Every Magic Valley homeowner researching residential roofing materials eventually runs into the same wall: a list of options written as though the climate doesn’t matter, equally valid in Twin Falls as in Tampa. But the types of residential roofing that hold up in southern Idaho aren’t the same ones that perform best in a mild coastal or mountain climate. Sustained wind, wind-driven dust, intense UV, and wide temperature swings between afternoon and night define this region — and the material you put on your roof either accounts for those conditions or ages faster because of them. This guide covers every major type of roof material — asphalt, metal, composite, tile, slate, cedar, and TPO — with honest trade-offs for each and a clear framework for narrowing the right choice for a high-desert home.
Quick answer: The main types of residential roofing are asphalt shingles, metal (standing seam and metal shingles), composite/synthetic shingles, tile, slate, cedar wood shakes, and TPO membrane for low-slope sections. For Magic Valley homes facing sustained wind, blowing dust, intense UV, and wide day-night temperature swings, Rooftops Energy Solutions — a veteran-owned, Idaho-registered roofer based in Meridian and serving Twin Falls, Jerome, Kimberly, Filer, Buhl, and surrounding communities — most often points homeowners toward wind-rated architectural asphalt or standing-seam metal, both backed by strong material and workmanship warranties.
Who We Are and Why Roof Type Matters More in the Magic Valley
We’re Rooftops Energy Solutions, a veteran-owned roofing company based in Meridian, Idaho. Over 12 years and 500 client projects, we’ve developed one consistent conviction: the most important conversation in any roofing estimate isn’t about color or style — it’s about whether the material you’re considering actually fits the climate your roof lives in. That belief shapes every recommendation we make.
Magic Valley isn’t a generic high-desert footnote. The region sits in a wind corridor that regularly delivers sustained gusts well past the threshold where lower-rated shingles start to fail. The soil is fine-grained and alkaline, the sun logs high annual UV hours, and temperature can swing 40 degrees between a July afternoon and the same night. A material that performs reliably under mild or coastal conditions can shed granules, pop fasteners, or crack sealants here within a fraction of its expected lifespan.
The principle we come back to every time: match the material to the climate first. Budget, curb appeal, and HOA requirements all matter, but they should layer on top of a sound climate-appropriate foundation — not replace one. Roof pitch enters the equation too: steeper slopes handle wind-driven rain and snow runoff more aggressively, while low-slope additions and porches require a different system entirely. Both shape which types of roof materials belong in the conversation for your specific home.
The view from Rooftops is different. We think you deserve a straight answer before you spend a dollar. Our residential roof installation and replacement services and our broader roofing contractor services are built around that commitment.

What Magic Valley Weather Does to a Roof
Four forces age a high-desert roof faster than most product comparisons acknowledge. Understanding them makes every material decision that follows more intuitive.
Wind and wind uplift are the most visible threat. Sustained wind events — not just isolated gusts — stress the leading edges of shingles, work against fastener pull-through resistance, and over time lift tab corners on improperly nailed or lower-profile materials. Wind uplift ratings quantify how much force a shingle or panel assembly can resist before it fails, with Class 4 representing the highest residential performance standard. On a high-desert roof in a wind corridor, that number matters at the fastener level, not just on paper.
Dust and grit abrasion are subtler but relentless. Wind-driven alkaline dust acts like fine sandpaper on granule-coated asphalt surfaces, accelerating granule loss and shortening the effective life of lower-quality shingles. Smooth metal panels shed dust without the same abrasion risk; composite and higher-density architectural asphalt resist it better than standard products. It’s a real wear mechanism that rarely shows up in national product comparisons but appears clearly in premature granule loss on older roofs we see across the region.
UV intensity and thermal cycling are the twin punishers of sealants and underlayment. Southern Idaho logs high annual UV hours, and that ultraviolet load degrades asphalt binders, sealant strips, and exposed underlayment faster than in more temperate zones. Pair that with large day-night temperature swings — materials expanding in afternoon heat and contracting overnight — and you’re running constant mechanical stress on every fastener, seam, and flashing joint. Metal roofing is engineered with designed-in thermal movement; asphalt and composite rely on flexibility retained through quality manufacturing.
