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IPD90N06S4-04
+Lista de MateriaisMOSFETs N-Ch 60V 90A DPAK-2 OptiMOS-T2
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FabricanteTecnologias Infineon
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Peça do Fabricante #IPD90N06S4-04
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Ficha Técnica IPD90N06S4-04 DataSheet
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Especificações
| Atributo | Valor |
| Packaging | MouseReel |
| Standard Pack Qty | 2500 |
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Description
Key specifications of the IPD90N06S4-04 include a maximum drain-source voltage (V_DS) of 60V and a continuous drain current (I_D) of up to 90A, allowing it to handle substantial power loads. The MOSFET is built with a trench technology design, enhancing its efficiency and thermal performance. It typically comes in a TO-252 package, which provides efficient heat dissipation and compact size for PCB designs.
The IPD90N06S4-04 is often used in applications such as DC-DC converters, motor drives, and as a switch in power inverters. Its design aims to minimize energy losses, thus optimizing performance in energy-sensitive applications.
Equivalent
1. IRFZ44N from Vishay.
2. FQP30N06L from ON Semiconductor.
3. STP60NF06 from STMicroelectronics.
These equivalents are subject to specific application requirements, so it's important to verify their suitability for your particular use case.
Features
1. N-channel MOSFET: It is an N-channel type, which means it conducts when a positive voltage is applied to the gate relative to the source.
2. Voltage and Current Ratings: Typically supports a maximum drain-source voltage (V_DS) of 60V and a continuous drain current (I_D) of about 90A, making it suitable for high-power applications.
3. Low On-Resistance: Exhibits low R_DS(on), around 4.0 mΩ, which enhances efficiency by reducing power loss during operation.
4. Fast Switching: Designed for fast switching speeds, which is beneficial in high-frequency applications.
5. SMD Package: Available in a surface-mount package, facilitating its use in compact circuit designs.
6. Thermal Performance: Optimized for good thermal performance, often featuring a low thermal resistance.
7. Applications: Commonly used in automotive, industrial, and consumer electronics for power management, motor drives, and DC-DC converters.
This MOSFET is appreciated for its efficiency, reliability, and performance in demanding environments.
Pinout
The functions of the pins are as follows:
1. Gate: This pin controls the flow of current between the drain and source. Applying a voltage to the gate allows current to flow, effectively turning the MOSFET on.
2. Drain: This pin is the output of the MOSFET where the current flows out when the device is on.
3. Source: This pin is the input and is connected to the ground or the lower potential side of the circuit.
4. Tab: The tab is often connected to the drain and is used for heat dissipation as well as an electrical connection.
This MOSFET is typically used in power management applications due to its ability to handle high current and voltage with low on-state resistance.