55AA-006 · This is 55AA-006, week 7, session 1. It focuses on "Single-cycle and multi-cycle datapaths" and turns the weekly plan into discussable, practicable, and reviewable class artifacts.

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Single-cycle and multi-cycle datapaths: Concepts, Cases, and Method

This is 55AA-006, week 7, session 1. It focuses on "Single-cycle and multi-cycle datapaths" and turns the weekly plan into discussable, practicable, and reviewable class artifacts.

Learning Objectives

  • Explain where "Single-cycle and multi-cycle datapaths" fits in this course and what core problem it addresses.
  • Analyze a case or system related to "Single-cycle and multi-cycle datapaths" using today's method.
  • Connect the session task to the course outcome: Explain digital circuits, combinational logic, and sequential logic.
  • Complete the questions, notes, and synthesis required by lecture with guided questions.

Prerequisites

  • Programming fundamentals and basic discrete mathematics.
  • Have read the weekly task: Extend a teaching CPU with one instruction.
  • Be able to record assumptions, evidence, risks, and questions to validate in class.

Preparation

  • Open the 55AA-006 course repository, readings, and this week's task brief.
  • Write two true/false claims or open questions about "Single-cycle and multi-cycle datapaths" before class.
  • Be ready for concept comparison and case reading.

Class Flow

0-8
Review and entry question

Review the previous conclusions and lead into "Single-cycle and multi-cycle datapaths".

review
Question

When judging "Single-cycle and multi-cycle datapaths", what fact should be confirmed first?

Expected answer: First confirm the object, boundary, attacker or user capability, observable evidence, and evaluation criteria.

Follow-up: If that fact is not directly observable, what minimal experiment would you design?

Script

Opening

Today's session focuses on "Single-cycle and multi-cycle datapaths". We will not treat it as an isolated topic. We place it in the course workflow: define the object and boundary, gather evidence, and turn the result into engineering action.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

Open the example, data, or project fragment related to "Single-cycle and multi-cycle datapaths".

Slides
Open slides placeholder
Slide 1Single-cycle and multi-cycle datapaths: Session Question
Slide 2Concept Framework
Slide 3Case Path
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: lecture video

8-18
Diagnostic question

Ask students to judge the most commonly misunderstood boundary in this topic.

diagnostic
Question

When judging "Single-cycle and multi-cycle datapaths", what fact should be confirmed first?

Expected answer: First confirm the object, boundary, attacker or user capability, observable evidence, and evaluation criteria.

Follow-up: If that fact is not directly observable, what minimal experiment would you design?

Script

Review

Return to the previous discussion. State one important conclusion in a sentence, then state one remaining uncertainty. We will carry those uncertainties into today's analysis.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

For the weekly task "Extend a teaching CPU with one instruction.", write the object, boundary, evidence, risk, and next action.

Slides
Open slides placeholder
Slide 2Concept Framework
Slide 3Case Path
Slide 4Lecture with guided questions
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: lecture video

18-34
Core concept explanation

Establish the terms, objects, boundaries, and reasoning path for "Single-cycle and multi-cycle datapaths".

concept
Question

Where is the weekly task "Extend a teaching CPU with one instruction." most likely to fail?

Expected answer: Common failures include unclear goals, insufficient evidence, unreproducible environment, and conclusions without process.

Follow-up: What checklist item would reveal this failure early?

Script

Guided question

Here is the first judgment question: if we know only the conclusion but not the environment, inputs, or evidence, can that conclusion guide engineering decisions? Answer yes or no first, then name your assumptions.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

Open the example, data, or project fragment related to "Single-cycle and multi-cycle datapaths".

Slides
Open slides placeholder
Slide 3Case Path
Slide 4Lecture with guided questions
Slide 5After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: lecture video

34-48
Case dissection

Use a small case to move from symptoms to root cause, evidence, and engineering action.

case
Question

Where is the weekly task "Extend a teaching CPU with one instruction." most likely to fail?

Expected answer: Common failures include unclear goals, insufficient evidence, unreproducible environment, and conclusions without process.

Follow-up: What checklist item would reveal this failure early?

Script

Explanation

For "Single-cycle and multi-cycle datapaths", the key is not memorizing definitions but following an analysis order: define the object, list boundaries, state who can do what, find observable evidence, and turn the conclusion into a task or test.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

For the weekly task "Extend a teaching CPU with one instruction.", write the object, boundary, evidence, risk, and next action.

Slides
Open slides placeholder
Slide 4Lecture with guided questions
Slide 5After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: demo and review video

48-62
Method framework

Abstract the case into a reusable checklist and analysis steps.

method
Question

What step is missing between concept understanding and engineering execution?

Expected answer: Concepts must become objects, inputs, outputs, judgment criteria, and evidence format.

Follow-up: How would you write this requirement into homework or project acceptance criteria?

Script

Practice transition

Now apply that order to the weekly task: Extend a teaching CPU with one instruction. Do not write only the final answer; preserve how you ruled out alternatives.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

Open the example, data, or project fragment related to "Single-cycle and multi-cycle datapaths".

Slides
Open slides placeholder
Slide 5After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: demo and review video

62-75
Short practice

Students apply the method individually or in pairs to the weekly task: Extend a teaching CPU with one instruction.

practice
Question

What step is missing between concept understanding and engineering execution?

Expected answer: Concepts must become objects, inputs, outputs, judgment criteria, and evidence format.

Follow-up: How would you write this requirement into homework or project acceptance criteria?

Script

Summary

Today's deliverable is not polished prose. It is a set of reviewable judgments. After class, complete the required evidence, commands, screenshots, logs, or review notes.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

For the weekly task "Extend a teaching CPU with one instruction.", write the object, boundary, evidence, risk, and next action.

Slides
Open slides placeholder
Slide 6After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: demo and review video

75-84
Whole-class discussion

Collect answers and compare evidence quality, assumptions, and missing risks.

discussion
Question

What step is missing between concept understanding and engineering execution?

Expected answer: Concepts must become objects, inputs, outputs, judgment criteria, and evidence format.

Follow-up: How would you write this requirement into homework or project acceptance criteria?

Script

Summary

Today's deliverable is not polished prose. It is a set of reviewable judgments. After class, complete the required evidence, commands, screenshots, logs, or review notes.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

Open the example, data, or project fragment related to "Single-cycle and multi-cycle datapaths".

Slides
Open slides placeholder
Slide 7After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: demo and review video

84-90
Summary and next-session hook

Summarize the core judgment for "Single-cycle and multi-cycle datapaths" and leave a lab or review question.

summary
Question

What step is missing between concept understanding and engineering execution?

Expected answer: Concepts must become objects, inputs, outputs, judgment criteria, and evidence format.

Follow-up: How would you write this requirement into homework or project acceptance criteria?

Script

Summary

Today's deliverable is not polished prose. It is a set of reviewable judgments. After class, complete the required evidence, commands, screenshots, logs, or review notes.

Demo / Exercise

Single-cycle and multi-cycle datapaths class demo

For the weekly task "Extend a teaching CPU with one instruction.", write the object, boundary, evidence, risk, and next action.

Slides
Open slides placeholder
Slide 8After-class Deliverable
Video Media
Video placeholder link

Single-cycle and multi-cycle datapaths: demo and review video

Homework

Extend a teaching CPU with one instruction. Prepare a concept map, case breakdown, and a verifiable question list.