Examples**
1. **Power Management Systems**
**SUP17N25-165-VB** is an ideal mid-power MOSFET for power management systems such as **DC-DC converters** and **AC-DC adapters**. Due to its high **250V VDS** and **low RDS(ON)**, it can efficiently transmit power and reduce power losses, and is particularly suitable for **high-efficiency power modules** and **uninterruptible power supply (UPS)** systems. The **low on-resistance** of this MOSFET helps reduce heat generation during power conversion and improve system stability and efficiency.
2. **Inverters**
In renewable energy systems such as **solar inverters** and **wind inverters**, **SUP17N25-165-VB** can be used for power conversion and control. Due to its high voltage support (250V) and low **RDS(ON)**, it can work efficiently in **DC-AC inverter** systems, provide stable current transmission and improve the overall efficiency of the inverter. This MOSFET can reduce losses during the switching process, ensuring high efficiency during the power conversion process.
3. **Motor Control**
**SUP17N25-165-VB** is suitable for **medium power motor drive systems**, especially for **servo motor drive** and **stepper motor control**. It can withstand higher voltages and currents and provide reliable switching performance in motor control. Its low on-resistance (RDS(ON)) makes the current transmission more efficient, reduces the power loss caused by resistance, and improves the operating efficiency of the motor.
4. **Automotive Electronics**
In the power management systems of **electric vehicles** and **hybrid electric vehicles (HEV)**, **SUP17N25-165-VB** is widely used in battery management and **DC-DC converters**. Its high voltage capability and low on-resistance make it ideal for **car charging systems** and **battery protection circuits**. This MOSFET can effectively improve **the charging efficiency of the on-board battery** and **reduce the heat accumulation during the charging process**, improving the stability and safety of the system.
5. **High Efficiency Power Systems**
Due to its low **on-resistance** and **high drain-source voltage (VDS), **SUP17N25-165-VB** is also suitable for **high-efficiency power systems**, such as **industrial power supplies** and **high-power laser drive systems**. In these systems, the MOSFET can stably handle higher currents, providing low-loss, efficient power conversion, helping to reduce energy waste and improve overall power system efficiency.
6. **Power Distribution & Transmission**
**SUP17N25-165-VB** can also be used in **power transmission and distribution systems**, especially in **high-power load** situations, such as **power supply for high-power electrical equipment** and **industrial power systems**. Its **high voltage and high current carrying capacity** make it very suitable for **power switches and power control systems**, helping to stabilize power grid operation and reduce losses in power transmission.
* 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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