Winter snow and ice loading rounds out the picture. Magic Valley winters bring enough snowfall and freeze-thaw cycling that ice damming is a real risk, particularly at eaves where attic heat escapes unevenly. Ice-and-water shield — an adhesive-backed waterproofing membrane applied at the eave, valleys, and penetrations — is standard practice on roofs here precisely because of this risk. Proper attic ventilation matters equally: a roof that breathes correctly keeps the deck temperature more uniform, reducing the conditions that form ice dams and slowing shingle aging from below.
The Main Types of Residential Roofing at a Glance
Here is a fast, plain-English orientation across every material covered below. Use it to find what fits your situation — each section goes deeper on the trade-offs.
- Asphalt shingles (3-tab and architectural): Most common and most affordable; architectural far outperforms 3-tab on wind resistance and lifespan in this climate.
- Metal roofing (standing seam and metal shingles): Highest wind and UV resistance, longest expected lifespan, highest upfront cost.
- Composite/synthetic shingles: Mid-tier cost, Class 4 impact rating available, strong thermal durability, slate or shake appearance.
- Tile (concrete and clay): Very long-lived and heat-tolerant, but heavy — structural capacity is step one for any tile consideration.
- Slate: Longest-lasting natural material, premium cost and weight — a niche choice for the right home and budget.
- Cedar wood shakes: Distinctive rustic aesthetic; upkeep demands and fire risk are real factors in dry high-desert conditions.
- TPO/membrane: The right system for low-slope porches, additions, or flat sections where pitched-roof materials don’t perform.
Asphalt Shingles (3-Tab and Architectural)
Asphalt is the dominant residential roofing material across the country for straightforward reasons: solid performance at a price point most homeowners can work with, reliable installation across a wide range of pitches, and a variety of wind and impact ratings broad enough to fit most regional climates. In the Magic Valley, the key distinction is which type of asphalt shingle — and the performance gap between 3-tab and architectural is wide enough to make them functionally different products.
3-tab shingles are a single-thickness, flat profile with cutouts creating three tabs per strip. They’re lighter, less expensive per square, and carry lower wind ratings — standard versions typically rate to 60–70 mph. That margin is thin in a region where sustained wind events are routine. They also carry less granule mass to resist abrasion and shorter manufacturer warranty horizons than dimensional products. For most Magic Valley homes, 3-tab is not the right call on a primary roof.
Architectural (dimensional) shingles are laminated with multiple layers, creating a heavier, contoured profile that adds visual depth and meaningfully better performance. Wind ratings on quality architectural products commonly reach 110–130 mph, with some lines certified to 130+ mph — a substantial buffer over the wind thresholds this region regularly sees. The added thickness translates to better granule retention under abrasion, a longer expected service life, and a wider range of manufacturer warranty options. In high-desert conditions, architectural shingles are the baseline worth starting from.
For roofs where Class 4 impact resistance is a priority — relevant where hail or wind-driven debris is a seasonal concern — select manufacturers offer Class 4-rated architectural shingles. This is the highest residential impact-resistance benchmark and is worth asking about if your area has experienced hail damage recently. The manufacturer overview of residential roofing materials from GAF provides a useful reference on how product lines differ.
Typical lifespan for quality architectural asphalt in a high-desert climate, with proper installation, runs 20–30 years. Manufacturer warranty terms vary significantly by product tier — understanding the non-prorated window matters more than the headline years on the label.
Metal Roofing (Standing Seam and Metal Shingles)
Metal is the standout performer for a high-desert climate, and for Magic Valley homeowners willing to absorb a higher upfront cost, it’s frequently the best long-term value among residential roofing materials. The reasons connect directly to the four climate stressors above.
Standing-seam metal is the flagship: continuous vertical panels running from ridge to eave with concealed fasteners locked inside raised seams. No exposed fasteners means no fastener-penetration leak points, which is one of the more common failure modes on screw-down metal panels as they age. The panels are engineered to float within their clips as temperatures cycle, so the thermal expansion that stresses sealants and fasteners on other systems is designed out of the assembly. Wind uplift resistance on properly installed standing-seam systems is among the highest available in residential roofing, and the seam geometry sheds wind-driven grit rather than trapping it.
Metal shingles are formed metal panels shaped to mimic tile, slate, or shake profiles. They deliver much of the durability of standing seam at a somewhat lower installed cost, though they typically use exposed fasteners. Quality metal shingles still carry high wind ratings and long warranties and are a reasonable option for homeowners who want metal performance with a more traditional roofline appearance.
