IKB40N65EF5ATMA1 Overview
The IKB40N65EF5ATMA1 is a high-performance power MOSFET engineered for demanding industrial and commercial applications. Designed to deliver robust efficiency and reliable switching, this device is optimal for high-voltage environments requiring consistent power management. With advanced silicon technology and proven packaging, it supports enhanced thermal performance and reduced conduction losses. This part is well-suited to engineers seeking optimal power density and longevity in their designs. Discover more about this component at IC Manufacturer.
IKB40N65EF5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 650 V |
| Continuous Drain Current (ID) | 40 A |
| RDS(on) (Max) | 0.060 ?? |
| Gate Charge (Qg) | Typical value supported |
| Package / Case | TO-247-3 |
| Mounting Type | Through Hole |
| Operating Temperature Range | -55??C to 150??C |
IKB40N65EF5ATMA1 Key Features
- High voltage capability up to 650 V, enabling reliable operation in industrial power conversion and high-voltage switching environments.
- Continuous drain current of 40 A, supporting applications that demand substantial current handling and robust performance under load.
- Low RDS(on) value reduces conduction losses, resulting in improved energy efficiency and cooler operation in dense system layouts.
- TO-247-3 package provides proven mechanical stability and effective thermal management for superior long-term reliability.
IKB40N65EF5ATMA1 Advantages vs Typical Alternatives
This MOSFET offers a competitive edge with its combination of high voltage tolerance and substantial current capability, making it a preferred solution in applications where efficient power handling, robust reliability, and thermal performance are critical. Its low RDS(on) translates to minimized losses compared to conventional alternatives, supporting more compact and efficient designs with extended service life.
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Typical Applications
- Switch-mode power supplies (SMPS): Ideal for primary-side switching in high-voltage power conversion circuits, enhancing efficiency and reliability in industrial power supplies.
- Inverters and motor drives: Suitable for use in motor control units and industrial inverters, supporting fast switching and high current loads.
- Uninterruptible power supplies (UPS): Ensures reliable switching performance and efficient energy conversion in backup power systems.
- Power factor correction (PFC) circuits: Optimizes conduction and switching in PFC stages for improved power quality in commercial and industrial equipment.
IKB40N65EF5ATMA1 Brand Info
The IKB40N65EF5ATMA1 is produced by a trusted industry leader in power semiconductor innovation. This device is engineered to meet stringent quality and performance requirements, making it a reliable choice for power electronics designers. With a reputation for consistent product quality and advanced manufacturing processes, this MOSFET embodies the brand??s commitment to supporting high-performance and energy-efficient solutions in today’s demanding applications.
FAQ
What is the maximum drain-source voltage rating for this MOSFET?
The maximum drain-source voltage rating supported by this device is 650 V, making it suitable for high-voltage switching and power conversion tasks in industrial and commercial systems.
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What is the typical package type, and why is it important for thermal management?
This part is offered in a TO-247-3 package, which is widely used for its robust mechanical design and excellent ability to dissipate heat. This supports reliable operation even under high current or elevated temperature conditions.
Can this MOSFET be used in high-current applications?
Yes, with a continuous drain current rating of 40 A, the device is well-suited to applications that require substantial current handling, such as inverters, motor drives, and power supply stages.
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What are the main efficiency benefits of using this MOSFET?
The low RDS(on) ensures reduced conduction losses, resulting in higher efficiency and lower heat generation. This is particularly advantageous for energy-conscious designs and compact system layouts.
Is this device suitable for through-hole mounting in industrial designs?
Yes, it is designed for through-hole mounting, which provides secure mechanical attachment and simplified thermal management, making it a practical choice for industrial and commercial power electronics applications.






