Davisville
Toronto
Area-level due diligence across 363 buildings — dispute history, dispute outcomes, permit activity, and construction-era risk, aggregated. No individual buildings are named or identified.
PropTrust provides statistical analysis of publicly available tribunal decisions. This is not legal advice. For advice about your specific situation, consult a licensed lawyer or paralegal in your province.
Investor snapshot
The headline numbers, normalized so they compare fairly across neighbourhoods of different sizes.
The most common tribunal issue category here is Governance (17 of 18 cases). Governance disputes indicate potential transparency issues — request meeting minutes before purchasing
Most buildings with a known year fall in the Pre-1980 range (150 buildings). See "Key areas to look for" below for what's typically worth checking on buildings from that era.
Tribunal patterns
18 decided tribunal cases across 13 of 363 buildings.
Governance
Governance disputes indicate potential transparency issues — request meeting minutes before purchasing
Water & Leaks
Water and envelope issues can indicate costly structural repairs and may lead to special levies or insurance increases
Building Rules
Bylaw enforcement disputes may signal inconsistent management or difficult governance dynamics
Noise & Nuisance
Noise and nuisance disputes may indicate soundproofing issues or enforcement problems
Building Fees
Fee disputes may signal unexpected levies, rising insurance costs, or underfunded reserves
Building Repairs
Repair disputes signal unclear maintenance responsibilities — buyers may inherit ongoing disagreements
Pets & Lifestyle
Pet and lifestyle disputes may affect unit value and building culture
Parking & Storage
Parking disputes may involve limited common property allocation and title rights
How disputes resolve here
No damages figures are on file for these cases.
Permit activity
13 address-matched permits across 5 buildings — 0.04 per building on average.
Key areas to look for, by building era
Construction year is on file for 196 of 363 buildings (54%). The remaining 167 don't have a year on file, so they aren't reflected in the breakdown below.
These are known era-typical construction issues, not a claim that any specific building has them -- check a building's own report for what's actually on file for it.
Pre-1980
150 buildingsSystems
Aluminum branch wiring
Aluminum branch wiring that oxidises and loosens at connections, carrying a much higher fire-hazard risk than copper.
Widespread during the mid-1960s copper shortage; use ended in the late 1970s over fire-safety concerns.
What it means for investors: Insurers frequently charge 15–30% more or require remediation (pigtailing) and an ESA safety certificate.
Check: ESA Certificate of Acceptance and evidence of pigtailing or rewiring.
Repairs & Condition
Asbestos / vermiculite / UFFI (pre-1990)
Asbestos-containing materials, Zonolite vermiculite, and (1975–1978) UFFI insulation used in older construction.
Asbestos use ran into the 1980s; a pre-1990 build has a reasonable chance of containing these materials.
What it means for investors: Safe if undisturbed, but provincial law requires a hazmat survey before any renovation/expansion/demolition, adding cost and time.
Check: Hazardous-materials survey; a Salvage/Abatement or demolition permit on record indicates it was handled.
1980–1998 (envelope era)
14 buildingsEnvelope & Structure
Glass-tower window-wall & sealed-unit failure
Floor-to-ceiling window-wall and curtain-wall assemblies whose structural silicone joints fatigue from UV, thermal cycling and wind deflection, and whose sealed double-glazed units (IGUs) fog and fail.
The glass-tower construction boom used envelope systems now known to degrade; failures typically appear 15–25 years after construction.
What it means for investors: A looming, building-wide window-wall replacement is one of the largest special-levy risks in a modern tower.
Cost signal: Exterior re-seal lasts only 10–15 years before repeat or full facade replacement; full replacement runs into the millions.
Check: Foggy/failed sealed units, glazing-joint condition, and whether the reserve plan funds a window-wall replacement.
Systems
Polybutylene (Poly-B) plumbing
Grey plastic supply piping that micro-fractures when exposed to chlorinated municipal water, presenting extreme burst risk.
Popular 1978–1997 (peak 1993); removed from the National Plumbing Code in 2005.
What it means for investors: Standard unit-owner policies often exclude or place high deductibles on Poly-B water damage.