On UV and heat: metal roofing reflects a significant portion of solar radiation rather than absorbing it, reducing the heat load transferred into the attic — a real benefit in southern Idaho summers. That reflectivity aligns with cool-roof energy performance principles. Standing-seam metal is also the most natural pairing for a future solar installation: rail systems designed for standing seam use seam clamps requiring no roof-surface penetrations, which means no new leak points.
The honest trade-offs: metal costs more upfront than asphalt. Some products are susceptible to denting from hail or falling debris — panel gauge and finish are worth discussing with your installer. Rain noise is a common concern; in a properly insulated and ventilated attic assembly, the interior sound difference compared to asphalt is minimal for most homeowners.
Expected lifespan for quality standing-seam metal runs 40–70 years with proper maintenance. That changes the total-cost-of-ownership math substantially when measured against two or more asphalt roof replacements over the same period.
Composite and Synthetic Shingles
Composite or synthetic shingles occupy the middle ground between asphalt and premium natural materials, and they’ve earned a genuine following in high-desert markets because of how their engineering addresses specific regional stressors. These products are made from polymer blends — often combining rubber, plastic, and sometimes recycled content — molded to replicate the appearance of slate, wood shake, or dimensional asphalt. The aesthetics track closely enough to the natural materials they mimic that the difference isn’t obvious from the street.
The performance story is where composite shingles stand apart. Many carry Class 4 impact ratings, the highest residential designation, and that same construction correlates with strong resistance to wind-driven debris and grit abrasion. Polymer-based materials don’t lose granules the way asphalt does, so dust abrasion — a real aging mechanism in high-desert settings — is less of a factor over the product’s life. Thermal cycling performance is generally strong; the materials are formulated to flex across temperature ranges that would stress traditional asphalt binders.
The primary trade-off is upfront cost, which runs higher per square than standard architectural asphalt, though typically below standing-seam metal. Composite makes strong sense for homeowners who want a slate or shake visual without the weight and maintenance of the natural material, or where Class 4 impact rating is a priority and metal isn’t the budget fit. Quality composite products are typically warranted for 30–50 years by manufacturer, with some premium lines carrying lifetime designations.
Tile Roofing (Concrete and Clay)
Tile is one of the longest-lived roofing materials available. Properly installed concrete tile regularly serves 40–50 years; clay or terra cotta tile can outlast the structure beneath it. In hot, dry climates, tile’s profile creates an air gap between the tile and the deck that provides natural ventilation and reduces heat transfer into the attic. For UV resistance and heat tolerance, tile is difficult to match among common residential options.
The central honest reality for Magic Valley homeowners is structural: tile is heavy. Concrete tile runs approximately 900–1,100 pounds per square — roughly three to four times the weight of architectural asphalt. Not every residential structure carries that load capacity without reinforcement, and assessing it requires an actual structural review before any commitment is made. For existing homes being re-roofed, this is step one, not an afterthought.
Clay tile carries an impact vulnerability that concrete does not share to the same degree. A hard hailstone or wind-launched debris can crack individual clay tiles; while damaged tiles can be replaced, factoring in ongoing impact repair cost is prudent in areas that see moderate hail. Tile also performs best on adequately pitched roofs and demands careful flashing installation to prevent the slow water intrusion that ultimately defeats the material’s longevity.
Slate and Cedar Wood Shakes: Premium and Traditional Options
Natural slate is the outlier in residential roofing comparisons: its lifespan is in a class by itself — properly installed natural slate can last 75–150 years — and it’s the reference point against which every other long-lasting material is measured. That longevity comes at a real price. Natural slate is expensive to source, heavy, and requires installers with specific product experience. It is brittle; incorrect foot traffic damages it. For the right home, confirmed structural capacity, and the right budget, slate is extraordinary. For most Magic Valley homeowners replacing an aging asphalt roof, it’s a niche premium option rather than a practical baseline.
Cedar wood shakes and shingles bring an undeniable rustic aesthetic that some homeowners — particularly in rural Twin Falls County areas or higher-elevation communities — find compelling. Cedar has moderate insulating value and can perform well with attentive maintenance. The honest complications in a high-desert setting: cedar requires regular cleaning, preservative treatment, and inspection for moisture-driven splitting. In a dusty, alkaline environment, fine particle accumulation in shake profiles can hold moisture and accelerate decay. Southern Idaho’s fire season also puts untreated cedar at elevated risk; fire-treated cedar is available and substantially reduces that concern, but adds cost and requires periodic re-treatment.
