Solar PV Basics for Trade Service Reference
Why this matters
Solar PV (photovoltaic) is increasingly common on residential roofs. Roofers work around it; electricians service panels with solar tie-in; HVAC techs encounter battery + load-management systems. The non-solar tech who understands the basics works safely + advises customers correctly. This is the field card.
Components of a residential PV system
Solar modules (panels): convert sunlight to DC electricity. Typical residential 300 - 450 W per module; 20 - 40 modules per home.
Inverter: converts DC from panels to AC for the home grid. Two configurations common:
- String inverter: one large inverter for all modules; modules wired in series.
- Microinverter (one per module): converts at each panel; more flexible for partial shading.
DC optimizer (Tigo, SolarEdge): hybrid - module-level optimization but string inverter conversion. Compromise between cost + per-module performance.
Combiner box / DC disconnect: combines multiple strings of panels; provides shutoff.
AC disconnect: required between inverter + panel; service-disconnect for first responders.
Critical-loads sub-panel (with battery): backed-up circuits when grid is down.
Battery storage (optional): stores excess for use at night OR during outage. Tesla Powerwall, Enphase Encharge, Generac PWRcell.
Monitoring: app showing production + consumption; per-panel diagnostics on microinverter systems.
Rapid shutdown requirement (NEC 690.12)
Modern residential solar requires rapid shutdown - within 30 seconds of a signal, the DC voltage outside the array must drop below safe levels. Achieved via:
- Microinverters (each module shuts off at AC side)
- Module-level shutdown devices (Tigo, SolarEdge optimizers)
Important for first responders during fires: turn off the AC disconnect + the DC side becomes safe within 30 seconds.
Roof considerations (for roofers)
Penetrations: solar mount attachments penetrate the roof. Proper flashing critical (similar to vent stack flashing). Old attachments leaking are a common roof leak source for solar-equipped homes.
Weight: typical modern panels ~2.5 - 3 lbs/sq ft installed. Most residential roofs handle this; some older structures need engineering review.
Roof age + remaining life: panels last 25+ years. If the roof underneath is older than the panels' life, the roof needs replacement BEFORE solar (otherwise removal + reinstall mid-life adds cost). When working on a customer's roof:
- Solar present + roof aging: customer should plan removal + reroof + reinstall when roof needs replacement
- New install with old roof: red flag to discuss with customer
Shading: panels in shade for hours of the day = lost production. Tree removal OR pruning may be part of the conversation.
Electrical interconnect
Behind-the-meter (most residential): solar AC output ties to the home's main panel via a backfed breaker OR a line-side tap.
120% rule (NEC 705.12): solar breaker + main breaker can't exceed 120% of bus rating. A 200A main panel + 200A bus can have 40A solar breaker (200 × 1.2 = 240; 240 - 200 = 40A available).
Line-side tap: bypass the panel limit by tapping ahead of the main breaker. More install work; allows larger solar systems.
Supply-side disconnect: required for line-side tap.
Net metering + grid interconnect
Most residential solar is grid-tied:
- Produces excess during the day → exports to the grid → credit
- Consumes from grid at night / cloudy / overload moments
- Net of the two is the customer's billing basis
Net metering rules vary by state. Some pay retail rate for exports; some pay wholesale ("avoided cost"). Some have time-of-use exports.
Battery considerations
Adding a battery to an existing system:
- AC-coupled (battery connects via inverter to AC bus)
- DC-coupled (battery shares DC path with panels)
- Required for blackout backup (grid-tied solar typically shuts down during grid outage for safety)
- Critical-loads panel + battery = limited backup during outages
Without battery, grid-tied solar doesn't help during outages - it shuts down automatically.
When solar PV is on the roof + non-solar work is happening
Roofer doing work near solar:
- Solar installer handles panel removal + reinstall (typically separate crew)
- Communicate scope: which panels need removal? When?
- Document panel position before removal
- Coordinate timing - don't open up the roof + then wait for solar crew
Electrician at panel with solar tied in:
- AC disconnect is downstream of solar; opening it shuts off solar's grid connection but the panels are still active in daylight
- DC side downstream of rapid-shutdown device is energized
- 1,000V DC OR more available on older systems; can be lethal
- Treat anything DC-side OR upstream of the AC disconnect as live unless verified
- Use rated PPE + tools for DC voltage
HVAC at outdoor unit near solar conduit:
- Be aware of conduit routing; avoid damaging during work
- Tag the line if it must be temporarily moved
Common issues service techs encounter
Lower-than-expected production:
- Shading (tree growth over years, new construction nearby)
- Dirty panels (dust, pollen, bird droppings)
- Failed microinverter on one module (others compensate but total drops)
- Inverter fault (replace; under warranty often)
- String fault (open connection in series chain)
Inverter showing fault code:
- Grid voltage out of range (utility-side issue; rare)
- DC voltage out of range (panel issue, faulty optimizer)
- Temperature fault (location too hot OR fans failed)
- Communication fault (monitor app shows offline but inverter working)
No production from one or more panels (microinverter system):
- Individual microinverter failed
- DC connector loose
- Module damaged (cracked glass)
Roof leak near solar attachment:
- Flashing failure
- Mount sealant degraded
- Re-flash work (specialist; not typical roofer scope without solar credentials)
Refer when
- Solar-specific install or service (specialist contractor required in most states)
- Rapid shutdown device replacement
- DC-side work (lethal voltages possible)
- Inverter replacement
- Battery service (high-voltage DC + thermal runaway risk)
The roofing + electrical scopes overlap solar but don't fully replace solar specialist work. Refer to a solar installer for solar-specific work.
Customer expectations
When customers have solar:
- Production varies seasonally + with weather (visible on the app)
- Cleaning panels annually OR semi-annually marginally improves output
- Battery extends backup capability but adds significant cost
- Some warranties cover labor; some only parts
- Net metering policies change; the deal at install may differ from today
Cross-trade techs can answer general questions + refer specifics.
References
- NEC Article 690 (Solar Photovoltaic Systems)
- NEC 705 (Interconnected Electric Power Production Sources)
- UL 1741 (inverter standards)
- IEC 61215 (PV module standards)
- IREC, NABCEP, SEIA installer + safety guidance
- Manuall internal: Net Metering + Billing, Breaker + Panel Reference