The RCPE Certified Professional Network & Infrastructure Visibility Exam (810-01) validates your ability to design, deploy, and manage network performance across complex enterprise environments using Riverbed solutions. This exam is ideal for network engineers, infrastructure architects, and IT professionals who work with network visibility, optimization, and troubleshooting. This page provides a clear study roadmap, topic breakdown, and practical preparation guidance to help you pass confidently. Whether you're new to the RCPE Network & Infrastructure Visibility certification path or refining your knowledge, the resources and structure here will focus your efforts on what matters most.
Use this topic map to guide your study for Riverbed 810-01 (RCPE Certified Professional Network & Infrastructure Visibility Exam) within the RCPE Network & Infrastructure Visibility path.
The 810-01 exam combines multiple question types to assess both theoretical knowledge and practical decision-making ability. Questions progress in difficulty and emphasize real-world application of Riverbed solutions.
Expect questions to increase in complexity as you progress, with later items requiring integration of multiple topics and practical judgment.
A structured study plan mapped to the five core topic areas ensures comprehensive coverage and builds confidence. Dedicate time each week to one or two domains, practice with realistic questions, and review explanations to close knowledge gaps. This approach prevents cramming and reinforces connections between concepts.
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Network Visibility and Troubleshooting and Riverbed SteelHead/SteelCentral Products typically account for a larger portion of the exam. However, all five domains are tested, so balanced preparation across all topics is essential. Review the official exam blueprint to confirm the latest weighting.
Visibility tools help you measure baseline performance and identify bottlenecks, while optimization techniques reduce latency and improve throughput. In practice, you monitor performance before and after optimization to prove business value. Understanding both sides allows you to make data-driven decisions and troubleshoot unexpected issues quickly.
Hands-on experience significantly strengthens your ability to answer scenario-based questions and configuration items. Prioritize labs that cover SteelHead deployment modes, SteelCentral reporting, and basic troubleshooting workflows. Even virtual lab environments or sandbox access to these products will improve your confidence and retention.
Many candidates overlook the connection between optimization decisions and security/compliance requirements, leading to incorrect answers on scenario items. Others confuse product features or misread questions that test subtle differences in behavior. Slow down on complex questions, re-read the scenario, and eliminate obviously wrong answers before selecting your choice.
Review your weak areas identified in practice tests, take a full-length timed mock exam, and skim key product documentation for quick reference. Avoid learning entirely new topics in the final days; instead, reinforce what you already know and build confidence. Get adequate sleep, manage test anxiety, and trust your preparation.
Describe the flows sent from Flow Gateway to NetProfiler. (Choose all that apply.)
Choosing the Internal Elements when creating an Application Model in Portal determines what?
Which of the following best describes Microflow Index Data in AppResponse?
The Microflow Indexing section of the tab specifies limits for the storage of Microflow indexes. Microflow Indexing captures summary information about conversations between devices on the network. This information is all that is needed by the Packet Analyzer software to calculate many of the View metrics that describe the traffic stream. Because it is already in summary form, processing of Microflow Indexing data for View metrics is very fast.
User response time in AppResponse is the sum of which five metrics?
User Response Time is a sum of the averages of the following four metrics: ''Connection Setup Time [msec]'' + ''Server Response Time [msec]'' + ''Total Payload Transfer Time [msec]'' + ''Total Retrans Delay [msec]''. User Response Time estimates the average time for an application to process a TCP data request, and thus is a good measure of end-user response time.
Why should the Response Time Composition Chart in AppResponse NOT be used on All Traffic or other large traffic Groups? (Choose all that apply.)