Cedar makes the most sense for homeowners committed to both the aesthetic and the ongoing maintenance schedule — not as a set-and-forget solution in a dry high-desert climate.
TPO and Membrane Roofing for Low-Slope Sections
Not every section of a residential roof has enough pitch for shingles or standing-seam panels. Attached garages, bonus-room porches, covered patios, and low-slope additions are common in Idaho residential construction, and these sections require a purpose-built system — typically TPO (thermoplastic polyolefin) or another membrane product.
TPO is installed in wide single-ply sheets with heat-welded seams. In a wind-driven environment, a properly heat-welded TPO seam resists both wind uplift and water intrusion more reliably than lapped and adhered alternatives. For low-slope sections dealing with Magic Valley wind and blowing grit, a mechanically fastened, heat-welded TPO assembly is the standard-of-care approach. Roof pitch is the deciding variable: sections below roughly a 2:12 slope require a membrane system, and the transition zone between 2:12 and 4:12 warrants a specific conversation with your installer about which system fits the geometry and exposure.
Membrane systems are a normal part of complete residential roofing work. A mixed-pitch home isn’t unusual in this region, and matching the right material to each section of the roof is how the whole assembly performs correctly. See our full range of roofing and solar services for an overview of what we install and repair across residential projects.
What’s Under the Shingles: Underlayment, Ice-and-Water Shield and Ventilation
The visible surface of a roof is only part of the system. What’s beneath it — underlayment, ice-and-water shield, and attic ventilation — determines how long that surface performs under real conditions, and cutting corners on these components undermines whatever material is installed on top.
Ice-and-water shield is a self-adhesive rubberized-asphalt membrane applied directly to the roof deck at eaves, valleys, and around penetrations. Its job is to seal itself around fasteners and create a waterproof barrier at the exact points where ice damming and wind-driven rain infiltration occur most often. In a climate with freeze-thaw cycling and meaningful snow loads, this layer is not an optional upgrade — it’s standard practice for a roof built to handle winter conditions properly.
Underlayment covers the rest of the deck surface between the ice-and-water zones and the finish material. Synthetic underlayments have largely replaced traditional felt products in quality installations: they’re stronger, lighter, more tear-resistant during installation, and more UV-stable if there’s any delay between deck preparation and final roofing. In a high-UV environment, that UV stability matters — felt underlayment exposed to southern Idaho sun degrades measurably in a short window, which can compromise the secondary water barrier before the primary material goes on.
Attic ventilation is the component most homeowners don’t consider until problems appear. A properly balanced intake-and-exhaust system — soffit vents drawing cooler outside air, ridge or power vents releasing hot air — keeps attic temperatures moderated. That moderation reduces thermal cycling stress on the underside of the deck, prevents moisture accumulation in winter, and limits the extreme attic heat in summer that accelerates shingle aging from below. In high-desert conditions, an unventilated or poorly balanced attic shortens shingle life regardless of product quality.
How to Match a Roofing Type to Magic Valley Conditions
The framework that serves Magic Valley homeowners best starts with climate, then layers in budget and aesthetics. Here is how the major materials compare across the four regional stressors.
Wind resistance: Standing-seam metal and high-wind-rated architectural asphalt (110–130+ mph) lead the field. Composite with Class 4 rating performs strongly. Concrete tile handles wind loading well on properly installed battens; clay tile’s brittleness increases debris-impact risk. Cedar shakes and 3-tab asphalt are the weakest performers here — in a sustained-wind corridor, both carry meaningfully higher callback risk than the alternatives.
UV and heat tolerance: Metal’s reflectivity keeps the roof surface cooler; tile’s air-gap geometry provides natural sub-tile ventilation. Both outlast asphalt on raw UV longevity. Quality architectural asphalt holds up well within its lifespan window, but UV degradation of the asphalt binder is a genuine aging mechanism. Composite polymer products are generally more UV-stable than asphalt by material chemistry.
Thermal cycling durability: Standing-seam metal is engineered specifically for thermal movement and handles large temperature swings without seal failure. Composite performs well by formulation design. Quality architectural asphalt, installed with correct starter strips and nail placement, maintains integrity across normal residential temperature ranges. Materials relying on adhesive sealants that embrittle with age are the most vulnerable — which is one reason underlayment and accessory quality matter as much as the surface product.
