![AKT4B2111031 Allicdata Electronics](https://files.allicdata.com/upload/common/default.jpg)
Allicdata Part #: | AKT4B2111031-ND |
Manufacturer Part#: |
AKT4B2111031 |
Price: | $ 353.36 |
Product Category: | Industrial Controls |
Manufacturer: | Panasonic Industrial Automation Sales |
Short Description: | CONTROL TEMP/PROCESS RELAY 24V |
More Detail: | Process, Temperature Controller (RTD, Type B, C, E... |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 321.23700 |
Series: | KT4B |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Type: | Process, Temperature Controller (RTD, Type B, C, E, J, K, N, PLII, R, S, T) |
Moisture Sensitivity Level (MSL): | -- |
Input Range: | -200°C ~ 2315°C, 0 ~ 20mA, 0 ~ 10VDC |
Output Type: | Relay (2) |
Control Method: | On/Off, Proportional (PID) |
Communications: | RS-485 (Modbus) |
Number of Characters Per Row: | 4, 4 |
Display Type: | LED - Dual Color Characters |
Display Characters - Height: | 0.472" (12.00mm), 0.240" (6.00mm) |
Voltage - Supply: | 24VAC/DC |
Panel Cutout Dimensions: | Square - 45.00mm x 45.00mm |
Mounting Type: | Panel Mount |
Termination Style: | Screw Terminal |
Ingress Protection: | IP66 - Dust Tight, Water Resistant |
Features: | Heater Fault Detection |
Operating Temperature: | 0°C ~ 50°C |
Weight: | 0.265 lb (120.2g) |
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AKT4B2111031 process controllers are temperature controllers that are primarily used for process control. They are designed to maintain precise temperature levels in order to optimize the efficiency of a process. This type of controller employs a variety of technologies to detect changes in temperature, control the process heating system, and manage the flow of heat into and out of the process area.
AKT4B2111031 process controllers employ a variety of technologies to accurately detect and control temperature levels. Process control technology, such as a proportional-integral-derivative (PID) algorithm, is used to enable precise temperature control. The process controller takes in process data such as current process temperature, target process temperature, and process heat output to generate PID values and adjust the heating element accordingly. Sensor technology is employed to detect any changes in temperature and provide input back into the PID algorithm. AKT4B2111031 process controllers may also employ environmental sensing technology to monitor changes in external temperature, airflow, humidity, and pressure, which can then be used to further calibrate the process.
The major components of AKT4B2111031 process controllers include the PID algorithm, sensors, heating element, and process control systems. The PID algorithm is a mathematical formula used to calculate how much of the heating element should be in operation at any given time in order to achieve a desired temperature. For example, if the target temperature is 65 degrees Celsius, the PID algorithm will calculate the amount of power that needs to be sent to the heating element in order to maintain that temperature. Sensors are used to detect changes in the process temperature and provide feedback to the PID algorithm in order to keep the process temperature at the desired level.
The heating element of AKT4B2111031 process controllers is typically a heating element such as a heating plate, an electric heater, a steam boiler, or even a flame. The heating element is controlled by the PID algorithm in order to maintain the target temperature. The process control system is responsible for managing the entire process and ensuring that the desired temperature is maintained throughout the process. It is responsible for reading input from the PID algorithm, controlling the heating element, and managing the flow of information throughout the process.
AKT4B2111031 process controllers have become increasingly popular due to their ability to provide precise temperature control with minimal user intervention. They are used in a variety of applications such as chemical processing, food production, and HVAC systems. By using a combination of process control technology and environmental sensing technology, they are able to provide reliable and consistent temperature control. This makes them an ideal choice for many process control applications.
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