It’s a challenging time to run a business in Canada. Tariffs are evolving, talks have collapsed, and retaliations are being announced. It’s an unstable climate, and whatever the numbers are by the time you’re reading this, they’ve probably already moved. Companies are making sourcing and cost decisions under a timeline nobody chose, against rules that won’t sit still long enough to plan around.
What people haven’t noticed is that solving those problems is building their resilience. Not weathering the storm. Solving it.
The engineer testing a new supplier’s material because the old one just got 30% more expensive overnight… Or the team redesigning a process around a part that doesn’t behave like the one it replaced. Engineers and production teams alike are testing, observing, revising, and testing again.
That’s real technical work. It’s experimental development.
And real technical work is is precisely what SR&ED, the federal Scientific Research and Experimental Development tax incentive program, was created to reward. Some of the work your team is undertaking under pressure may qualify for both refundable and non-refundable federal and provincial tax incentives.
That work is also worth protecting. The reasoning behind a fix, including why one approach worked and three others didn’t, is easy to lose once the pressure passes and everyone moves on to the next fire. Business continuity planning exists to make sure things a company can’t afford to lose survive past the moment they were created, and that includes the technical knowledge generated while solving problems like these.
That’s where SR&ED and business continuity planning intersect.
To claim the SR&ED credit, a company needs evidence of exactly that kind of technical work. The Canada Revenue Agency (CRA) gives particular weight to records generated while the work is underway rather than a version reconstructed after the fact. That evidentiary requirement wasn’t designed as a continuity control. But at a moment when companies are being forced to solve real problems anyway, it’s functioning as one.
A Quick Primer for New Readers
Business continuity is the discipline of maintaining critical operations during and after a disruption. It identifies the activities a company can’t allow to stop, the people, equipment, systems, suppliers, and facilities they depend on, and the recovery strategies required when one of those dependencies fails.
SR&ED is a Canadian tax incentive program for eligible research and experimental development conducted in Canada. It provides investment tax credits on qualifying expenditures, including certain salaries or wages, contractor costs, materials, and capital expenditures associated with the experimental work. Depending on a company’s tax status and the credits available, the result can be a significant cash refund or a reduction in tax payable.
The name makes SR&ED sound as though it belongs solely in laboratories or to companies that look like tech companies. It doesn’t.
Manufacturers, engineering firms, software developers, food producers, and farmers can all qualify. Along with companies across many other industries, when their work meets the technical requirements.
A farm testing a new soil amendment or irrigation method to resolve a problem established practice can’t address is doing the same kind of experimental work as an engineer testing a new alloy.
The industry doesn’t determine eligibility. The technical uncertainty does.
SR&ED doesn’t reward a company simply for encountering a difficult or expensive business problem. It recognizes the experimental work undertaken when the technical answer isn’t already available.
Where Tariffs Can Trigger Experimental Work
At the time of writing, tariffs of up to 50% apply to certain upholstered furniture, kitchen cabinets and vanities, as well as many steel, aluminum and copper products. Canadian countermeasures cover a growing range of U.S. imports. For manufacturers, the effect is immediate: an established material, component, supplier or export market can become uneconomic almost overnight.
Below are three examples of when a routine substitution can become experimental development.
- Upholstered furniture. A manufacturer facing a steep furniture tariff redesigns a product for another market or replaces foam, fabric, adhesives, or frame components. Choosing a less expensive supplier isn’t SR&ED. The experimental work begins when the substitute creates unresolved problems with flame resistance, compression recovery, seam failure, bonding, or long-term durability, and established practice can’t provide the answer.
- Cabinets and vanities. A manufacturer facing a steep tariff on cabinetry changes panel stock, coatings, hardware, or assembly methods. Routine product qualification won’t qualify. A systematic investigation can arise when the new combination produces unpredictable swelling, coating adhesion, fastener pull-out, dimensional movement, or machining behaviour.
- Steel, aluminum, copper, or automotive components. A tariff or the resulting supplier repricing increases the landed cost of an input significantly, even when the stated tariff rate is different. The company changes alloy, gauge, geometry, joining method, or electrical component. If that creates unresolved problems involving load, fatigue, corrosion, heat transfer, conductivity, tolerance, or control-system performance, the testing used to resolve them can contain eligible SR&ED work.
The tariff doesn’t create eligibility. Neither does the deadline, the cost increase, or the importance of the customer order. Eligibility comes from the technological uncertainty and the systematic investigation undertaken to resolve it.
Understanding SR&ED Eligibility vs. Routine Changes
This distinction is worth stating plainly because it’s the one most companies get wrong: A new process isn’t automatically SR&ED just because it’s new.
Take the cabinet example above. If a manufacturer switches to a cheaper panel stock and follows the supplier’s published specifications and standard assembly methods, that’s a new process for the company, but it isn’t experimental. Someone already knows how that material behaves.
The eligible work starts only if the substitute behaves in a way nothing on the data sheet predicted, such as swelling unexpectedly, rejecting the coating, or preventing fasteners from seating properly, and the team has to form a hypothesis, test it, and adjust based on what they observe.
The resulting new process is the output of that work. It isn’t the eligible work itself.
