Build Real Robots.
Teach Real AI.
Industrial Robotics, AI & Smart Manufacturing Labs for Universities, Engineering Colleges, Schools and Research Institutions.
Not a toy. Not a full-size factory robot.
A desktop industrial robot.
Toys are too simple to teach engineering. Full-size factory robots are too big and too costly to give a class of sixty real hands-on time. A desktop industrial robot sits in between — the real thing, scaled for a classroom.
STEM toy / hobby kit
Plastic arms and hobby servos built to spark curiosity.
- StructurePlastic body, hobby servo motors
- PrecisionNo rated repeatability — drifts with wear
- ProgrammingBlock coding or a mobile app
- Industrial interfacesNone — no I/O, PLC or fieldbus
- What students learnCoding logic and basic motion
Desktop industrial robot
An industrial robot's architecture at 1:10 scale — on a lab bench.
- StructureIndustrial 4- and 6-axis kinematics; metal / aluminium, stepper drives with reducers
- Precision±0.05 – 0.2 mm rated repeatability
- ProgrammingTeach pendant, Blockly, Python, C++, G-code, ROS / ROS2, MATLAB
- Industrial interfacesDigital I/O, RS485 / Modbus, PLC, vision, conveyors, linear rail
- Set-upStandard power socket and desktop footprint — no industrial robot cell required; supervised bench-top use
- Students per robot3–4 — every group programs its own robot
- What students learnKinematics, coordinate frames, trajectories, automation and AI — the same concepts as a factory robot
Full-size factory robot
Production machines built for factories, not for teaching batches.
- StructureFull-size arm, kilograms to hundreds of kilograms payload
- PrecisionProduction-grade
- ProgrammingProprietary pendant language, different for each brand
- Industrial interfacesFull industrial I/O and fieldbus
- Safety & set-upFenced cell, interlocks, industrial power, dedicated floor space
- Students per robotOne robot for the whole batch — most students watch
Same kinematics. Same coordinate frames. Same programming logic as a factory robot. Scaled down so that every student group can program one on a lab bench, under faculty supervision, from day one.
Four robots. One platform. Every level.
From a first teaching lab to edge-AI research — all four arms share the same software, accessories and curriculum, so your lab can grow without starting over.

Mirobot
The classroom workhorse. A 1:10 industrial 6-axis structure that teaches kinematics, programming and automation on a desk.

MT4
All-metal, rebuildable 4-axis arm. Students take it apart, rebuild it and learn the mechanism from zero to one.

Haro380
True industrial performance in a desktop format — precision joints, closed-loop control and industrial protocols.

MiroMax
Harmonic-reducer joints, drag-to-teach, Ethernet & Modbus, with a Raspberry Pi 5 edge-AI controller in the box.
Built around how your institution teaches
Each programme has different outcomes, timetables and budgets. Start from yours.
Engineering Colleges
UG labs for Mechanical, Mechatronics, EEE, CSE & AI
Explore →02Universities & Research
PG teaching, ROS2, AI & Industry 4.0 research
Explore →03Schools (K7–K12)
Robotics & AI labs for students aged 12–18
Explore →04ITI / Polytechnic
Hands-on automation, PLC & robot operation skills
Explore →05Industry Training Centres
Workforce upskilling in robotics & automation
Explore →The way engineers actually progress
A complete learning journey from fundamentals to real-world automation.
Robotics fundamentals
Motion control, kinematics, electronics and programming through guided experiments and a structured curriculum.
- Forward & inverse kinematics
- Coordinate systems
- Motor control
- Safety basics
Real robotic systems
Assemble, rebuild and integrate industrial-style arms and factory cells — mechanics, wiring and system integration.
- Metal CNC structures
- Modular assemblies
- ROS2 + Arduino
- Sensor integration
AI automation
Computer vision, voice and gesture control and AI logic for intelligent robotic workflows — from sorting to autonomous operation.
- AI vision & object detection
- Voice & gesture control
- PLC-robot integration
- Smart task pipelines
Everything a modern robotics lab needs
Robot arms, AI and vision, ready-to-use training cells, scaled-down production lines and research robots — all from one compatible ecosystem.
Desktop Industrial Robot Arms
4- and 6-axis desktop industrial robots for teaching and research.

AI & Vision Systems
Machine vision, AI and control platforms that work with every arm.

Robotic Training Cells
Ready-to-use workstations that recreate one industrial process.

Smart Manufacturing Lines
Scaled-down production lines for Industry 4.0 labs.

Mobile, Quadruped & Humanoid
Legged and mobile robots for Sim2Real and embodied-AI research.

Add-ons & Expansion Modules
Conveyors, rails, AGVs and factory modules to grow your lab.

