Rolls-Royce P001240-1 Display Version 2
Brand association
Rolls-Royce has been cultivating in the high-end manufacturing field for many years, its aero-engine manufacturing technology is at the world's leading level, and it has accumulated rich experience in precision machining, material science, system integration and so on. These core technical capabilities not only support its aviation and automotive businesses, but also provide a solid foundation for the research and development of industrial equipment, and Rolls-Royce P001240-1 Display Version 2 is an extension of this technical advantage.
The co-operation with Weidmüller has resulted in complementary technologies. Weidmüller's expertise in electrical connectivity, electronic interface modules and industrial network solutions, and Rolls-Royce's experience in high-end manufacturing quality control and complex system integration, have helped to overcome technical challenges in the development of display devices. For example, in terms of the electrical stability and data transmission reliability of the equipment, Weidmüller's electrical connection technology ensures zero delay and distortion in signal transmission, while Rolls-Royce's system integration capability guarantees the seamless connection between the display equipment and other industrial systems, which gives the display equipment industry-leading technological genes and quality assurance from the R&D stage.
Speculative specification parameters
Display specifications
In order to meet the demand for accurate presentation of information in industrial scenarios, Rolls-Royce P001240-1 Display Version 2 will most likely be equipped with a high-resolution display. Considering the demand for displaying industrial data charts, complex maps, etc., its resolution may reach 2560×1440 or even higher, compared with the common 1920×1080 resolution, which can provide more delicate image details, enabling engineers and operators to clearly obtain information without zooming in when viewing precise data and complex graphics.
In terms of screen size, the 10 - 15 inch design has good applicability in industrial applications. Ship cockpit, for example, 12-inch screen can be integrated into a large amount of information in a limited space, but not because of the size of the impact of the operating space; in the factory control panel, the size of the operator in a certain distance away from the display can be easily read quickly, but also easy to install and layout.
In addition, the screen may use IPS (In - Plane Switching, Plane Switching) technology, this technology can provide 178 ° ultra-wide viewing angle, to ensure that when viewing the screen from different angles, the image and data will not appear colour deviation or blurring of the phenomenon, in the multi-people collaboration of industrial environments, the different positions of the personnel can clearly and accurately access the screen information.
Interface type
In the interface configuration, the display device will give full consideration to the diversity and complexity of industrial applications. In addition to the common HDMI interface for high-definition video signal transmission, USB interface for data storage device connection and software upgrades, it will be equipped with Ethernet interface. The Ethernet interface supports TCP/IP protocol, which can realise high-speed connection between the device and the industrial network, facilitating remote monitoring and data transmission, enabling technicians to view the display screen and operation data of the on-site equipment in real time in the office.
For the industrial automation field, the device may be equipped with Modbus interface, which is a widely used communication protocol in the industrial field, through which the display device can interact with PLC (Programmable Logic Controller), sensors and other devices, receive the operating parameters of the device and display them in real time; at the same time, it can also transmit the operator's commands to other devices through the Modbus protocol to achieve integrated control. At the same time, it can also transmit operator commands to other devices via Modbus protocol, realising integrated control. In addition, the CAN bus interface is suitable for industrial scenarios that require high real-time and reliability, such as automotive production lines, ship power system monitoring, etc., to ensure fast and stable data transmission in complex electromagnetic environments.
Power supply and power consumption
The device is powered by 24V DC power supply, which is widely used in the industrial field and is characterised by high stability and strong anti-interference capability. The device may be equipped with an efficient power management module, which adopts PWM (Pulse Width Modulation) technology to automatically adjust the power output according to the workload of the device, which ensures the display performance and effectively reduces the power consumption at the same time. Under normal operating conditions, the power consumption is controlled between 10 - 30W, which saves about 20% of power compared with similar display devices, in line with the trend of industrial energy saving. At the same time, the power module has over-voltage, over-current, short-circuit protection, when the power supply voltage fluctuations or abnormalities, it can automatically cut off the power supply to protect the core components of the equipment, prolonging the service life of the equipment.
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