Cost signal: Failure rate ~95% within 10–15 years; repipe cost per unit is significant.
Check: Grey flexible plastic pipe at the manifold/fixtures; repipe certificate.
Mechanical & Ventilation
Summer overheating in glass towers
Early glass high-rises with floor-to-ceiling glazing and small restrictive windows, often built without central AC or heat pumps, that absorb massive solar heat loads.
Pre-dates common in-suite cooling; south/west units act as greenhouses and stay sweltering into the night.
What it means for investors: Comfort and, for investors, tenant-retention risk; retrofitting cooling is disruptive and may be restricted by the strata.
Check: In-suite cooling provisions, window operability, and any building cooling upgrades.
Corridor pressurization / make-up-air overheating
Rooftop make-up-air units (MAUs) that pressurize corridors for odour and smoke control but, when older, lack cooling coils.
Older MAUs push superheated rooftop air into hallways in summer, turning corridors into heat reservoirs that worsen suite overheating.
What it means for investors: A comfort issue and a sign of aging common-system equipment due for upgrade.
Check: MAU age and whether cooling coils have been added.
Repairs & Condition
Asbestos / vermiculite / UFFI (pre-1990)
Asbestos-containing materials, Zonolite vermiculite, and (1975–1978) UFFI insulation used in older construction.
Asbestos use ran into the 1980s; a pre-1990 build has a reasonable chance of containing these materials.
What it means for investors: Safe if undisturbed, but provincial law requires a hazmat survey before any renovation/expansion/demolition, adding cost and time.
Check: Hazardous-materials survey; a Salvage/Abatement or demolition permit on record indicates it was handled.
1999–2010
13 buildingsEnvelope & Structure
Glass-tower window-wall & sealed-unit failure
Floor-to-ceiling window-wall and curtain-wall assemblies whose structural silicone joints fatigue from UV, thermal cycling and wind deflection, and whose sealed double-glazed units (IGUs) fog and fail.
The glass-tower construction boom used envelope systems now known to degrade; failures typically appear 15–25 years after construction.
What it means for investors: A looming, building-wide window-wall replacement is one of the largest special-levy risks in a modern tower.
Cost signal: Exterior re-seal lasts only 10–15 years before repeat or full facade replacement; full replacement runs into the millions.
Check: Foggy/failed sealed units, glazing-joint condition, and whether the reserve plan funds a window-wall replacement.
Systems
Kitec plumbing (dezincification)
PEX-AL-PEX composite piping with high-zinc brass fittings; the zinc leaches out (dezincification), leaving weak, porous fittings prone to sudden bursts, and hot lines can delaminate above 82°C.
Installed 1995–2007 (used in the GTA to ~2011); recalled in 2005.
What it means for investors: Many insurers refuse to cover buildings with Kitec and demand proactive building-wide repiping.
Cost signal: Repiping ranges from $5,000 to over $25,000 per suite; the class-action claim deadline has passed.
Check: Fittings marked "Kitec"/"PEX-AL-PEX" (orange + brass); confirm whether the building has been repiped.
Mechanical & Ventilation
Summer overheating in glass towers
Early glass high-rises with floor-to-ceiling glazing and small restrictive windows, often built without central AC or heat pumps, that absorb massive solar heat loads.
Pre-dates common in-suite cooling; south/west units act as greenhouses and stay sweltering into the night.
What it means for investors: Comfort and, for investors, tenant-retention risk; retrofitting cooling is disruptive and may be restricted by the strata.
Check: In-suite cooling provisions, window operability, and any building cooling upgrades.
Corridor pressurization / make-up-air overheating
Rooftop make-up-air units (MAUs) that pressurize corridors for odour and smoke control but, when older, lack cooling coils.
Older MAUs push superheated rooftop air into hallways in summer, turning corridors into heat reservoirs that worsen suite overheating.
What it means for investors: A comfort issue and a sign of aging common-system equipment due for upgrade.
Check: MAU age and whether cooling coils have been added.
Post-2010
19 buildingsNo specific era-typical issues flagged for this range.