BR247D-600A2-28V Overview
The BR247D-600A2-28V is a high-performance semiconductor device engineered for demanding industrial and power electronics applications. Designed to operate efficiently at 28 volts, it delivers reliable switching capabilities with robust current handling up to 600 amperes. This device integrates advanced construction techniques to ensure long-term durability and consistent electrical performance under high-stress conditions. Ideal for engineers and sourcing specialists seeking a dependable solution for power conversion, motor drives, or power management circuits, it offers a balance of efficiency, thermal stability, and fault tolerance. For more technical insights and sourcing options, visit IC Manufacturer.
BR247D-600A2-28V Technical Specifications
Parameter | Specification |
---|---|
Nominal Voltage | 28 V |
Maximum Continuous Current | 600 A |
Forward Voltage Drop | Specified in datasheet (typical value) |
Reverse Recovery Time | Defined per device characteristics |
Operating Temperature Range | Industrial standard range |
Package Type | Power module suitable for high-current applications |
Junction-to-Case Thermal Resistance | Specified for efficient heat dissipation |
Maximum Surge Current | Higher than continuous rating for transient handling |
BR247D-600A2-28V Key Features
- High Current Capability: Supports up to 600 A continuous current, enabling use in heavy-duty power electronics requiring substantial current handling.
- Robust Voltage Rating: Operates reliably at 28 V nominal voltage, suitable for common industrial power supply rails.
- Enhanced Thermal Management: Designed with low junction-to-case thermal resistance to improve heat dissipation and extend device longevity under high load.
- Fast Switching Performance: Optimized reverse recovery characteristics reduce switching losses, improving overall system efficiency.
BR247D-600A2-28V Advantages vs Typical Alternatives
This device offers superior current handling and thermal stability compared to typical alternatives in its class. Its optimized switching parameters reduce power loss and increase efficiency, making it an excellent choice for applications demanding reliability and performance. The combination of high surge current tolerance and robust voltage rating provides enhanced protection and operational safety.
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Typical Applications
- High-power DC motor drives requiring efficient current switching and thermal management to ensure reliable operation in harsh industrial environments.
- Power converters in renewable energy systems, where efficient control of high currents and voltages is essential for maximizing output.
- Uninterruptible power supplies (UPS) systems that depend on robust semiconductor devices for continuous power delivery and surge handling.
- Industrial automation equipment that demands durable and reliable power components to maintain system uptime and performance.
BR247D-600A2-28V Brand Info
The BR247D-600A2-28V is brought to market by an established manufacturer known for its commitment to quality and innovation in semiconductor solutions. This product exemplifies their focus on delivering devices that meet rigorous industrial standards, combining advanced design with stringent testing. The brand is recognized for supporting engineers and sourcing professionals with comprehensive technical documentation and reliable supply chain solutions.
FAQ
What is the maximum current rating for this device?
The device can handle a continuous current of up to 600 amperes, making it suitable for heavy-duty power electronics and industrial applications requiring high current throughput.
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At what voltage does this semiconductor operate optimally?
It is designed for nominal operation at 28 volts, which aligns with common industrial power rail voltages, ensuring compatibility and efficient system integration.
How does this device manage thermal dissipation during high load?
It features a low junction-to-case thermal resistance, allowing efficient heat transfer away from the semiconductor junction, which helps maintain stable operation and prevents thermal runaway in demanding conditions.
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Is this device suitable for fast switching applications?
Yes, the device exhibits optimized reverse recovery time characteristics, which reduce switching losses and improve efficiency during rapid switching cycles, beneficial in power converters and motor drives.
What are the common industries or applications that benefit from this type of component?
Industries such as industrial automation, renewable energy, power supply manufacturing, and motor control systems commonly utilize this device due to its robust current handling and reliable performance under demanding conditions.