MCC Panel

Fire Fighting Pump Control Panel (MCC Panel), Diesel Engine Control Panel and Deluge Valve Control Panel

Proline Systems design special control panels for usage in different types of fire fighting systems. These can be made as per the particular needs of the application and the specifications provided by the clients. Our control panels for firefighting systems are perfect for all types of HP. These type of control panels are used to keep the Fire Fighting Pumps Battle ready in case of Fire Breakout. Fire pumps may be powered either by an electric motor or a diesel engine or very occasionally a steam turbine.

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We take pleasure in accomplishing fire safety through hydrant systems safety and timely and efficient project accomplishment. we are offering premium quality of Fire Fighting Equipment Panel that is manufactured using latest technology of PLC. Our equipment comprise Jockey pumps, Main Engine pumps and they all are connected through diesel engine. These panels are attached with all systems and they function automatically through Diesel Engine starts relay and engine interlocks are covered properly.

We always seek freshers ideas and new ways of doing things, we design and manufacture Motor Control Panel, Deluge Valve Control Panel, Diesel Engine Control Panel and All kind of Annunciation Panels as per specification provided by our customers. Our team work with clients, offer solution as per clients requirements. We have successfully provided customer driven solutions. Our engineers and managers efficiently meet the challange of providing tailor made products to our customers.

Digital Direct Control Panel & PLC Panel

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Direct Digital Controls (DDC Panel) in BMS System , are controls operated by one, or more, small computer processors inside encluser . The computer processor uses a software program of instructions to make decisions based on the available input information. The processor operates only with digital signals and has a variety of built-in interface components so that it can receive information and output control signals.

There are many instances where the types of controls are mixed. For example a DDC system could have all electric “sensors,” the units that measure temperature, humidity, pressure or other variable properties. This same system may also have pneumatic actuators on all the valves, since pneumatics provide considerable power and control at low cost. A “transducer” creates the interface between the electrical output of the DDC system and the valve. The transducer takes in the DDC signal, say a voltage between zero and ten volts, and converts it to an output of 3psi to 15psi. Thus, at zero volts the output will be 3psi, rising to 15psi at ten volts.