AEDR-9830DP-100 Overview
The AEDR-9830DP-100 is a high-performance photodiode designed for precise optical sensing applications. Featuring a large active area and low dark current, it delivers excellent sensitivity and fast response times, ideal for industrial and instrumentation uses. Its robust package ensures reliable operation in demanding environments while maintaining consistent performance. Engineers and sourcing specialists will find this device suitable for systems requiring accurate light detection with minimal noise. For detailed product support and procurement, visit IC Manufacturer.
AEDR-9830DP-100 Technical Specifications
| Parameter | Specification | Unit |
|---|---|---|
| Active Area | 7.5 | mm2 |
| Peak Sensitivity Wavelength | 900 | nm |
| Dark Current (typical) | 2 | nA |
| Capacitance | 70 | pF |
| Rise Time | 20 | ns |
| Package Type | TO-46 Metal Can | – |
| Operating Temperature Range | -40 to +85 | ??C |
| Reverse Voltage | 15 | V |
AEDR-9830DP-100 Key Features
- Large Active Area: Provides enhanced light capture for increased sensitivity, improving signal quality in low-light conditions.
- Low Dark Current: Minimizes noise, which is critical for high-accuracy optical measurements and ensures reliable detection in precision applications.
- Fast Response Time: Supports rapid signal processing, enabling use in high-speed data acquisition and communication systems.
- Robust TO-46 Package: Ensures mechanical durability and reliable thermal performance, suitable for industrial and environmental stress conditions.
AEDR-9830DP-100 Advantages vs Typical Alternatives
This photodiode offers superior sensitivity and low dark current compared to typical silicon photodiodes, making it ideal for applications requiring precise light measurement. Its fast response time and stable operation over a wide temperature range provide an advantage in high-speed and harsh environment uses. The metal can package enhances durability, ensuring long-term reliability unmatched by many plastic-packaged alternatives.
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Typical Applications
- Optical instrumentation and sensors requiring precise light detection and fast response for measurement accuracy in laboratory and industrial environments.
- Fiber optic communication systems where rapid detection of optical signals is essential to maintain data integrity.
- Medical equipment including pulse oximeters and diagnostic devices that rely on sensitive photodetection.
- Industrial automation systems incorporating optical feedback loops for process control and monitoring.
AEDR-9830DP-100 Brand Info
This photodiode is part of the AEDR series from a leading semiconductor manufacturer, known for producing high-quality optoelectronic components. The device combines precision engineering with stringent quality control to meet the demands of industrial and scientific applications. Its design emphasizes performance consistency, durability, and ease of integration, supporting engineers in developing reliable optical detection solutions.
FAQ
What is the typical dark current of the AEDR-9830DP-100?
The typical dark current is approximately 2 nA, which is low and helps reduce noise in sensitive optical measurements. This characteristic is important for applications requiring high signal-to-noise ratios.
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What package does the photodiode come in, and why is this important?
The device is housed in a TO-46 metal can package. This type of packaging provides excellent mechanical protection and thermal stability, making it suitable for use in harsh environments and ensuring long-term reliability.
What is the peak sensitivity wavelength of this photodiode?
The peak wavelength sensitivity is around 900 nm, making it well-suited for near-infrared detection applications such as fiber optic communications and certain medical sensors.
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Can the AEDR-9830DP-100 operate in extreme temperatures?
Yes, it supports an operating temperature range from -40??C to +85??C, allowing it to function effectively in a variety of industrial and outdoor environments without performance degradation.
How fast is the response time of this photodiode?
The rise time is typically 20 ns, enabling rapid detection and processing of optical signals. This feature is critical for high-speed applications like data communications and advanced instrumentation.





