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EV Charger Install — Level 2 in Aurora

Licensed ev charger install — level 2 services for Aurora and Arapahoe/Adams County. Charge at home. Every night..

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EV Charger Install — Level 2

Charge at home. Every night.

Local Service

EV Charger Install — Level 2 Services in Aurora, Colorado

Autotelic provides professional ev charger install — level 2 services throughout Aurora and the surrounding Arapahoe/Adams County area. Level 2 EV charger installation across the Denver metro — 240V dedicated circuit, NEMA 14-50 outlet, hardwired units, and load management. Whether you're in Aurora (Colorado's third-largest city) or nearby communities, our team delivers quality workmanship backed by Colorado licensing and full insurance coverage.

Permits & Licensing

Permits in Aurora

Aurora building permits are issued by the Building Division's Permit Center, which also handles public improvement, sign, and lawn and irrigation permits. Contractor licensing is a City of Aurora requirement, and applications go through the Aurora4Biz.org online portal. Authority: City of Aurora — Building Division (Permit Center).

Permit Thresholds

Aurora permit thresholds

Code reference
Permits are generally required for residential remodel work in Aurora, Colorado, per the adopted building codes (primarily the 2021 International Residential Code (IRC) with local amendments in Aurora City Code Chapter 22, Article V), unless specifically exempt.
Aurora City Code § 22-184 (amending IRC R105.2) exempts only
one-story detached accessory residential storage sheds, playhouses, or shade structures ≤120 sq ft, not attached to the residence, and not used for vehicle storage.§ 22-184
Code reference
Aurora City Code § 22-135 (amending IBC 105.2) has similar limited exemptions for certain small accessory structures, fences ≤7 ft high (plus all chain-link fences), and antennae/towers ≤25 ft high.§ 22-135
Structural triggers
Any structural alteration, addition, or work affecting load-bearing elements generally requires a permit under the adopted IRC (see R105 and amendments).
Use tax (construction materials use tax)
Prior to permit issuance, a deposit is required based on 3.75% (three and three-fourths percent) applied to 50% of the total estimated cost of the building/construction/reconstruction/alteration/expansion/modification/improvement (or 100% of the total estimated cost of construction materials/
Code reference
This is per Aurora City Code § 130-61.§ 130-61.
Code reference
All information is based on the Aurora Municipal Code (Chapter 22) and official city resources.

Codes are amended regularly — verify current requirements with City of Aurora — Building Division (Permit Center).

Energy Code

Aurora energy code quick facts

Code reference
Aurora, Colorado, has adopted the 2021 International Energy Conservation Code (IECC) as its base energy code (with the Colorado Model Electric Ready and Solar Ready Code also required by state law).
Code reference
Aurora is in IECC Climate Zone 5B.
Code reference
The adopting provision is Aurora City Code § 22-203 (Code adopted, under Article VI, International Energy Conservation Code).§ 22-203
Code reference
Key prescriptive requirements relevant to remodels/additions (drawn from 2021 IECC Table R402.1.2 and related sections for CZ 5B; these apply unless a performance path or other compliance option is used):
Ceiling/attic insulation
R-49 (2021 IECC Table R402.1.2, CZ 5B).
Wood-frame wall insulation
R-20 or 13 + 5ci (continuous insulation) (2021 IECC Table R402.1.2, CZ 5B).
Floor insulation (over unconditioned space)
R-30 (2021 IECC Table R402.1.2, CZ 5B).
Fenestration (windows)
Maximum U-factor 0.30 and SHGC 0.40 (2021 IECC Table R402.1.2, CZ 5B).

Codes are amended regularly — verify current requirements with City of Aurora — Building Division (Permit Center).

Zoning & Dimensional Standards

Setback & dimensional standards in Aurora

Zone-district dimensional standards for Aurora, quoted verbatim from the Aurora Unified Development Ordinance. Knowing your lot's district — and its setbacks, height, and coverage limits — is where every feasibility conversation starts.

I-1setback & dimensional standards
StandardRequirement
Rear Setback (min)5 ft.

