Description
By completing this curriculum, you will be prepared to:
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Master Technical Concepts: Apply essential electrical laws (Ohm’s Law, Watts Law) and National Electrical Code (NEC) guidelines to PV system configurations.
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Execute Safe Job Site Practices: Recognize and mitigate electrical hazards, working-at-height hazards, and site safety risks in accordance with OSHA standards.
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Perform Engineering & Sizing Calculations: Properly match PV array specs to inverter ratings using real-world site solar data and temperature extremes.
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Diagnose and Commission PV Systems: Apply systematic pre-energization protocols, insulation resistance testing, and infrared thermography to troubleshoot operational defects.
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Pass the Certification Exam: Approach the NABCEP PVA examination with exam strategies, domain-specific math skills, and comprehensive practice assessments.
Course Breakdown
This course arranges all the domain material into 4 easy to learn modules.
Domain I: Safety 20%
Task 1: Hazard Identification and Controls
- a. Hierarchy of Controls (e.g., elimination, substitution, engineering controls, administration controls, and PPE)
- b. Fall hazards (e.g., leading edge, roof openings)
- c. Environmental hazards (e.g., extreme temperature, inclement weather, animal encounters)
- d. Hazardous materials (e.g., chemical, physical)
- e. Digging hazards (e.g., trenching, ground mount systems, underground utilities, soil contamination)
- f. Personal protective equipment (PPE) (e.g., hard hats, safety glasses, gloves, ear protection, arc and fire rated clothing, footwear)
Task 2: Safe Work Practices
- a. Ergonomics (e.g., manual handling, body positioning, lifting)
- b. Safe use of hand and power tools
- c. Equipment inspections
- d. Vehicle safety and equipment transport (e.g., heavy equipment)
Task 3: Safety Plan
- a. Safety regulations (e.g., OSHA, NFPA)
- b. Equipment staging (e.g., roof load distribution)
- c. Access control (e.g., fence, screening)
- d. Emergency response plan (e.g., first aid, hazardous materials, fire, fall rescue)
- e. Safety meetings
- f. Required on-site documentation (e.g., injury and illness prevention program, safety data sheets)
Task 4: Electrical Safety
- a. Electrical hazards and control methods (e.g., DC/AC, electrical shock, arc flash, de-energization plan, lockout/tagout, working clearance, ground fault)
- b. Safe use of electrical testing equipment
- c. Risk in working with energized and/or faulty equipment (e.g., rapid shutdown)
- d. Battery safety (e.g., insulated tools, face guard, chemical goggles, eye wash, gloves, aprons)
Task 5: Working at Height
- a. Protection systems (e.g., harness, personal fall arrest systems, guardrails, scaffolding, skylight guards)
- b. Equipment handling techniques (e.g., hoisting and rigging methods, tool tethering)
- c. Ladder safety (e.g., selection, use)
Domain II: Core Knowledge 20%
Task 1: Types of PV Systems
- a. PV Direct
- b. Stand-alone
- c. Grid-tiedd. Multimode (e.g., grid-tied with energy storage)
Task 2: Applications and Features of PV Systems
- a. Energy security (e.g., reliability, resiliency)
- b. Predictable electricity costs
- c. Environmental impact
- d. Economic benefits
- e. Distributed generation
Task 3: Components of PV Systems and Functionality
- a. PV modules
- b. Mounting structures
- c. Inverters (e.g., string, micro, multimode, central)
- d. Power electronics (e.g., rapid shutdown devices, DC-to-DC converter)
- e. Energy storage
- f. Load control
- g. Balance of system (BOS) components (e.g., panelboard and disconnects, raceways and conduit, wire and conductors, overcurrent protection devices)
- h. Monitoring equipment
- i. Grounding and bonding elements (e.g., equipment grounding conductor, grounding electrode conductor, grounding electrode, bonding jumper)
Task 4: Electrical Concepts
- a. Photovoltaic effect
- b. Ohm’s law
- c. Power and energy (e.g., watts verses watt-hours)
- d. Electrical measurements (e.g., voltage, current, impedance, resistance)
- e. Alternating current (AC) and direct current (DC)
- f. Single-phase, split-phase, and three-phase circuits
- g. Series and parallel circuits
