The ON Semiconductor QEB373ZR is a high-performance Infrared (IR) Emitter designed for a variety of applications that require efficient and reliable non-visible light emission. This IR LED is a part of ON Semiconductor's extensive portfolio of optoelectronic components that are known for their quality, durability, and performance.
Key Features
- Wavelength: The QEB373ZR operates at a peak wavelength of 940nm, which is optimal for IR sensing and communication applications.
- High Output Power: With its high radiant power, this IR LED can achieve excellent performance in long-range or high-signal applications.
- Viewing Angle: It features a 20-degree viewing angle, making it suitable for focused IR beam applications and ensuring a directed and efficient light output.
- Package: The device comes in a compact side-looking plastic package that is easy to integrate into various electronic assemblies.
- Forward Voltage: It operates at a typical forward voltage of 1.5V, which allows for low power consumption and compatibility with a wide range of circuits and power sources.
- Reliability: ON Semiconductor's commitment to quality means that the QEB373ZR is designed to have a long operational life and stable performance over time.
Applications
The QEB373ZR is versatile and can be used in numerous applications including, but not limited to:
- Infrared illumination for cameras
- Optical switches
- Smoke detectors
- IR communication devices
- Remote control units for consumer electronics
Why Choose the QEB373ZR?
Whether you are developing consumer electronics, security systems, or industrial automation solutions, the QEB373ZR from ON Semiconductor provides reliable and efficient infrared light emission. Its high output power and focused beam angle make it an ideal choice for applications requiring precise IR signaling. Additionally, the device's low power consumption and high-quality construction ensure that it will function effectively over a long service life, making it a cost-effective solution for manufacturers and hobbyists alike.