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  1. Programs
  2. ELECTROMECHANICAL TECHNOLOGY

ELECTROMECHANICAL TECHNOLOGY

Eastern West Virginia Community and Technical College

CertificateCIP: 15.0499

Become a contributor for free to openly demonstrate student outcomes, industry alignment & eligibility criteria.

No description available.

Dates

Since Dec 2007

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Program Pathways

Credentials this program stacks toward

No program pathways.

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Program Details

Detailed information about this program

No detailed information available.

Requirements

What you need to earn this credential

No requirements listed.

Financial Aid

Eligible funding programs

No funding information available.

Scholarships

No scholarships listed.

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Locations

Where this program is offered

  • Moorefield, West Virginia

    316 Eastern Drive, Moorefield, West Virginia, 26836-0000

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Related Programs

Programs related to this one

No related programs.

Skills & Competencies

Skills developed through this program

Auto-populated·from O*NET via SOC 17-3024.01

Skills

TroubleshootingRepairingCritical ThinkingOperations MonitoringReading ComprehensionEquipment MaintenanceActive ListeningComplex Problem SolvingMonitoringQuality Control AnalysisOperation and ControlJudgment and Decision Making

Knowledge

Engineering and TechnologyComputers and ElectronicsMechanicalEnglish LanguageDesignProduction and Processing

Abilities

Deductive ReasoningInductive ReasoningNear VisionProblem SensitivityInformation OrderingFinger DexterityOral ComprehensionWritten ComprehensionOral ExpressionVisualizationControl PrecisionArm-Hand SteadinessPerceptual SpeedManual Dexterity

Tasks

  • Make repairs to robots or peripheral equipment, such as replacement of defective circuit boards, sen
  • Troubleshoot robotic systems, using knowledge of microprocessors, programmable controllers, electron
  • Install, program, or repair programmable controllers, robot controllers, end-of-arm tools, or convey
  • Test performance of electromechanical assemblies, using test instruments such as oscilloscopes, elec
  • Install or program computer hardware or machine or instrumentation software in microprocessor-based
  • Read blueprints, schematics, diagrams, or technical orders to determine methods and sequences of ass
  • Program and calibrate drones for specific missions or tasks, ensuring proper functionality and performance.

Technology

Analytical or scientific softwareComputer aided design CAD softwareObject or component oriented development softwareDevelopment environment softwareIndustrial control softwareProject management softwareFacilities management software

Tools

Adjustable widemouth pliersBinocular light compound microscopesChart recordersCoordinate measuring machines CMMCopy machinesElectric drillsFlow metersForce gaugesFrequency countersFunction generatorsHammersHydraulic dataloggersHydrometersLaser facsimile machinesLaser interferometersAnalog oscilloscopesComputerized numerical control CNC lathesComputerized numerical control CNC machining centersConductivity sensorsDesktop computersDigital camerasDigital multimetersDigital oscilloscopesDigital tachometersDirect current DC power suppliesDrill pressesDroneDeployDynamometersFixed wing unmanned aerial vehicles UAV

Work Values

SupportWorking ConditionsAchievementRecognitionIndependenceRelationships
Career Pathways

Occupations this program prepares you for

  • Robotics Technicians17-3024.01
  • Electro-Mechanical and Mechatronics Technologists and Technicians17-3024.00
What You'll Learn

Key competencies developed through this program

Auto-populated·from NSX Competency Framework

Mastery: developing (Level 2)(based on Certificate)

  • Faulty circuit boards, sensors, and encoders — diagnose and replace with reduced oversight during routine corrective maintenance on an automated production line.
  • Programmable logic controllers and robot controllers — install and configure following established procedures in a mid-volume manufacturing environment.
  • Robotic system faults — troubleshoot using knowledge of electronics, mechanics, and sensor feedback systems to restore uptime on familiar equipment.
  • End-of-arm tools and conveyor components — adjust, repair, and test independently to meet production specifications in an assembly or warehousing facility.
  • Computer-controlled robot movement programs — modify parameters within approved bounds to accommodate product changeovers on the shop floor.
  • Preventive and corrective maintenance schedules — execute and adapt for multiple robotic cells, documenting outcomes in a digital maintenance database.
  • Hydraulic and pneumatic subsystems — inspect and service using engineering schematics to resolve recurring performance issues in an industrial robot application.
  • Maintenance and repair reports — draft clearly and submit on time, providing accurate technical detail for engineering review in a regulated production setting.
  • Industrial control software and development environment tools — use routinely to upload, test, and verify robot programs after component replacement.
  • Alignment fixtures and microscopes — apply to fit precision components within tolerance during robotic sub-assembly repairs in a technical workshop.

Some details on this page are auto-populated from public workforce data sources: O*NET (opens in new tab), BLS (opens in new tab), College Scorecard (opens in new tab), DOL Training Provider Results (opens in new tab), NSX (opens in new tab). Provided in partnership with LER.me Career Intelligence.

Student Outcomes

Performance metrics for this program

Auto-populated·from Scorecard + DOL
Completion Rate
65%
Placement Rate
76%