Based in Hangzhou, China, STARXROBOT has established a joint laboratory with Zhejiang University, strengthening our R&D capabilities in mobile robotics and intelligent systems.
Our core business covers the R&D, manufacturing and deployment of mobile robots, intelligent inspection products and integrated logistics automation systems.
We go beyond supplying individual robots. Our solutions bring together robot hardware, fleet scheduling software, system integration, project implementation and after-sales support.
AMR and AGV platforms for material transport, pallet handling and line-side logistics.
Robotic systems for photovoltaic cleaning and autonomous inspection in demanding operating environments.
Humanoid, quadruped and service-robot platforms for research, inspection and commercial applications.
Application-focused solutions for new energy, automotive, photovoltaic, 3C manufacturing and warehousing.
We connect robot platforms with real workflows, helping customers evaluate the right product, configuration and integration approach for each application.
Our advantage comes from combining navigation, application engineering and industrial deployment experience rather than offering a robot platform alone.
LiDAR, vision sensing and path-planning technologies support positioning, obstacle avoidance and route adjustment in changing environments.
Robot configuration, payload interface, workflow and system integration can be matched to the customer’s site and operating requirements.
Support covers application review, solution planning, integration coordination, commissioning guidance, training and after-sales communication.
Products are developed for factories, warehouses, power stations and outdoor photovoltaic sites where stability and maintainability matter.
PV cleaning and inspection solutions address outdoor dust, cleaning coverage, remote operation and routine maintenance needs.
We explore how perception, mobility and task execution can work together on humanoid, quadruped and service-robot platforms.
Explore our product range or contact us to discuss your workflow and site requirements.
Explore Our ProductsEvery AMR project has different loads, routes and operational requirements. We work with customers to review the application, configure the robot solution and support system integration and project delivery.
Our support connects application requirements with practical robot configuration, integration and implementation.
From early application review to on-site deployment, each stage is planned around the customer’s actual workflow and operating conditions.
We review the load, dimensions, route, takt time and operating environment before recommending a robot platform.
We configure the AMR platform, payload interface, navigation method and safety requirements around the actual workflow.
We support fleet scheduling, commissioning and coordination with WMS, MES or other site systems.
We provide technical communication, training and after-sales support throughout the deployment process.
The objective is clear: match the robot, software and integration approach to the real application, then support stable implementation and operation.
Robot stability and reliability directly affect production safety, workflow continuity and long-term operating costs. Our quality process covers R&D and design, component sourcing, manufacturing, factory acceptance testing and after-sales traceability.
The goal is practical: identify risks early, control critical processes and verify each robot before delivery.
Our quality workflows are managed under the ISO 9001 system and aligned with GB/T 19001-2015 requirements, supporting standardized procedures and traceable records.
Explosion-proof heavy-duty AGV products are available with ATEX certification under Directive 2014/34/EU. Certification scope depends on the specific product model and configuration.
Model-specific certificates, test records and compliance documents can be provided according to project requirements.
Quality gates are applied throughout the development and manufacturing process, with records retained for review and traceability.
Quality reviews are introduced during product development through the IPD process. FMEA is used to identify potential failure modes and reduce design risk before production.
Key component suppliers are assessed through qualification and performance reviews. Incoming materials are inspected before they enter the manufacturing process.
Standard Operating Procedures define key workstations and inspection requirements. Self-inspection, cross-inspection and dedicated inspection support process consistency.
Before shipment, robots undergo calibration, loaded-operation testing and functional verification. Explosion-proof variants receive additional checks appropriate to their configuration.
Reliability validation covers environmental and operating stresses relevant to industrial robots. New products are evaluated against defined test conditions before market release.
Quality records support tracking from incoming materials to finished products. Training, issue review and corrective actions are used to improve processes and respond efficiently when an abnormality is identified.
A successful AMR or AGV project depends on more than robot hardware. We support customers from application analysis and solution planning through integration, commissioning, training and ongoing system improvement.
Each service scope is defined around the customer’s workflow, site conditions, system interfaces and project responsibilities.
The service process connects operational requirements with robot configuration, software interfaces and implementation planning.
We review the production workflow, material flow, layout constraints, transport tasks and expected capacity to define the automation requirement.
Robot selection, route planning, system topology and workflow logic are developed around the application. Simulation and layout review can support feasibility validation.
Project coordination can cover installation, system configuration, SLAM map creation, route calibration, interface testing and multi-robot dispatch validation.
Training can be arranged for operators, maintenance personnel and system administrators, supported by operating documents and agreed handover materials.
Support may include fleet management configuration, task scheduling, monitoring, user permissions and integration with enterprise or production systems.
After delivery, support is organized according to the project agreement, installed system and customer’s maintenance responsibilities.
Issue review can use system status, alarms, logs and remote communication to support fault identification and recovery planning.
Recommended spare-parts lists and replacement coordination can be prepared according to the robot model and installed configuration.
Periodic checks, parameter review and software optimization can support system stability as operating conditions change.
Existing systems can be reviewed for additional robots, new routes, production-line changes or interface upgrades.
On-site work, remote support, response arrangements, spare-parts supply, software updates and long-term maintenance are confirmed according to the project location, system configuration and commercial agreement.