Engineering
services, from
building optimization
to retrofit projects.

Lower running costs, funded retrofits, and savings you can put in front of a board. We work on commercial, multi-residential, institutional and industrial buildings across Canada and the United States — measuring what a building actually does before anyone spends capital on it.

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What we actually do

One building.
Everything we
do to it.

It opens on the platforms we run. Switch to the six service lines and each one is a different shape cut out of the same load profile — watch it run, or pick any step.

What we do

Our service
lines.

Six ways to lower what a building costs to run. Whichever you start with, the same team carries it from the first measurement to the verified result — no handover, and no second consultant hired to interpret the first one.

Trusted by

Owners, managers and
operators across Canada.

Our platform

Q-Peak: our demand response aggregation platform.

Q-Peak is our aggregator platform for the IESO Save on Energy Peak Performance Program. It forecasts the peak, dispatches the curtailment across the portfolio, proves the reduction against baseline, and settles the payment.

Q-Energy

Your portfolio on
one page. Any
building, in detail.

Our building energy platform. Twenty plain-language answers and the utility bills become a model of each building. It shows where the energy goes, how the building compares with similar ones, what it costs and emits, what to fix first, and every filing the address triggers. When you need a signed ASHRAE audit, our engineers add to the same record.

The top of a building's Overview in Q-Energy: the verdict sentence comparing the building with the median for its type, the items that need attention, and five headline numbers
One building's verdict. The platform on its demonstration portfolio, so the figures are sample data.
Track record

Commercial and
multi-residential
portfolios, assessed.

Twenty years of buildings where the work paid for itself — office, retail, institutional, healthcare, industrial and residential portfolios, assessed through condition assessments, ASHRAE Level I–III audits, energy modelling and reserve fund analysis. A substantial share go on to secure retrofit funding.

Mechanical room with chilled water headers and distribution pumps
Ageing rooftop packaged units on a commercial roof
Fouled fire-tube boiler tubes with heavy scale
Drone thermal image of a roof assembly and mechanical penthouse

Field work across central plants, rooftop equipment, boiler rooms and building envelopes: Calgary, Hamilton, Toronto and beyond.

Asset types
How we work

Our four-step
method.

We examine controls and sequences before equipment. A capital project scoped inside a building whose controls are misreporting gets sized against a load profile that is itself an artefact of the fault.

01

Measure

Clamp-on instruments, temperature loggers and twelve months of utility data. Nothing cut or drilled, and no capital request to establish what is happening.

02

Diagnose

Find the gap between design intent and how the building actually runs. It is usually a sequence, a schedule or a sensor, not a machine at the end of its life.

03

Quantify & fund

Energy, carbon and cost, in the format the funder scores. A substantial share of the buildings we assess go on to secure retrofit funding.

04

Verify

Savings confirmed under IPMVP against a fitted baseline, with the confidence interval published beside the headline number.

Start here

Start with twelve
months of utility
data.

Twelve months of utility bills and an afternoon in the mechanical room is usually enough to establish whether a building has a capital problem or a controls problem. That is what the no-cost assessment is for.

Next step

Thirty minutes, with the engineer who would run the work.

No cost and no obligation. Bring twelve months of utility bills if you have them — that alone is usually enough to say whether a building has a capital problem or a controls problem.