DDTC123TE-7 Overview
The DDTC123TE-7 is a high-performance semiconductor transistor optimized for switching and amplification in industrial electronics. Designed with robust electrical characteristics, it supports efficient power handling and reliable operation under varying thermal conditions. This device is ideal for engineers seeking a versatile transistor solution that balances gain, voltage tolerance, and current capacity. With a compact package and stable performance, the DDTC123TE-7 enables streamlined integration in complex circuits, enhancing system durability and performance. For detailed product data and sourcing, visit IC Manufacturer.
DDTC123TE-7 Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (VCEO) | 45 V |
| Collector Current (IC) | 0.8 A |
| Power Dissipation (PD) | 350 mW |
| Gain Bandwidth Product (fT) | 100 MHz |
| DC Current Gain (hFE) | 100?C300 |
| Transition Frequency | Up to 100 MHz |
| Operating Temperature Range | -55??C to +150??C |
| Package Type | TO-92 |
DDTC123TE-7 Key Features
- High current gain: Provides amplified signals with minimal input, improving circuit efficiency and reducing power consumption.
- Wide voltage range: Supports up to 45 V collector-emitter voltage, enabling operation in diverse power environments.
- Compact TO-92 package: Facilitates easy PCB integration and heat dissipation in space-constrained industrial designs.
- Temperature resilience: Maintains stable performance across a broad temperature range, ensuring reliability in harsh conditions.
- Fast switching speed: Transition frequency up to 100 MHz supports high-frequency applications, improving overall system responsiveness.
DDTC123TE-7 Advantages vs Typical Alternatives
This transistor offers superior current gain and voltage handling compared to many standard low-power transistors, enhancing circuit sensitivity and accuracy. Its broad temperature range and reliable packaging support robust operation in industrial environments. The device??s efficient switching characteristics reduce power loss, making it a more effective choice for high-frequency and precision applications than typical alternatives.
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Typical Applications
- General-purpose amplification in industrial control circuits requiring stable gain and voltage endurance under varying environmental conditions.
- Switching applications where fast response and efficient power handling are critical, such as relay drivers and signal modulators.
- Low noise preamplification in sensor interfaces to improve signal clarity and reliability.
- Embedded systems and instrumentation circuits demanding compact, reliable transistor solutions with consistent thermal performance.
DDTC123TE-7 Brand Info
The DDTC123TE-7 is part of a trusted series from a leading semiconductor manufacturer specializing in discrete transistors for industrial and consumer electronics. This product line is known for combining reliable electrical performance with robust physical design, meeting stringent quality standards. The DDTC123TE-7 reflects the brand??s commitment to delivering components that support demanding engineering requirements, backed by comprehensive datasheets and technical support.
FAQ
What is the maximum collector current rating for the DDTC123TE-7?
The maximum collector current rating is 0.8 A, allowing the transistor to handle moderate load currents typical in switching and amplification applications without compromising reliability.
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Can the DDTC123TE-7 operate in high-temperature environments?
Yes, it supports an operating temperature range from -55??C to +150??C, making it suitable for harsh industrial and outdoor conditions where temperature variations are significant.
What package type is used for the DDTC123TE-7, and what are its benefits?
This transistor is housed in a TO-92 package, which offers easy handling, efficient heat dissipation, and compact size for seamless integration into printed circuit boards.
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Is the DDTC123TE-7 suitable for high-frequency applications?
With a transition frequency up to 100 MHz, this device is well-suited for high-frequency switching and amplification tasks, improving system responsiveness and signal integrity.




