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STW45N65M5
+NomenclatureMOSFET N-CH 650V 35A TO247
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FabricantSemi - conducteurs optiques
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Pièce fabricant #STW45N65M5
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Fiche technique STW45N65M5 DataSheet
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En stock13457
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Spécifications
| Attribut | Valeur |
| Supplier | STMicroelectronics |
| Package | Tube |
| Series | MDmesh™ V |
| ProductStatus | Active |
| FETType | N-Channel |
| Technology | MOSFET (Metal Oxide) |
| DraintoSourceVoltage(Vdss) | 650 V |
| Current-ContinuousDrain(Id)@25°C | 35A (Tc) |
| DriveVoltage(MaxRdsOnMinRdsOn) | 10V |
| RdsOn(Max)@IdVgs | 78mOhm @ 19.5A, 10V |
| Vgs(th)(Max)@Id | 5V @ 250µA |
| GateCharge(Qg)(Max)@Vgs | 91 nC @ 10 V |
| Vgs(Max) | ±20V |
| InputCapacitance(Ciss)(Max)@Vds | 3375 pF @ 100 V |
| PowerDissipation(Max) | 210W (Tc) |
| OperatingTemperature | 150°C (TJ) |
| MountingType | Through Hole |
| SupplierDevicePackage | TO-247-3 |
Présentation
Description
Key specifications include a drain-source voltage (V_ds) of 650V and a continuous drain current (I_d) of 45A. It features a low on-resistance (R_ds(on)) which enhances energy efficiency and reduces heat generation. The MOSFET is built using advanced technology that allows for fast switching and improved avalanche performance.
The STW45N65M5 comes in a TO-247 package, which helps in efficient heat dissipation. Its robust design ensures reliability under demanding conditions, offering a balance between performance and durability. This makes it a preferred choice for designers looking for components that can handle high voltages and currents effectively in their electronic designs.
Equivalent
1. Infineon's IPW65R045C7
2. ON Semiconductor's NGTB45N65FLWG
3. Vishay's SiHG45N65E
4. Fairchild's FDP65N06
These alternatives offer similar voltage and current ratings, making them suitable substitutes in similar applications. Always verify pin configuration and specifications in the datasheets before substituting.
Features
1. N-Channel MOSFET: Designed for high-efficiency power switching applications.
2. 650V Drain-Source Voltage (V_DS): Suitable for high-voltage applications.
3. 45A Continuous Drain Current (I_D): Capable of handling substantial current loads.
4. Low On-Resistance (R_DS(on)): Ensures reduced power losses and improved efficiency.
5. Fast Switching: Optimized for high-speed operation to support efficient power conversion.
6. High dv/dt Capability: Improved reliability under rapid voltage changes.
7. Low Gate Charge (Q_g): Reduces the drive power requirements and enhances switching performance.
8. Soft Recovery Body Diode: Enhances performance in bridge configurations and reduces electromagnetic interference (EMI).
9. Applications: Primarily used in applications like switch-mode power supplies, motor control, and power factor correction circuits.
These features make the STW45N65M5 suitable for demanding power applications requiring high efficiency and reliability.
Pinout
1. Pin Count: The STW45N65M5 is typically housed in a TO-247 package, which generally includes 3 pins.
2. Pin Functions:
- Pin 1 (Gate): This pin is used to control the MOSFET. Applying a voltage to this pin allows current to flow between the drain and source.
- Pin 2 (Drain): This pin is connected to the high-voltage side of the circuit. When the MOSFET is turned on, current flows from the drain to the source.
- Pin 3 (Source): This pin is connected to the ground or the return path of the circuit.
These pins work together to switch and control high-power circuits efficiently. The STW45N65M5 is known for its low on-resistance and high-speed switching capabilities.
Manufacturer
STMicroelectronics is known for its innovation and technological advancements in the semiconductor sector, focusing on delivering intelligent and energy-efficient products and solutions. The company operates worldwide, with a significant presence in Europe, Asia, and the Americas, and it is considered one of the leading players in the global semiconductor industry.
Application
1. Switching Power Supplies: Utilized in power conversion systems for improved efficiency and performance.
2. Motor Control: Employed in motor drive applications for industrial and consumer electronics.
3. Inverters: Applied in solar inverters and uninterruptible power supplies (UPS) to manage high power levels.
4. Lighting Systems: Used in high-intensity discharge (HID) and LED lighting for energy-efficient solutions.
5. Automotive Systems: Integrated in electric and hybrid vehicle powertrains for better energy management.
These applications leverage the MOSFET's high-speed switching and low on-resistance characteristics.