Residential Solar PV Installation SOP
Purpose
Standardize residential solar PV (photovoltaic) installation. Combines structural roofing, electrical, + integration work. Quality install determines 25-year performance + insurance/warranty integrity.
Scope
Grid-tied residential PV systems 4-15 kW. Excludes off-grid (different design), ground-mount (different mounting), commercial > 25 kW, + battery-only retrofits.
Prerequisites
- System design complete (panel layout, electrical schematic)
- Permit pulled
- HOA approval (if applicable)
- Equipment on-site: panels, racking, inverter, balance-of-system, conduit, wire
- Crew: 1 lead + 2-3 helpers; 1 must be licensed electrician
- 3-5 days typical for residential install
- Fall protection equipment (mandatory)
- Weather: dry days, low wind, mild temps
Procedure
Day 1 - Pre-install + setup
- Review approved permit + design with crew
- Verify all equipment matches design
- Set up scaffolding or roof anchors
- Brief safety + tasks
Day 1-2 - Roof penetrations + racking
- Mark rafters below intended panel locations
- Drill pilot holes through roof + into rafter (minimum 2.5" into rafter)
- Install standoffs / mounts:
- Flashing kit around mount
- Sealant between flashing + roof
- Lag bolts torqued to spec (typically 8-12 ft-lb on 5/16" lag)
- Inspect each penetration for proper sealing
- Install rails on standoffs
- Level + align rails per design
Day 2-3 - Panel installation
- Carry panels carefully to roof (one at a time; no stacking on roof)
- Set panel onto rails
- Clamp panel: end clamps at ends, mid clamps between
- Verify spacing per design
- Verify panel grounded to racking (continuous bonding)
- Continue across array
Day 3 - DC wiring + roof penetrations
- Connect panel DC wiring (positive + negative)
- Run DC strings to inverter location
- Use UV-resistant wire (PV-rated)
- Through-roof penetration to inverter location
- Conduit + flashing at each through-penetration
Day 3-4 - Inverter + electrical
- Install inverter (typically wall-mounted near service panel, OR on rail next to panel for microinverters)
- Run DC from panels → DC disconnect → inverter
- Run AC from inverter → AC disconnect → service panel
- Install monitoring system
Day 4 - Service panel integration
- Backfeed breaker installed in service panel:
- Sized per inverter output + 125% safety
- 120% rule: solar + main breaker ≤ 120% of panel bus rating
- Wire from AC disconnect → service panel
- AC disconnect labeled per code
Day 4 - Final wiring + commissioning
- Verify all connections torqued
- Test DC voltage at panel strings (multimeter)
- Test AC at inverter output (multimeter)
- Energize: turn on AC disconnect first, then DC disconnect
- Inverter syncs to grid (5-10 minutes typical)
- Monitor production beginning
Day 5 - Inspection + commissioning
- AHJ (Authority Having Jurisdiction) electrical inspection
- Utility interconnection inspection
- Permission to Operate (PTO) issued by utility
- System fully active
Acceptance criteria
- All penetrations sealed + leak-tested (water spray check)
- All panels secured + grounded
- All electrical connections per NEC + manufacturer spec
- DC + AC voltages within tolerance
- System producing per design estimate (sunny day baseline)
- Monitoring system online
- Customer sign-off + utility PTO
Common pitfalls
- Inadequate rafter penetration: lag bolts pull out under wind/snow
- No flashing at mounts: roof leak in 1-3 years
- Wrong wire size for run length: voltage drop reduces production
- Inverter undersized: doesn't capture full panel output
- Backfeed breaker not 120% rule compliant: panel overload
- Skipping ground continuity: NEC violation; safety hazard
- Permit not closed before customer occupancy: legal issues
- Wrong DC disconnect type: doesn't break under load
Mounting types
Flush-mount (most common):
- Panels parallel to roof slope
- 2-4" gap for airflow
- Simple, cost-effective
- Best for standard pitched roofs
Tilt-mount (less common):
- Panels angled different from roof
- Optimizes sun angle (especially low-pitch roofs)
- More expensive
- Best for flat or low-slope roofs
Ground-mount:
- Separate scope; ground-mounted racks
- For homes with significant land
- No roof penetrations
Inverter types
String inverter:
- Single inverter; all panels connect to it
- for typical residential
- DC disconnect at inverter
Microinverter (or DC optimizer):
- One inverter per panel (or per pair)
- Eliminates string loss; better in shading
- More monitoring points
Hybrid (battery-ready):
- Inverter integrates with battery storage Tesla Powerwall, Enphase IQ Battery, FranklinWH integrations are common.
Battery storage
Separate but related:
- Reduce grid dependence
- Backup during outages
- Time-of-use rate optimization
Costs: added for typical battery system; 1-3 day install separate or combined.
Permits + utility coordination
Permits:
- Electrical permit
- Sometimes building permit (for structural mounts)
- Utility interconnection application
Utility process:
- Submit interconnection application (10-30 day approval)
- Install system
- Utility inspection (sometimes; often via electrical inspector)
- Permission to Operate (PTO) issued
- Net metering credit begins
Don't activate system before PTO; results in back-charging + fines.
Customer education
After install:
- Walk through monitoring system + app
- Show how to read production data
- Explain seasonal variation (winter less than summer)
- Provide warranty info (panels 25 years, inverter 10-25 years)
- Set up annual visual inspection
- Discuss battery upgrade option if not included
Cleaning + maintenance
- Annual visual inspection:
- Cleaning: typically (residential)
- Self-cleaning in most regions (rain handles it)
- Some warranty work covered by manufacturer
Lifespan + degradation
- Panels: 25-year warranty; 80% production after 25 years
- Inverter: 10-25 year warranty (replace once during system life)
- Cables: 25+ years
- Mounting: 25+ years if properly installed
System designed for 25-30 year operation.
NEVER SKIP THE FLASHING AT ROOF PENETRATIONS. Solar panels create 25-30 years of opportunity for water to enter through poorly-flashed mounting points. Each penetration requires proper roof-specific flashing + sealant. A single un-flashed mount creates a leak that doesn't appear for 2-5 years (during heavy storm) + then damages roof, attic, ceilings. Use manufacturer-specified flashing kits; never improvise.
References
- NEC Article 690 (Solar PV)
- IRC R324 (PV systems in residential)
- Manufacturer installation manuals (binding for warranty)
- NABCEP installation certification