Engineering built around production.
Engineering built around production.
NORDEN combines mechanical engineering, automation, robotics, controls and industrial software to design production systems that perform reliably in the real world.
NORDEN combines mechanical engineering, automation, robotics, controls and industrial software to design production systems that perform reliably in the real world.

ENGINEERING FACILITY

ENGINEERING FACILITY
Founded
ENGINEERING SINCE 2001
Offices
HAMBURG / STUTTGART / GOTHENBURG
Experience
24+ YEARS
Scale
180+ PROJECTS
Reach
17 COUNTRIES
Founded
ENGINEERING SINCE 2001
Offices
HAMBURG / STUTTGART / GOTHENBURG
Experience
24+ YEARS
Scale
180+ PROJECTS
Reach
17 COUNTRIES
“We build systems that have to work every shift.”
“We build systems that have to work every shift.”
24+
Years of Engineering
180+
Production Projects
17
Countries Deployed
98.7%
System Availability
3
Engineering Locations
45+
Core Engineers
Engineered, built and validated before production.
Our integration facilities ensure every system is fully tested under production conditions before site deployment.
Engineered, built and validated before production.
Our integration facilities ensure every system is fully tested under production conditions before site deployment.



Engineering Team

Robotics Integration

Systems Testing & HMI
Engineering Team

Robotics Integration

Systems Testing & HMI
Built through industrial change
2001
FOUNDATION IN HAMBURG
Focus on mechanical engineering for local manufacturing.
2006
AUTOMATION DIVISION
Expanded into PLC programming and control systems.
2011
ROBOTICS INTEGRATION
First major automotive integration project completed.
2016
STUTTGART FACILITY
Opened second engineering hub for advanced systems testing.
2020
SOFTWARE SOLUTIONS
Integrated software engineering for Industry 4.0 data.
2024
GLOBAL REACH
Deploying complex systems across 17 countries worldwide.
One team across the system
01
Mechanical Engineering
02
Electrical Design
03
PLC Programming
04
Robotics Integration
05
Industrial Vision
06
Software Architecture
07
Safety Controls
08
System Commissioning
One team across the system
01
Mechanical Engineering
02
Electrical Design
03
PLC Programming
04
Robotics Integration
05
Industrial Vision
06
Software Architecture
07
Safety Controls
08
System Commissioning
How we engineer
PRINCIPLE I
Design for Reality
We don’t engineer in a vacuum. Systems are designed considering environmental factors, operator behavior, and maintenance access.
PRINCIPLE II
Robust over Clever
Complexity introduces failure points. We favor proven, robust solutions that guarantee uptime over overly complex conceptual designs.
PRINCIPLE III
Integrated from Day One
Mechanical, electrical, and software teams work concurrently, ensuring seamless integration before physical build begins.
PRINCIPLE IV
Validate Everything
Assumptions lead to downtime. We rigorously simulate and physically test every critical subsystem before final integration.
PRINCIPLE V
Open Architecture
We build systems that can evolve. Standardized interfaces and open protocols ensure future adaptability and scaling.
PRINCIPLE VI
Empower the Operator
Technology serves the user. Interfaces are designed to provide clear, actionable information, reducing cognitive load.
How we engineer
PRINCIPLE I
Design for Reality
We don’t engineer in a vacuum. Systems are designed considering environmental factors, operator behavior, and maintenance access.
PRINCIPLE II
Robust over Clever
Complexity introduces failure points. We favor proven, robust solutions that guarantee uptime over overly complex conceptual designs.
PRINCIPLE III
Integrated from Day One
Mechanical, electrical, and software teams work concurrently, ensuring seamless integration before physical build begins.
PRINCIPLE IV
Validate Everything
Assumptions lead to downtime. We rigorously simulate and physically test every critical subsystem before final integration.
PRINCIPLE V
Open Architecture
We build systems that can evolve. Standardized interfaces and open protocols ensure future adaptability and scaling.
PRINCIPLE VI
Empower the Operator
Technology serves the user. Interfaces are designed to provide clear, actionable information, reducing cognitive load.
Engineering close to production
Hamburg HQ
MECHANICAL / SOFTWARE / ROBOTICS
Our primary engineering hub and main integration facility handling heavy payload systems and core software architecture.
Stuttgart
AUTOMOTIVE / PRECISION / CONTROLS
Specialized in high-speed automation, automotive integration, and advanced vision systems engineering.
Gothenburg
DATA / AI / SYSTEM ARCHITECTURE
Focusing on industrial IoT, predictive maintenance algorithms, and next-generation control strategies.
Engineering close to production
Hamburg HQ
MECHANICAL / SOFTWARE / ROBOTICS
Our primary engineering hub and main integration facility handling heavy payload systems and core software architecture.
Stuttgart
AUTOMOTIVE / PRECISION / CONTROLS
Specialized in high-speed automation, automotive integration, and advanced vision systems engineering.
Gothenburg
DATA / AI / SYSTEM ARCHITECTURE
Focusing on industrial IoT, predictive maintenance algorithms, and next-generation control strategies.
Engineering is a team discipline
We are always looking for disciplined engineers, programmers, and technicians who understand that industrial automation requires rigor, collaboration, and a deep respect for physical constraints.
View open roles →
Engineering is a team discipline
We are always looking for disciplined engineers, programmers, and technicians who understand that industrial automation requires rigor, collaboration, and a deep respect for physical constraints.
View open roles →

Quality Framework
STANDARD
ISO 9001:2015
Quality Management Systems
SAFETY
ISO 13849-1
Safety of Machinery
ENVIRONMENT
ISO 14001:2015
Environmental Management
SECURITY
IEC 62443
Industrial Cybersecurity
Quality Framework
STANDARD
ISO 9001:2015
Quality Management Systems
SAFETY
ISO 13849-1
Safety of Machinery
ENVIRONMENT
ISO 14001:2015
Environmental Management
SECURITY
IEC 62443
Industrial Cybersecurity