The DTC115EM3T5G from ON Semiconductor is a high-quality NPN digital transistor that integrates a bias resistor network to enable the configuration of inverter, interface, and driver circuits without the need for external resistors. It is designed for signal processing applications and is commonly used in digital logic circuits, providing a compact and efficient solution for a variety of electronic designs.
Key Features:
- Integrated Bias Resistor: The device features a built-in bias resistor network, which simplifies circuit design and minimizes component count.
- High Current Gain: This digital transistor offers a high current gain (hFE), ensuring efficient current amplification in your circuit.
- Low Saturation Voltage: The DTC115EM3T5G boasts a low collector-emitter saturation voltage, which results in reduced power dissipation and improved energy efficiency.
- Surface-Mount Package: Enclosed in a small SOT-23 surface-mount package, it is ideal for space-constrained applications.
- Lead-Free and RoHS Compliant: The transistor is lead-free and complies with RoHS standards, making it environmentally friendly and suitable for use in various global markets.
Applications:
- Inverter Circuits
- Interface Circuits
- Driver Circuits
- Signal Processing
- Logic Level Shifting
- Power Management
The DTC115EM3T5G is a versatile component that delivers reliable performance for digital and switching applications. Its integrated resistors not only save space but also reduce assembly costs. Whether you're designing consumer electronics, industrial controls, or automotive systems, this digital transistor from ON Semiconductor is an excellent choice for your solid-state switching needs.
Specifications:
| Parameter |
Value |
| Configuration |
Single |
| Collector- Base Voltage (VCBO) |
50V |
| Collector- Emitter Voltage (VCEO) |
50V |
| Emitter- Base Voltage (VEBO) |
5V |
| Collector Current - Continuous (IC) |
100mA |
| Power Dissipation (Pd) |
200mW |
| DC Current Gain (hFE) |
Minimum 100 |
For detailed information and datasheets, visit the ON Semiconductor official website or contact your ON Semiconductor sales representative.