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IRFL014TRPBF
+BOMMOSFET N-CH 60V 2.7A SOT223
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Nhà sản xuấtSản phẩm Vishay Siliconix
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Ông. Phần #IRFL014TRPBF
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Bảng dữ liệu IRFL014TRPBF DataSheet
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Supplier | Vishay Siliconix |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| FET Type | N-Channel |
| Technology | MOSFET (Metal Oxide) |
| Drain to Source Voltage (Vdss) | 60 V |
| Current - Continuous Drain(Id) @ 25°C | 2.7A (Tc) |
| Drive Voltage(Max Rds On Min Rds On) | 10V |
| Rds On(Max) @ Id Vgs | 200mOhm @ 1.6A, 10V |
| Vgs(th)(Max) @ Id | 4V @ 250µA |
| Gate Charge(Qg)(Max) @ Vgs | 11 nC @ 10 V |
| Vgs(Max) | ±20V |
| Input Capacitance(Ciss)(Max) @ Vds | 300 pF @ 25 V |
| Power Dissipation (Max) | 2W (Ta), 3.1W (Tc) |
| Operating Temperature | -55°C ~ 150°C (TJ) |
| Mounting Type | Surface Mount |
| Supplier Device Package | SOT-223 |
Tổng quan
Description
Key features of the IRFL014TRPBF include:
1. Low On-Resistance: This minimizes power loss during operation, enhancing efficiency.
2. Fast Switching Speed: Useful in applications requiring quick transitions, thereby reducing energy loss in switching.
3. Surface Mount Design: The SMD packaging allows for compact circuit designs and is convenient for automated assembly.
4. Thermal Performance: Optimized for effective heat dissipation, which is crucial for reliability and performance.
Applications of this MOSFET include DC-DC converters, motor drives, and power management systems, where its efficiency and speed provide significant advantages. Its robust characteristics ensure reliability and performance in demanding environments.
Equivalent
1. 2N7002 - N-channel MOSFET widely used as a generic replacement.
2. BS170 - Another commonly used N-channel MOSFET.
3. BSS138 - A small-signal N-channel MOSFET.
4. 2N7000 - Similar characteristics, used in low-power applications.
Ensure to compare the specific electrical characteristics like voltage, current, and package to match your application requirements.
Features
1. Voltage and Current Ratings: It is typically rated for high voltage applications with a drain-to-source voltage (V_ds) of 55V and a continuous drain current (I_d) of 17A.
2. On-Resistance: The MOSFET has a low on-resistance (R_ds(on)) of around 0.012 ohms, which minimizes power loss and increases efficiency.
3. Gate Charge: It features a low total gate charge (Q_g), facilitating fast switching speeds, which is advantageous in high-frequency applications.
4. Package: The IRFL014TRPBF is usually available in a surface-mount package like the D-Pak, which offers reliability and ease of integration into PCB designs.
5. Thermal Performance: It is designed to handle thermal stress efficiently, with an operating junction temperature range that provides robustness under different working conditions.
6. Applications: Commonly used in applications such as DC-DC converters, motor drives, and other power management systems.
These features make it suitable for a range of high-efficiency power conversion and management applications.
Pinout
1. Gate (G): This pin is used to control the MOSFET. By applying a voltage to the gate, the device is turned on or off.
2. Drain (D): This is the pin through which the controlled current flows from the device to the load.
3. Source (S): This pin is the origin of the current flowing through the MOSFET. The current enters the device via this pin.
4. Tab or Substrate: This is often connected to the drain internally and serves as both a thermal and electrical connection.
The IRFL014TRPBF is used in applications requiring efficient switching, such as power management and motor control.
Manufacturer
Application
1. Power Supplies: Utilized in power conversion and regulation circuits due to its efficiency in handling high currents.
2. Motor Drives: Employed in controlling motors in consumer and industrial applications.
3. Lighting Systems: Used in LED drivers and other lighting control circuits.
4. DC-DC Converters: Suitable for use in DC-DC converter applications for efficient voltage regulation.
5. Battery Management: Used in battery charging and discharging circuits to improve efficiency and reliability.