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Relpol ZGGZ4-1 6-pin comb jumper for sockets and relays, 10A 250V AC, grey
Relpol ZGGZ4-1 6-pin comb jumper for sockets and relays, 10A 250V AC, grey
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Relpol ZGGZ4-1 6-pin comb jumper for sockets and relays, 10A 250V AC, grey
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Relpol ZGGZ4-1 6-pin comb jumper for sockets and relays, 10A 250V AC, grey
Relpol ZGGZ4-1 6-pin comb jumper for sockets and relays, 10A 250V AC, grey
The Relpol ZGGZ4-1 is a professional 6-pin comb jumper engineered to streamline the electrical interconnection of relay sockets. This component is specifically designed to bridge adjacent sockets, providing a stable and efficient electrical path within industrial control panels and automation cabinets. With a robust construction and a grey finish, it integrates seamlessly into standard electrical setups, ensuring reliable connectivity and a clean, organized wiring layout.
Using the Relpol ZGGZ4-1 comb jumper significantly reduces the time required for manual wiring between relay modules. By providing a pre-configured bridging solution, it minimizes the risk of loose connections and wiring errors that can occur with individual jumper wires. The 10A and 250V AC rating makes it suitable for a wide range of standard industrial relay applications, while its compact 6-pin design helps maintain a tidy and professional appearance inside electrical enclosures.
This comb jumper may not be suitable for applications requiring higher current loads exceeding 10A or voltages above 250V AC. It is also not intended for use with relay sockets that do not feature the specific terminal spacing compatible with this 6-pin design.
To install the Relpol ZGGZ4-1, align the 6 pins with the corresponding terminal slots on the adjacent relay sockets. Press the jumper firmly into place until it is fully seated to ensure a secure electrical contact. Ensure that the power supply is disconnected before performing any installation or maintenance on the relay modules to prevent accidental short circuits.
Always ensure that the comb jumper is fully inserted into the terminals to maintain optimal conductivity and prevent overheating. Regularly inspect the connection points during routine maintenance to ensure the jumper remains securely in place.
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