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IPG20N04S4-09
+物料清單MOSFETs N-Ch 40V 20A TDSON-8 OptiMOS-T2
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製造商英飛淩科技
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製造商部分 #IPG20N04S4-09
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規格
| 屬性 | 價值 |
| Packaging | MouseReel |
| Standard Pack Qty | 5000 |
概述
Description
Key features of the IPG20N04S4-09 include a low on-resistance, which helps minimize power loss and improve efficiency, and a high-speed switching capability, which is beneficial for switching power supplies and motor control applications. Additionally, it often comes encapsulated in a TO-252 package, which provides good thermal performance and allows for surface mounting on PCBs.
Typical applications for the IPG20N04S4-09 include DC-DC converters, power management in portable devices, and automotive electronics. Its robust design and reliable performance make it a popular choice in both consumer and industrial electronics.
Equivalent
1. IRF3205 from Vishay/Siliconix
2. NTD4906N from ON Semiconductor
3. FDP8440 from Fairchild Semiconductor (now ON Semiconductor)
4. STP75NF75 from STMicroelectronics
These equivalents have similar specification ranges, such as voltage and current ratings. However, it's essential to review datasheets to ensure compatibility with your specific application requirements.
Features
1. Low On-Resistance: Offers low R_DS(on) to ensure minimal power loss and efficient operation.
2. Voltage Rating: Designed for a drain-source voltage (V_DS) of up to 40V, suitable for low to medium voltage applications.
3. Current Handling: Can handle a continuous drain current suitable for a range of power loads.
4. Fast Switching: Supports high-speed operation, making it ideal for switching applications.
5. Thermal Performance: Comes with good thermal characteristics, often featuring a low thermal resistance package to enhance heat dissipation.
6. Package Type: Typically available in surface-mount packages such as TO-252, which aids in compact board designs.
7. Applications: Commonly used in DC-DC converters, motor control circuits, and power management systems.
These features collectively make the IPG20N04S4-09 a reliable choice for enhancing the efficiency and performance of electronic devices.
Pinout
1. Gate (G): This pin is used to control the MOSFET. By applying a voltage to the gate relative to the source, the MOSFET is turned on or off.
2. Drain (D): This pin is the output of the MOSFET, where the load is connected. Current flows from drain to source when the MOSFET is turned on.
3. Source (S): This pin is connected to the ground or return path in the circuit. It is the reference point for the gate voltage and the entry point for current exiting the device.
Some packages might also include a fourth pin, often connected to the substrate or body of the MOSFET, but in most practical applications, only the three main pins are used for circuit connections.