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Type | Temperature Controller |
---|---|
Operating Temperature | 0 to 50 °C |
Output Type | Relay, SSR |
Display | Dual 4-digit display |
Input Type | Thermocouple, RTD |
Mounting | Panel |
Dimensions | 48 x 48 mm |
Protection Rating | IP65 (front) |
Communication | RS485 |
Describes analog inputs, relay outputs, SSR output, serial input, and digital input specifications.
Details control algorithms, proportional band, integral time, derivative time, software functions, remote control, and manual function.
Illustrates the electrical connections for the ATR620 controller.
Details wiring for analog input AN1 with thermocouples and PT100/NI100 sensors.
Describes wiring for analog input AN2 with thermocouples and V/mA signals.
Details wiring for relay outputs (OUT, A1) and SSR output (A2).
Explains the function of the two numerical displays and what values they can show.
Details the functions of each key (7-12) for navigation, parameter modification, and control.
Explains how to program or modify cycle data, including auxiliary outputs.
Guides on setting the initial setpoint value for a cycle.
Details how to program the duration and setpoint for each step in a cycle.
Explains how to program the state of auxiliary outputs (A1, A2) during cycle steps.
Details the procedure for starting a cycle and configuring a delayed start.
Describes how to use the "Simple Controller" function while a cycle is running.
Guides on initiating the auto-tuning process for controller optimization.
Details how to use an external input for setting the temperature.
Explains how to use serial communication for remote setpoint control.
Describes how to manually control the output percentage of the controller.
Guides on modifying general configuration parameters with a password.
Details copying parameters and cycle data using a memory card.
Describes band alarms based on setpoint and process values.
Explains deviation alarms relative to setpoint and process values.
Details general alarms based on process value deviations.
Describes general alarms based on setpoint value deviations.
Explains how the controller resumes cycles after power failures with automatic gradients.
Details resuming interrupted cycles with programmable gradients after power failure.
Explains the waiting function used when the plant cannot follow programmed gradients.
Describes controlling the temperature gap between multiple process loops.
Lists baud rates, format, and supported functions for Modbus RTU.
Explains the Master function for serial communication between controllers.
Lists Modbus addresses, descriptions, and read/write capabilities for ATR620.
Lists Modbus addresses, descriptions, and read/write capabilities for ATR620.
Provides an example configuration for a single thermocouple and SSR control.