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// The Work

Systems
deployed.

Every engagement here went through the full loop — designed, built, tested in the lab, deployed, documented, and handed off running. No half-measures. No theory.

Commercial Kitchen Manufacturing

CAM Post-Processor Stabilization

Woodwork for Inventor was outputting broken .HOP files — wrong Z depths, missing lead-in codes, bad BOHRUNG parameters. Every sheet had to be manually corrected before it could run. We built a web-based post-processor that catches every error automatically, shows a full before/after diff, and produces a corrected file in under a minute. Then documented and trained the team to own it.

Web Application
Operator Reference Guide
Training Video
CAM Automation · Software · Training & Documentation
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Holz-Her Post-Processor operator interface
Parametric skeleton-driven assembly model in Autodesk Inventor
Commercial Kitchen Manufacturing

Parametric Casework Assembly

Custom stainless steel casework varies on nearly every order — width, height, door count, frame layout, none of it repeats exactly. Designers were rebuilding geometry from scratch or hand-editing a prior job and hoping nothing broke downstream. We built a single parametric template driven by one master skeleton, so a dimension or door count change propagates through every downstream component automatically. What used to be a rebuild is now a set of inputs.

Skeleton-Driven Assembly Template
iLogic Rule Library
Technical Documentation
Parametric CAD · iLogic Automation · Inventor
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Hospitality & Entertainment

Stone State Golf — Full Venue Platform

A swing lounge with one location, big ambitions, and a booking system that wasn't built for any of it. We designed and built the entire operational stack: a public waitlist and member portal, a bay control center for in-session play, and an operations portal giving the operator a live view of every lead, member, and session.

Member Portal
Bay Control Center
Operations Portal
Software · Systems Integration · UX Design
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Stone State Golf member portal
KinNect eight-station provisioning workflow diagram
IoT Device Manufacturing
In Progress

KinNect Provisioning Line

KinNect needed a fulfillment partner for a physical product — a Raspberry Pi and Arduino-based device in a custom enclosure, built and shipped in batches. Before a single unit went through the line, we mapped out eight production stations, wrote an SOP and Definition of Done for each one, and built serialized traceability from the first station to the last. The plan is what makes the right way to build it the only way to build it.

Eight-Station SOP Library
Definition of Done Per Station
Serialized Unit Traceability
Provisioning Plan · Raspberry Pi / Arduino · IoT Fulfillment
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// Before the Engagement · Free Resource

Not sure where to start?

Most clients found Kaisyn Labs after recognizing a systems problem they couldn't solve alone. The playbooks are how they named it. Download the free self-assessment and score your operation across all 9 critical systems.

// Already know what's broken?

Have someone build it for you.

Kaisyn Labs embeds directly into your operation. We find the friction, design the fix, build it, test it, train your team, and hand it back running.

See the Fractional Engagement
// Ready to Build

Your operation
could be next.

If there's friction in your workflow, we'll find it. If there's a system that needs building, we'll build it. The full loop, every time.

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