- h. Grounding and bonding (e.g., system and equipment)
Domain III: Sales and Economics 10%
Task 1: Critical Information to Qualify a Customer
- a. Contact information and physical location
- b. Utility information (e.g., utility bill)
- c. Property ownership
- d. Motivations (e.g., financial, environmental and health, energy choice)
Task 2: Preliminary System Estimate
- a. Customer energy usage (e.g., current and anticipated)
- b. Customer usage profile (e.g., daily patterns, seasonal patterns)
- c. Utility rate structure (e.g., net metering, time of use, demand charges)
- d. Energy storage requirements (e.g., backup load, days of autonomy, self-consumption, load shifting)
- e. Site information (e.g., shading factors, roof type and age, orientation, pitch)
- f. Utility interconnection requirements
Task 3: Factors that Impact the Economics of PV Systems
- a. PV markets (e.g., residential, commercial, non-profit, utility-scale PV)
- b. System price (e.g., equipment, labor, permitting, administrative)
- c. Types of incentives (e.g., tax credits, rebates, low-interest loans)
- d. Cost to finance (e.g., interest rates)
- e. Cost of electricity from utility (e.g., rate structure, inflation)
- f. Revenue opportunities (e.g., net metering, virtual power plant, Solar Renewable Energy Certificates)
- g. Energy storage (e.g., avoided costs, load shifting, self-consumption, peak load reduction)
- h. System performance (e.g., efficiencies of equipment, expected production output)
- i. Environmental conditions (e.g., temperature, weather patterns, solar resources)
- j. Equipment degradation (e.g., modules) and/or replacement (e.g., power electronics)
- k. Warranty limitations (e.g., company stability, existing roof, equipment, workmanship)
Task 4: Financing Options
- a. Cash purchase
- b. Lease
- c. Power purchase agreement (PPA)
- d. Loan (e.g., Property Assessed Clean Energy [PACE], line of credit, home equity)
Task 5: Maintenance Costs
- a. Service contracts (e.g., preventative and reactive maintenance, inspections, cleaning, vegetation management, remote monitoring)
- b. Equipment replacement costs
- c. Roofing replacement
Domain IV: Design 18.3%
Task 1: Equipment Specifications
- a. PV module specifications (e.g., Standard Test Conditions [STC], open circuit voltage, short circuit current)
- b. Manufacturer documentation (e.g., datasheets, installation manuals)
- c. Inverter specifications (e.g., voltage, current, frequency, surge)
- d. Existing service and/or equipment (e.g., voltage, current, phase)
- e. Energy Storage Systems (e.g., type, capacity, voltage)
- f. National recognized testing labs [NRTL]
- g. Product safety standards (e.g., IEEE standards, UL, national standards)
- h. Location conditions (e.g., wind, snow, seismic activity)
Task 2: Codes and Standards
- a. Electrical codes (e.g., national, state, local)
- b. Building codes (e.g., national, state, local)
- c. Fire codes (e.g., national, state, and local)
- d. Workplace safety standards (e.g., OSHA, ANSI, NFPA)
- e. Permitting, utility, and inspection requirements (e.g., authorities having jurisdiction [AHJ])
Task 3: Factors Impacting Design and Performance
- a. Local conditions (e.g., weather, soiling)
- b. Peak sun hours
- c. Shading analysis (e.g., current and future)
- d. Array orientation (e.g., tilt, azimuth)
Task 4: PV System Sizing
- a. Derating factors
- b. System losses (e.g., DC losses, AC losses)
- c. Power rating
- d. Energy production
- e. Energy efficiency
- f. Electric service infrastructure
- g. Interconnection requirements
- h. Load analysis
- i. System modeling tools
- j. String configuration
- k. Inverter compatibility (e.g., inverter types, ratings, DC:AC ratio)
Task 5: PV System Plan Sets
- a. Site plan and array layout
- b. Electrical diagrams (e.g., one-line or three-line diagrams, wiring diagram, string diagram)
- c. Conductor properties (e.g., temperature ratings, ampacity ratings, UV resistance, moisture rating)
- d. Electrical and plan set symbols
- e. Electrical equipment (e.g., wire, conduits, raceways, disconnects)
- f. Equipment data sheets and installation instructions
- g. Details (e.g., structural, electrical, grounding, labeling)
- h. Permit documents
Task 6: Structural Considerations
- a. Static and dynamic loads (e.g., wind, snow, seismic)
- b. Mounting systems (e.g., ground mount, roof mount, canopy)
- c. Roofing systems (e.g., rafter, trusses, membranes)
Domain V: INSTALLATION 18.3%
