The Pega Certified Robotics System Architect (PCRSA) 80V1 2019 exam validates your ability to design, configure, and deploy robotic process automation solutions using Pegasystems technology. This certification is intended for professionals who architect and implement RPA systems across enterprise environments. This page provides a structured overview of the exam syllabus, question formats, and actionable preparation strategies to help you study efficiently and build confidence before test day.
Use this topic map to guide your study for Pegasystems PEGAPCRSA80V1_2019 (Pega Certified Robotics System Architect (PCRSA) 80V1 2019) within the Pega Certified Robotics System Architect path.
The PEGAPCRSA80V1_2019 exam combines knowledge-based and scenario-driven questions to assess both theoretical understanding and practical decision-making in real-world RPA contexts.
Questions progress in difficulty and emphasize practical application, ensuring that certified architects can make sound decisions in live projects.
An efficient study routine maps each topic to weekly goals, allowing you to build depth progressively. Combine focused reading with active practice to reinforce learning and identify gaps early.
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Automations, System Integration, and Deployment typically represent the largest portion of exam items because they directly impact project success. However, all seven topics are tested, so balanced preparation across all areas is essential. Focus extra attention on how these three domains interconnect with Interaction Framework and Debugging.
Project Management defines scope, timeline, and resource needs, while Deployment executes the plan across environments. Understanding this link helps you design realistic automation schedules and manage rollout risks. The exam expects you to see how poor planning creates deployment bottlenecks and how strong governance prevents production incidents.
Ideally, candidates have 1-2 years of practical RPA experience with Pega systems. However, strong conceptual study combined with scenario-based practice can compensate for limited hands-on time. Prioritize labs and simulations that cover Interaction Framework configuration, automation debugging, and production deployment workflows.
Confusing Interrogation (log analysis) with Debugging (root cause resolution) is frequent. Another common error is underestimating System Integration complexity when designing automations for legacy environments. Misunderstanding error handling in Automations and overlooking Interaction Framework dependencies in Deployment also trip up many candidates. Practice scenario questions to sharpen these distinctions.
Focus on scenario-based questions rather than rereading notes. Take a full-length timed practice test 3-4 days before the exam to identify remaining weak spots. In the final 48 hours, review only your incorrect answers and related concepts. Get adequate sleep the night before to ensure clear thinking during the exam.
You add a MessageDialog component to an automation. Based on the following image, which option shows the configuration settings that generates the message dialog?





Which project property setting do you set to true to automatically increase the deployment version?
You are working on a team project with several other architects. Each architect is assigned to create activities for several applications. You are ready to add your HR adapter project to the controller project.
Which three steps are required to add the HR project to the main solution? (Choose three.)
Runtime produces an error when debugging a solution. The error message references that a control does not have the necessary value to complete an activity. The control depends upon the completion of a second activity in another project to provide its value.
Which two debugging options provide a benefit when referencing threads for issue resolution? (Choose two.)
Lines in the RuntimeLog containing the text ''ExecutionLink From:'' refer specifically to what item from your solution?