Payments platform re-architecture
Rebuilt a legacy processing core into an event-driven platform: p99 latency reduced 68%, incident rate reduced 74%, and settlement cycles compressed from hours to minutes.
POOL FILTRATION SURREY LIMITED designs, builds and secures software, cloud and automation systems that outperform under real-world load — not slide decks.
We are a multidisciplinary IT firm combining engineering rigor with a product mindset. From greenfield software to hardened cloud estates, our teams deliver systems that scale predictably, fail gracefully and remain maintainable long after launch.
Every system we ship is designed against a documented threat model, tested against production parity load, and instrumented so incidents are detected before customers are.
Rebuilt a legacy processing core into an event-driven platform: p99 latency reduced 68%, incident rate reduced 74%, and settlement cycles compressed from hours to minutes.
Consolidated seven business units onto a single governed cloud landing zone, reducing infrastructure spend 41% while raising security posture to internal ISO 27001 audit-ready.
Replaced fragmented spreadsheets with an automation layer processing 40k monthly requests, cutting average handling time from 3 days to 22 minutes with full audit trail.
Our practice is intentionally small and deeply experienced. Architects, security specialists, SREs and product engineers work as one team — with direct client access at every level.
Fixed-scope delivery, dedicated squads, and long-term retained partnerships tailored to organizational maturity and roadmap velocity.
Security is embedded from architecture through deployment: threat modeling, least-privilege identity, hardened pipelines, and continuous monitoring.
Financial services, healthcare, logistics, manufacturing, professional services, and public sector programs — each with domain-specific compliance patterns.
Yes. We integrate as embedded contributors, uplift internal capability, and document every decision so ownership fully transfers.
Iterative two-week increments with observable outcomes, transparent metrics, and formal quality gates between phases.