Match each network topology architecture on the left with its primary design characteristic on the right.
- Collapsed Core ArchitectureCombines the core and distribution functions into a single switch tier to reduce cost and complexity in smaller networks.
- Three-Tier Campus ArchitectureUses distinct Access, Distribution, and Core layers to maximize scalability and boundary control in large enterprise campus networks.
- Spine-Leaf Data Center ArchitectureProvides predictable, low-latency east-west traffic flow with equal-cost multipath forwarding where every leaf switch connects to every spine switch.
- SOHO Network ArchitectureIntegrates routing, switching, wireless access, and basic firewall security into a single multi-function hardware appliance.
Answer
Collapsed Core Architecture pairs with combining core and distribution functions into a single tier. Three-Tier Campus Architecture pairs with using distinct Access, Distribution, and Core layers. Spine-Leaf Data Center Architecture pairs with providing predictable, low-latency east-west traffic flow. SOHO Network Architecture pairs with integrating routing, switching, wireless, and security into a single appliance.
Each topology architecture serves a distinct deployment scale and traffic profile. Collapsed Core simplifies management by consolidating distribution and core functions. Three-Tier provides clear boundary separation across large campuses. Spine-Leaf ensures low, uniform latency across data center workloads. SOHO designs consolidate multi-layer functions into a single physical appliance for small sites.
Step-by-Step Solution
Key Concept
Enterprise Network Topology Architectures