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Product Overview |
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The 3Com SuperStack II 4-Port 1100 / 3300 Switch Matrix Module delivers a compact solution that enhances switching capabilities within compatible chassis. It fits into the SuperStack II series, providing additional port connectivity for internal switch matrix functions. This module plays a key role in managing data traffic efficiently across multiple switch units, contributing to optimized network performance without requiring significant hardware changes. |
General Information |
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| Brand | 3Com |
Technical Information |
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| Ports | 4 |
| Compatibility | 3Com SuperStack II 1100,3Com SuperStack II 3300 |
| Data Transfer Rate | 10 Mbps,100 Mbps |
| Connector Type | RJ45 |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Assembly Required | No |
Product Description |
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The 3Com SuperStack II 4-Port 1100 / 3300 Switch Matrix Module functions as an integral component for expanding and optimizing network switch capabilities. It is often found in network chassis setups where modular switching capacity is required. Network administrators and IT professionals typically use this module to enable more flexible, high-performance network configurations within existing infrastructures. Key Features
By integrating this matrix module, networks can achieve improved traffic management and scalability. Its reliable performance ensures consistent operation within multi-switch environments, helping maintain overall network integrity and throughput. |
Use Cases |
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This switch matrix module is typically used in medium to large network environments where modular switch chassis are deployed. It benefits IT teams managing complex network topologies that require flexible port expansion without downtime. The product is suited for environments emphasizing scalable, high-throughput internal switching between multiple stacked switches. How It's Used:
By integrating into existing network chassis, this module aids operational efficiency and scalability. It supports smooth data flow within stacked switches, maintaining consistent performance under varying network loads. |