Which device is described as rapidly mitigating large attacks without increasing latency and supports unicast and anycast?

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Multiple Choice

Which device is described as rapidly mitigating large attacks without increasing latency and supports unicast and anycast?

Explanation:
Mitigating huge DDoS floods without adding latency comes from using an inline, high-throughput scrubbing device that can drop malicious traffic in real time while keeping legitimate traffic moving at line rate. It should also be deployable in both unicast and anycast modes so attack traffic can be absorbed at the nearest edge location, minimizing delay for users. A10 Thunder TPS fits this well. It’s built as a high-performance, inline DDoS protection platform that can scrub traffic at line rate, detecting and dropping attack packets quickly without slowing legitimate streams. Its design supports both unicast and anycast deployments, allowing scrubbing to occur across multiple edge locations and delivering clean traffic from the closest point to the user. This combination—fast, inline mitigation plus flexible edge deployment—enables rapid defense against large attacks with minimal added latency. Other options may offer DDoS protection, but they don’t consistently emphasize the same mix of line-rate, real-time mitigation and explicit unicast/anycast deployment, which is why they’re a less precise fit for the scenario described.

Mitigating huge DDoS floods without adding latency comes from using an inline, high-throughput scrubbing device that can drop malicious traffic in real time while keeping legitimate traffic moving at line rate. It should also be deployable in both unicast and anycast modes so attack traffic can be absorbed at the nearest edge location, minimizing delay for users.

A10 Thunder TPS fits this well. It’s built as a high-performance, inline DDoS protection platform that can scrub traffic at line rate, detecting and dropping attack packets quickly without slowing legitimate streams. Its design supports both unicast and anycast deployments, allowing scrubbing to occur across multiple edge locations and delivering clean traffic from the closest point to the user. This combination—fast, inline mitigation plus flexible edge deployment—enables rapid defense against large attacks with minimal added latency.

Other options may offer DDoS protection, but they don’t consistently emphasize the same mix of line-rate, real-time mitigation and explicit unicast/anycast deployment, which is why they’re a less precise fit for the scenario described.

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