UMD3N-TPQ2 Overview
The UMD3N-TPQ2 is a high-performance semiconductor device designed for industrial applications requiring reliable power management and signal integrity. This component offers robust electrical characteristics, optimized for efficiency and durability in demanding environments. Engineered to deliver consistent performance, it supports advanced system integration and operational stability, making it suitable for use in automation, control systems, and energy-efficient solutions. With a compact footprint and precise specifications, the UMD3N-TPQ2 stands out as a dependable option for engineers and sourcing specialists seeking quality and consistency. For more information, visit IC-fabrikant.
UMD3N-TPQ2 Technical Specifications
Parameter | Specificatie |
---|---|
Type verpakking | TO-220 |
Maximum Collector Current (Ic) | 10 A |
Collector-Emitter Voltage (Vce) | 100 V |
Energieverlies | 60 W |
Toename Bandbreedte Product | 3 MHz |
Bedrijfstemperatuurbereik | -55 °C tot +150 °C |
Storage Temperature Range | -65??C to +150??C |
DC Current Gain (hFE) | 40 to 160 |
Overgangsfrequentie | 3 MHz |
UMD3N-TPQ2 Key Features
- High Collector Current Capability: Supports up to 10 A, enabling efficient handling of high power loads in industrial circuits.
- Breed bedrijfstemperatuurbereik: Designed to function reliably from -55??C to +150??C, ensuring stability in harsh environmental conditions.
- Robust Package Design: The TO-220 package offers excellent thermal dissipation, which enhances device longevity and reliability.
- Strong DC Current Gain: Provides gain values between 40 and 160, facilitating effective signal amplification in control and switching applications.
Typische toepassingen
- Power amplification in industrial motor control circuits where high current handling and thermal stability are critical for performance.
- Switching devices in power supplies and converters, supporting efficient energy management in industrial systems.
- Signal amplification in automation equipment, ensuring accurate control and response within complex machinery.
- Use in temperature-sensitive environments due to its wide operating temperature range, suitable for outdoor or harsh industrial conditions.
UMD3N-TPQ2 Advantages vs Typical Alternatives
This device offers enhanced current handling and superior thermal performance compared to typical alternatives. Its wide operating temperature range and reliable gain characteristics provide improved accuracy and stability in demanding applications. The TO-220 package ensures efficient heat dissipation, reducing the risk of overheating and extending device lifespan, making it a preferred choice for engineers prioritizing durability and consistent operation.
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UMD3N-TPQ2 Brand Info
The UMD3N-TPQ2 is produced by UMD Semiconductor, a recognized manufacturer specializing in power transistors and industrial-grade semiconductor components. Known for rigorous quality standards and innovation in power management, UMD Semiconductor supplies devices that meet stringent industrial requirements. The UMD3N-TPQ2 exemplifies the brand’s commitment to reliable, high-performance components designed for integration into demanding systems across automation, control, and power electronics markets.
FAQ
What is the maximum current rating of the UMD3N-TPQ2?
The maximum collector current rating is 10 A. This allows the device to handle substantial load currents typically required in industrial power amplification and switching applications.
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What package type does the UMD3N-TPQ2 use, and why is it important?
The product comes in a TO-220 package, which offers superior thermal dissipation and mechanical stability. This packaging helps maintain device reliability under high power and temperature conditions.
Can the UMD3N-TPQ2 operate in extreme temperatures?
Yes, it supports an operating temperature range from -55??C to +150??C, making it suitable for harsh industrial environments and outdoor applications where temperature fluctuations are common.
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What is the DC current gain range of this transistor?
The DC current gain (hFE) ranges from 40 to 160, providing flexibility for amplification in various circuit designs,