T9SV1K15-12 Overview
The T9SV1K15-12 is a high-performance semiconductor device designed for robust industrial applications. It features a stable operating voltage of 12 V and supports a maximum current rating of 15 A, ensuring reliable power delivery in demanding environments. With a compact form factor and optimized thermal characteristics, this device is suitable for integration into power management and control systems. Its precise electrical parameters and durable package make it an ideal choice for engineers focused on efficiency and long-term reliability. For detailed product support and procurement, visit Fabricant de circuits intégrés.
T9SV1K15-12 Technical Specifications
Paramètres | Spécifications |
---|---|
Tension de fonctionnement | 12 V |
Maximum Continuous Current | 15 A |
Dissipation de puissance | Up to 180 W |
Plage de température de fonctionnement | De -40°C à +125°C |
Type d'emballage | TO-220 |
Voltage Drop (VCE(sat)) | 1,2 V (typique) |
Gain Largeur de bande Produit | 60 MHz |
Rise Time | 25 ns |
T9SV1K15-12 Key Features
- High Current Handling: Supports continuous currents up to 15 A, enabling efficient drive of power loads without thermal overload.
- Stable 12 V Operation: Optimized for 12 V systems common in industrial and automotive electronics, ensuring compatibility and ease of integration.
- Thermally Efficient TO-220 Package: Facilitates effective heat dissipation, enhancing reliability and extending device lifespan in high-temperature environments.
- Vitesse de commutation rapide : Rise time of 25 ns reduces switching losses, improving overall system efficiency in power conversion applications.
T9SV1K15-12 Advantages vs Typical Alternatives
This device offers superior current capacity and thermal management compared to standard transistors in similar voltage classes. Its low voltage drop and fast switching characteristics reduce power loss, enhancing energy efficiency. The robust TO-220 package ensures better heat dissipation and mechanical durability, making it a reliable choice for industrial applications where accuracy and long-term stability are critical.
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Applications typiques
- Industrial motor control systems requiring efficient power switching and stable 12 V operation in harsh environmental conditions.
- Power supply regulation circuits where reliable current handling and low voltage drop improve overall device performance.
- Automotive electronic modules that benefit from robust thermal characteristics and fast switching capabilities.
- General-purpose amplification stages in industrial automation requiring durable and efficient semiconductor components.
T9SV1K15-12 Brand Info
The T9SV1K15-12 is manufactured by a leading semiconductor company known for delivering high-quality power devices optimized for industrial and automotive sectors. This product exemplifies the brand??s commitment to precision engineering, durability, and performance, offering engineers and sourcing specialists a reliable component backed by comprehensive technical support. Its design caters specifically to demanding applications requiring consistent power delivery and thermal stability.
FAQ
What is the maximum current the device can safely handle?
The device is rated for a maximum continuous current of 15 A, making it suitable for applications that demand moderate to high power without risking thermal or electrical stress.
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What packaging does this semiconductor utilize and why is it important?
It comes in a TO-220 package, which is widely recognized for its excellent heat dissipation capabilities and mechanical robustness. This packaging supports effective thermal management crucial for maintaining device reliability in high-power applications.
Can this device operate in extreme temperature environments?
Yes, it supports an operating temperature range from -40??C to +125??C, ensuring functionality and stability across a wide range of industrial and automotive environmental conditions.
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How does the voltage drop affect overall system efficiency?
The typical voltage drop of 1.2 V reduces power loss during conduction, which improves energy efficiency and minimizes heat generation. This characteristic is vital for maintaining system performance and reliability.