
Motion Engineered
Robotics and automation engineering, from prototype to production.
We design and build robots, automated cells and the electronics and software that run them — for manufacturers and operators in any country.
Why Velkine
One engineering team for mechanics, electronics, firmware and software. One contract, one point of accountability, one schedule.
- 01
Full stack in-house
Structure, actuation, PCBs, firmware, ROS 2 and AI are designed by the same team, so interfaces are solved before they become problems.
- 02
Measured outcomes
Every project starts with agreed targets — cycle time, precision, uptime, cost — and ends with a report against them.
- 03
Built for international work
Reviews in your time zone, code in your repository, documented hardware and door-to-door shipping.
Services
Five engineering disciplines, delivered as one.
01Robotics engineering
Humanoids, quadrupeds, arms, mobile and telepresence robots, engineered end to end.
FOTO S2 — Celda robótica en planta real, plano medio, operario al fondo desenfocado, 4:3
02Industrial automation
Robotic cells, machine tending, palletizing and process industrialization.
FOTO S3 — Macro de PCB a 45°, poca profundidad de campo, cobre y serigrafía nítidos, 4:3
03PCB and electronics
Schematics, multilayer layout, motor drivers and fabrication-ready outputs.
FOTO S4 — Ingeniero frente a monitores con RViz/simulación y robot real al lado, 4:3
04Software, ROS 2 and AI
Firmware, ROS 2 architectures, perception, navigation and applied AI.
FOTO S5 — Taller: CNC o impresoras 3D trabajando, plano amplio, luz industrial, 4:3
05Prototyping and manufacturing
Functional prototypes in days and a documented path to series production.
Industries
Where our systems operate.
Manufacturing
Cells and lines that hold cycle time and quality shift after shift.
Logistics
Mobile robots and picking systems for warehouses and distribution centers.
Energy and inspection
Robotic inspection for plants, substations and hazardous areas.
Healthcare
Telepresence, internal logistics and lab automation for clinical environments.
Events and entertainment
Humanoid and telepresence robots that perform reliably in front of an audience.
Education and research
Robotic platforms and labs for universities and research centers.
Government and public safety
Remote-operated systems that keep people out of dangerous situations.
Hardware startups
An engineering team on demand, from first prototype to pilot production.
Featured case study
End-of-line cobot palletizing cell
Client under NDA · Germany · 2025
A compact palletizer with vision-based case detection for a food packaging line.
- cycle time
- −38 %
- cycle time
- from kickoff to SAT
- 14 wk
- from kickoff to SAT
- uptime in first quarter
- 99.2 %
- uptime in first quarter
How we build
Every layer of the machine, engineered together.
We design structure, actuation, electronics and software in parallel, with shared requirements and test plans.
04Software
Real-time firmware, ROS 2 architecture, perception and planning — with CI and tests.
C++ · Rust · ROS 2 · on-device AI
03Electronics and PCB
Controller boards, power stages and sensor interfaces designed to IPC practices.
6-layer · CAN-FD · STO
02Actuators
Motor and gearbox selection from a torque budget, with thermal models for continuous duty.
BLDC · FOC · harmonic / planetary
01Structure
Kinematics, FEA and design for manufacturing in machined, printed and sheet-metal parts.
Aluminium 6061-T6 · FEA safety factor ≥ 2
Process
A delivery process designed for hardware.
- 01
Discovery
Requirements, constraints and budget. A feasibility call within days.
1–2 weeks
- 02
Engineering
Architecture, CAD, schematics and a costed bill of materials.
3–8 weeks
- 03
Prototype
Functional hardware built and assembled in our workshop.
2–6 weeks
- 04
Validation
Test plans, endurance runs and safety and compliance pre-checks.
2–4 weeks
- 05
Production
DFM, supplier sourcing, assembly documentation and pilot batches.
Per volume
- 06
Support
Remote diagnostics, firmware updates, spare parts and training.
Ongoing
Standards
We design to recognised standards.
Our engineering practices follow these standards. Formal certifications are listed below as they are obtained.
- IPC-2221Generic standard on printed board design
- IPC-A-610Acceptability of electronic assemblies (Class 2 workmanship)
- ISO 10218Safety requirements for industrial robots — design approach
- ISO 13849Safety-related parts of control systems — design approach
- IEC 60204-1Electrical equipment of machines — design approach
Tell us what the system needs to do.
An engineer reviews every request and replies within one business day, in your language and time zone.