DDTC143ZCAQ-7-F Overview
The DDTC143ZCAQ-7-F is a high-performance semiconductor transistor designed for efficient switching and amplification in industrial electronics. Engineered with precise electrical characteristics, this device offers robust current handling and voltage tolerance, making it suitable for demanding applications. Its compact packaging and reliable thermal performance ensure seamless integration in complex circuits. Ideal for engineers and sourcing specialists, this transistor provides consistent operation under varied load conditions, optimizing system efficiency. For detailed specifications and sourcing, visit IC Manufacturer.
DDTC143ZCAQ-7-F Technical Specifications
Parameter | Specification |
---|---|
Type | NPN Bipolar Junction Transistor |
Collector-Emitter Voltage (Vceo) | 40 V |
Collector Current (Ic) | 600 mA |
Gain Bandwidth Product (fT) | 100 MHz |
DC Current Gain (hFE) | 100 to 300 |
Package | SOT-23 Surface Mount |
Transition Frequency | 100 MHz |
Operating Temperature Range | -55??C to +150??C |
Power Dissipation (Pd) | 350 mW |
DDTC143ZCAQ-7-F Key Features
- High Current Handling: Supports up to 600 mA collector current, enabling reliable performance in moderate power applications.
- Wide Voltage Tolerance: With a 40 V collector-emitter voltage rating, it accommodates various circuit requirements with safety margin.
- Fast Switching Speed: 100 MHz gain bandwidth product ensures quick response times, critical for high-frequency signal amplification.
- Compact SOT-23 Package: Small form factor enables space-saving PCB layouts and easy surface mounting for automated assembly.
DDTC143ZCAQ-7-F Advantages vs Typical Alternatives
This transistor offers a balanced combination of current capacity and voltage rating that often outperforms generic small-signal transistors. Its fast switching speed and high gain range improve circuit efficiency and signal integrity. Compared to typical alternatives, it provides enhanced thermal stability and integration flexibility, reducing design complexity and improving overall system reliability.
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Typical Applications
- Signal amplification in communication systems, where quick switching and stable gain enhance data transmission quality and integrity over varying conditions.
- Switching elements in power management circuits, providing reliable control in low to mid power stages.
- Driver stages for LEDs and small motors, where precision current control is essential for consistent operation.
- General-purpose amplification and switching for industrial automation equipment requiring compact, durable transistor solutions.
DDTC143ZCAQ-7-F Brand Info
The DDTC143ZCAQ-7-F is manufactured by a leading semiconductor supplier known for quality and reliability in the industrial electronics sector. This product line emphasizes robust performance, consistency, and ease of integration, supporting engineers and product developers in achieving high-efficiency designs. Backed by rigorous testing and quality assurance, it meets industry standards for durability and electrical performance.
FAQ
What is the maximum collector current rating for this transistor?
The transistor supports a maximum continuous collector current of 600 mA, making it suitable for moderate power applications requiring stable current handling.
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Can this device operate at high temperatures?
Yes, it is specified for operation in temperatures ranging from -55??C to +150??C, ensuring reliable performance across a broad range of industrial environments.
What package type does this transistor use?
The device is housed in a SOT-23 surface mount package, which is compact and ideal for automated PCB assembly with space-saving advantages.
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Is the transistor suitable for high-frequency applications?
With a gain bandwidth product of 100 MHz, this transistor is well-suited for high-frequency amplification and fast switching applications.
How does its voltage rating compare to similar transistors?
The 40 V collector-emitter voltage rating offers a good margin for many control and amplification applications, providing enhanced reliability over lower voltage alternatives.