Task 1: Mounting Structure Types and Installation Considerations
- a. Types of mounting structure and components (e.g., flat roof, pitched roof, ground mount)
- b. Manufacturer manuals and specifications (e.g., installation manuals, site engineered plans)
- c. Roof considerations (e.g., type, pitch, warranty)
- d. Structural considerations (e.g., rafter, truss, stud, decking, beams, purlins, span, cantilever)
- e. Fastener types and sizes (e.g., metal, wood, concrete fasteners; material – stainless steel/galvanized; grade, strength markings, compatibility of metals/materials)
- f. Grounding and bonding methods (e.g., integrated grounding, listed grounding components, star washers)
- g. Common power and hand tools
Task 2: Electrical Equipment Installation Considerations
- a. Manufacturer manuals and specifications (e.g., termination torque specifications, NEMA ratings, sunlight exposure)
- b. Working clearances
- c. Common electrical fittings and uses (e.g., connectors, couplings, grounding bushings, strain reliefs, raceway)
- d. Labeling and marking requirements (e.g., code requirements, durability)
- e. Wiring best practices (e.g., PV connector compatibility, drip loops, service loops, minimum bend radius, support, exposure to damage)
- f. Material compatibility (e.g., conductor type, terminations, splices)
Task 3: Energy Storage Installation Considerations
- a. Common types of energy storage (e.g., lithium batteries, lead acid batteries)
- b. Manufacturer manuals and specifications (e.g., installation manuals, system programming and controls, product safety guidelines)
- c. Labeling and marking requirements (e.g., code requirements)
Task 4: System Commissioning
- a. Visual inspection (e.g., Quality Assurance Quality Control [QAQC], installation checklists)
- b. Testing (e.g., thermography, string voltage, polarity)
- c. Proper operation of equipment (e.g., inverter operation, monitoring communication, disconnects)
- d. Documentation (e.g., commissioning forms, manufacturer checklists, photo checklists, permission to operate [PTO])
- e. Owner/operator orientation (e.g., walk-through, training, monitoring, expected operations and maintenance, emergency response)
Domain VI: Operations & Maintenance 13.3%
Task 1: Electrical Test Equipment and Application
- a. Multimeters (e.g., current, voltage, resistance, continuity)
- b. Insulation testing devices (e.g., megohmmeter)
- c. IV curve tracer
- d. Infrared thermometer
- e. Irradiance meter
- f. Battery capacity testing devices (e.g., load tester)
- g. Hydrometer
- h. Refractometer
- i. Thermal camera
Task 2: Performance Parameters
- a. Temperature effects (e.g., cell temperature, ambient temperature)
- b. Wind speed effects
- c. IV curve characteristics (e.g., short circuit, open circuit, maximum power point [MPP])
- d. Irradiance effects
- e. Inverter AC and DC voltage (e.g., operating voltage, maximum power point tracker [MPPT] range)
- f. Utility voltage and frequency
- g. Battery voltage
- h. Battery state of charge (SOC)
Task 3: System Monitoring Equipment and Applications
- a. Monitoring methods (e.g., app- and web-based, on-site)
- b. Data acquisition and control (e.g., DAS, SCADA)
- c. Instrumentation transformers (e.g., current transformers [CT], potential transformer [PT])
- d. Revenue grade meter
- e. Weather monitoring systems (e.g., albedometer, pyranometer, anemometer, thermometer)
- f. Battery temperature sensors
- g. Amp hour meter
Task 4: Deviations from Expected Performance
- a. Test conditions (e.g., Standard Test Conditions [STC], nominal operating cell temperature [NOCT])
- b. Installation deficiencies
- c. Electrical faults (e.g., arc fault, ground fault)
- d. Production enhancements and their causes (e.g., albedo, edge of cloud, low temperature, high altitude)
- e. Production losses and their causes (e.g., weather, pollution, shading, animals, soiling, system degradation)
- f. System curtailment (e.g., export limitation, load control)
Task 5: Maintenance of PV Systems
- a. Record keeping (e.g., system logging, data sheets, user manuals, as-built plan set, maintenance plan, photography)
- b. Visual inspection
- c. Equipment replacement (e.g., installation practices, lockout/tagout, service life)
- d. Equipment-specific maintenance requirements (e.g., lockout/tagout, torque requirements, cleaning
Practice Questions
180 full spectrum questions, that cover the full range of the exam.
