HSMF-A201-A00J1 Overview
The HSMF-A201-A00J1 is a high-performance optoelectronic component designed for precise optical signal transmission and detection in industrial and communication systems. Engineered with advanced semiconductor technology, it ensures reliable operation with enhanced sensitivity and low power consumption. This device supports high-speed data transfer and robust integration in various electronic applications. Ideal for engineers and sourcing specialists seeking a dependable photonic solution, the component offers consistent performance under challenging environmental conditions. For detailed manufacturer insights and sourcing, visit IC Manufacturer.
HSMF-A201-A00J1 Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | Compact surface-mount package |
| Operating Wavelength | 850 nm (typical) |
| Responsivity | ?? 0.5 A/W at 850 nm |
| Dark Current | ?? 2 nA at 5 V bias |
| Operating Temperature Range | -40??C to +85??C |
| Capacitance | ?? 1.5 pF at 0 V bias |
| Rise/Fall Time | ?? 1.2 ns (typical) |
| Maximum Reverse Voltage | 15 V |
| Storage Temperature Range | -40??C to +100??C |
| Package Dimensions | 3.5 mm ?? 2.8 mm ?? 1.1 mm |
HSMF-A201-A00J1 Key Features
- High Sensitivity Photodetection: Enables accurate detection of low-level optical signals, improving signal integrity in communication systems.
- Low Dark Current: Minimizes noise and enhances signal-to-noise ratio, critical for precise measurements and reliable data transmission.
- Fast Response Time: Supports data rates requiring sub-nanosecond rise and fall times, ensuring efficient high-speed optical communication.
- Wide Operating Temperature Range: Guarantees stable performance in harsh industrial environments, expanding application versatility.
- Compact Surface-Mount Package: Facilitates easy integration into space-constrained circuit boards without compromising thermal management.
- Robust Electrical Characteristics: Consistent capacitance and voltage tolerance improve reliability during operation and testing.
HSMF-A201-A00J1 Advantages vs Typical Alternatives
This device offers superior sensitivity and low dark current compared to comparable photodetectors, supporting more accurate optical signal detection. Its fast response time and broad operational temperature range enhance reliability in demanding industrial applications. The compact package size and stable electrical parameters enable seamless integration with modern high-density electronic designs, providing a clear advantage over bulkier or less precise alternatives.
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Typical Applications
- Optical communication modules requiring high-speed photodetection with low noise for data integrity in fiber optics networks.
- Industrial sensor systems where precise light detection under varying environmental conditions is essential.
- High-frequency optical measurement instruments demanding fast response times and consistent sensitivity.
- Embedded photonic circuits in consumer electronics and medical devices needing compact, reliable optoelectronic components.
HSMF-A201-A00J1 Brand Info
The HSMF-A201-A00J1 is offered by a leading semiconductor manufacturer specializing in optoelectronic solutions for industrial and communication sectors. This product reflects the brand??s commitment to quality, innovation, and stringent testing standards. Designed to meet the exacting requirements of engineers and sourcing professionals, it combines advanced photodiode technology with a package optimized for modern electronics manufacturing processes. The brand??s global support network ensures comprehensive technical assistance and supply chain reliability.
FAQ
What is the typical operating wavelength of this photodiode?
The typical operating wavelength for this device is 850 nanometers. This wavelength is commonly used in short-range optical communication systems, providing optimal responsivity and performance within this spectral range.
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How does the low dark current benefit system performance?
Low dark current reduces the baseline noise level in the photodetector, enhancing the signal-to-noise ratio. This improvement is crucial in applications requiring precise light detection, as it leads to more accurate and reliable signal interpretation.
Can this component operate reliably in industrial temperature environments?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable for harsh industrial conditions where temperature fluctuations are common without compromising device stability.
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What packaging type does this device use, and why is it important?
This photodiode is housed in a compact surface-mount package. Such packaging enables efficient PCB integration, space savings, and improved thermal management, which are vital for modern high-density circuit designs.
Is the response time suitable for high-speed data communication?
Absolutely. With rise and fall times typically less than or equal to 1.2 nanoseconds, this device supports high-speed optical data transmission, making it well-suited for advanced communication modules.




