PDU-V401A Allicdata Electronics
Allicdata Part #:

PDU-V401A-ND

Manufacturer Part#:

PDU-V401A

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Luna Optoelectronics
Short Description: PHOTODIODE UV 10.84MM SQ CERAMIC
More Detail: Photodiode 360nm 1µs 2-DIP Module
DataSheet: PDU-V401A datasheetPDU-V401A Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Bulk 
Part Status: Obsolete
Wavelength: 360nm
Color - Enhanced: --
Spectral Range: 300nm ~ 400nm
Diode Type: PIN
Responsivity @ nm: 0.1 A/W @ 360nm
Response Time: 1µs
Voltage - DC Reverse (Vr) (Max): 15V
Current - Dark (Typ): 5nA
Active Area: 10.84mm²
Viewing Angle: --
Operating Temperature: -40°C ~ 85°C
Mounting Type: Through Hole
Package / Case: 2-DIP Module
Description

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Photodiodes are semiconductor devices that operate on the principle that when you apply infrared light to a semiconductor device, a current is produced. PDU-V401A photodiodes are a particular type of photodiode which operates by breaking down light into separate wavelengths which are then picked up by the different detectors and converted into a current. This current is then used to control the voltage and current in the device, providing a highly precise and reliable measure of the light.

The application fields for PDU-V401A photodiodes are varied and extensive. They are used to measure the amount of light that is present in a variety of environments, including in outdoor and indoor lighting. Photodiodes have also been used to measure the levels of radiation, such as UV rays and cosmic rays, as well as various types of medical diagnostic equipment. They have also been used in the chemical industry.

The working principle of a PDU- V401A photodiode is based on the photodiode effect, which states that when light is incident upon a semiconductor material, electrons are generated within the material. When this occurs, a voltage and current is produced which can be measured and recorded. Depending on the type of photodiode being used, the voltage and current generated can be used to measure various parameters such as the intensity of light, the wavelength of light, or the direction of light.

The operation of the photodiode is further enhanced by the presence of a reverse bias voltage. This is provided by an external power supply connected to the device, which increases the current generated when the light is incident on the photodiode. As the current is increased, the sensitivity of the device is also increased, allowing for greater accuracy when measuring light.

The performance of PDU-V401A photodiodes is highly dependent upon the environment in which they are being used. The environment must be well lit and free of any external sources of light or radiation which could potentially interfere with the accuracy of the device. In addition, the device must be shielded from any sources of electromagnetic interference which could also affect the accuracy of the device.

In conclusion, PDU-V401A photodiodes are highly reliable and accurate devices which can be used to measure, monitor, and control the levels of light present in a variety of different environments. The photodiode effect is the principle on which the device operates, and this effect is further enhanced by the presence of an external power source. In order to ensure the performance and accuracy of the device, the environment in which the device is used must be shielded from external sources of light or interference. The robust and reliable design of the PDU-V401A photodiodes make them an excellent choice for a wide variety of applications.

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

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