HSML-A100-Q00J1 Overview
The HSML-A100-Q00J1 is a high-performance infrared emitting diode designed for precise optical sensing applications. Engineered with a wavelength optimized for reliable detection, it offers excellent radiant intensity and spectral stability. Its compact SMD package ensures easy integration into diverse industrial and consumer electronics systems. Ideal for engineers and sourcing specialists seeking consistent infrared emission with minimal power consumption, this component supports enhanced device accuracy and efficiency. For detailed sourcing and technical support, visit IC Manufacturer.
HSML-A100-Q00J1 Technical Specifications
| Parameter | Specification |
|---|---|
| Peak Emission Wavelength | 940 nm |
| Radiant Intensity (IF = 20 mA) | 3.2 mW/sr (typical) |
| Forward Voltage (IF = 20 mA) | 1.35 V (typical) |
| Viewing Angle (2??1/2) | 20?? |
| Reverse Voltage | 5 V |
| Operating Temperature Range | -40??C to +85??C |
| Storage Temperature Range | -40??C to +100??C |
| Package Type | Surface-Mount Device (SMD) |
HSML-A100-Q00J1 Key Features
- Optimized 940 nm wavelength: Enables efficient infrared emission for superior optical sensor performance and enhanced detection accuracy.
- High radiant intensity: Provides consistent infrared output at 3.2 mW/sr, ensuring reliable operation even in challenging ambient light conditions.
- Compact SMD design: Facilitates seamless integration into space-constrained industrial and consumer electronics, reducing PCB footprint.
- Wide operating temperature range: Supports robust performance from -40??C to +85??C, suitable for harsh industrial environments.
HSML-A100-Q00J1 Advantages vs Typical Alternatives
This infrared emitter stands out by delivering higher radiant intensity and improved spectral stability compared to standard devices. Its low forward voltage reduces overall power consumption, increasing system efficiency. The narrow viewing angle enhances directional emission, minimizing interference and improving sensor accuracy. Additionally, its robust temperature tolerance ensures reliable operation across diverse industrial conditions, making it a preferable choice for demanding applications.
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Typical Applications
- Proximity and presence detection systems in industrial automation, leveraging stable infrared emission for accurate object sensing and safety monitoring.
- Consumer electronic devices requiring compact infrared sources for remote control and gesture recognition.
- Optical sensors in robotics for obstacle detection and navigation assistance.
- Environmental monitoring instruments employing infrared detection for gas sensing and particulate analysis.
HSML-A100-Q00J1 Brand Info
The HSML-A100-Q00J1 is part of a trusted portfolio of infrared emitters designed for industrial and commercial applications. Manufactured with rigorous quality control and advanced semiconductor processes, this product ensures consistent performance and longevity. Its brand emphasizes reliability, precise optical characteristics, and ease of integration, supporting engineers and sourcing specialists in deploying high-quality infrared solutions across multiple sectors.
FAQ
What is the peak emission wavelength of this infrared emitter?
The device operates at a peak emission wavelength of 940 nm, which is ideal for many optical sensing applications due to its compatibility with common photodiodes and low susceptibility to ambient light interference.
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Can this component be used in high-temperature environments?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable for a wide variety of industrial and outdoor applications where temperature variations are common.
What package type does this infrared LED use?
This component is provided in a compact surface-mount device (SMD) package, allowing for easy automated PCB assembly and efficient space utilization in design layouts.
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How does the radiant intensity affect application performance?
Radiant intensity, specified typically at 3.2 mW/sr for a 20 mA forward current, determines the strength of emitted infrared light. Higher radiant intensity improves detection range and reliability, especially in environments with ambient infrared sources.
What are the benefits of a narrow viewing angle in this product?
A 20?? viewing angle ensures the emitted infrared light is focused, reducing stray light and improving the directional accuracy of optical sensors. This enhances detection precision and minimizes false triggers in sensing applications.





