IPZ40N04S53R1ATMA1 Specifications
Manufacturer: Infineon Technologies
Part Number: IPZ40N04S53R1ATMA1
Device Type: N-Channel MOSFET
Drain-Source Voltage: 40 V
Continuous Drain Current: High current capability
On-Resistance: Ultra-low RDS(on)
Gate Drive: Logic-level compatible
Gate Charge: Low gate charge
Package Type: SuperSO8
Mounting Type: Surface mount
Power Dissipation: Enhanced thermal performance
Switching Speed: Fast switching characteristics
Operating Temperature Range: -55 °C to +150 °C
Key Features
The IPZ40N04S53R1ATMA1 delivers efficient switching with ultra-low conduction losses. Additionally, the logic-level gate enables direct drive from low-voltage controllers. Moreover, the SuperSO8 package improves thermal dissipation for higher current operation. Furthermore, low gate charge supports efficient high-frequency switching.
Applications
DC to DC converters
Load switching circuits
Synchronous rectification stages
Battery powered systems
Industrial motor control
Telecommunications power supplies
Embedded power electronics
High efficiency power stages
Product Overview
The Infineon IPZ40N04S53R1ATMA1 N-Channel MOSFET is designed for high-efficiency power switching in compact surface mount designs. Specifically, it offers a 40 V drain-source rating with ultra-low on-resistance, which reduces conduction losses under load. As a result, overall system efficiency improves while thermal buildup is minimized. Moreover, the logic-level gate allows seamless interfacing with modern microcontrollers and power management ICs. Therefore, design complexity is reduced.
In addition, the low gate charge characteristic supports fast switching transitions. Furthermore, this improves efficiency in high-frequency applications such as synchronous buck converters. Consequently, power density and performance are enhanced. Because of the SuperSO8 package, heat dissipation is improved compared to standard small outline packages. As a result, reliability is maintained in demanding operating conditions.
Overall, this MOSFET combines low losses, fast switching, and robust thermal performance. Therefore, it is a practical choice for modern power electronics requiring dependable and efficient switching devices.
Contact Us
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Email: Sales@Cyndtek.com
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