Automation and Robotics 48.0500.20 (2022/23)
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EXAMINE THE IMPACT OF NEW TECHNOLOGIES ON AUTOMATION AND ROBOTICSAR1.0
- 1.1
Describe the principles, processes, and practices of AI (artificial intelligence), ML (machine learning), and RPA (robotic process automation)AR1.1
- 1.2
Discuss how the application of AI, MI, and RPA have changed existing business (i.e., enhanced efficiency, increased work performance, reduced human error, simplified interactions, speedier processes, improved customer experience, etc.)AR1.2
- 1.3
Give examples of how AI, ML, and RPA are used in services, manufacturing, agriculture, and healthcare [i.e., social media, virtual/personal assistant (Alexa and Siri), financial fraud detection, self-driving cars, medical diagnosis and prediction. etc.]AR1.3
- 1.4
Relate the Three Laws of Robotics (Asimov’s Laws) to future technology applicationsAR1.4
- 1.5
Discuss ethical challenges associated with AI, ML, and RPA (i.e., privacy, data inaccuracies, future loss of jobs, how machines affect human behavior and interaction, etc.)AR1.5
PERFORM ELECTRICAL AND ELECTRONIC TASKSAR2.0
- 2.1
Measure and determine voltage, current, resistance, and power in AC and DC circuits (i.e., oscilloscope, volt/ohm, meter, etc.)AR2.1
- 2.2
Troubleshoot voltage, current, and power in AC and DC circuits (i.e., fuse, continuity, etc.)AR2.2
- 2.3
Identify and troubleshoot components and connectionsAR2.3
- 2.4
Read electrical drawings (i.e., simple starter circuits, PLC output, etc.)AR2.4
- 2.5
Explain the role of electronic device in automation and robotics (i.e., common problems, common scenarios, etc.)AR2.5
ANALYZE HYDRAULIC AND PNEUMATIC SYSTEMSAR3.0
- 3.1
Describe the relevance of material properties to robotics (e.g., inertia, velocity, mass, density, and strength)AR3.1
- 3.2
Examine the performance of hydraulic circuitsAR3.2
- 3.3
Examine the performance of pneumatic circuitsAR3.3
- 3.4
Troubleshoot hydraulic and pneumatic circuits (i.e., flow controls, valve functionality, pressure sensors, etc.)AR3.4
- 3.5
Describe the fundamentals of vacuum technologyAR3.5
ANALYZE PROGRAMMABLE LOGIC CONTROLLER (PLC) SYSTEMSAR4.0
- 4.1
Explain PLC functionality (i.e., relate schematics to PLC inputs/outputs, program flow, etc.)AR4.1
- 4.2
Interpret ladder logic and other commonly used industrial languagesAR4.2
- 4.3
Develop a flowchart that identifies and solves the automation problemAR4.3
- 4.4
Upload/download a logic program into a PLCAR4.4
- 4.5
Troubleshoot input/output modules (AC and DC)AR4.5
DESCRIBE THE OPERATION AND USE OF VARIOUS FORMS OR ELECTRICAL MOTORSAR5.0
- 5.1
Explain the “safety by design” concept to ensure operator and workspace safetyAR5.1
- 5.2
Explain the operation and use of DC motors in automation controlsAR5.2
- 5.3
Explain the operation and use of stepper motors in automation scenariosAR5.3
- 5.4
Explain the operation and primary use of AC motors in automation assembliesAR5.4
- 5.5
Explain the operation, use, and advantages of brushless motors in automation and roboticsAR5.5
- 5.6
Describe how servos are used in automation and robotics (e.g., robot arms, legs, and steering)AR5.6
PERFORM MECHANICAL SYSTEMS LINKAGES TASKSAR6.0
- 6.1
Explain gear reduction and install a belt or chain driveAR6.1
- 6.2
Explain gear ratio and install a gear trainAR6.2
- 6.3
Compute mechanical advantage of a belt or chain driveAR6.3
- 6.4
Compute mechanical advantage of a gear trainAR6.4
PERFORM DRAFTING TASKSAR7.0
- 7.1
Make freehand sketches (e.g., line weights, hidden lines, center lines, and dimensioning)AR7.1
- 7.2
Make CAD representations from freehand sketchesAR7.2
- 7.3
Determine shapes and sizes of surfaces from alternative views (e.g., orthographic, projection view, first angle projection, and third angle projection)AR7.3
- 7.4
