ABB NTCF23 Fiber Optic Communication Termination Unit
Basic Information
Dimensions: The product has a net depth/length of 160.02mm, a net height of 228.6mm, a net width of 213.36mm, and weighs approximately 2.1kg.
Place of Origin: Originally from Sweden.
Functional Characteristics
Optical to electrical conversion: The main function is to achieve the conversion of electrical signals to optical signals and optical signals to electrical signals, so that equipment based on the transmission of electrical signals and fibre-optic networks based on the transmission of optical signals can connect and communicate with each other.
Signal transmission and processing: the transmitted signal is processed, including signal amplification, shaping, filtering, etc., to improve the quality and stability of the signal and ensure the reliable transmission of the signal in the optical fibre network. At the same time, it also has signal multiplexing and demultiplexing functions, capable of multiplexing multiple electrical signals into one optical signal for transmission, or demultiplexing the received optical signals into multiple electrical signals for transmission to different devices.
Network connection and management: as a node in the optical fibre communication network, it is responsible for connecting different devices and network segments to achieve network expansion and extension. It supports a variety of optical fibre interface types and communication protocols, and is compatible and interoperable with equipment from different manufacturers. It also has network management functions, such as link status monitoring, fault diagnosis and alarm, etc., which is convenient for users to maintain and manage the network.
Working Principle
In operation, NTCF23 first receives electrical signals from the control system or field devices, converts the electrical signals to optical signals through the internal electro-optical converter module, and then sends the optical signals through the optical fibre interface to the optical fibre network for transmission. At the receiving end, NTCF23 receives optical signals from the fibre optic network through the fibre optic interface, converts the optical signals into electrical signals through the internal optoelectronic converter module, and finally outputs the electrical signals to the corresponding equipment or control system. Throughout the process, the NTCF23 also monitors and processes the signals to ensure correct transmission and normal operation of the equipment.
Application Scenarios
Industrial automation control system: In the field of industrial automation, such as automation control system in chemical, petroleum, electric power, iron and steel industries, it is used to connect PLC, DCS, sensors, actuators and other equipments, and realise high-speed and reliable communication between equipments. Through the optical fibre communication network, equipment scattered in different locations can be connected into a unified control system to improve the reliability and flexibility of the system.
Intelligent Transportation System: In the field of intelligent transportation, such as the monitoring system of highways and urban traffic, it can be used to connect traffic signal controllers, video monitoring equipment, vehicle detection equipment, etc., to achieve real-time transmission and processing of traffic data. Through the optical fibre communication network, each traffic monitoring point can be connected into a unified network to improve the efficiency and intelligent level of traffic management.
Energy management system: In the monitoring and management system of energy field, such as electric power system, oil and gas pipeline, etc., it can be used to connect the electric power monitoring equipment, pipeline monitoring equipment, energy metering equipment, etc., to realise real-time collection and transmission of energy data. Through the optical fibre communication network, each energy monitoring point can be connected into a unified network to improve the efficiency and reliability of energy management.
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