1769-ECR Terminal resistor module
Brand:A-B Operating System: Simple
Features :Terminal resistor module
Warranty: One year
System Capability: Strong Color:whiteMaterial Code: 1769-ECR Service advantages: after-sales support, goods
Abundant source product features: reasonable price, reliable quality
1、 Functional Features
Terminal resistor function:
Mainly used to provide terminal resistors in network communication to ensure stable signal transmission and reduce signal reflection. In industrial automation networks such as EtherNet/IP, ControlNet, etc., correctly installing terminal resistors is crucial for the reliability and performance of the network.
Strong compatibility:
Highly compatible with Rockwell Automation’s CompactLogix controllers and other related devices, it can be seamlessly integrated into existing control systems.
Follow relevant industrial communication standards to ensure that devices from other brands can also work well in the same network.
Easy installation:
Usually adopting a plug-in design, installation is simple and fast, without the need for complex tools and professional skills. It can be conveniently installed on the guide rails of the control cabinet or other suitable positions.
High reliability:
Adopting high-quality electronic components and advanced manufacturing processes, it has high reliability and stability. Capable of long-term stable operation in harsh industrial environments, reducing downtime caused by equipment failures.
2、 Technical parameters
Resistance value:
The resistance value of terminal resistors is usually selected according to specific network requirements. Common resistance values include 75 Ω, 120 Ω, etc., to match different types of network communication media and protocols.
Working temperature:
Capable of working normally within a certain temperature range and adapting to temperature changes in industrial environments. The usual operating temperature range is around -40 ℃ to+70 ℃.
Protection level:
Has a certain level of protection to prevent dust, moisture, and other pollutants from entering the interior of the module, affecting its performance and reliability. Common protection levels include IP20, IP30, etc.
Size and weight:
Compact in size, lightweight, easy to install and layout. The specific size and weight depend on different models and specifications.
3、 Application scenarios
Industrial automation network:
In industrial automation control systems, the 1769-ECR terminal resistor module is widely used in various network communication scenarios, such as factory automation production lines, process control systems, logistics conveying systems, etc. Ensure the stability and reliability of network communication, and improve the overall performance and reliability of the system.
Equipment integration:
When different devices need to be integrated into the same network, 1769-ECR can provide necessary terminal resistors to ensure smooth communication between devices. For example, when connecting sensors, actuators, controllers, and other devices to an EtherNet/IP network, using terminal resistors can improve the stability and anti-interference ability of the network.
System upgrade and renovation:
When upgrading and retrofitting existing industrial automation systems, it may be necessary to add or replace terminal resistor modules. 1769-ECR can be easily integrated into new system architectures to meet the needs of system upgrades.
In summary, the 1769-ECR terminal resistor module plays an important role in the field of industrial automation, providing reliable terminal resistors for network communication, ensuring stable operation and efficient performance of the system.
As a pioneer in technology, ABB has received an order from Transpower New Zealand to upgrade its high-voltage direct current (HVDC) transmission lines, which interconnect the transmission networks of the North and South Islands.
It is reported that this high-voltage direct current transmission line connecting the North Island and South Island of New Zealand is an important component of the country’s power grid system and also the power balance system between South Africa. ABB’s Ability MACH control system, as the brain or nerve center of the link, will become a key component of the upgrade.
It is reported that the population of the North Island of New Zealand is more than three times that of the South Island, and in addition to its picturesque scenery, it also provides a large amount of hydroelectric power. Therefore, the demand for electricity in the North Island has greatly increased and relies on the power supply in the South Island. The north-south high-voltage direct current transmission interconnection line, which is over 600 kilometers long, can efficiently transmit clean electricity to high demand areas. The line also plays an important role in the New Zealand electricity market by allowing electricity trading between two islands.
ABB has a historic involvement in this project. The first New Zealand HVDC transmission system was built by ABB (formerly ASEA) in 1965, which was also one of the world’s first HVDC transmission systems at that time. It was originally a bipolar 600 megawatt (MW) link with a mercury arc valve, until 1992 when the original equipment was connected in parallel to a single pole and ABB collaborated with it to debug a new thyristor pole, increasing the capacity to 1040 MW.
It is reported that this upgrade includes the upgrade of Valve 2, which is composed of electrodes, optical fibers, and valve control units based on the latest ABB Ability MACH control system. The upgrade will be completed in 2020, and its implementation will minimize the impact on the power grid and electricity trading market.
This upgrade will improve the reliability and availability of the power grid, thereby enhancing power safety and bringing clean energy to consumers, “said Claudio Facchin, President of ABB’s Power Grid Division.” This project reaffirms our strategic focus on services and commitment to integrating renewable energy, as well as the role of digital technology based on ABB’s capabilities, and consolidates our leading position in HVDC technology, becoming the preferred partner for achieving a stronger, smarter, and more environmentally friendly power grid
ABB pioneered high-voltage direct current transmission technology 60 years ago and has obtained approximately 120 high-voltage direct current transmission projects with a total installed capacity of over 130000 megawatts, accounting for about half of the global installation base.
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