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- Highly modular, flexible, intelligent interface processors
Superior flexibility, supporting a combination of interface types on the same interface processor for consistent services, independent of access technology. Programmable interface processors provide flexibility for the service diversity required in modern networks. Innovative design supports intelligent service delivery without compromising on performance.
- Increased speed-to-service revenue
The scalable, programmable extended Cisco architecture dramatically improves customer density, increasing potential revenue per platform. Interface breadth on a modular interface processor allows service providers to roll out services more quickly, helping ensure that all customers receive consistent, secure, and guaranteed services. High-density small form-factor pluggable interfaces are featured for high-port-count applications with reach flexibility.
- Dramatically improved return on your routing investment
Improved slot economics and increased density reduce capital expenditures.
The ability to easily add interfaces as they are needed enables a "pay-as-you-grow" business model. SPAs are shared across multiple platforms, and can be easily moved from one to another, providing consistent feature support, accelerated product delivery, and a significant reduction in operating expenses through common sparing as service needs change.
The combination of channelized and clear channel T3 functions makes the Cisco Channelized T3 Shared Port Adapter version 2 ideal for today's rapidly changing WAN environment. As an integral part of a service node where customer bandwidth needs are uncertain, the Cisco Channelized T3 SPA version 2 allows service providers to avoid determining. For enterprise remote-site connections Cisco Channelized T3 SPA version 2 reduces equipment expenditures by integrating the capabilities and services of numerous port adapters onto a single SPA. It also provides investment protection by growing with the enterprise to meet the needs of today's and tomorrow's aggregation networks.