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STD25NF10LA
+Lista de MateriaisMOSFET N-CH 100V 25A DPAK
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FabricanteSTMicroeletrônica
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Peça do Fabricante #STD25NF10LA
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Ficha Técnica STD25NF10LA DataSheet
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Especificações
| Atributo | Valor |
| Supplier | STMicroelectronics |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | STripFET™ II |
| ProductStatus | Active |
| FETType | N-Channel |
| Technology | MOSFET (Metal Oxide) |
| DraintoSourceVoltage(Vdss) | 100 V |
| Current-ContinuousDrain(Id)@25°C | 25A (Tc) |
| DriveVoltage(MaxRdsOnMinRdsOn) | 4.5V, 10V |
| RdsOn(Max)@IdVgs | 35mOhm @ 12.5A, 10V |
| Vgs(th)(Max)@Id | 2.5V @ 250µA |
| GateCharge(Qg)(Max)@Vgs | 52 nC @ 5 V |
| Vgs(Max) | ±16V |
| InputCapacitance(Ciss)(Max)@Vds | 1710 pF @ 25 V |
| PowerDissipation(Max) | 100W (Tc) |
| OperatingTemperature | -55°C ~ 175°C (TJ) |
| MountingType | Surface Mount |
| SupplierDevicePackage | DPAK |
Visão Geral
Description
Key features of the STD25NF10LA include a breakdown voltage of 100V and a continuous drain current capability of up to 25A, making it suitable for moderate power applications. It is commonly used in power conversion circuits, motor drives, and various other applications requiring efficient voltage regulation and control.
Packaged in a DPAK (TO-252) form, the STD25NF10LA is designed for surface mount technology, allowing for compact and reliable circuit configurations. The device's low gate charge and enhanced thermal performance make it a preferred choice in power electronics where space and efficiency are critical. Overall, the STD25NF10LA is valued for its combination of performance, reliability, and cost-effectiveness in power management systems.
Equivalent
1. IRF540N - from International Rectifier
2. FQP30N06L - from Fairchild Semiconductor
3. FDP6030BL - from ON Semiconductor
4. STP55NF06 - from STMicroelectronics
Ensure to verify parameters like voltage, current ratings, threshold voltage, and RDS(on) for compatibility.
Features
1. Voltage and Current Ratings: It can handle a drain-source voltage (V_DS) of up to 100V and a continuous drain current (I_D) of approximately 25A.
2. Low On-Resistance: The MOSFET has a low R_DS(on) value, typically around 0.1 ohms, which helps in reducing power losses and improving efficiency.
3. Fast Switching: Designed for rapid switching applications, it supports high-speed operations, which is essential for efficient power management in various electronics.
4. Package Type: It is available in a DPAK package, which is suitable for surface-mount applications and offers a balance between thermal performance and size.
5. Applications: Commonly used in power management, motor control, converters, and other applications requiring efficient switching.
6. Enhanced Ruggedness: It features a robust design to handle high energy and offers protection against avalanche conditions.
These characteristics make the STD25NF10LA suitable for use in automotive, industrial, and consumer electronics where efficient and reliable power switching is required.
Pinout
1. Gate (G): This is the terminal used to control the MOSFET. It is responsible for switching the device on and off.
2. Drain (D): This terminal is where the load current flows out of the MOSFET when it is in the "on" state. In a DPAK package, the tab is usually also connected to the drain.
3. Source (S): This is the terminal through which the current enters the MOSFET from the load.
The STD25NF10LA is designed for use in standard-level gate drive applications such as switching power supplies, DC-DC converters, and motor control. It provides efficient power handling with low on-resistance and fast switching performance.
Manufacturer
Application
1. Switching Power Supplies: Used in DC-DC converters and AC-DC power supplies.
2. Motor Control: Suitable for driving motors in industrial and automotive applications.
3. Lighting Systems: Used in LED drivers for efficient energy conversion.
4. Telecommunications: Employed in power management circuits for telecom equipment.
5. Battery Management: Integrated into battery protection and charging systems.
6. Inverters: Used in inverters for renewable energy systems, such as solar power.
Its low on-resistance and fast switching capabilities make it ideal for these high-efficiency applications.