This IEC C14 male power connection cable strictly follows the IEC 60320 international electrical standard and has passed CCC safety certification. It is a standard power connection accessory for IT equipment, computer room distribution, and household appliances. It is widely used in PDU distribution and conversion, equipment power input, cabinet wiring, and other scenarios. It is a highly universal standardized connection component in industrial and civilian power distribution systems.
The connector adopts the standard IEC C14 cross shaped male terminal structure, with three parallel pins arranged. The pin definition, interface size, and insertion and extraction force parameters fully comply with international general specifications, and can seamlessly adapt to all standard C13 female socket interfaces. The insertion is tight, the contact resistance is low, and the power transmission is stable and reliable. The interface comes with a physical foolproof structure with high directional recognition, which can effectively avoid misconnection and improve the efficiency and safety of on-site wiring and daily plugging and unplugging operations. The joint end face is clearly engraved with safety certification marks, rated electrical parameters, and polarity markings, which are compliant and traceable, meeting the electrical safety requirements of various scenarios such as computer rooms, commercial, and household use.
The connector shell is made of integrated flame-retardant engineering plastic by injection molding, with compact and firm structure, excellent electrical insulation strength, and good impact resistance, high and low temperature resistance and aging resistance. Multiple horizontal anti slip ribs are installed on the surface of the shell to increase grip friction, making it easy to insert and remove without slipping, even when wearing protective gloves for stable grip. The root of the wire is equipped with a hollow stepped anti bending wire tail, which evenly disperses the stress generated by the pulling and repeated bending of the wire through multiple layers of circular grooves, effectively alleviates the fatigue loss at the root position, reduces the occurrence of internal copper wire breakage and outer sheath cracking, and significantly extends the overall service life of the connecting wire. Internally, a lockwire fastening structure is used, and the pins are firmly connected to the wire core through precision cold pressing technology. The tensile performance meets the standard, and it is not easy for the wire core to loosen or the terminal to fall off during daily dragging and bending use, ensuring long-term electrical connection stability.
The wire body adopts high-quality PVC insulation outer cover, with good flexibility, bending resistance and wear resistance. It is not easily damaged during daily storage and wiring bending, and can adapt to various usage environments. The internal conductor is made of high-purity oxygen free copper core, which has excellent conductivity and low power transmission loss. It has stable temperature rise under long-term power on conditions under rated load, and is not easy to generate heat and oxidize. The mainstream rated specification of the product is 10A 250V, and the grounding pin is fully conductive, providing reliable grounding protection for metal shell equipment, effectively reducing the risk of leakage and electric shock, and fully ensuring equipment operation and electrical safety.
This C14 Male connector can be used in combination with various National standard plugs, C13 female sockets, etc. It is widely compatible with PDU power distribution units, UPS uninterruptible power supplies, servers, desktop computers, network switches, displays, kitchen appliances and other power distribution and consumption equipment with C13 interfaces. It is not only suitable for internal wiring in computer room cabinets, equipment power extension and connection, but also for power supply connection of household and office equipment. It is a standard power accessory that balances universality, safety and durability in power distribution and consumption scenarios.
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