Urgency Reveals the Gap
A disruption forces a company to test assumptions it hasn’t had to examine before: that a material will remain available, that equipment can be replaced with an equivalent, or that a process will remain stable under new conditions. Business continuity pressure surfaces those assumptions quickly.
Most responses stay routine. Some don’t. A substitute material can behave in ways no supplier data sheet or accepted engineering practice predicts. A replacement component can create interaction effects that weren’t apparent from its individual specifications. That’s the point where incident response can become experimental development.
The harder part is recognition. Engineers rarely experience this work as research. They experience it as the job, particularly when everyone is trying to restore production or protect a delivery date. If nobody recognizes when routine troubleshooting has crossed into technological uncertainty, the work won’t be captured as it occurs.
That’s a recognition problem before it’s a documentation problem.
What the SR&ED Record Produces
The CRA assesses whether claimed work meets the legal definition of SR&ED. A company needs evidence of the technological uncertainty, the hypotheses considered, the work performed, the results observed, and the knowledge gained.
Evidence generated while the work is underway is particularly valuable because it records what the team knew at the time. It doesn’t require a separate scientific report. Test data, design revisions, photographs, emails, meeting notes, production records, failed samples, and marked-up drawings can all support the technical narrative.
That record produces something the SR&ED program wasn’t designed to create: a continuity asset. It converts individual experience into organizational knowledge by recording what problem emerged and why established practice couldn’t resolve it, what the team believed, tested, and observed, and what the company learned, including from failed work.
Naming technological uncertainty precisely is also a form of technical risk identification. Testing hypotheses establishes an evidence-based response. Retaining the results prevents the company from repeating failed work after an employee departure, facility transfer, or future disruption.
SR&ED and business continuity have different objectives, but they build the same organizational capability: the ability to retain and apply knowledge under uncertain conditions.
Neither Discipline Works Without Sponsorship
Business continuity programs fail when one manager owns the plan but lacks the authority or resources to implement it. SR&ED documentation fails for the same reason. An engineer can understand what should be recorded, but the habit won’t survive the first production deadline if leadership treats documentation as time taken away from the real work.
Process handles the mechanics. Governance makes the practice durable across departments, personnel changes, and competing priorities. That doesn’t require a large new program. It requires four controls:
- Create a recognition trigger. Ask whether a competent professional could have resolved the problem using established practice at the outset, or whether the team had to test its way toward an answer.
- Use a consistent experimental record. Capture the uncertainty, hypothesis, test, observation, and conclusion in the same sequence each time. Observations from one trial should inform the next hypothesis or test.
- Preserve failed work in a shared, backed-up location. Failed samples, rejected designs, and adverse results can be some of the strongest evidence that the answer wasn’t obvious.
- Integrate the checkpoint into existing governance. Add the recognition question to engineering changes, incident reviews, recovery strategy reviews, or project closeouts. Leadership should state clearly that maintaining the record is part of the technical work.
Where Leyton Adds Value
The daily technical record has to live inside your company. The people performing the work are best placed to document what they believed, tested, and observed at the time. Our role is:
- to assess whether the work contains the required technological uncertainty, systematic investigation, and technological advancement
- distinguish eligible experimental work from routine engineering or production
- calculate eligible expenditures
- prepare the required tax forms and technical descriptions
- and organize the evidence for CRA scrutiny
We also look at whether provincial credits, hiring or training grants, capital incentives, or other programs apply during the same period through our dedicated grants team.
We work on a contingency basis. There’s no upfront fee unless eligible work is identified and an SR&ED claim is prepared. Audit support is included if the CRA selects your claim for review.
You don’t need documentation in hand to reach out. If anything, the earlier we’re involved, the more useful we can be.
We can build the recognition triggers and experimental record directly into the processes you already run, including engineering changes, incident response, and project closeouts, so the evidence is captured as the work happens instead of reconstructed after the fact.
Waiting until a project is finished, or until you think you’ve collected “enough,” usually means the most valuable evidence, the day-to-day reasoning behind what was tried and why, has already started to fade.
The Actual Lesson
A disruption can force a company to generate valuable new technical knowledge. SR&ED can recover part of the cost, but only when the company recognizes the work, preserves the evidence, and files on time. For corporations, that deadline is 18 months after the tax year-end, with no extensions, so evidence that’s still fresh today needs a home before that clock runs out.
Those same practices strengthen business continuity. They reduce dependence on individual memory, preserve the reasoning behind critical technical decisions, and give the organization a stronger foundation for responding to the next disruption.
If your team has built a prototype, switched materials or suppliers, or reworked components, equipment, or production methods because of trade pressure or another disruption, the work is worth assessing.
Depending on your fiscal year-end, costs incurred in within the last 2 to 3 years could still be eligible for SR&ED.
Give us a call for a free assessment before your next 18-month SR&ED filing deadline. Since we work on a contingency fee, there’s nothing to lose by finding out now.
Sources
- CRA: What work is eligible for SR&ED tax incentives
- CRA: The SR&ED Review Process – A Guide for Claimants
- CRA: SR&ED Filing Requirements Policy
- White House: Tariffs on timber, lumber and derivative products
- White House: Tariffs on aluminum, steel and copper
- Government of Canada: Current counter-tariff measures