SFH 3310 is a high-performance optoelectronic component designed for use in various electronic devices. This product falls under the category of infrared emitters and detectors, and it is widely utilized in applications such as proximity sensors, industrial automation, and consumer electronics. The SFH 3310 is known for its exceptional characteristics, compact packaging, and reliable performance.
The SFH 3310 features the following specifications: - Peak Wavelength: 950 nm - Forward Current: 100 mA - Reverse Voltage: 5 V - Power Dissipation: 150 mW - Viewing Angle: ± 60°
The SFH 3310 has a standard pin configuration with the following layout: 1. Anode 2. Cathode
The SFH 3310 offers the following functional features: - High Sensitivity to Infrared Light - Fast Response Time - Low Power Consumption - Wide Operating Temperature Range
The SFH 3310 operates based on the principle of converting infrared light into electrical signals. When exposed to infrared radiation, the optoelectronic component generates a corresponding electrical response, making it suitable for proximity sensing and object detection applications.
The SFH 3310 is extensively used in the following application fields: - Proximity Sensors for Mobile Devices - Object Detection in Industrial Automation - Presence Detection in Consumer Electronics
For users seeking alternative models to the SFH 3310, the following options are available: - SFH 3311 - SFH 3312 - SFH 3313
In conclusion, the SFH 3310 is a versatile and reliable optoelectronic component that finds widespread use in proximity sensing, industrial automation, and consumer electronics applications. Its compact design, high sensitivity, and fast response time make it a preferred choice for engineers and designers across various industries.
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What is SFH 3310?
What are the key features of SFH 3310?
How can SFH 3310 be used in proximity sensors?
In what ways does SFH 3310 contribute to presence detection systems?
Can SFH 3310 be utilized in gesture recognition technology?
What are the advantages of using SFH 3310 in technical solutions?
How does SFH 3310 support energy-efficient designs in technical solutions?
What are the typical operating conditions for SFH 3310 in technical applications?
Are there any specific design considerations when integrating SFH 3310 into technical solutions?
Can SFH 3310 be combined with other components to enhance technical solutions?