- (2) 20 question quizzes
- (2) Full length, 70 question exams.
260 specialized questions, broken into topics which isolate specific technical competencies within photovoltaic system design and installation.
- NABCEP PV Associate (PVA) Equations. (40 questions)
- NABCEP PV Associate (PVA) Terminology. (40 questions)
- National Electrical Code (NEC) Calculations: Deep dive into Articles 690 and 705, isolating ampacity temperature adjustments, conduit fill derivations, overcurrent protection device (OCPD) sizing, and application of the 120% busbar rule for utility interconnections. (20 questions)
- Battery Energy Storage Systems (BESS): Focus on energy storage integration, differentiating chemistry types, state of charge (SoC) management, depth of discharge (DoD) lifecycle impacts, DC-coupled versus AC-coupled architectures, and compliance with NEC Article 706. (20 questions)
- System Commissioning and Troubleshooting: Practical field diagnostics evaluating I-V curve tracing, megohmmeter insulation resistance testing, identifying blown bypass diodes, isolating ground faults, and verifying correct phase rotation for 3-phase commercial systems. (20 questions)
- String Sizing and Thermal Derating: Advanced temperature calculations focusing exclusively on calculating cold-weather Voc limits to prevent inverter overvoltage failure, and hot-weather Vmp reductions affecting minimum MPPT operational windows. (20 questions)
- OSHA Safety and Hazard Mitigation: Strict focus on field safety requirements, covering personal fall arrest system (PFAS) ratings, lockout/tagout (LOTO) sequencing, arc flash boundary PPE selection, and rooftop staging protocols. (20 questions)
- Site Survey and Shading Analysis: Evaluating physical space and sun exposure, calculating inter-row spacing geometry to avoid self-shading, interpreting Solar Pathfinder or Solmetric SunEye data, and estimating yield loss from hard shading versus soft shading. (20 questions)
- Mounting Systems and Structural Loads: Assessment of physical hardware, roof attachment flashing techniques, wind uplift zones, snow load point distribution, fastener torque specifications, and preventing galvanic corrosion between dissimilar metals like copper and aluminum. (20 questions)
- Grid Policies and Project Economics: Evaluating the financial viability of systems, calculating Levelized Cost of Energy (LCOE), estimating Return on Investment (ROI) through Time-of-Use (TOU) arbitrage, and navigating capacity limits for Net Energy Metering (NEM). (20 questions)
- Module-Level Power Electronics (MLPE): Differentiating the operational logic between microinverters and DC optimizers, rapid shutdown compliance per NEC 690.12, and calculating hardware constraints when using smart modules. (20 questions)
Requirements for NABCEP PVA Certification
To earn and maintain the NABCEP PV Associate Credential, candidates must satisfy eligibility criteria, pass the standardized examination, and adhere to recertification guidelines.
A. Candidate Eligibility Pathways
Candidates must be at least 18 years of age and qualify through one of the following primary pathways:
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Education Pathway: Complete an approved training course (typically ~40 instructional hours) offered by a NABCEP Associate Registered Training Provider.
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Experience Pathway: Document a minimum of 6 months (910 hours) of full-time equivalent work experience in solar PV-related roles.
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Veterans Pathway: Provide documentation of military experience relevant to electrical/renewable energy systems (DD-214).
B. Recertification & Maintenance Requirements
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Renewal Cycle: Credential holders must renew every 3 years.
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Continuing Education: Completion and documentation of 12 advanced PV training hours / Continuing Education Units (CEUs) within the 3-year cycle.
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Code of Ethics: Continued compliance with the NABCEP Standards of Conduct.



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