AXUVHS5 Allicdata Electronics
Allicdata Part #:

958-1012-ND

Manufacturer Part#:

AXUVHS5

Price: $ 263.89
Product Category:

Sensors, Transducers

Manufacturer: Opto Diode Corp
Short Description: SENSOR ELECTRON DETECTION 1MM
More Detail: Photodiode 700ps
DataSheet: AXUVHS5 datasheetAXUVHS5 Datasheet/PDF
Quantity: 8
1 +: $ 239.90400
5 +: $ 224.91000
10 +: $ 217.41300
25 +: $ 209.91600
Stock 8Can Ship Immediately
$ 263.89
Specifications
Series: AXUV
Packaging: Bulk 
Part Status: Active
Wavelength: --
Color - Enhanced: --
Spectral Range: --
Diode Type: --
Responsivity @ nm: --
Response Time: 700ps
Current - Dark (Typ): 1nA
Active Area: 1mm²
Viewing Angle: --
Operating Temperature: -10°C ~ 40°C
Mounting Type: User Defined
Package / Case: --
Description

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 sensing technology is rapidly advancing in its applications and range. One of the major pieces of technology in this field is the AXUVHS5, a type of photodiode designed with ultra-violet and visible light sensing capabilities. This photodiode extends the range of applications that can be used for light detection, and brings with it many advantages that other types of detector can not compete with. In this article, we will delve into the AXUVHS5 application field and working principle.

The AXUVHS5 is a cut-off type photodiode designed to detect ultra-violet and visible light. This photodiode is the latest technology enabled by the recent advances in integrated semiconductor fabrication technology. It features a wide spectral range from 200 nm to 850 nm and an ultra-high sensitivity. It also has wide-angle light sensitivity and a very fast response time. These features make this photodiode suitable for a wide range of applications such as life science, medical, security, illumination control, and automotive lighting systems.

In terms of the working principle, the AXUVHS5 is a combination of an optical detector and a two or four terminal electrode connection structure. The optical detector consists of four main parts: a light-gathering lens, a light-shield disk which allows only the desired wavelength range of the incident light to pass through, a light sensing device composed of a photoreceptor and a light-output equation element, and an amplifier. The combination of these four components produces the physical structure and the corresponding electrical signals which can easily be measured and quantified.

The light-gathering lens collects the light incident from the outside and focuses it onto the light sensing device. The light-shield disk filters out any unwanted wavelengths of light that is gathered and prevents them from reaching the light sensing device. The light sensing device converts the incident light into a usable voltage signal which is then amplified and sent to the output equation element. The output equation element, such as an operational amplifier, is responsible for calculating the output of the photodiode based on the input from the light sensing device.

Once the output equation is applied, the voltage generated by the photodiode can be used to control or modify the operation of the application device, such as a computer, or it can be used in analog or digital form to record the light intensity. This feature of the AXUVHS5 makes it particularly attractive for applications that need a fast response time and for controlling the level of illumination in a certain environment. This photodiode is also used in applications where it is necessary to measure the very faint light emitted from the UV radiation.

In conclusion, the AXUVHS5 is a specialized photodiode designed with a wide spectral range from 200 nm to 850 nm and with an ultra-high sensitivity. Its wide-angle light sensitivity and very fast response time make it suitable for a wide range of applications such as life science, medical, security, illumination control, and automotive lighting systems. It also has the ability to measure the very faint light emitted from the UV radiation which makes it perfect for many applications where precise light measurement and control is required.

The specific data is subject to PDF, and the above content is for reference

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