Allicdata Part #: | UA18CAD09NKTI-ND |
Manufacturer Part#: |
UA18CAD09NKTI |
Price: | $ 246.02 |
Product Category: | Sensors, Transducers |
Manufacturer: | Carlo Gavazzi Inc. |
Short Description: | UPROX DR TI M18 0-10V+NPN CBL |
More Detail: | Ultrasonic Proximity Sensor 3.937" ~ 35.433" (100m... |
DataSheet: | UA18CAD09NKTI Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 223.65000 |
Series: | UA18 |
Part Status: | Active |
Sensor Type: | Ultrasonic |
Sensing Distance: | 3.937" ~ 35.433" (100mm ~ 900mm) |
Output Type: | Analog Voltage, NPN |
Response Frequency: | 4Hz |
Shielding: | -- |
Material - Body: | Polybutylene Terephthalate (PBT) |
Voltage - Supply: | 15 V ~ 30 V |
Termination Style: | Cable |
Operating Temperature: | -20°C ~ 60°C |
Ingress Protection: | IP67 |
Indicator: | LED |
Package / Case: | Cylinder, Threaded - M18 |
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
Proximity sensors are devices that detect the presence of objects without any physical contact with them. The UA18CAD09NKTI is a type of proximity sensor, originally designed to detect liquid levels, but which has found applications in a wide range of industries.
The UA18CAD09NKTI consists of two main parts. An infrared light source is located in the sensor body, and an optical receiver is located at the sensor tip. When liquid is placed in the optical path, the light is reflected back to the receiver, resulting in a logical output. This output is transmitted to the processor, which then activates the desired action.
In order to detect liquid levels, the UA18CAD09NKTI makes use of the far-infrared technology. This technology is based on the principle of low-frequency radiation, which occurs when any object’s molecular structure is exposed to electromagnetic radiation. The far-infrared energy produced by the surrounding environment is absorbed by the liquid, which in turn causes a change in the electrical properties of the material, resulting in an increase in the sensor response.
The UA18CAD09NKTI is also used in industrial automation equipment, such as robot arms. When the arm of the robot is moved, the optical receiver can detect the presence of objects in its surrounding environment by receiving the far-infrared energy emitted by them. This is then transmitted to the processor, which will activate the robot arm to move in the desired direction.
Due to its ability to detect objects without physical contact, the UA18CAD09NKTI is also used in security systems. An infrared beam can be created between two points, and any object that passes through will cause the beam to be broken. The interruption of the reading is then relayed to a processor, which will then take the desired action.
The UA18CAD09NKTI is also used in a wide range of medical applications. It can detect any abnormalities in the body, such as changes in the temperature of the skin, or in the electrical signals in the brain. This information is then relayed to the processor, and the user is then provided with a diagnosis.
The UA18CAD09NKTI is also used for non-contact detection of liquid levels in containers, and as such finds use in the food and beverage industry. The far-infrared energy emitted by the sensor is absorbed by the liquid, resulting in a change in the electrical properties of the material. This change is then detected by the processor, which will then activate the desired action.
The UA18CAD09NKTI can also be used to detect the presence of living organisms, such as human bodies. Infrared energy is radiated by the organisms, and the receiver detects this energy, resulting in a logical output. This can then be used to activate alarms or security lights.
The UA18CAD09NKTI is a versatile device, and has found application in a wide range of industries. Its ability to detect objects without physical contact has made it a popular choice for automation equipment, security systems, and medical devices. It is an ideal choice for any application that requires contactless detection.
The specific data is subject to PDF, and the above content is for reference
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