AEDR-9830-102 Overview
The AEDR-9830-102 is a high-performance infrared emitter diode designed for precision optical applications. It operates efficiently within the near-infrared spectrum, providing stable output power and reliable performance across a broad temperature range. Its compact form factor and robust construction make it ideal for integration into industrial sensing, communication, and control systems. Engineers and sourcing specialists appreciate its consistent emission characteristics, low forward voltage, and long operational life, ensuring dependable function in demanding environments. For detailed product insights and support, visit IC Manufacturer.
AEDR-9830-102 Technical Specifications
| Parameter | Specification |
|---|---|
| Peak Emission Wavelength | 940 nm |
| Maximum Forward Current (Continuous) | 100 mA |
| Reverse Voltage | 5 V |
| Forward Voltage (typical) | 1.35 V |
| Radiant Intensity | 5 mW/sr |
| Viewing Angle (FWHM) | 20?? |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | 3 mm T-1? epoxy package |
AEDR-9830-102 Key Features
- Precise Infrared Emission: Delivers a consistent 940 nm wavelength output critical for reliable optical sensing and communication applications.
- Low Forward Voltage: Minimizes power consumption, improving overall system efficiency and reducing heat generation in embedded designs.
- Compact Epoxy Package: Facilitates easy integration into various assemblies while providing protection against environmental factors.
- Wide Operating Temperature Range: Ensures stable performance in harsh industrial environments, enhancing device reliability.
AEDR-9830-102 Advantages vs Typical Alternatives
This infrared emitter offers superior radiant intensity and a narrow emission angle compared to standard infrared LEDs, enabling more accurate targeting and detection. Its low forward voltage and robust packaging improve energy efficiency and lifespan, making it a preferred choice for systems where reliability and precision are paramount. These advantages translate to reduced maintenance and enhanced system uptime in industrial applications.
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Typical Applications
- Non-contact optical sensors: Ideal for proximity detection and object recognition due to stable infrared output and precise wavelength control.
- Remote control devices: Suitable for infrared signal transmission in consumer electronics and industrial remote control units.
- Industrial automation: Used in conveyor monitoring and safety interlock systems requiring reliable optical signaling.
- Optical communication systems: Supports short-range data transmission with efficient infrared emission characteristics.
AEDR-9830-102 Brand Info
The AEDR-9830-102 is part of a family of infrared emitter diodes produced by a leading semiconductor manufacturer known for consistent quality and innovation in optoelectronic components. This product line is engineered to meet stringent industrial standards, providing dependable performance in challenging environments. The device has earned trust among engineers and designers for its precise emission profile and durability, supported by comprehensive datasheets and application notes to facilitate seamless integration.
FAQ
What is the primary wavelength emitted by this device?
The device emits infrared light primarily at a wavelength of 940 nm, which is commonly used in optical sensing and communication applications for its effective transmission and detection characteristics.
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What is the maximum continuous forward current rating?
The maximum continuous forward current allowed is 100 mA, ensuring safe operation without compromising the device??s lifespan or performance due to overheating or electrical stress.
Can this component operate in harsh temperature environments?
Yes, it is specified to operate reliably within a temperature range from -40??C up to +85??C, making it suitable for various industrial and outdoor applications where environmental conditions fluctuate.
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What package type does this infrared emitter use?
This component comes in a 3 mm T-1? epoxy package, which offers compactness and mechanical protection while maintaining ease of installation on printed circuit boards or optical modules.
How does the viewing angle affect application performance?
The device features a 20?? viewing angle (full width at half maximum), which concentrates the emitted infrared light into a narrow beam. This enhances detection accuracy and signal strength in focused sensing or communication setups.






