Tamura_2DU180206MR04
Tamura_2DU180206MR04
original

Tamura
2DU180206MR04

730-2DU180206MR04
(ROHM: BSM600D12P3G001)

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ISO9001
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ISO45001
ISO14001
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Tech Specifications

Operating Temperature
-40°C ~ 85°C (TA)
Input Type
-
Driven Configuration
Half-Bridge
Rise / Fall Time (Typ)
500ns, 500ns
ECCN
EAR99
Number of Drivers
2
Gate Type
IGBT, SiC MOSFET
Mounting Type
Chassis Mount
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2DU180206MR04 Description

2DU180206MR04 Description

The 2DU180206MR04 is a gate driver IC designed by Tamura, specifically tailored for driving IGBT and SiC MOSFET devices. This module features a chassis mount design, making it suitable for applications requiring robust mechanical stability and thermal management. The device operates with a supply voltage of 5V, ensuring compatibility with a wide range of power systems. With a rise and fall time of 500ns, it provides efficient switching capabilities, crucial for high-frequency applications. The 2DU180206MR04 is housed in a bulk package, ensuring durability and ease of integration into various electronic systems. Although the product is marked as obsolete, its technical attributes and performance benefits make it a reliable choice for specific applications where its unique features are advantageous.

2DU180206MR04 Features

  • Independent Channel Type: The 2DU180206MR04 features independent channels, allowing for precise control over each gate driver. This design enhances flexibility and customization, making it suitable for complex power electronics systems.
  • Rise and Fall Time: With a typical rise and fall time of 500ns, the gate driver ensures rapid switching, minimizing switching losses and improving overall system efficiency. This is particularly beneficial in high-frequency applications where fast switching is critical.
  • Dual Drivers: The module includes two drivers, capable of handling IGBT and SiC MOSFET gates. This dual functionality provides versatility, enabling the device to be used with different types of power semiconductors.
  • Chassis Mount: The chassis mount design offers enhanced mechanical stability and thermal performance. This is ideal for applications where the device is subjected to mechanical stress or requires efficient heat dissipation.
  • ROHS3 Compliant: The 2DU180206MR04 meets ROHS3 compliance, ensuring it adheres to environmental standards and regulations. This makes it suitable for use in environmentally conscious applications and markets.
  • Bulk Packaging: The bulk packaging ensures durability and ease of integration, making it suitable for industrial and commercial applications where robustness is a key requirement.

2DU180206MR04 Applications

The 2DU180206MR04 is ideal for applications requiring high-frequency switching and robust mechanical stability. Some specific use cases include:

  • Power Conversion Systems: In power conversion systems, such as inverters and converters, the 2DU180206MR04 can efficiently drive IGBT and SiC MOSFET gates, ensuring high efficiency and reliability.
  • Renewable Energy Applications: For renewable energy systems, such as solar inverters and wind turbines, the gate driver's fast switching capabilities and chassis mount design provide the necessary performance and durability.
  • Industrial Motor Drives: In industrial motor drives, the device's ability to handle high-frequency switching and its robust mechanical design make it suitable for demanding industrial environments.
  • Electric Vehicle Systems: The 2DU180206MR04 can be used in electric vehicle systems, where high efficiency and fast switching are crucial for optimizing power delivery and extending battery life.

Conclusion of 2DU180206MR04

The 2DU180206MR04 gate driver IC from Tamura offers a unique combination of technical specifications and performance benefits that make it a reliable choice for various high-frequency and high-reliability applications. Despite being marked as obsolete, its fast rise and fall times, dual driver functionality, and chassis mount design provide distinct advantages over similar models. The device's ROHS3 compliance and bulk packaging further enhance its suitability for environmentally conscious and robust applications. For applications requiring efficient power switching and mechanical stability, the 2DU180206MR04 remains a viable and advantageous option.

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