
Service
Try it on in person and verify performance with data.
Data-Driven Industrial Consulting
Data-Driven Industrial On-Site Consulting Services
We visit actual work sites to analyze the applicability of wearable robots tailored to specific work processes and environments.
Based on worker movements, repetitive task intensity, and heavy lifting frequency, we recommend optimal product specifications and assistance levels, and conduct comparative analysis of pre- and post-wear data through EMG-based muscle fatigue testing.

1
Preliminary Work Environment Analysis
Through site visits, the working environment and
Analyze the worker's movements
3
Expert Consulting Report Provision
Analyzing task load reduction and productivity improvements alongside physical therapists and safety managers
2
Donning Demonstration & Data Measurement
Quantitatively verifying changes in muscle workload through EMG testing
4
Customized Setup & Deployment Support
Providing customized settings and training optimized for the work environment

CUSTOMIZING SERVICE
Customized Solutions Tailored to the Field
FRT Robotics' exoskeletons are not fixed single-spec products; they are customizable robotic solutions engineered to meet the unique demands of various industries and work environments. In care facilities, they are configured to reduce wear strain and enhance stability during repetitive caregiving tasks such as transfers and standing support. In heavy industries, they are optimized with structures and support levels tailored to shipyard conditions involving heavy material handling, repetitive bending, and extended work shifts. We design robots to evolve with the site, reflecting real-world workflows and requirements across nursing, heavy industry, logistics, public safety, and disaster response sectors.
Hardware & Software Expansion Customization
Functional expansion and technology integration tailored to field requirements are achieved through sensor attachment, data collection, and software integration.
Tailored Assistance Levels & Actuation Methods
We adjust assistance levels based on the user's body type and task intensity, providing an optimal configuration ranging from passive to active exoskeletons.

Wearable Robot Demonstration for Care Workers
Caregiving sites frequently involve transfers, standing support, and repetitive back bending. By customizing the structure to be lightweight and easy to don while focusing on relieving strain on the lower back and lower body, we reduce physical stress for care workers and support a sustainable caregiving environment.
Innovative Procurement Pilot Purchase for the Korea Forest Service and National Fire Agency
Fieldwork for the Korea Forest Service involves repetitive, high-intensity, and long-hour tasks such as wildfire suppression, mop-up operations, and traversing rough terrain. To address this, we customized the structure with enhanced load distribution and lower-body assistance, designing it to ensure stable movement and task sustainability even on inclined terrain.
Customized Sensor Attachment for Power Plant Operations
Tailored to the specific characteristics of power plant site operations, this customization incorporates attached sensors to collect motion and load data during wear, allowing it to be utilized for task analysis and safety management.
On-Site Customization for Construction Workers
Designed for construction work — rebar placement, material handling, and repeated forward bending. StepUp NEO distributes the load concentrated on the lower back and supports natural movement on uneven, confined surfaces, reducing injury risk and fatigue buildup.
Strength Assistance Testing for Maintenance Shop Workers
We verified muscle-assist performance in vehicle maintenance, where workers repeatedly service undercarriages, remove parts, and hold overhead postures for long periods. By easing the strain on the shoulders and lower back, StepUp NEO helps workers maintain a stable posture through repetitive tasks.







