DTA114ECA-TP Overview
The DTA114ECA-TP is a precision NPN transistor designed for high-performance switching and amplification tasks in industrial electronics. With its robust gain characteristics and low noise profile, it suits applications requiring reliable signal control and amplification. This transistor supports efficient power management and offers stable operation across a wide temperature range. Its compact SOT-23 package enables easy integration into densely populated PCBs. Engineers and sourcing specialists will find this device ideal for cost-effective, high-reliability semiconductor solutions. For more information, visit Fabricante de CI.
DTA114ECA-TP Technical Specifications
Parámetro | Especificación |
---|---|
Tipo de transistor | Transistor de unión bipolar NPN |
Tensión colector-emisor (VDIRECTOR GENERAL) | 40 V |
Corriente de colector (IC) | 200 mA |
Disipación de potencia (Ptot) | 350 mW |
Ganancia de corriente continua (hFE) | De 100 a 300 |
Frecuencia de transición (fT) | 100 MHz (típico) |
Paquete | SOT-23 Surface-Mount |
Temperatura de funcionamiento | De -55 °C a +150 °C |
Tensión base del emisor (VBE) | Typically 0.7 V |
DTA114ECA-TP Key Features
- Alta ganancia de corriente: Enables efficient amplification with minimal base current, improving overall circuit efficiency.
- Wide Voltage Rating: Supports up to 40 V collector-emitter voltage, suitable for moderate power switching applications.
- Encapsulado compacto SOT-23: Facilitates space-saving PCB layouts and optimized thermal dissipation.
- High Transition Frequency (100 MHz): Allows for reliable switching in high-frequency circuits, ensuring signal integrity.
- Amplio rango de temperaturas de funcionamiento: Guarantees stable performance in harsh industrial environments.
- Baja disipación de energía: Reduces heat generation, enhancing reliability and longevity in continuous operation.
- Reliable Semiconductor Construction: Ensures consistent electrical characteristics and device robustness.
Aplicaciones típicas
- Signal amplification and switching in industrial control systems, where precise transistor gain and reliable operation under varying conditions are essential.
- Driver stages for relays and small motors, benefiting from the transistor??s moderate voltage and current handling capabilities.
- Low noise preamplifier circuits in sensor interfaces, leveraging the device??s stable gain and frequency response.
- General-purpose switching in embedded systems and consumer electronics requiring compact and efficient transistor solutions.
DTA114ECA-TP Advantages vs Typical Alternatives
This transistor offers a balanced combination of high gain, moderate voltage and current ratings, and a compact footprint that outperforms many discrete alternatives. Its wide operating temperature range and low power dissipation provide enhanced reliability in demanding industrial contexts. Compared to typical transistors in similar classes, it ensures superior switching speed and integration flexibility, making it a preferred choice for engineers seeking performance without compromising size or thermal management.
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DTA114ECA-TP Brand Info
The DTA114ECA-TP is manufactured by Diodes Incorporated, a global leader in discrete, logic, and analog semiconductor solutions. Renowned for quality and reliability, Diodes Incorporated specializes in innovative transistor devices optimized for industrial and consumer applications. This transistor is part of their extensive portfolio designed to meet stringent performance and environmental standards, supporting engineers worldwide in delivering robust designs with scalable production capabilities.
PREGUNTAS FRECUENTES
What is the maximum collector current rating of the DTA114ECA-TP?
The maximum collector current for this transistor is 200 mA, making it suitable for moderate power applications such as driver circuits and signal amplification.
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Can the DTA114ECA-TP be used in high-frequency applications?
Yes, the device features a typical transition frequency of 100 MHz, enabling it to perform effectively in high-frequency switching and amplification tasks.