Product introduction:
1. NCEP85T15-VB Product Introduction
NCEP85T15-VB is a single N-channel power MOSFET in TO220 package, designed for applications requiring high power density and low loss. Its drain-source voltage (V_DS) is 80V, gate-source voltage (V_GS) is ±20V, and turn-on voltage (V_th) is 3V. At V_GS = 10V, the on-resistance (R_DS(ON)) is as low as 3mΩ, ensuring low loss performance in high-current applications. The device has a maximum drain current (I_D) of 195A, which is very suitable for efficient operation under high current loads. NCEP85T15-VB uses Trench technology and excels in switching speed, heat dissipation and efficiency. It is widely used in industrial control, electric vehicles, power conversion and other fields.
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Product parameter:
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds2.5 |
Rds4.5 |
Rds10 |
Technology |
| TO220 |
Single-N |
80V |
|
3V |
195A |
|
|
3mΩ |
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 |
80V |
|
3V |
195A |
|
Trench |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds6 |
Technology |
| TO220 |
Single-N |
80V |
|
3V |
195A |
|
Trench |
| VB Package |
Polarity |
Vz / VR |
Pd |
VF |
IF |
IR |
Cd |
Type |
| TO220 |
Single-N |
|
|
|
|
|
|
|
2. NCEP85T15-VB Detailed Parameter Description
| **Parameter** | **Value** | **Description** |
|------------------------|-------------------------|---------------------------------|
| **Package** | TO220 | Provides good heat dissipation and high reliability|
| **Channel Type** | Single N-channel | For efficient switching operation|
| **Drain-Source Voltage (V_DS)** | 80V | Suitable for medium voltage applications|
| **Gate-Source Voltage (V_GS)** | ±20V | Supports a variety of driving voltage conditions|
| **Turning Voltage (V_th)** | 3V | Fast turn-on, reduced delay|
| **On-resistance (R_DS(ON))** | 3.6mΩ @ V_GS=4.5V | Ensures efficient turn-on|
| **On-resistance (R_DS(ON))** | 3mΩ @ V_GS=10V | Maintaining low losses at high currents|
| **Maximum drain current (I_D)** | 195A | Supporting high current loads|
| **Technology** | Trench | Improving switching speed and thermal performance|
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Domain and module applications:
III. Application fields and module examples
1. **Electric vehicles and battery management systems**
In **electric vehicles**, NCEP85T15-VB is very suitable for motor drives and battery management systems, and can efficiently handle high current loads and extend battery life. At the same time, its low on-resistance reduces power consumption, which helps improve the overall energy efficiency of electric vehicles.
2. **Industrial control and automation**
In **industrial control** systems, this MOSFET can be used for motor control, inverters, and automation equipment to ensure stable operation under high loads. It can provide fast response in high-power scenarios and improve system reliability and efficiency.
3. **Power conversion and inverter**
NCEP85T15-VB performs well in **power conversion modules** (such as DC-DC converters and inverters). Its low conduction loss and fast switching characteristics are very suitable for efficient power management systems and are widely used in communication equipment and data centers.
4. **Renewable energy systems**
The device is also suitable for **solar and wind inverters**, which can improve energy conversion efficiency and reduce system heat generation, meeting the high performance requirements of green energy systems.
5. **Consumer electronics and high-efficiency charging devices**
In **consumer electronics**, such as high-efficiency chargers and smart power adapters, NCEP85T15-VB can reduce energy loss, optimize charging efficiency, and enhance user experience.
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In summary, NCEP85T15-VB is suitable for high-efficiency solutions in multiple industries with its low on-resistance, high current capability and excellent heat dissipation performance, and is an ideal choice in modern power electronics systems.
* 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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