Robotics, controls, software and data engineered as one factory system.
DuroByte starts with how the factory needs to perform, then engineers the automation, software, controls, data capture, traceability and support model around that production outcome.
Operator workflow, safety, ergonomics, quality checks, maintenance access and production support are designed into the system from the start.
Robot cells, PLCs, CNCs, fixtures, vision systems, RFID and specialty equipment are connected as part of one manufacturing architecture.
MES, ERP, traceability, quality evidence, dashboards, historians and APIs provide the information layer needed to operate and improve the factory.
The goal is a closed-loop manufacturing environment where planning, production, quality, maintenance and engineering feedback are connected.
DuroByte can start with a cell, a bottleneck, a data gap or a plant-wide modernization roadmap. The outcome is engineered as part of the complete factory ecosystem.
Factory Architecture, digital thread planning and practical modernization roadmaps.
AI GuidanceAI-enabled work guidance, expert knowledge capture, training support and operational assistance for intelligent manufacturing.
RoboticsTurnkey robot cells, tooling, controls, vision, safety, traceability and production launch support.
QualityInspection, measurement, robot guidance, error proofing and quality evidence capture.
SoftwareShop-floor execution connected to ERP, quality, maintenance and production reporting.
DataRFID, Barcode, Genealogy, WIP tracking and containment-ready production history.
ControlsPLC, HMI, SCADA, safety, motion and industrial networks engineered for reliability.
DigitalWork instructions, quality records, production data and digital workflows connected.
ModernizationUpgrade legacy equipment, connect isolated automation and add intelligence in phases.
DuroByte works as a manufacturing engineering partner, connecting automation, controls, software and production support into one factory system.
Clarify throughput, quality, safety, labor, data, maintenance and business constraints.
Define the factory system: controls, robotics, data, MES, traceability and support model.
Engineer, fabricate, program, test and validate the production solution.
Use production evidence to optimize uptime, quality, scheduling and future automation.
Start with one production problem, one line, or a plant-wide Intelligent Factory roadmap.
Schedule an Engineering Consultation