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IPT004N03L
+BOMMOSFETs TRENCH <= 40V
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제조업체인피니티 테크놀로지
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제조업체 부품 #IPT004N03L
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데이터시트 IPT004N03L DataSheet
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재고16292
365 1일 품질 보증
7*24 영업 시간 서비스 보증
90-판매 후 1일 보증
정품 보증
사양
| 속성 | 가치 |
| Packaging | MouseReel |
| Standard Pack Qty | 2000 |
개요
Description
To effectively understand what IPT004N03L involves, you would typically look at the course syllabus, which would outline the main topics covered, the learning objectives, any prerequisites required, and the structure of the course (such as lectures, labs, or seminars). The introduction to the course would likely provide an overview of these elements, setting the stage for what students can expect to learn and how it fits into their broader educational program.
For a detailed introduction, please consult the academic institution offering this course or its official course catalog.
Equivalent
1. NXP's PMV55EN
2. Vishay's SI4431BDY
3. ON Semiconductor's NTD4906N
4. Infineon's BSC050NE2LS
Always review the datasheets to ensure compatibility with your specific application needs, as variations in parameters can affect circuit performance.
Features
1. Low On-Resistance: The device typically exhibits a low on-state resistance, which minimizes power loss and improves efficiency in electronic circuits.
2. High-Speed Switching: The IPT004N03L is capable of fast switching, making it suitable for applications where rapid transitions are required.
3. Voltage Rating: It typically supports a drain-source voltage (V_DS) suitable for medium to low voltage applications, often around 30V.
4. Current Handling: The MOSFET can handle significant current levels, which is beneficial for power-intensive applications.
5. Thermal Performance: Designed with good thermal characteristics to manage heat dissipation effectively.
6. Compact Package: The device often comes in a small, surface-mount package like TO-220 or TO-252, facilitating integration into compact circuit designs.
These features make the IPT004N03L a versatile choice for applications in power supply circuits, DC-DC converters, and motor drives.
Pinout
1. Gate (G): This pin is used to control the MOSFET. By applying a voltage to the gate, you can turn the MOSFET on or off. It acts as a switch that controls the flow of current between the drain and source.
2. Drain (D): This pin is the output through which the current flows out of the MOSFET when it is in the 'on' state. It is connected to the load in most applications.
3. Source (S): This pin is where the current enters the MOSFET. In many configurations, it is connected to the ground or a negative voltage relative to the load.
These pins are essential for the operation of the MOSFET in switching applications, where it is used to control power delivery.
Manufacturer
Application
1. Power Supplies: Used in switch-mode power supplies (SMPS) for efficient voltage regulation.
2. DC-DC Converters: Utilized in converting DC energy from one voltage level to another.
3. Motor Drives: Employed in controlling the speed and torque of electric motors.
4. Battery Management: Helps in managing charging and discharging processes in battery-powered devices.
5. Inverters: Used in converting DC to AC power, especially in renewable energy systems.
6. Load Switches: Acts as a switch in electronic devices to manage power distribution.
These applications benefit from the MOSFET's high efficiency and fast switching capabilities.