The SFH 310-2/3 belongs to the category of optoelectronic components and is commonly used in various electronic devices. This product is known for its high sensitivity, compact size, and reliable performance. It is typically packaged individually and is available in various quantities to suit different application needs.
The SFH 310-2/3 features a detailed pin configuration that includes specific connections for power, ground, and signal input/output. The pinout diagram provides clear guidance on how to integrate the component into electronic circuits.
This optoelectronic component offers precise light detection capabilities, making it suitable for applications requiring accurate sensing of light levels. Additionally, it exhibits low power consumption and fast response times, enhancing its overall functionality in electronic systems.
Advantages: - High Sensitivity - Compact Size - Reliable Performance - Low Power Consumption - Fast Response Times
Disadvantages: - Limited Operating Temperature Range - Sensitivity to External Light Sources
The SFH 310-2/3 operates based on the principle of photoelectric effect, where incident light photons trigger electron excitation within the component, leading to a measurable output signal. This fundamental process forms the basis of its light detection functionality.
The SFH 310-2/3 finds extensive use in diverse applications such as ambient light sensing in consumer electronics, proximity sensing in automotive systems, and industrial automation for object detection. Its versatility allows for integration into various electronic devices and systems.
For users seeking alternative options, several comparable models are available in the market, including the SFH 310-0/1 and SFH 310-4/5. These alternatives offer similar functionality with slight variations in specifications, catering to different project requirements.
In conclusion, the SFH 310-2/3 serves as a valuable optoelectronic component with its high sensitivity, compact design, and reliable performance. Its application spans across multiple industries, making it a versatile choice for electronic system integration.
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What is SFH 310-2/3?
What are the key features of SFH 310-2/3?
How can SFH 310-2/3 be used in proximity sensors?
In what ways does SFH 310-2/3 contribute to industrial automation?
Can SFH 310-2/3 be integrated into gesture recognition systems?
What are the typical operating conditions for SFH 310-2/3?
How does SFH 310-2/3 compare to other infrared emitters in technical solutions?
Are there any specific design considerations when using SFH 310-2/3 in technical solutions?
What are the potential challenges when implementing SFH 310-2/3 in technical solutions?
Where can I find detailed technical specifications and application notes for SFH 310-2/3?