DTC114ESA-BP Overview
The DTC114ESA-BP is a high-performance, dual NPN transistor array designed for efficient switching and amplification in industrial and consumer electronics. Featuring matched transistor pairs with low saturation voltage and high current gain, this device offers enhanced linearity and reliable operation in compact SOT-363 package. It is optimized for use in applications demanding precise switching performance and low power dissipation. The device’s integration ensures simplified circuit design and improved thermal stability, making it a preferred choice for engineers and sourcing specialists working on signal processing, amplification, and digital logic interfaces. For detailed technical support and ordering information, visit IC Manufacturer.
DTC114ESA-BP Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | Dual NPN Transistor |
| Package | SOT-363 (6-Lead) |
| Collector-Emitter Voltage (VCEO) | 50 V |
| Collector Current (IC) | 100 mA (continuous) |
| Current Gain (hFE) | 100 to 300 (typical at IC=2 mA) |
| Saturation Voltage (VCE(sat)) | 0.25 V (typical at IC=10 mA) |
| Transition Frequency (fT) | 100 MHz (typical) |
| Operating Temperature Range | -55??C to +150??C |
| Base-Emitter Voltage (VBE) | 0.7 V (typical) |
DTC114ESA-BP Key Features
- Matched transistor pairs: Ensures consistent gain and switching characteristics, crucial for differential amplifier circuits and signal processing accuracy.
- Low saturation voltage: Reduces power loss during switching, enhancing energy efficiency and thermal management in compact devices.
- High current gain: Provides reliable amplification with minimal input current, optimizing circuit sensitivity and reducing drive requirements.
- Compact SOT-363 package: Saves PCB space allowing higher component density and improved system miniaturization without compromising performance.
Typical Applications
- High-speed switching in digital logic circuits, enabling fast and reliable signal control in microcontroller interfaces and logic level translators.
- Low-noise preamplifier stages in audio equipment and sensor signal conditioning, where matched transistors enhance linearity and reduce distortion.
- Driver stages in relay and solenoid control circuits, benefiting from low saturation voltage to improve efficiency and reduce heat generation.
- Portable battery-powered devices requiring compact, efficient transistor arrays to conserve power and extend operational lifetime.
DTC114ESA-BP Advantages vs Typical Alternatives
This device offers superior integration by combining two matched NPN transistors in a smaller SOT-363 package, reducing board space and assembly complexity. Its low saturation voltage and high gain improve switching efficiency and signal fidelity compared to discrete transistor solutions. The extended temperature range and robust electrical characteristics enhance reliability under industrial conditions, making it a cost-effective and high-performance alternative for advanced electronic designs.
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DTC114ESA-BP Brand Info
The DTC114ESA-BP is manufactured by Diodes Incorporated, a global leader in high-quality semiconductor components for industrial, automotive, and consumer applications. Diodes Incorporated specializes in discrete, logic, analog, and mixed-signal semiconductors designed to increase energy efficiency and functional reliability. This product reflects the company’s commitment to delivering reliable transistor arrays tailored for demanding switching and amplification tasks, supported by extensive technical resources and global supply chain capabilities.
FAQ
What is the maximum collector current rating for the DTC114ESA-BP?
The maximum continuous collector current is 100 mA per transistor. This rating ensures safe operation within the device??s thermal limits under typical industrial application conditions.
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How does the low saturation voltage benefit switching applications?
Low saturation voltage reduces the voltage drop across the transistor when it is fully on, minimizing power loss and heat generation. This improves overall circuit efficiency and reliability in switching operations.
Can the device operate reliably across a wide temperature range?
Yes,





