The OPL813 is a versatile electronic component that belongs to the category of optoelectronic devices. This entry provides an in-depth overview of the OPL813, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The detailed specifications of the OPL813 are as follows: - Operating Wavelength: 400nm to 1100nm - Dark Current: 100nA (max) - Responsivity: 0.45A/W at 850nm - Rise/Fall Time: 15μs (typ) - Operating Temperature: -40°C to +85°C - Supply Voltage: 5V (max)
The OPL813 features a standard pin configuration with the following connections: 1. Anode 2. Cathode 3. No Connection 4. Phototransistor Collector 5. Phototransistor Emitter 6. No Connection
The OPL813 offers the following functional features: - High sensitivity to a broad range of light wavelengths - Fast response time for rapid light detection and switching applications - Low dark current for accurate light sensing in low-light conditions - Compact and robust package for easy integration into electronic designs
The OPL813 operates based on the principle of photoconductivity, where incident light photons generate electron-hole pairs within the semiconductor material, leading to a change in conductivity and resulting in an electrical signal proportional to the light intensity.
The OPL813 finds extensive use in various applications, including: - Light sensing in automatic lighting control systems - Optical switching in communication networks - Light intensity monitoring in industrial automation - Presence detection in security systems
Several alternative models to the OPL813 include: - OPL801: A similar optoelectronic device with enhanced responsivity - OPL814: Offers extended operating temperature range - OPL820: Provides integrated amplification for improved signal-to-noise ratio
In conclusion, the OPL813 is a valuable optoelectronic component with diverse applications and performance characteristics that make it well-suited for light sensing and optical switching tasks across various industries.
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What is OPL813?
What are the key properties of OPL813?
In what industries is OPL813 commonly used?
How does OPL813 compare to other TPEs?
Can OPL813 be overmolded onto other materials?
What are the temperature limits for OPL813?
Is OPL813 recyclable?
Does OPL813 require any special processing considerations?
Are there any specific design guidelines for using OPL813 in technical solutions?
What are some common examples of technical solutions utilizing OPL813?
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