Dust abrasion: Metal and composite have the clear edge. Asphalt granules, once lost to abrasion, don’t return. Class 4-rated shingles with heavier granule embedment resist this better than standard products, but no asphalt product is immune. The gap between asphalt and metal on abrasion resistance is meaningful for roofs on high-traffic wind exposures.
For most Magic Valley homeowners, the practical shortlist narrows to: standing-seam metal for maximum durability and lifespan; quality architectural asphalt for strong wind performance at lower upfront cost; or composite/synthetic for Class 4 impact resistance with a premium appearance at a mid-tier price. Which of those fits depends on roof pitch, budget, planned ownership horizon, and whether solar is in the near future.
Sticker Price vs. Total Cost of Ownership and Warranties
The least expensive bid rarely wins on actual cost per year of service once lifespan and warranty coverage are factored in. Total cost of ownership weighs upfront material and installation cost against expected lifespan, warranty protection, and likelihood of callback repairs — and the math regularly reverses the cheapest-option instinct.
A straightforward example: an asphalt installation done without proper underlayment, ice-and-water shield, or correct fastening may fail before its rated lifespan and generate leak calls within a few years. A properly installed roof using the same or better material, backed by a workmanship warranty, delivers a much longer callback-free service life. That difference in installation quality isn’t visible from the street — it shows up in repair bills three to seven years later.
On our warranty stack, here is exactly what we stand behind: a 40-year manufacturer and material warranty on roofing products (shingles), a 10-year labor and workmanship warranty, and a 2-year warranty on repair work. These cover distinct failure modes. The manufacturer warranty protects against defects in the shingle itself. The workmanship warranty covers installation quality — which is the failure point the material warranty explicitly excludes. Most roofing warranty claims that reach contractors trace to installation defects, not material defects. The workmanship warranty is what closes that gap.
For asphalt specifically, manufacturer warranty terms vary significantly by product tier. Many shingles carry a non-prorated window of just 10–15 years, after which coverage is prorated and any claim payout is a fraction of replacement cost. Understanding what a warranty actually pays — not just how many years it runs — is part of the estimate conversation, not something to read for the first time after a problem arises.
Metal roofing’s longer lifespan and fewer mid-life interventions often make it the stronger total-cost-of-ownership decision even when the upfront premium feels steep. Two asphalt roofs over 50 years, with associated labor, tear-off, and disposal costs each time, frequently exceed the installed cost of one metal roof over the same window. The Idaho Division of Building Safety contractor licensing tool is also a useful resource for verifying that any roofer you’re evaluating carries valid Idaho registration — a baseline worth checking before signing any contract.
Why Installer Quality Changes How Long Your Roof Lasts
The same shingle installed on two identical roofs by two different crews can perform differently by years. That reflects a straightforward reality: material warranties don’t cover installation defects, and installation defects are the most common cause of premature residential roof failure.
We are Master Certified, factory-trained installers, licensed, insured, bonded, and Idaho-registered. Those credentials exist because manufacturers require certified installers to unlock the full material warranty on their products. Hiring an uncertified crew may mean paying for a 40-year shingle while walking away with significantly reduced warranty protection — a gap that matters in a real claim situation.
What certification means in practice: factory training covers manufacturer-specified fastening patterns, nail placement zones, starter strip installation, and flashing detail. A shingle installed with nails even slightly outside the specified zone can have its wind-uplift resistance reduced substantially — it looks correct from the ground but the assembly is underperforming its rating. In a wind-corridor climate, fastening precision isn’t a minor detail; it’s load-bearing.
The experience our clients describe reflects those standards. One client noted that Ken walked through all the details and gave it straight without any upsell — no steering toward a more expensive option when the right one was simpler. Others have commented on thorough cleanup, clear communication from estimate through completion, and fast turnaround. One project went from first contact on a Friday to a completed job the following Thursday — a pace that requires organized preparation and a well-run crew, not shortcuts.
Best Roofing Choices for Rental and Investment Properties
For rental and investment property owners, the total-cost-of-ownership framework matters even more than it does for primary residences. A modest savings on materials that generates two service calls per year erodes quickly when factoring in travel time, tenant disruption, and the compounding risk of an ongoing leak situation on a property you’re not watching daily.
