Allicdata Part #: | 235-1440-ND |
Manufacturer Part#: |
SUF268J001 |
Price: | $ 8.81 |
Product Category: | Sensors, Transducers |
Manufacturer: | Amphenol Advanced Sensors |
Short Description: | SINGLE SOLAR SENSOR |
More Detail: | Photodiode 925nm 40° |
DataSheet: | SUF268J001 Datasheet/PDF |
Quantity: | 491 |
1 +: | $ 8.00730 |
5 +: | $ 7.02450 |
10 +: | $ 6.32205 |
25 +: | $ 5.61960 |
50 +: | $ 5.19813 |
100 +: | $ 4.49568 |
250 +: | $ 4.35519 |
500 +: | $ 4.21470 |
1000 +: | $ 3.93372 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Active |
Wavelength: | 925nm |
Color - Enhanced: | -- |
Spectral Range: | 400nm ~ 1100nm |
Diode Type: | -- |
Responsivity @ nm: | -- |
Response Time: | -- |
Current - Dark (Typ): | -- |
Active Area: | -- |
Viewing Angle: | 40° |
Operating Temperature: | -30°C ~ 80°C |
Mounting Type: | User Defined |
Package / Case: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Optical Sensors - Photodiodes have a broad application field and provide a range of sensing solutions to engineers seeking to measure light and determine its intensity. The SUF268J001 is a photodiode detector that can be used for a variety of applications. It has a low noise rate, high sensitivity, and fast response time that makes it suitable for a range of applications. In this article, we will discuss its application field and working principle.
The SUF268J001 can be used in a variety of applications, including optical sensing, light measurements, medical instrumentation, and industrial automation. It is a fast and reliable photodiode detector that can provide high sensitivity measurements of light intensity in various application environments. It is ideal for environments that require accurate light readings such as laboratories, production lines, or medical instruments.
The SUF268J001 has a fast response time and low noise so it can be used in applications where fast and accurate readings are required. Its low noise also makes it ideal for applications that require a high degree of repeatability and accuracy. It can also be used for applications that require light-activated or time-sensitive measurements.
The working principle of the SUF268J001 is based on the fact that when light is incident on its active surface, it generates photoelectric current. This photoelectric current is proportional to the intensity of the light. The intensity of the light can be determined by measuring the photoelectric current. The photodiode consists of a P-N junction that acts as a detector, a transparent window to allow the passage of light onto the surface, and an active region that contains the photosensitive material.
When light is incident on the active region of the photodiode, the photosensitive material absorbs the light and creates an electric potential across the P-N junction. This electric potential generates an electric current known as the photoelectric current. The photoelectric current is the sum of the individual electric charges generated by each photon of light incident on the active region. The intensity of light can be determined by measuring the photoelectric current.
The SUF268J001 photodiode detector offers many advantages over other types of optical sensors such as its low noise rate, high sensitivity, and fast response time, making it ideal for many applications. It is also easy to install and, when coupled with proper signal conditioning circuitry, can provide accurate and reliable measurements of light intensity.
The SUF268J001 photodiode detector is an ideal solution for applications that require accurate light readings. With its fast response time, low noise, and high sensitivity, it is suitable for a variety of applications such as optical sensing, medical instrumentation, and industrial automation. Its low noise level makes it ideal for applications that require a high degree of repeatability and accuracy. The SUF268J001 photodiode detector provides a reliable and accurate way to measure light intensity in various application environments.
The specific data is subject to PDF, and the above content is for reference
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