
Integrity Insitu is commercializing a step-change in subsurface intelligence at a moment when energy operators are under intense pressure to reduce cost, time, and environmental disruption.
The company is the first to deliver patent-protected, in-situ geomechanics data (strength, stress, shear) in under two hours, replacing legacy workflows that require physical core extraction, months of delay, and high capital spend—often with lower accuracy. By eliminating coring entirely, Integrity dramatically reduces operational complexity, material handling, and unnecessary resource use, while delivering higher-resolution data directly at depth.
This efficiency unlocks meaningful system-level gains: ~60% cost reduction per program, faster decision-making, fewer interventions, and less waste associated with drilling, transport, and lab processing. The result is a more capital-efficient and lower-impact path to subsurface certainty across drilling, completion, and field development.
Integrity is now at a commercial inflection point. The technology has been field-validated, industry pull is strong, and early deployments are translating technical advantage into repeatable commercial demand. At the same time, regulatory and policy tailwinds around emissions measurement, operational efficiency, and cleaner deployment methods are accelerating adoption.
Seed Round Overview - Round: $10M CAD Seed (Participating Preferred Equity) - Stage: Field-validated; entering commercialization - Use of Proceeds: Commercial deployment, engineering scale-up, and strategic pilots
Why This Round Matters This raise enables Integrity to move from successful field validation into scaled commercial rollout—converting pent-up demand into contracted revenue, expanding deployments across multiple sites, and positioning early investors ahead of valuation uplift driven by multi-year contracts and government-aligned programs.
Integrity Insitu represents an opportunity to back foundational infrastructure intelligence that reduces cost, time, and resource intensity—while redefining how subsurface decisions are made.
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