
| Brand | MAGNECRAFT |
|---|---|
| Manufacturer Part Number | 70-463-1 |
| Part Type | PIN SOCKET |
The Magnecraft 70-463-1 250V Pin Din Rail Relay Socket is a versatile and reliable electrical component designed for use in various industrial automation applications. This socket features a 250-volt maximum operating voltage and is compatible with standard DIN rail mounting systems, making it easy to install and integrate into control panels and electrical enclosures.
Measuring merely 35mm in width and 32mm in height, this compact relay socket provides a space-saving solution for installing multiple relays on a single DIN rail. Each socket can accommodate one 24A relay cartridge, and with a total current capacity of 3A per socket, the Magnecraft 70-463-1 offers considerable load handling capability.
Constructed using high-quality materials, this socket ensures robustness and durability in demanding industrial environments. It's manufactured with a polysulfone housing, which offers excellent resistance to chemicals, UV light, and impact. In addition, the enclosed solid contacts help mitigate electrical arcing and sparking, ensuring safe and efficient operation.
Compact, reliable, and versatile, the Magnecraft 70-463-1 250V Pin Din Rail Relay Socket is the go-to choice for engineers, electricians, and automation professionals seeking a cost-effective and dependable solution for installing and managing relay systems in industrial applications.
The Magnecraft 70-463-1 250V Pin Din Rail Relay Socket is a commonly used electrical component in various automation and control systems. To help you make an informed decision on whether to purchase this relay socket, here are some potential advantages and disadvantages:
Advantages:1. Compact Design: The relay socket's compact design makes it an ideal choice for applications with limited space. It can be easily mounted on DIN rails, saving valuable installation space.
2. HighLoad Capacity: This relay socket can handle a high load, up to 250V and 10A, making it suitable for demanding applications.
3. Rugged Construction: The Magnecraft 70-463-1 relay socket is built to withstand harsh environments. It is designed to resist moisture, dust, and other environmental factors.
4. Easy Connection: The socket's Din rail mounting design makes it easy to connect the wiring. It also includes terminal screws for secure connection.
5. Cost-effective: Compared to other high-performance relays, the Magnecraft 70-463-1 is quite affordable, making it a cost-effective solution for many applications.
Disadvantages:1. Limited Number of Contacts: With only two normally open (NO) and two normally closed (NC) contacts, this relay may not be suitable for complex applications that require more contacts.
2. Limited Operating Temperature Range: The relay socket can operate at temperatures between -25 C and 70 C. If your application requires a wider temperature range, you may need to consider alternative options.
3. Manual Coil Operation: This relay socket requires manual coil operation, which can be a limitation for some applications where automatic coil operation is desired.
Conclusion:The Magnecraft 70-463-1 250V Pin Din Rail Relay Socket is a reliable and cost-effective solution for simple to moderate automation and control applications that require a compact, rugged, and high-performance relay socket. Its limited number of contacts and manual coil operation may be a drawback for some applications, but overall, it is an excellent choice for many industrial, automation, and control applications.
Recommendation:If your application requires a relay socket with more contacts, a wider temperature range, or automatic coil operation, consider exploring other options in the market. However, for applications that meet the Magnecraft 70-463-1's specifications, it is a solid choice that offers excellent value for the price.
The items may have slight cosmetic blemishes or defects that do not affect functionality. Magnecraft 70-463-1 250v 11 pin din rail relay socket. Support businesses from the USA. Shipping and handling.