Why institutions choose RoboxRise
You are not just buying hardware. You are getting a working lab, a curriculum and a team in India that stays with you.
Industrial-style hardware
Desktop industrial robots with real kinematics and rated repeatability — not toy robotics.
WLKATA technology ecosystem
A proven international platform used by 3,600+ institutes across the globe.
India-based engineering support
Robotics engineers in India for installation, troubleshooting and spares.
Complete curriculum
Published textbooks, 50+ experiments, lesson plans and code — from first motion to ROS2 and AI.
Faculty training
Train-the-trainer programmes so your staff run the lab confidently from day one.
Installation & commissioning
We deliver, install, commission and hand over a working lab.
Expandable architecture
Add vision, conveyors, rails, AGVs, PLCs and AI modules as your lab grows.
Video guides
Step-by-step video tutorials for every system and experiment.
Certification
Completion certificates that validate students' robotics, coding and automation skills.
Built by engineers who build machines
RoboxRise is an initiative of Raghavendar Tech Excellence Pvt. Ltd. (R-Tech), bringing practical experience in industrial automation, special-purpose machinery, robotics and manufacturing systems into the classroom.
- Industrial automation
- Machine building
- Robotics integration
- Manufacturing systems
A platform trusted by institutes across the globe
RoboxRise systems are built on WLKATA Robotics technology. The figures below describe WLKATA's worldwide ecosystem.
Adopted by institutions including
- University of Michigan
- Imperial College London
- TU Delft
- Austin Community College, Texas
- Ohio Northern University
“Allendale Machinery Systems, a CNC and automation solutions provider working with Haas Automation, collaborates with WLKATA to support classroom and workforce training solutions.”
“Bergen County Academies, the No. 1-ranked New Jersey public high school, partners with WLKATA to offer on-site, hands-on robotics internships.”
“NTREX, a South Korea-based industrial automation and robotics component supplier, works with WLKATA to expand robotics and automation solutions across Asian markets.”
Figures, institutions and partner statements refer to WLKATA Robotics' global network. RoboxRise is WLKATA's authorised partner in India.
Request a proposal for your lab
Tell us about your institution and requirement. A robotics engineer — not a call centre — will call you back within one working day with a recommendation and a formal quotation.
- Call our robotics lab team+91 81200 07474
- WhatsAppChat with a robotics consultant
- Emailgunalan@r-tech.in
- HoursMon–Sat 9 AM–6 PM IST
Request Proposal
Fields marked * are required.
Questions institutions ask us
Are these toys or industrial robots?
Neither. They are desktop industrial robots — industrial 4- and 6-axis architectures at 1:10 scale, with rated repeatability down to ±0.05 mm, industrial programming and I/O, but safe and compact enough for a classroom bench.
Which departments and levels are they suitable for?
Mechanical, Mechatronics, Robotics & Automation, EEE, ECE, CSE and AI & Data Science at UG and PG level, ITI / polytechnic programmes, and schools from K7 to K12. Each system has a curriculum matched to the level.
What software platforms are supported?
Blockly graphical programming, teach-and-play, Python, C/C++, G-code, ROS / ROS2, MATLAB, CoppeliaSim, PLC control and AI frameworks such as OpenCV, YOLOv5, TensorFlow and PyTorch.
Are learning materials included?
Yes. Systems ship with published textbooks or experiment manuals, lesson resources, sample code and video guides.
Do you install the lab and train our faculty?
Yes. Installation, commissioning and faculty training are part of our institutional supply. The exact scope is written into your formal quotation.
How do we get pricing?
Institutional pricing depends on configuration and quantity, so we quote formally rather than list prices online. Request a proposal or call us and you will receive a written quotation with warranty and support terms.
Can we see the robots before we decide?
Yes. Book a meeting for a live demonstration — online, at your institution, or at our Indore facility.
Can you provide a GST quotation or proforma invoice?
Yes. We issue formal GST quotations and proforma invoices for your purchase committee and accounts process.
Do you accept institutional purchase orders?
Yes. Supply is made against your institution's purchase order, with payment, delivery, installation and warranty terms as set out in our quotation.
Can the robots be integrated with PLCs?
Yes. Mirobot, MT4, Haro380 and MiroMax support digital I/O and serial / Modbus communication, so they can be triggered from and report to a PLC. PLC-robot experiments are part of the curriculum.
Can you design a complete robotics lab?
Yes. We plan the lab around your syllabus, batch size, room and budget — robots, add-ons, workstations, curriculum and faculty training — and then install and commission it.
Not sure which robot is right for your lab?
Tell us your department and number of students — we'll design the lab with you.