The materials that tend to serve rental properties best are those that minimize callbacks and deliver the longest maintenance-free window. Quality architectural asphalt is the standard choice for budget-constrained rental owners: properly installed and wind-rated, it delivers solid performance within most renovation budgets. Standing-seam metal is the choice for landlords who want to largely remove the roof from their maintenance calculus for decades — the higher upfront cost trades cleanly against reduced intervention frequency over a long hold.
- Workmanship warranty coverage: A workmanship warranty matters more on a rental than on a primary residence. If a fastening error surfaces two years in, a warranty backing you removes the dispute and the out-of-pocket cost.
- Wind and impact resistance: Tenant complaints about ceiling stains after a wind event carry costs well beyond the repair bill. Architectural asphalt with a proper wind rating, or metal, keeps that risk low.
- Maintenance profile: Cedar shake and tile require more active upkeep than asphalt or metal. Deferred maintenance on a rental roof rarely ends cheaply.
The same framework applies to any cost-conscious homeowner: a durable, warranted assembly installed correctly costs less over time than a low-bid job that needs patching within its first several years of service.
Solar-Ready and Cool Roofing Options
If solar panels are part of your five-year plan, the roofing choice you make today should account for that. Solar panels carry a useful life of 25–30 years. Installing them on a roof that will need replacement before they’re done creates an expensive coordination problem: either you replace the roof early and pay to remove and reinstall the panels, or you push the roof and risk water intrusion around aging penetrations. The better path is choosing a material whose lifespan aligns with or exceeds the panel system’s.
Standing-seam metal is the natural pairing. Solar rail systems designed for standing seam attach via seam clamps requiring no penetrations through the roof surface — no new leak points, no penetration warranties to manage. A standing-seam metal roof can comfortably outlast multiple generations of solar panel technology, and planning the roof layout with solar in mind from the start — south-facing sections, minimal dormer obstruction, adequate structural capacity — eliminates coordination problems later.
Premium architectural asphalt and composite shingles are also workable solar foundations when the roof is new or recently replaced. Standard penetration-based rail mounting is used, sealed and flashed per manufacturer specifications. The key is starting with a roof that won’t need replacement within the panel payback window. For the solar installation side, see our solar panels and systems page for what we offer. On the energy efficiency side, the ENERGY STAR guidance on reflective cool roofing provides third-party performance benchmarks for qualifying products if you want an independent reference point.
Repair or Replace? How to Decide
Repair makes sense when damage is localized — a small wind-damaged section, a few lifted tabs, a flashing failure at a pipe boot — and the surrounding roof has meaningful service life remaining. Replacement makes sense when the roof is aging broadly across its surface: widespread granule loss, brittleness, multiple previous repair patches, or recurring leaks despite prior work.
Signals worth checking yourself before calling anyone:
- Heavy granule accumulation in gutters after a storm, originating from the main field of the roof rather than just edges, indicates shingles past mid-life.
- Cracked, curling, or missing tabs spread across multiple roof sections — not one isolated spot — signal that the assembly is beyond patch territory.
- Interior water stains that a single repair didn’t resolve suggest distributed damage rather than one isolated failure point.
- An asphalt roof over 20–25 years old that has needed multiple repairs is usually better served by full replacement than continued patching.
When the boundary isn’t clear, an in-person inspection settles it. Conditions visible from the ground or aerial imagery tell only part of the story; underlayment condition, deck sheathing integrity, and flashing detail only become clear up close. Our roof repair page covers what we look at during a repair assessment.
Get a Free, Straight-Answer Estimate for Your Magic Valley Roof
Once you’ve narrowed your material options — or even if you’re still working through the shortlist — the right next step is a conversation with a local, certified installer who knows how these materials actually perform on Magic Valley homes. We don’t push toward the most expensive option; we tell you what fits your roof, your climate, and your budget.
Rooftops Energy Solutions is a veteran-owned, Idaho-registered roofing company based in Meridian and serving Twin Falls, Jerome, Kimberly, Filer, Buhl, and surrounding Magic Valley communities. As Master Certified, factory-trained installers, we back every shingle roof with a 40-year manufacturer material warranty, a 10-year workmanship warranty, and a 2-year warranty on repair work. The view from Rooftops is different — and that starts with a straight answer before you spend a dollar.
Call us at (208) 870-1584 or email operations@rooftopses.com to schedule your free estimate. Not sure which material fits your specific home? That’s exactly the conversation we’re built for.
