Categorization:Product Information
As a component often contacted by electronic engineers and technicians in the industrial field, heavy-duty connectors play the role of connection, building a communication bridge between blocked or isolated circuits in the circuit, so as to allow current to flow. The arrival of the era of intelligent industry has also brought opportunities to industrial connectors, especially in the fields of industrial automation, robotics and motor control. Focusing on the connector industry, it leads the development direction of the connector market. An important core advantage of heavy-duty connectors is that they can provide solutions for distributed control systems. The so-called distributed control system usually has a human-machine interface to realize human body control and system monitoring, which is connected by a communication network, and is connected to a programmable controller through the Internet. These controllers are then connected via a fieldbus to different units involved in the automation operation, such as actuators, electric motors, sensors, switches and valves. The development of heavy-duty connectors will be a major reform and progress in the industrial application of connectors, laying a good foundation for the development of our industry and providing great convenience for our lives. The development and progress of industrial connectors keep pace with the times, and are constantly humanized and technological. The main function of heavy-duty connectors lies in the connection between industrial liquid containers, which requires the integration of industrial connectors. The new design of industrial connectors not only changes the passage of industrial connector consumables, but also changes the industrial connector. The problem of inconvenient installation of connectors is also a new monument for the development of industrial connectors.
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The use of heavy-duty connectors simplifies the board design process. Smaller PCBs require manufacturing equipment that may not be able to accommodate larger PCBs. Whether extruding a device or product into a single PCB or multiple PCBs, issues such as power consumption, undesirable signal coupling to each other, availability of smaller components, and overall cost of the finished device or product need to be considered. In addition, the use of heavy-duty connectors also simplifies the production and testing of electronic devices. In the electronics manufacturing industry, simplifying testing reflects significant cost savings. High-density PCBs have more traces and components per unit area. Depending on the investment in the complexity of the manufacturing plant, the equipment or product is preferably designed to have several interconnected MDF boards rather than a single HDF board. Industrial connector through-hole technology allows third-dimensional connection of traces and components on the PCB. The first PCB may use conductive copper traces in horizontal and vertical directions along the PCB. By adding more layers of the board, there will almost be several single-layer PCBs between the sides of the double-sided PCB. A typical multilayer PCB with five layers can be less than 0.08 inches (2mm) thick. The vias have conductive inner surfaces that can carry current between any two layers of the multilayer PCB.
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