What are the key features of the Moxa PT-G510 Series switches?
The Moxa PT-G510 Series switches are designed for industrial network infrastructure, offering 10-port Layer 2 full Gigabit capabilities. They are IEC 61850-3 compliant, ensuring high reliability in harsh environments. These switches support PRP/HSR redundancy protocols, making them ideal for critical applications. They also feature a wide operating temperature range from -40 to 75°C and come with an isolated dual power supply (24/48 VDC) for enhanced reliability.
How does the Moxa PT-G510-8GSFP-PHR-WV-CT model differ from other switches?
The Moxa PT-G510-8GSFP-PHR-WV-CT model is a full Gigabit managed Ethernet switch with 10 100/1000Base SFP ports. It is compliant with both IEC 61850-3 and IEC 62439-3 standards, providing robust performance in industrial settings. This model includes a conformal coating for protection against environmental factors and operates within a temperature range of -40 to 75°C. It also features an isolated dual power supply for increased reliability.
Can the Moxa PT-G510 Series switches be used in extreme temperature environments?
Yes, the Moxa PT-G510 Series switches are designed to operate in extreme temperature environments. They have an operating temperature range of -40 to 75°C, making them suitable for use in harsh industrial conditions. The conformal coating on the PT-G510-8GSFP-PHR-WV-CT model provides additional protection against environmental factors.
Where can I purchase Moxa PT-G510 Series switches in Australia?
In Australia, you can purchase Moxa PT-G510 Series switches through authorized resellers such as IP Trading. They offer a range of Moxa products and can provide assistance with selecting the right switch for your industrial network needs.
What redundancy protocols are supported by the Moxa PT-G510 Series?
The Moxa PT-G510 Series supports PRP (Parallel Redundancy Protocol) and HSR (High-availability Seamless Redundancy) protocols. These protocols ensure network reliability and continuous operation by providing seamless failover in case of a network failure, making them ideal for critical industrial applications.