DTC113ZCA-HF Overview
The DTC113ZCA-HF is a high-frequency transistor designed for efficient switching and amplification in demanding electronic circuits. It features a complementary NPN-PNP transistor pair integrated into a single package, offering reliable performance in low-voltage applications. This device is optimized for high-speed switching operations, enabling improved response times and energy efficiency in industrial and consumer electronics. With its compact SOT-363 package, it supports streamlined PCB layouts and thermal management. For detailed technical support and availability, visit IC Manufacturer.
DTC113ZCA-HF Technical Specifications
| Parameter | Specification |
|---|---|
| Transistor Type | Complementary NPN and PNP pair |
| Package | SOT-363 (SC-70, 6-pin) |
| Collector-Emitter Voltage (VCEO) | 25 V (max) |
| Collector Current (IC) | 100 mA (max) |
| Transition Frequency (fT) | 100 MHz (typical) |
| Gain Bandwidth Product | 70 to 100 MHz |
| Operating Temperature Range | -55??C to +150??C |
| Base-Emitter Voltage (VBE) | 0.6 V (typical) |
DTC113ZCA-HF Key Features
- Complementary transistor pair: Integrates NPN and PNP transistors in one package, enabling push-pull amplifier designs and simplifying circuit layouts.
- High transition frequency: Supports up to 100 MHz, ensuring fast switching speeds critical for high-frequency analog and digital circuits.
- Low collector-emitter saturation voltage: Minimizes power losses and heat generation, enhancing overall efficiency and reliability in compact designs.
- Compact SOT-363 package: Facilitates high-density PCB integration while providing robust thermal performance for industrial applications.
DTC113ZCA-HF Advantages vs Typical Alternatives
This transistor pair offers superior switching performance with a higher transition frequency and lower saturation voltage compared to typical discrete transistors. Its integrated complementary design reduces component count and board space, improving reliability and simplifying assembly. Additionally, the device??s extended temperature rating and compact packaging make it well-suited for demanding industrial environments where consistent performance and efficient power use are essential.
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Typical Applications
- Push-pull amplifier circuits for audio and signal processing, delivering balanced outputs with improved linearity and reduced distortion in compact spaces.
- High-speed switching in power management modules and voltage regulators requiring fast response times and efficient energy conversion.
- Driver stages in communication equipment where reliable high-frequency operation enhances signal integrity and system performance.
- General-purpose low-voltage switching applications in automotive and industrial electronics where space-saving and thermal stability are priorities.
DTC113ZCA-HF Brand Info
The DTC113ZCA-HF is produced by a leading semiconductor manufacturer known for delivering high-quality discrete components optimized for industrial and consumer electronics. This product exemplifies the brand??s commitment to innovation in transistor technology, providing engineers with reliable, high-frequency transistor pairs that combine performance, efficiency, and integration flexibility. Its design supports modern electronic system requirements, including miniaturization and thermal management.
FAQ
What is the maximum collector current rating of the DTC113ZCA-HF?
The maximum collector current for each transistor within the device is 100 mA. This rating ensures reliable operation in low-power switching and amplification tasks without risking damage from excessive current.
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Can this transistor pair handle high-frequency switching applications?
Yes, the device supports a transition frequency of approximately 100 MHz, making it suitable for use in high-frequency switching circuits, such as RF amplifiers, communication drivers, and fast switching power supplies.
What package type does the DTC113ZCA-HF come in, and why is it beneficial?
It is housed in a SOT-363 package, which is a compact 6-pin surface-mount package. This small footprint enables efficient PCB layout design, reduces space




