DRDPB16W-7 Overview
The DRDPB16W-7 is a high-performance semiconductor device designed for precision industrial applications requiring reliable power management and control. Featuring robust technical specifications, this component offers efficient operation within a wide voltage range and enhanced thermal stability. Its compact design and standardized pin configuration simplify integration into complex electronic systems. As a product from IC Manufacturer, it supports engineers and sourcing specialists in optimizing system performance while maintaining cost-effectiveness and reliability in various industrial environments.
DRDPB16W-7 Technical Specifications
Parameter | Specification |
---|---|
Operating Voltage Range | 7 V to 16 V |
Maximum Power Dissipation | 2.5 W |
Operating Temperature Range | -40??C to +85??C |
Package Type | TO-220 |
Thermal Resistance (Junction to Case) | 4.5 ??C/W |
Collector-Emitter Voltage (Vce) | 60 V |
Collector Current (Ic) | 3 A |
Gain Bandwidth Product | 100 MHz |
DRDPB16W-7 Key Features
- Wide voltage operation: Supports 7 V to 16 V input, enabling flexible use across various industrial power systems.
- High current capacity: Handles up to 3 A collector current, suitable for demanding load conditions.
- Efficient heat dissipation: Low thermal resistance ensures stable operation under high power dissipation.
- Standard TO-220 package: Facilitates easy mounting and integration with conventional industrial hardware setups.
DRDPB16W-7 Advantages vs Typical Alternatives
This component offers superior thermal management and a robust current rating compared to typical alternatives, ensuring higher reliability in industrial applications. Its broad voltage range and compact package provide enhanced flexibility and ease of integration. These factors translate into improved system efficiency and stability, reducing the need for additional cooling or complex circuit redesigns.
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Typical Applications
- Industrial power supply regulation: Ideal for maintaining stable voltage and current in factory automation and control systems requiring consistent performance under variable loads.
- Motor driver circuits: Suitable for controlling DC motors in conveyor belts and robotic arms with precise current handling.
- Switching regulators: Supports efficient power conversion in DC/DC converters for embedded industrial electronics.
- Amplifier output stages: Enables reliable signal amplification in industrial measurement and control instrumentation.
DRDPB16W-7 Brand Info
The DRDPB16W-7 is part of a trusted product line by a leading semiconductor manufacturer known for delivering reliable and high-quality power management solutions. This device embodies the brand??s commitment to advanced industrial electronics, combining proven design principles with robust material selection to meet stringent operational demands. Its widespread adoption underscores the brand??s dedication to supporting engineers with durable and precise components optimized for harsh environments.
FAQ
What is the maximum collector current supported by the device?
The device supports a maximum collector current of 3 A, making it suitable for applications requiring moderate to high current handling capabilities within industrial systems.
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Which package type does this device use, and how does it affect integration?
It uses a TO-220 package, which is a widely adopted form factor that simplifies mounting and heat dissipation. This standard package facilitates easy integration into existing industrial hardware without requiring custom mounting solutions.
What is the typical operating temperature range for this component?
The operating temperature range spans from -40??C to +85??C, allowing reliable performance in a wide variety of industrial environments, including those exposed to temperature extremes.
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How does the thermal resistance value impact the device??s performance?
A thermal resistance of 4.5 ??C/W (junction to case) indicates efficient heat transfer from the semiconductor junction to the device case, helping maintain stable operation and preventing overheating in high-power applications.
Is this device suitable for use in power supply regulation applications?
Yes