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We employ a combination of standardized modular solutions and personalized development to precisely enhance production efficiency.

AUTOMATE TO SCALE.

Mechanical
Electrical
Controls
Mechanical
Electrical
Controls
Mechanical
Electrical
Controls
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Design Smarter. Integrate Deeper. Run Leaner

Scale Further. Design Smarter. Integrate Deeper.

Run Leaner. Scale Further. Design Smarter.

Integrate Deeper. Run Leaner. Scale Further.

Complete Automation Solutions

End-to-end manufacturing capabilities from design to deployment

Intelligence at every stage - from inspection to predictive maintenance.

✱ Rapid prototyping: 4-6 weeks
✱ Production lines: 6-9 months
✱ Modular design for fast iteration
✱ Parallel validation processes

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Speed to Market

✱ Global sourcing expertise
✱ Optimized manufacturing footprint
✱ ISO-certified facilities
✱ Scalable production capacity

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Cost Optimization

✱ ±0.003mm machining accuracy
✱ AI-powered vision inspection
✱ Custom MES integration
✱ Real-time quality monitoring

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Technical Excellence

✱ Design & prototyping
✱ Equipment manufacturing
✱ Installation & validation
✱ Training & support

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End-to-End Services

✱ Modular line design
✱ Capacity expansion planning
✱ Multi-site deployment
✱ Tech transfer support

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Scalable Manufacturing

✱ GMP-compliant design
✱ IQ/OQ/PQ documentation
✱ Traceability systems
✱ Audit support

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Regulatory Compliance

Frequently asked questions

We see it as our responsibility to help transform critical devices from “handcrafted and fragile” to “automated, repeatable, and sustainable” infrastructure for modern healthcare.

What kind of ROI should we expect from an automation project with you?

We frame ROI in conservative, auditable terms: labor reduction, yield improvement, scrap avoidance, capacity gained, and de-risked launches. Before you commit, we share a quantified model using your assumptions and clearly separate “base case” benefits from upside. Our goal is not a slide-ware promise, but a business case your CFO can defend.

How do your systems integrate with our existing MES, LIMS, or ERP landscape?

Integration is scoped as part of the project, not treated as an afterthought. We support modern industrial protocols and structured data models to feed existing MES, eDHR, or ERP systems, and design HMIs and data layers so IT and QA can maintain them. Where no MES exists, we can expose clean data hooks for future adoption instead of locking you in.

We’ve never run a major automation project before. How do you de-risk it?

We break the journey into gated phases with clear deliverables: discovery, concept, detailed design, FAT, SAT, ramp. At each step you see layouts, cycle-time models, risk assessments, and test plans before hardware is frozen. Using proven modules for motion, vision, and inspection reduces unknowns, while joint reviews with your engineers and QA keep assumptions transparent.

What does long-term service and support look like once the line is running?

Support is designed in, not sold as an afterthought. We provide defined response SLAs, remote diagnostic access where approved, clear spare parts lists, preventive maintenance plans, and training for your technicians. The objective is stable uptime with predictable cost of ownership, not repeated dependence on field firefighting.

How do you protect our IP, formulations, and process knowledge?

All projects are run under strict confidentiality, with access controls on design files, software, and process data. Machine logic, inspection recipes, and analytics are structured so your proprietary know-how remains yours, and deployment options (including on-premise AI and data storage) avoid unnecessary exposure. We build equipment and systems; we do not monetize your IP.

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Industry-leading expertise in Continuous Glucose Monitoring automation.

Featured Showcase

Life Science Automation Solutions

Advanced manufacturing solutions for Continuous Glucose Monitoring Systems(CGM biosensors) and insulin delivery systems.

Representative outcomes shown are from past programs executed with our partner network. Actual performance depends on device design, validation scope, materials, and site conditions.