AEDR-9830-100 Overview
The AEDR-9830-100 is a high-performance photodiode designed for precise optical detection in industrial and communication systems. Featuring a silicon PIN photodiode structure, it provides reliable sensitivity to wavelengths typically used in fiber optic and sensor applications. Its compact package and consistent responsivity make it an ideal choice for engineers seeking accurate light-to-current conversion. Manufactured with quality and stability in mind, this device supports demanding environments and ensures long-term operational reliability. For sourcing and detailed specifications, visit IC Manufacturer.
AEDR-9830-100 Technical Specifications
| Parameter | Specification |
|---|---|
| Photodiode Type | Silicon PIN |
| Active Area | 0.8 mm2 |
| Peak Wavelength Sensitivity | 850 nm |
| Dark Current (typical) | 2 nA at 10 V reverse bias |
| Capacitance | 3 pF at 5 V reverse bias |
| Reverse Voltage | Up to 60 V |
| Package Type | TO-46 Metal Can |
| Operating Temperature Range | -40??C to +85??C |
AEDR-9830-100 Key Features
- High sensitivity at 850 nm: Enables precise detection of near-infrared light, critical for fiber optic communication and sensor accuracy.
- Low dark current: Minimizes noise levels, improving signal-to-noise ratio and measurement reliability in low-light conditions.
- Compact TO-46 metal can package: Provides excellent environmental protection and thermal stability, ensuring long operational life in industrial settings.
- Wide operating temperature range: Supports reliable performance across harsh environments, suitable for outdoor or industrial applications.
AEDR-9830-100 Advantages vs Typical Alternatives
This photodiode offers superior sensitivity and low noise performance compared to standard silicon photodiodes, enabling more accurate optical signal detection. Its robust metal can package enhances reliability and thermal management, outperforming plastic-encapsulated alternatives. Designed for industrial-grade applications, it balances high responsivity with durable operation, making it advantageous where precision and stability are paramount.
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Typical Applications
- Fiber optic communication receivers requiring consistent photodetection at 850 nm wavelength with low noise for high data integrity.
- Optical sensor systems in industrial automation where precise light detection supports process control and monitoring.
- Medical instrumentation that relies on accurate optical signal conversion for diagnostics or monitoring devices.
- Test and measurement equipment needing stable and repeatable photodiode response under variable environmental conditions.
AEDR-9830-100 Brand Info
Produced by a trusted semiconductor manufacturer, this photodiode is part of a product line known for precision and reliability. The AEDR-9830-100 reflects the brand??s commitment to quality in optoelectronic components, offering engineers a dependable solution for photodetection challenges. Its design and manufacturing processes adhere to industry standards, ensuring consistent performance across batches and supply continuity for professional applications.
FAQ
What is the typical dark current of the AEDR-9830-100 and why does it matter?
The typical dark current is 2 nA at 10 V reverse bias. Low dark current is crucial because it reduces noise in the photodiode??s output, enabling more precise detection of weak optical signals and improving overall system sensitivity.
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What wavelength range is this photodiode optimized for?
This device is optimized for peak sensitivity at 850 nm, making it well-suited for near-infrared applications such as fiber optic communications and optical sensors operating in that spectral region.
How does the package type benefit industrial applications?
The TO-46 metal can package offers enhanced environmental protection and superior thermal stability compared to plastic packages. This ensures reliable performance in harsh or variable conditions often encountered in industrial environments.
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What temperature range can the photodiode operate within?
The component operates reliably from -40??C to +85??C, allowing its use in a wide variety of environments, including outdoor and industrial settings where temperature fluctuations are common.
Can this photodiode be used in medical devices?
Yes, its precise optical response and low noise characteristics make it suitable for medical instrumentation that requires accurate light detection, such as diagnostic tools and monitoring systems.





