EC2-391 Display Case and Coldroom Controller

Operating Instructions

GB

Recommended Sensor Positions in Detail:

(1)ECN-Pxx coil-in temperature sensor: Position on the first return bend of the evaporator.

(2)ECN-Pxx coil-out temperature sensor: Position directly after the evaporator on the common suction line.

(3)ECN-Pxx air-in temperature sensor: Position in the middle of the cabinet as high as possible.

(4)ECN-Pxx air-out temperature sensor: Position asymmetric closer to the expansion valve as high as possible.

(5)ECN-Fxx fin temperature sensor: Position on the evaporator, asymmetric closer to the expansion valve.

Recommendations for mounting the pipe sensor: Insure proper thermal contact by using a metallic pipe clamp or temperature resistant plastic straps. Do not use standard plastic tie wraps (as used for electrical wiring) as they may become loose over time, which could result in faulty temperature measurements and poor superheat control performance. It is recommended to insulate the pipe temperature sensor with ARMAFLEX™ or equivalent. The recommended position of the pipe sensors is between 9 and 3 o’clock as shown in the picture.

Both air temperature sensors should be mounted on spacers in the air duct so that there is airflow around.

Caution: The sensor cables can be extended if necessary. The connection must be protected against water and dust.

The evaporator outlet temperature sensor should be mounted on the common suction header of the evaporator.

A calibration correction can be made using the parameter u1 (see procedure below).

Setup and Parameter Modification Using the Keypad

For convenience, an infrared receiver for the optional IR remote control unit is build-in, enabling quick and easy modification of the system parameters when a computer interface is not available.

Alternatively, the parameters can be accessed via the 4-button keypad. The configuration parameters are protected by a numerical password. The default password is “12”. To select the parameter configuration:

Press the PRG button for more than 5 seconds, a flashing “0” is displayed

Press or until “12” is displayed (password)

Press SEL to confirm password

The first modifiable parameter code is displayed (/1).

To modify parameters see Parameters modification below.

Defrost Activation:

A defrost cycle can be activated locally from the keypad:

Press the button for more than 5 seconds, a flashing “0” is displayed

Press or until “12” is displayed (password)

Press SEL to confirm password

The defrost cycle is activated.

Special Functions:

The Special Functions can be activated by:

Press and together for more than 5 seconds, a flashing “0” is displayed.

Press or until the password is displayed (default = 12). If password was changed, select the new password.

Press SEL to confirm password, a “0” is displayed and the Special Function mode is activated.

Press or to select the function. The number of special functions is dynamic and controller dependent. See list below.

Press SEL to activate the function without leaving the special function mode.

Press PRG to activate the function and leave the special function mode.

Most of the Special Functions work in a toggle mode, the first call activates the function, and the second call deactivates the function.

The indication of the function can only be displayed after exiting the special function mode.

0: Display test function

1: Clear alarm messages

2: Cleaning mode. The cleaning mode is effectively a manual defrost with the option of the fans on/off. The cleaning mode should not be used in order to isolate the application for maintenance purposes.

3: Fans only

4: Set the electronic control valve to 100% open

5: Resets all parameters to the factory default setting. The controller will indicate “oF” during the reset and the valve will close.

Display of Data:

The data to be shown on the display can be selected by the user. In case of an alarm, the alarm code is displayed alternately with the selected data. The user can inhibit the alarm code. Press the SEL button to scroll through all possible displayable data.

The display will show for one second the numerical identifier of the data and then the selected data. After two minutes the display will return to the by parameter /1 selected data.

It is possible to temporarily display the values of the different sensors. This is a useful feature when initially setting-up the system without the aid of the WebPages. Press the SEL sequentially. The value displayed on the screen corresponds to the number corresponding to the /1 parameter. Action only valid when parameter H2 = 3.

Parameter Modification: Procedure

• Press

or

to show the code of the parameter that has to be changed;

Logical status of lighting relay

IR LED

• Press SEL to display the selected parameter value;

 

 

• Press

or

to increase or decrease the value;

 

 

• Press SEL to temporarily confirm the new value and display its code;

• Repeat the procedure from the beginning "press

or

to show..."

To exit and save the new settings:

 

 

• Press PRG to confirm the new values and exit the parameters modification

procedure.

 

 

 

To exit without modifying any parameter:

Do not press any button for at least 60 seconds (TIME OUT).

Press “ESC” on IR remote control.

EC2-391_65136_EN_R01.doc

Replacement for 00

LON service LED

Logical status of fan relay Logical status of defrost heater relay

Alarm condition

2 / 4

PCN: 865 022

21.09.2007

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Emerson EC2-391 Setup and Parameter Modification Using the Keypad, Defrost Activation, Special Functions, Display of Data

EC2-391 specifications

The Emerson EC2-391 is a sophisticated and versatile control solution designed to meet the demands of modern automation and process control environments. Boasting a robust architecture, this controller is suitable for various industrial applications, including manufacturing, petrochemicals, and utilities.

One of the main features of the Emerson EC2-391 is its modular design, allowing for easy scalability and flexibility. Users can configure the system according to their specific needs by adding or removing modules. This modularity accommodates a wide range of I/O options, ensuring compatibility with diverse field devices and integration into existing systems.

Another significant characteristic is the controller's high processing power. The EC2-391 utilizes advanced processing technology that enables real-time data handling and fast decision-making. This performance is crucial for systems requiring rapid response times, such as safety-critical operations and complex process environments.

The EC2-391 is equipped with sophisticated communication protocols, such as Modbus, EtherNet/IP, and others, ensuring seamless integration with various networks and devices. This makes it easier to establish connectivity within industrial ecosystems, facilitating data exchange between different systems and improving overall operational efficiency.

In addition to strong communication capabilities, the Emerson EC2-391 features advanced diagnostic functions. These functionalities allow for continuous monitoring of system performance, identifying potential issues before they escalate into failures. Operators benefit from enhanced visibility into their processes, enabling proactive maintenance strategies and reducing downtime.

Another noteworthy technology in the EC2-391 is its user-friendly interface. The controller supports intuitive setup and configuration, which simplifies the deployment process. The interface provides easy access to system parameters, trends, and alerts, aiding operators in effective management and optimization of processes.

Security is a critical focus in modern industrial control systems, and the Emerson EC2-391 incorporates various security features. These include user authentication, encrypted communication, and access control measures that safeguard against unauthorized access and cyber threats.

In summary, the Emerson EC2-391 is an advanced control solution characterized by modularity, high processing power, robust communication capabilities, advanced diagnostics, user-friendly interface, and strong security features. Its ability to adapt to various industrial applications makes it a formidable choice for companies seeking to enhance their automation strategies and improve operational efficiency.