Rolls-Royce PCC1030C ULSTEIN Panel Controller Card
In the complex field of ship automation control, Rolls-Royce PCC1030C ULSTEIN panel controller card, with its excellent performance and advanced technology, becomes the key component to ensure the efficient operation and precise control of ships. With profound technical accumulation and unremitting pursuit of quality, Rolls-Royce creates this controller card specially designed for the complex control system of ships, providing stable, intelligent and efficient control solutions for all kinds of ships.
Technical specification analysis
Hardware Architecture: PCC1030C is equipped with a high-performance [specific model] microprocessor, with a computing speed of up to [X] MIPS, which can quickly process massive data from various systems of the ship, including propeller speed feedback, rudder angle signals, and monitoring data from various types of sensors, and provide a solid data processing foundation for real-time decision-making of the ship's control system. In terms of memory, it is equipped with [X] MB cache and [X] GB system memory (RAM). Cache accelerates the reading of frequently used data, reduces data access delays, and improves processor efficiency; large-capacity system memory ensures that the controller card can run multiple complex programmes and tasks simultaneously, supporting multi-threaded operations of ship automation systems, such as simultaneous monitoring of equipment, troubleshooting and remote communication.
The input and output interfaces are extremely rich, with [X] digital input interfaces (DI), which can be connected to digital sensors such as limit switches, pressure switches, etc., to monitor the switching status of the equipment in real time; and [X] digital output interfaces (DO), which can accurately control the actuators such as relays, solenoid valves, etc. The analogue input interfaces (AI) support multiple complex programs and tasks. Analogue input interface (AI) supports [X] inputs, access to temperature, pressure and other analogue sensors, analogue signals are converted into digital signals for the processor to analyse; analogue output interface (AO) [X], the output of analogue control signals to regulate the working status of inverters, control valves and other equipment. In addition, it is also equipped with Ethernet, RS485, CAN bus and other communication interfaces, supporting Modbus TCP, Profibus DP and other communication protocols, to achieve efficient data interaction with other control systems on board the ship, the host computer and remote monitoring centre.
Electrical Characteristics: The operating voltage range is 90 - 264V AC, which can be adapted to different ship power supply networks around the world without the need for additional voltage conversion equipment. The internal high-performance voltage regulator circuitry provides a stable output of [X] V DC within the ±10% voltage fluctuation range common to marine power systems, ensuring the stable operation of electronic components and external devices on the card. Normal operating power consumption is only [X] W, low-power design not only reduces the burden on the ship's power system, improve energy efficiency, but also reduces equipment heating, extends the service life of the equipment, reduces maintenance costs, especially in the ship's automation system for a long period of time in the operation of the advantages of a significant.
Physical specifications and protection: compact dimensions, [L X W X H] mm, easy to install in the limited space of the ship's control cabinet layout. Standard [specific mounting methods, such as rail mounting or screw mounting, etc.], easy to install and dismantle, convenient for maintenance personnel to maintain and replace the equipment. The shell is made of sturdy aluminium alloy, with special surface treatment, good anti-corrosion performance, protection level up to IP65, can be completely dust-proof, withstand low-pressure water spray in all directions, effectively resist the ship's internal humidity, dusty, oily and other harsh environments, to ensure the stable work in the complex marine environment, and to ensure the stable operation of the ship's automation system.
Performance Advantage Analysis
Precise and efficient control: Based on powerful hardware configuration and advanced control algorithms, PCC1030C can achieve precise and efficient control of ship equipment. Through high-precision sensor data acquisition and fast data processing, it can accurately adjust key parameters such as propeller speed, blade angle and rudder steering angle. When the ship enters or leaves the harbour, the operator can make use of the control panel connected to the controller card to achieve low-speed, flexible and safe control of the ship to avoid collision accidents; when the ship is sailing on the ocean, it can adjust the working state of the propeller in real time according to the ship's load and sea conditions to maintain the best propulsion efficiency, reduce fuel consumption and improve the economy of navigation.
High reliability and stability: from design to production, it strictly follows the international high standard quality control system and adopts high-quality industrial-grade components and advanced manufacturing technology. Before leaving the factory, it has passed a series of stringent tests such as high and low temperature test (working temperature range -20℃ to +60℃, simulating extreme environments such as polar and tropical), humidity test (withstanding up to 95% relative humidity), vibration test (simulating vibration of ship navigation), and EMC test, etc., to ensure that the product operates stably in all kinds of harsh environments. Built-in perfect fault diagnosis and alarm mechanism, when detecting abnormalities in the ship system, sound and light alarm signals will be issued in a timely manner, and detailed fault information will be shown on the connected display screen, which is convenient for maintenance personnel to quickly locate and eliminate the faults, and significantly enhance the reliability and safety of ship automation system, and guarantee the continuity and stability of ship navigation.
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