Make CAD drawings using geometric construction techniquesAR7.4
- 7.5
Make dimensional CAD drawings (e.g., 2D and 3D)AR7.5
- 7.6
Explain basic knowledge of geometric dimensioning and tolerancingAR7.6
- 7.7
Interpret electrical drawings and architectural plansAR7.7
IDENTIFY INDUSTRIAL ROBOT TYPES AND THE TASKS THEY PERFORMAR8.0
- 8.1
Identify robot types and degrees of freedom (i.e., SCARA, articulated, cartesian, delta, etc.)AR8.1
- 8.2
Measure robotic performance against specified criteriaAR8.2
- 8.3
Interface a robot to real or simulated external equipmentAR8.3
- 8.4
Simulate a solutionAR8.4
EXAMINE DATA COMMUNICATION METHODOLOGIESAR9.0
- 9.1
Select data communication protocols and associated connectorsAR9.1
- 9.2
Identify tradeoffs among wired and wireless data communication protocolsAR9.2
- 9.3
Explain IOT (Internet of Things) and IIOT (Industrial Internet of Things)AR9.3
APPLY SENSOR SOLUTIONSAR10.0
- 10.1
Select sensors for use in a feedback control loopAR10.1
- 10.2
Construct and operate a system with a feedback control loopAR10.2
- 10.3
Calibrate sensorsAR10.3
- 10.4
Gather and statistically analyze performance data on a control loopAR10.4
- 10.5
Explain analog to digital and digital to analog convertersAR10.5
DESCRIBE COMMON MANUFACTURING PROCESSES IN AUTOMATIONAR11.0
- 11.1
Describe machining processes (i.e., traditional machining, CNC, etc.)AR11.1
- 11.2
Describe basic material properties used in manufacturing processes (i.e., aluminum, steel, titanium, etc.)AR11.2
- 11.3
Explain the impact of 3D printing on rapid prototypingAR11.3
- 11.4
Explain additive manufacturing versus subtractive manufacturingAR11.4
- 11.5
Describe basic fabrication principles (i.e., laser, sheet metal, welding, cutting, etc.)AR11.5
- 11.6
Describe material handling [i.e., conveyers, bowl feeders, AGV (Automated Guided Vehicle), etc.]AR11.6
DEVELOP ROBOTICS APPLICATION SYSTEMSAR12.0
- 12.1
Describe robotics operating systems [i.e., ROS (robot operation system), Linux, etc.]AR12.1
- 12.2
Identify a problem and develop a flowchart for software development (i.e., Boolean logic, ladder, etc.)AR12.2
- 12.3
Identify peripheral hardware required to complete the task (i.e., vision systems, 3D scanners, end-of-arm tools, force sensing, etc.)AR12.3
- 12.4
Develop or reuse software components (i.e., modular software design, etc.)AR12.4
- 12.5
Use software tools to develop a robotics applicationAR12.5
- 12.6
Use a simulation to develop and validate a design for a robotics problemAR12.6
- 12.7
Use a test-driven development approachAR12.7
- 12.8
Demonstrate a methodical approach to process developmentAR12.8
- 12.9
Describe integration technologies (i.e., CNC, AI, RPA, ML, etc.)AR12.9
- 12.10
Describe robotics project constraints (i.e., timeline, budget, environment, skill level, etc.)AR12.10
DEMONSTRATE SAFE AND PROPER USE OF ELECTRONIC AND OTHER LABORATORY EQUIPMENT, TOOLS, AND MATERIALSAR13.0
- 13.1
Explain and apply proper ground requirementsAR13.1
- 13.2
Specify safety conditions when working with automation and robotics (e.g., arc flash, high voltage, pneumatics, hydraulics, and stored energy)AR13.2
- 13.3
Identify and properly use common electrical and electronics hand toolsAR13.3
- 13.4
Follow laboratory safety rules and proceduresAR13.4
- 13.5
Describe the concept of “fail safe” and how such components are integrated into robotic systemsAR13.5
- 13.6
Explain modern safety hardware and circuits (i.e., light curtains, safety fences, safety relays, etc.)AR13.6
Frequently asked questions
- What grade levels do these standards cover?
- Grade 11, Grade 12, VOCATIONALTRAINING, and PROFESSIONALEDUCATION-DEVELOPMENT
- Where can I read the official document?
- AZ CTE
Keep exploring
Keep exploring CTE standards
Sibling grade bands, other subjects in this jurisdiction, and the same subject across other states.
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