The SFH 310 FA belongs to the category of optoelectronic devices and is commonly used as an infrared emitter. It possesses unique characteristics that make it suitable for various applications. The package of SFH 310 FA includes essential components such as the emitter, packaging/quantity, and other relevant features.
The SFH 310 FA has the following specifications: - Wavelength: 950 nm - Forward Current: 100 mA - Forward Voltage: 1.2 V - Power Dissipation: 120 mW - Viewing Angle: 60 degrees
The SFH 310 FA has a standard pin configuration with three pins: 1. Anode (+) 2. Cathode (-) 3. No Connection (NC)
The SFH 310 FA offers the following functional features: - High efficiency in infrared emission - Compact size for easy integration into various systems - Reliable performance under specified operating conditions
The SFH 310 FA operates based on the principle of electroluminescence, where electrical current causes the semiconductor material to emit infrared radiation. When forward biased, the device emits infrared light at a wavelength of 950 nm.
The SFH 310 FA finds extensive application in various fields, including: - Proximity sensors - Optical encoders - Industrial automation - Consumer electronics
Some alternative models to SFH 310 FA include: - SFH 313 FA - SFH 315 FA - TSUS5400
In conclusion, the SFH 310 FA is a versatile optoelectronic device with specific characteristics and functional features that make it suitable for a wide range of applications. Its compact size, high efficiency, and reliable performance contribute to its popularity in the industry.
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What is SFH 310 FA?
What is the typical operating voltage of SFH 310 FA?
What is the maximum forward current for SFH 310 FA?
What is the typical radiant intensity of SFH 310 FA?
Can SFH 310 FA be used in automotive applications?
What is the recommended operating temperature range for SFH 310 FA?
Does SFH 310 FA require any external optics for its application?
Is SFH 310 FA compatible with standard surface mount technology (SMT) processes?
What are the key advantages of using SFH 310 FA in technical solutions?
Are there any specific design considerations when integrating SFH 310 FA into a technical solution?