Collaborative robots & robotic arms for manufacturing, assembly & automation with precision control
Industry Challenges & Development Trends
Industry Challenges
High Labor Dependence & Rising Costs
Repetitive tasks (e.g., assembly, sorting, welding) face labor shortages and soaring wages; high turnover rates disrupt production stability.
Low Precision & Quality Inconsistency:
Manual operations are prone to errors in precision-dependent processes (e.g., electronic component assembly, precision welding), leading to high defect rates.
Poor Flexibility & Integration Difficulty:
Traditional industrial robots are bulky, require safety isolation, and are hard to reconfigure—failing to meet the trend of personalized production.
Safety Risks:
High-risk environments (e.g., high temperature, toxic, heavy-load operations) threaten worker safety, with potential compliance and liability risks for enterprises.
Current Industry Landscape & Emerging Demands
Uneven Automation Penetration:
Untapped Potential in Traditional SectorsAutomation adoption is accelerating in mid-to-high-end manufacturing (automotive, 3C electronics) but remains sluggish in traditional sectors (food processing, medical devices), leaving significant room for efficiency improvement.
Collaborative Robots as Mainstream:
Collaborative robots have become a mainstream demand—enterprises are no longer just pursuing speed, but prioritizing "human-machine collaboration," intrinsic safety, and easy deployment to maximize workspace utilization.
Robotic Arms as Targeted Solutions: Addressing Core Industry Needs
ndustrial robotic arms (especially collaborative models) emerge as the ultimate solution to bridge these gaps—offering flexible load ranges, precision control, and seamless integration to adapt to both high-end manufacturing and traditional sectors. They align with collaborative safety demands, support turnkey deployment with compatible systems, and deliver end-to-end efficiency gains tailored to enterprises’ unique automation goals.
Ti5 Robot:EBLM Hydrogen Star Series
The Ti5 Robot Arm offers enhanced collaborative robotics for advanced STEM education and industrial automation.ensuring reliable electrical connections for underwater equipment.
Engineered for superior precision, safety, and versatile programming capabilities. Ideal for research institutions, technical training, and flexible manufacturing lines.
Features high payload capacity, exceptional repeatability, and seamless integration with industry-standard platforms.
Ideal for research institutions, technical training,flexible manufacturing lines,assembly, handling, inspection, and packaging applications.
Safe & User-Friendly Human-Robot Collaboration: CR-certified, built-in safety protection, intuitive operation, suitable for close human-machine collaboration scenarios.
Full Load Range & Multi-Industry Adaptability: Covers light to high-payload tasks (FR3-FR20), applicable to 3C, semiconductors, metal processing and other industries.
Self-Developed Tech + Industrial-Grade Precision & Stability: Equipped with self-developed real-time control systems and core components, ensuring accuracy and reliability for high-intensity operations.
Flexible Smart Manufacturing & High Scalability: Aligns with flexible production needs; FR20’s platform-based design supports in-depth scenario integration and scalable upgrades.