Aurora Unified Development Ordinance I-1 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

I-2setback & dimensional standards
StandardRequirement
Rear Setback (min)5 ft.

Aurora Unified Development Ordinance I-2 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-1setback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)6,000 sf. [1]
Lot Frontage, Single-Family Detached (min)Subarea A: 50 ft. Subarea B: 60 ft.
Front Setback (min)25 ft. [4]
Side Interior Setback (min)5 ft. [6]
Side Setback Abutting Local Street (min)12.5 ft.
Rear Setback (min)20 ft.
Building Height (max)38 ft.

Aurora Unified Development Ordinance R-1 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-2setback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)6,000 sf. [1]
Lot Frontage, Single-Family Detached (min)Subarea A: 50 ft. Subarea B: 60 ft.
Front Setback (min)20 ft. [4]
Side Interior Setback (min)5 ft.[6]
Side Setback Abutting Local Street (min)10 ft.
Rear Setback (min)15 ft.
Building Height (max)38 ft.

Aurora Unified Development Ordinance R-2 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-3setback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)5,000 sf.
Lot Frontage, Single-Family Detached (min)50 ft.
Front Setback (min)15 ft.
Side Interior Setback (min)5 ft.
Side Setback Abutting Local Street (min)10 ft.
Rear Setback (min)10 ft.
Building Height (max)45 ft.[7]

Aurora Unified Development Ordinance R-3 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-4setback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)5,000 sf.
Lot Frontage, Single-Family Detached (min)50 ft.
Front Setback (min)12 ft.
Side Interior Setback (min)5 ft.
Side Setback Abutting Local Street (min)7.5 ft.
Rear Setback (min)10 ft.
Building Height (max)65 ft.[8]

Aurora Unified Development Ordinance R-4 setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-MHsetback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)[2]
Front Setback (min)15 ft.
Side Interior Setback (min)5 ft.
Side Setback Abutting Local Street (min)15 ft.
Rear Setback (min)8 ft.
Building Height (max)20 ft.[9]

Aurora Unified Development Ordinance R-MH setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

R-Rsetback & dimensional standards
StandardRequirement
Lot Area, Single-Family Detached (min)43,560 sf.
Lot Frontage, Single-Family Detached (min)120 ft.
Front Setback (min)30 ft.
Side Interior Setback (min)10 ft.
Side Setback Abutting Local Street (min)25 ft.
Rear Setback (min)25 ft.
Building Height (max)38 ft.

Aurora Unified Development Ordinance R-R setback standards (146-4.2.2 Table 4.2-1) — effective 2026-02-23 · View the code

Verify current requirements with the jurisdiction — informational reference only. Standards vary by overlay, lot, and use; we confirm the exact rules for your property during feasibility.

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What a Level 2 install actually covers

A Level 2 EV charger install adds a dedicated 240-volt branch circuit and mounts a wall, pedestal, or hardwired charging unit at the parking location. Typical scope includes a site assessment and NEC Article 220 load calculation on the existing service, permit application with the local authority, circuit rough-in, charger mounting and termination, functional testing, and final inspection. If the panel cannot support the continuous EV load, the scope may expand to a service or sub-panel upgrade before the charger circuit is added.

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Electrical scope and equipment classes

Most residential Level 2 units land on a 40- to 50-amp double-pole breaker. A 48-amp continuous charger is commonly planned on a 60-amp circuit because Colorado follows the 2020 NEC requirement to size new continuous loads at 125 percent. Wiring is typically copper sized to the breaker and charger rating—often 6 AWG copper for a 48-amp unit—run in approved methods and protected from physical damage, frequently in conduit for exposed or outdoor segments. Connection is either hardwired or a NEMA 14-50 receptacle; hardwiring is usually preferred outdoors for weather resistance. GFCI protection is required for most 240V Level 2 charging circuits. Outdoor units should carry at least a NEMA 3R enclosure rating, with NEMA 4 preferred for Denver hail, freeze-thaw, and wind-driven rain. Common equipment classes include Wi-Fi-capable residential wall connectors and flexible amperage units such as ChargePoint Home Flex, Grizzl-E, Emporia, and Tesla Wall Connector, selected to match vehicle inlet, cable reach, and scheduled-charging needs.

