OSI Optoelectronics Photovoltaic Series PIN-5DP

Description
The Photovoltaic Detector series is utilized for applications requiring high sensitivity and moderate response speeds, with an additional sensitivity in the visible-blue region for the blue enhanced series. The spectral response ranges from 350 to 1100 nm, making the regular photovoltaic devices ideal for visible and near IR applications. For additional sensitivity in the 350 to 550 nm region, the blue enhanced devices are more suitable. These detectors have high shunt resistance and low noise, and exhibit long term stability. Unbiased operation of these detectors offers stability under wide temperature variations in DC or low speed applications. For high light levels ( greater than 10mW/cm2), the Photoconductive Series detectors should be considered for better linearity. These detectors are not designed to be reverse biased! Very slight improvement in response time may be obtained with a slight bias. Applying a reverse bias of more than a few volts (>3V) will permanently damage the detectors. If faster response times are required, The Photoconductive Series should be considered. Refer to the Photovoltaic Mode (PV) paragraph in the "Photodiode Characteristics" section of this catalog for detailed information on electronics set up.
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Description
The Photovoltaic Detector series is utilized for applications requiring high sensitivity and moderate response speeds, with an additional sensitivity in the visible-blue region for the blue enhanced series. The spectral response ranges from 350 to 1100 nm, making the regular photovoltaic devices ideal for visible and near IR applications. For additional sensitivity in the 350 to 550 nm region, the blue enhanced devices are more suitable. These detectors have high shunt resistance and low noise, and exhibit long term stability. Unbiased operation of these detectors offers stability under wide temperature variations in DC or low speed applications. For high light levels ( greater than 10mW/cm2), the Photoconductive Series detectors should be considered for better linearity. These detectors are not designed to be reverse biased! Very slight improvement in response time may be obtained with a slight bias. Applying a reverse bias of more than a few volts (>3V) will permanently damage the detectors. If faster response times are required, The Photoconductive Series should be considered. Refer to the Photovoltaic Mode (PV) paragraph in the "Photodiode Characteristics" section of this catalog for detailed information on electronics set up.
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Suppliers

Company
Product
Description
Supplier Links
Photovoltaic Series - PIN-5DP - OSI Optoelectronics
Hawthorne, CA, United States
Photovoltaic Series
PIN-5DP
Photovoltaic Series PIN-5DP
The Photovoltaic Detector series is utilized for applications requiring high sensitivity and moderate response speeds, with an additional sensitivity in the visible-blue region for the blue enhanced series. The spectral response ranges from 350 to 1100 nm, making the regular photovoltaic devices ideal for visible and near IR applications. For additional sensitivity in the 350 to 550 nm region, the blue enhanced devices are more suitable. These detectors have high shunt resistance and low noise, and exhibit long term stability. Unbiased operation of these detectors offers stability under wide temperature variations in DC or low speed applications. For high light levels ( greater than 10mW/cm2), the Photoconductive Series detectors should be considered for better linearity. These detectors are not designed to be reverse biased! Very slight improvement in response time may be obtained with a slight bias. Applying a reverse bias of more than a few volts (>3V) will permanently damage the detectors. If faster response times are required, The Photoconductive Series should be considered. Refer to the Photovoltaic Mode (PV) paragraph in the "Photodiode Characteristics" section of this catalog for detailed information on electronics set up.

The Photovoltaic Detector series is utilized for applications requiring high sensitivity and moderate response speeds, with an additional sensitivity in the visible-blue region for the blue enhanced series. The spectral response ranges from 350 to 1100 nm, making the regular photovoltaic devices ideal for visible and near IR applications. For additional sensitivity in the 350 to 550 nm region, the blue enhanced devices are more suitable. These detectors have high shunt resistance and low noise, and exhibit long term stability. Unbiased operation of these detectors offers stability under wide temperature variations in DC or low speed applications. For high light levels ( greater than 10mW/cm2), the Photoconductive Series detectors should be considered for better linearity. These detectors are not designed to be reverse biased! Very slight improvement in response time may be obtained with a slight bias. Applying a reverse bias of more than a few volts (>3V) will permanently damage the detectors. If faster response times are required, The Photoconductive Series should be considered. Refer to the Photovoltaic Mode (PV) paragraph in the "Photodiode Characteristics" section of this catalog for detailed information on electronics set up.

Supplier's Site Datasheet
Photodiodes - 1837133 - RS Components, Ltd.
Corby, Northants, United Kingdom
Photodiodes
1837133
Photodiodes 1837133
Photovoltaic Si Photodiode,5.1mm2

Photovoltaic Si Photodiode,5.1mm2

Supplier's Site
Photodiodes - 1837186 - RS Components, Ltd.
Corby, Northants, United Kingdom
Photodiodes
1837186
Photodiodes 1837186
Photovoltaic Si Photodiode,5.1mm2

Photovoltaic Si Photodiode,5.1mm2

Supplier's Site

Technical Specifications

  OSI Optoelectronics RS Components, Ltd.
Product Category Photodiodes Photodiodes
Product Number PIN-5DP 1837133
Product Name Photovoltaic Series Photodiodes
Photodiode Type PIN Photodiode
Photodiode Spectral Response Visible; IR IR
Spectral Response Range 350 to 1100 nm (3500 to 11000 Å) 350 to 1100 nm (3500 to 11000 Å)
Peak Sensitivity Wavelength 970 nm (9700 Å) 970 nm (9700 Å)
Photodiode Material Silicon Silicon; Si
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