Allicdata Part #: | PDB-C112-ND |
Manufacturer Part#: |
PDB-C112 |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | Luna Optoelectronics |
Short Description: | PHOTODIODE BLUE 100MM SQ BNC |
More Detail: | Photodiode 950nm 25ns 104° Module |
DataSheet: | PDB-C112 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | -- |
Part Status: | Obsolete |
Wavelength: | 950nm |
Color - Enhanced: | Blue |
Spectral Range: | 350nm ~ 1100nm |
Diode Type: | -- |
Responsivity @ nm: | -- |
Response Time: | 25ns |
Voltage - DC Reverse (Vr) (Max): | 100V |
Current - Dark (Typ): | 10nA |
Active Area: | 100mm² |
Viewing Angle: | 104° |
Operating Temperature: | -10°C ~ 60°C |
Mounting Type: | Connector |
Package / Case: | Module |
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Optical sensors are devices capable of detecting light and measuring its intensity, a good example of this type of optics is photodiodes. An example of a photodiode is the PDB-C112, an advanced device that offers several advantages over standard photodiodes, such as its wide spectral range. This category of optical sensors is classified according to its applications, such as the field and working principle of the PDB-C112.
The PDB-C112 photodiode is an advanced device that has a versatile application field. It can be used for light detection and measuring its intensity, as well as for solar cell simulation, optical communications, bio-sensing and biomedical diagnostics, amongst others. As this photodiode is sensitive in the UV to the Visible to Infrared spectrum, it has a wide range of practical applicability. Furthermore, it also can be used in a wide range of temperature and environmental conditions without any issues.
The working principle of the PDB-C112 is simple. When light is detected, a voltage change is generated in the photodiode. This voltage change is attributed to the absorption of light energy by electrons in the photodiode which then migrate away from the light source. As a result, electrons in the n-type region of the diode are depleted, causing a voltage drop in the depletion region. The magnitude of the voltage drop is proportional to the amount of light being detected. Therefore, the voltage change (or signal current) can be used to measure light intensity and detect any light changes.
The PDB-C112 also is adaptive to signal noise, meaning that it can detect and measure even the smallest light changes. This is due to the device’s low noise and high quantum efficiency, a characteristic that makes it stand out from other photodiodes in the market. Additionally, the device’s low power consumption and high reliability also make it well-suited for multiple sensing applications.
In conclusion, the PDB-C112 is an examples of an advanced optical sensor which belongs to the photodiode category. Its versatile application field makes it suitable for a wide range of sensing applications, and its working principle is based on the detecting and measuring of light intensity. Its low noise and high quantum efficiency allow the PDB-C112 to detect even the smallest light changes, a characteristic that combined with its high reliability and low power consumption make the PDB-C112 an ideal device for multiple sensing applications.
The specific data is subject to PDF, and the above content is for reference
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