EE-SA407-P2 Allicdata Electronics
Allicdata Part #:

Z5356-ND

Manufacturer Part#:

EE-SA407-P2

Price: $ 6.59
Product Category:

Sensors, Transducers

Manufacturer: Omron Electronics Inc-EMC Div
Short Description: OPTO SENSOR SLOT TYPE 3.6MM
More Detail: N/A
DataSheet: EE-SA407-P2 datasheetEE-SA407-P2 Datasheet/PDF
Quantity: 400
1 +: $ 5.98500
5 +: $ 5.25294
10 +: $ 4.72752
25 +: $ 4.20210
50 +: $ 3.88685
100 +: $ 3.36155
500 +: $ 3.15148
1000 +: $ 2.94138
Stock 400Can Ship Immediately
$ 6.59
Specifications
Series: --
Part Status: Active
Sensing Method: Transmissive
Sensing Distance: 0.142" (3.6mm)
Voltage - Supply: --
Response Time: --
Output Configuration: NPN - Open Collector
Connection Method: Cable
Ingress Protection: --
Light Source: --
Adjustment Type: --
Operating Temperature: -20°C ~ 75°C
Description

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Optical sensors are specialized pieces of technology developed to help measure a variety of parameters related to light. The EE-SA407-P2 is a standard optical sensor widely employed across a multitude of industries, designed to measure particular wavelengths in the visible spectrum. In this article, we will explore the various application fields and discuss the working principles of the EE-SA407-P2.

The EE-SA407-P2 is a versatile device which has a number of applications in industries ranging from aerospace to industrial automation. In aerospace engineering, for instance, the sensor is used to measure aero-elasticity and the flow characteristics of various wind tunnel experiments. In robotics engineering, the EE-SA407-P2 is utilized to monitor motion control systems and measure the speed of robotic arms. In industrial automation, the device is utilized to measure temperature, pressure, and humidity of a production line for effective control and optimization. Due to its accurate and reliable performance, the EE-SA407-P2 has gained popularity in a variety of industries.

Speaking of its working principle, the EE-SA407-P2 employs a photoelectric circuit in order to measure the intensity of particular wavelengths of light. Essentially, the device consists of a pair of Fabry-Perot etalons which act as a multi-wavelength interferometer. The etalons are placed at a specific distance on the optical axis, adapted to reflect light of multiple wave lengths at different angles and direction with a consistent percentage of the total light. By using the Fabry-Perot etalons, the EE-SA407-P2 is able to measure the intensity of the reflected wavelengths with great accuracy. Additionally, the device is equipped with a built-in amplifier that can be adjusted to respond to various light intensities.

Furthermore, the EE-SA407-P2 has the capability to respond to both infra-red and visible wavelengths, thereby allowing for accurate detection of non-visible vectors. By employing the appropriate etalons and amplifiers, the device can measure the intensity of various wavelengths in the visible and infrared spectrum. Additionally, the device can be equipped with a number of additional features such as digital, analogue, and even temperature compensation outputs, allowing for reliable and consistent performance under varying conditions.

In summary, the EE-SA407-P2 is a reliable and accurate optical sensor used in a multitude of industries. By employing a photoelectric circuit along with the Fabry-Perot etalons, the device is able to measure the intensity of various wavelengths in the visible spectrum. Additionally, the device also has the capability to respond to infrared wavelengths, allowing for accurate detection of non-visible vectors. Furthermore, the device can also be equipped with a variety of additional features, aiding in optimizing its performance under varying conditions.

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