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Mounting locations and site conditions

Exterior wall mounts near the garage or panel path are the simplest when structure and parking alignment allow. Pedestal mounts serve driveways or parking pads without a usable wall and usually need a concrete footing. Detached garages or across-yard parking require trenched conduit from the main panel or a suitably placed sub-panel. Placement should balance cable reach to the charge port, protection from traffic and snow storage, and distance back to the electrical source so conductor length and voltage drop stay practical.

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Denver permits, codes, and inspections

In the City and County of Denver, an electrical permit is required for Level 2 charger work through Community Planning and Development, with a final inspection after install. Inspectors look for correct grounding, conductor sizing, overcurrent protection, GFCI where required, and work matching the permitted scope. Installations must follow NEC Article 625 for EV power transfer systems and NEC Article 220 load-calc methods for panel capacity. The Denver Energy Code also drives EV-ready provisions on many new garages and carports: a 240-volt, 40-amp branch circuit path, a dedicated EV-ready breaker space, and a receptacle or charging connection at the parking space. Metro suburbs follow their own building departments and may apply state or local amendments, so jurisdiction is confirmed before rough-in.

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Panel capacity and when upgrades enter the job

Older Denver-metro housing often still has 100-amp service. A proper load calculation determines whether spare capacity exists for a continuous Level 2 load or whether a panel upgrade, feeder change, or sub-panel is required first. Skipping that step risks nuisance tripping, rejected inspection, or an undersized install that cannot support the charger rating the vehicle needs. Xcel Energy and other programs sometimes offer rebates on qualifying Level 2 equipment; rebate paperwork is separate from the electrical permit and depends on current utility rules and product eligibility.

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How Autotelic runs the project

Autotelic is a municipally licensed Denver general contractor. For Level 2 EV charger work, we coordinate licensed specialty electrical trades for load calculation, circuit installation, panel work when needed, permit handling, and inspection readiness. That keeps design-build sequencing clear when charger install ties into garage remodels, driveway work, pedestal foundations, or broader electrical service changes.

FAQ

Common questions

Who handles the electrical permits and licensing?

Autotelic is a municipally licensed Denver general contractor and coordinates licensed specialty electrical trades for Level 2 charger circuits, panel evaluations, and related service work. The electrical permit is pulled with the local authority—in Denver, Community Planning and Development—and the finished install is left ready for required inspection.

Do I need a dedicated circuit for a Level 2 charger?

Yes. Level 2 equipment requires a dedicated 240-volt branch circuit with overcurrent protection sized to the charger rating and wire ampacity. Sharing the circuit with other loads is not acceptable under standard EV charging practice and code expectations.

Hardwired or NEMA 14-50—which is better outdoors?

Both are used, but hardwiring is generally more weather-resistant for permanent outdoor mounts. A NEMA 14-50 receptacle can be appropriate indoors or where a cord-and-plug setup is specified. Enclosure rating, GFCI requirements, and local inspection expectations guide the final choice.

Will my existing panel support a Level 2 charger?

Only a load calculation can answer that. Many older homes with 100-amp service need a panel or sub-panel upgrade before a 40- to 60-amp continuous EV circuit is added. The assessment should happen before equipment is purchased and before a final scope is locked.

What outdoor rating matters in Denver weather?

Use a charger listed for outdoor installation with at least a NEMA 3R enclosure; NEMA 4 is preferred where driving rain, dust, and hail exposure are concerns. Mounting height, cable management, and protection from vehicle paths and snow storage matter as much as the enclosure rating.

Are utility rebates part of the install?

Sometimes. Programs such as Xcel Energy rebates may apply to qualifying Level 2 equipment and installations, but eligibility, product lists, and documentation change. Rebate support is coordinated around the electrical scope; it is not a substitute for the permit or inspection.

Service Area

Serving Aurora and Arapahoe/Adams County

We serve Aurora, CO and all surrounding Denver metro communities. Our team is based in Denver and operates throughout the Front Range, from Castle Rock to Longmont and everywhere in between. Contact us for a free estimate on your Aurora project.

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