Price from
158.52 GBP
158.52 GBP
D-LAN-CAT.5E Ethernet Surge Protector Adapter
Protect your Ethernet network with the D‑LAN‑CAT.5E surge protector adapter, featuring a robust 2.5 kA rating and an isolated grounding cable for reliable surge absorption, ensuring stable data transmission in demanding environments
Stores where to buy this product
Sponsored This site contains affiliate links for which we may receive compensation. More information
| This product in Comparor | |
|---|---|
|
Category
This product is cataloged in our store in these categories
|
|
|
International
Find this product in one of our international stores
|
This product has not been found in other countries
|
| Colors
Predominant colors of the product |
|
| Identifiers | |
| Brand | ![]() |
| MPN | PHOENIX CONTACT D-LAN-CAT.5E |
| Model | PHOENIX CONTACT d-lan-cat5e |
| ID | 63047238 |
| Dimensions / Weight | |
| Key Features | |
Related articles
Support 3rd Gen AMD Ryzen Desktop Processors and AMD Ryzen4000 G-Series Desktop Processors - Supports DDR4 1866/ 2133/ 2400/ 2667/ 2800/ 2933/ 3000/ 3066/ 3200 MHz by JEDEC - AMD A520 Chipset
The Gigabyte A520M K V2 is a micro-ATX motherboard designed for AMD Ryzen 5000 series processors with support up to 5100 MHz DDR4 memory. It features PCIe Gen3 x4 M.2, GbE LAN, and USB 3.2 Gen 1 connectivity options.
Micro-ATX motherboard with AMD AM4 socket, supporting DDR4 memory, PCIe 4.0, and Wi-Fi connectivity, featuring multiple display options.
The Gigabyte A520M K V2 is a micro-ATX motherboard designed for AMD Ryzen 5000 series processors with support up to 5100 MHz DDR4 memory. It features PCIe Gen3 x4 M.2, GbE LAN, and USB 3.2 Gen 1 connectivity options.
The Phoenix Contact D-LAN-CAT.5E-U Surge Protection Adapter is designed to safeguard RJ45 signal systems against voltage spikes. Compact and efficient, it offers reliable protection with a maximum discharge current of 0.35 kA, ensuring the integrity of your network connections. Ideal for use in distribution cabinets, this adapter enhances system reliability while maintaining optimal performance.

