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HomeDesigning Microsoft Azure Infrastructure Solutions (AZ-305)Cram Sheet — Design an application architecture
Topic Cram Sheet610 words

Cram Sheet — Design an application architecture

AZ-305 › Unit 4 › Design an application architecture

Cram Sheet — Design an application architecture

Choose synchronous APIs, queues, events, workflows, caches, and configuration from coupling and delivery semantics. Use this sheet after the linked lessons: it is a retrieval map and decision aid, not a substitute for the worked examples.

Cram target

Unit
4
Blueprint domain
Design infrastructure solutions
Decision anchors
4
Mastery standard
Recommend and reject

Decision matrix

Requirement shapeStart withQualifying rule
API governanceAzure API ManagementPolicies, products, versions, identity, network, and gateway placement
Reliable commands/work queuesService BusSettlement, ordering, sessions, dead-lettering, and transactions
Event notification/fan-outEvent GridReactive routing of discrete events
High-throughput streamsEvent HubsPartitions, retention, consumer groups, and replay

The phrase start with matters. A default is only defensible after checking all hard constraints: region and SKU support, protocols, scale, availability, security, residency, recovery, skills, and operating ownership. When two rows appear in one scenario, compose them rather than forcing one service to solve every concern.

Fast design method

  1. Name the workload boundary and the users or systems that cross it.
  2. Extract measurable requirements: latency, throughput, volume, RTO/RPO, consistency, outage window, and retention.
  3. Mark security and governance constraints: identity, network reachability, encryption, residency, audit, and separation of duties.
  4. Select the simplest viable default from the matrix.
  5. Test it against failure domains, scale transitions, deployment, monitoring, and cost.
  6. State the nearest alternative and the one constraint that makes it weaker.
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Figure 1 — Mermaid diagram

Text equivalent: derive requirements, choose a default, qualify it against constraints, add operational and failure behaviour, then explain the trade-off.

Answer the architecture decision

For design an application architecture, begin with this lens: Choose synchronous APIs, queues, events, workflows, caches, and configuration from coupling and delivery semantics.

High-value traps

  • Events and commands are not interchangeable.
  • A cache needs invalidation and failure behaviour.
  • Configuration stores should not become secret stores.

Scenario rehearsal

An organisation asks for the capability described by the first matrix row, but also adds a strict recovery target, private connectivity, and a small operations team. Write a recommendation that identifies the core service, the supporting continuity and network controls, and the operating trade-off. Then reject the nearest service alternative using one explicit requirement. If your answer lists products without a traffic, data, identity, or recovery flow, it is incomplete.

Final-minute checklist

  • I can distinguish every service in the matrix by requirement, not logo or name.
  • I know which controls operate at identity, management, data, and network planes.
  • I check regional/SKU support and current limits when a scenario depends on them.
  • I include monitoring, health, capacity, recovery, and ownership in the recommendation.
  • I can explain why the strongest distractor fails.
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Source and freshness

Aligned to the current AZ-305 study guide, the attached Exam Ref, and the attached AZ-305 study guide corpus. Current Microsoft Learn documentation controls product availability, limits, and renamed services. Reviewed 2026-08-02.

All Designing Microsoft Azure Infrastructure Solutions (AZ-305) Study Resources

Related Notes

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  • Design Studio — Design an application architecture723 words
  • AZ-305 Exam Map and Design Decision Playbook652 words
  • Unit 1 Capstone — Design identity, governance, and monitoring solutions668 words
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  • Cram Sheet — Design authentication and authorization solutions632 words
  • Design Authentication and Authorization Solutions — Lesson4,263 words
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  • Recommend an Authentication Solution — Lesson4,868 words
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Loading Diagram...
Flowchart, left to right. Scenario connects to Requirements. R connects to Default service family. D connects to All hard constraints met?. F connects to Choose qualified alternative (No). F connects to Add operations and failure handling (Yes). A connects to O. O connects to Explain trade-off.

Design an application architecture checkpoint

Card 1 of 4

Front of flashcard 1 of 4

For api governance, what is the default decision anchor?

easy

Azure API Management: Policies, products, versions, identity, network, and gateway placement.

az-305retrieval

Design an application architecture checkpoint

Card 1

Front

For api governance, what is the default decision anchor?

Back

Azure API Management: Policies, products, versions, identity, network, and gateway placement.

Card 2

Front

For reliable commands/work queues, what is the default decision anchor?

Back

Service Bus: Settlement, ordering, sessions, dead-lettering, and transactions.

Card 3

Front

For event notification/fan-out, what is the default decision anchor?

Back

Event Grid: Reactive routing of discrete events.

Card 4

Front

For high-throughput streams, what is the default decision anchor?

Back

Event Hubs: Partitions, retention, consumer groups, and replay.

Design an application architecture checkpoint

Card 1

Front

For api governance, what is the default decision anchor?

Back

Azure API Management: Policies, products, versions, identity, network, and gateway placement.

Card 2

Front

For reliable commands/work queues, what is the default decision anchor?

Back

Service Bus: Settlement, ordering, sessions, dead-lettering, and transactions.

Card 3

Front

For event notification/fan-out, what is the default decision anchor?

Back

Event Grid: Reactive routing of discrete events.

Card 4

Front

For high-throughput streams, what is the default decision anchor?

Back

Event Hubs: Partitions, retention, consumer groups, and replay.