Allicdata Part #: | P4810101-ND |
Manufacturer Part#: |
P4810101 |
Price: | $ 224.50 |
Product Category: | Industrial Controls |
Manufacturer: | Red Lion Controls |
Short Description: | CONTROL PROCESS 85-250V PANEL MT |
More Detail: | Process Controller 85 ~ 250VAC Panel Mount |
DataSheet: | P4810101 Datasheet/PDF |
Quantity: | 994 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 204.09500 |
Series: | P48 |
Part Status: | Last Time Buy |
Lead Free Status / RoHS Status: | -- |
Type: | Process Controller |
Moisture Sensitivity Level (MSL): | -- |
Input Range: | 0 ~ 20mA, 0 ~ 10VDC |
Output Type: | Analog, Relay (2) |
Control Method: | On/Off, Proportional (PID) |
Communications: | -- |
Number of Characters Per Row: | 4, 4 |
Display Type: | LED - Dual Color Characters |
Display Characters - Height: | 0.401" (10.20mm), 0.299" (7.60mm) |
Voltage - Supply: | 85 ~ 250VAC |
Panel Cutout Dimensions: | Square - 45.00mm x 45.00mm |
Mounting Type: | Panel Mount |
Termination Style: | Screw Terminal |
Ingress Protection: | IP65 - Dust Tight, Water Resistant |
Features: | -- |
Operating Temperature: | 0°C ~ 50°C |
Weight: | 0.38 lb (172.37g) |
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Process controllers and temperature controllers are a type of industrial controller responsible for controlling temperatures, process variables, and other process parameters. The main function of a process or temperature controller is to ensure the desired output, such as temperature, of a process is achieved and maintained. In order for this to occur, the controllers must be able to measure, compute, and adjust the desired output in order to keep the process within its required parameters.
A P4810101 (or Proportional, Integral, Derivative) controller is an advanced type of process or temperature controller that uses sophisticated algorithms in order to adjust its output automatically and more quickly. In response to changes in the measured performance of the process, the controller will adjust its output accordingly in order to maintain the desired process parameters. The main advantage of a PID controller is that it is able to make quick and accurate adjustments to the output while still allowing the operator to make manual adjustments if necessary. This allows for a greater degree of accuracy and control over the process.
PID controllers are typically used in a variety of industrial processes, such as heating, cooling, mixing, and fermenting. They can also be used in a range of other applications, such as control of pressure and flow of liquids or gases.
The basic working principle of a PID controller is relatively simple. The controller contains a sensor to detect the current performance of the process, and a computer to analyze the data from the sensor and make necessary adjustments so that the output matches the desired performance. The PID controller then updates the output accordingly in order to maintain the desired process performance.
The PID controller makes use of three separate algorithms, which are known as the Proportional, Integral, and Derivative algorithms. The Proportional algorithm is responsible for adjusting the output in order to achieve the desired performance. The Integral algorithm is responsible for ensuring that any excess output is eliminated by making small adjustments to the output. Finally, the Derivative algorithm ensures that the output follows the desired performance closely by predicting future changes in performance and making the necessary adjustments.
The PID controller is a useful tool in many industries as it allows for both quick reactions to changes in the process as well as precision control over the process. It is a reliable and accurate way to maintain the parameters of a process and ensure that the desired output is achieved and maintained.
The specific data is subject to PDF, and the above content is for reference
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