T9602-5-D-1 Allicdata Electronics
Allicdata Part #:

235-1378-ND

Manufacturer Part#:

T9602-5-D-1

Price: $ 35.64
Product Category:

Sensors, Transducers

Manufacturer: Amphenol Advanced Sensors
Short Description: SENSOR HUMID/TEMP 5V I2C 2% MOD
More Detail: Humidity Temperature Sensor 0 ~ 95% RH I²C ±2% RH ...
DataSheet: T9602-5-D-1 datasheetT9602-5-D-1 Datasheet/PDF
Quantity: 15
1 +: $ 32.40090
5 +: $ 30.77930
10 +: $ 28.35000
25 +: $ 25.10980
50 +: $ 24.29970
100 +: $ 23.48980
250 +: $ 22.67970
Stock 15Can Ship Immediately
$ 35.64
Specifications
Series: --
Packaging: Bulk 
Part Status: Active
Sensor Type: Humidity, Temperature
Humidity Range: 0 ~ 95% RH
Output Type: I²C
Output: 14b
Accuracy: ±2% RH
Response Time: 29s
Sensitivity: --
Voltage - Supply: 5V
Mounting Type: User Defined
Operating Temperature: -20°C ~ 70°C
Package / Case: Module
Supplier Device Package: --
Description

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Humidity and moisture sensors have been used in a variety of applications for decades. Of particular interest is the application of humidity sensing for the interpretation of environmental conditions. T9602-5-D-1 is an advanced humidity and moisture sensor specifically designed to meet the demands of different industrial control and process control applications. It is designed to withstand harsh environmental conditions, is easy to install, and has the capability to accurately measure and report relative humidity. This article explores the application field and working principle of the T9602-5-D-1 relative humidity and moisture sensor.

The T9602-5-D-1 relative humidity and moisture sensor is specially designed for industrial and process control applications. This type of humidity and moisture sensor has the capability to accurately measure relative humidity and moisture levels in harsh industrial and process control environments. The sensor consists of a sensing element, a capacitance/resistive humidity transducer, a linear amplifier, a linearization circuit, and a digital output device. It is designed to measure relative humidity and moisture levels in the range of 0 to 100%.

The primary application of the T9602-5-D-1 relative humidity and moisture sensor is in the industrial and process control industries. In these industries, the sensor can be used to monitor temperature and relative humidity levels in the environment. For example, it can be used to control cooling systems in factories, warehouses, and other enclosed spaces. Additionally, it can be used in the climate control systems of vehicles, both for human and animal comfort. The sensor\'s accuracy and range of measurement make it an ideal choice for industries where humidity levels need to be kept at a certain level.

The working principle of the T9602-5-D-1 relative humidity and moisture sensor is based on the principles of a capacitance/resistive humidity transducer. This transducer consists of two plates, one plate being porous and coated in a conductive material, and the other plate being non-porous and coated in a thin film of water-soluble material. When the air or environment around the sensor is exposed to humidity, the water in the environment is absorbed by the porous plate. As the moisture absorption increases, the capacitance of the plates increases, and so does the resistance of the sensor. This change in resistance is measured and then converted into a signal that can be read by a connected device, such as a controller.

The T9602-5-D-1 relative humidity and moisture sensor is designed to accurately measure relative humidity and moisture levels in harsh industrial and process control environments. It has the capability to accurately measure and report relative humidity and moisture levels in the range of 0 to 100%, making it an ideal solution for climate control applications. Furthermore, its linear amplifier and linearization circuit make it easy to install, and its digital output device allows for data output in an easy-to-read format. This makes the T9602-5-D-1 the perfect choice for industrial and process control applications, as it provides accurate readings in even the harshest of environments.

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

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