Improve industrial robot cycle times.
Unlock production potential.

byte robotics combines robotics engineering with proprietary optimization software. We analyze motion sequences, develop well-founded improvements and support implementation where required.

Compatible with

Better production performance starts with a better sequence.

Many robot cells have untapped potential in their motion paths, process sequences and waiting times. We identify that potential, develop suitable improvements and compare them transparently with the baseline.

Explore our technology
Use existing equipment more effectively
Unlock performance potential before investing in additional equipment.
Investigate constraints systematically
Analyze motion paths, sequencing and waiting times as a connected system.
Evaluate with software
Evaluate alternatives using our own planning and optimization technology.
Validate improvements
Compare improvements transparently and validate them in a controlled process.
From analysis to an improvement you can implement.

From analysis to an improvement you can implement

A structured optimization project combines engineering analysis, software-assisted exploration and validation against real process constraints.

Products
Establish the baseline
The objective, process constraints and available programs or models establish the basis for comparison.
Investigate potential
Motion paths, process sequences and waiting times are assessed systematically for relevant constraints.
Optimize the sequence
Suitable alternatives are developed and evaluated against the agreed constraints.
Implement and validate
The baseline and improvement are compared transparently and documented for implementation.
All About Accuracy logo
SMELA logo
RTT Zittau logo
OKB logo
KUKA logo
HTWK Leipzig logo
FLEX logo
CodeGewerk logo
bmp Ventures logo
All About Accuracy logo
SMELA logo
RTT Zittau logo
OKB logo
KUKA logo
HTWK Leipzig logo
FLEX logo
CodeGewerk logo
bmp Ventures logo
How it works

Software-assisted optimization with clear engineering responsibility

01
Provide the baseline

Provide the robot cell, existing programs, process requirements and the objective of the optimization. Together, these inputs define the engineering task.

02
Explore alternatives with software

Our software supports the search for feasible motion and alternative sequences while accounting for the agreed geometry and process constraints.

03
Assess and optimize

Our engineers assess the alternatives in the context of the complete process and select changes that are technically sound and practical to implement.

04
Implement and validate

The agreed result is documented, transferred into the relevant workflow and validated in simulation or on the physical cell as required.

Built by robotics and software engineers

Building a better way to program industrial robots

Our team brings together robotics research, software development and industrial engineering. Founded on research in Magdeburg, byte robotics makes automated motion planning part of established engineering workflows.

Meet the team
Software team reviewing a development result
Video production with the byte robotics team
Software developers collaborating at a workstation
byte robotics team receiving an award at its exhibition booth
Inspecting an industrial robot during a demonstration
Preparing a fixture for an industrial robot process
Project team in front of an industrial cell structure
Analyzing a robot-assisted welding process
Operating a KUKA robot with a teach pendant
CUSTOMER & PARTNER VOICES

What our partners say

We work closely with automation companies, software providers, and industry partners to bring automated robot programming into real-world applications.

Products

The partnership with byte robotics is crucial to the growth of our company. Working with byte robotics has been a completely smooth and pleasant experience from day one. Together, we’re making progress!

Dr. Yori Fournier
CEO All About Accuracy
All About Accuracy logo

Translated from German

Frequently asked questions

Answers about integration, prerequisites and getting started with byte robotics.

What does byte robotics automate, and what remains with the engineering team?

byte robotics generates and optimizes robot motion from a digital task definition. Planning accounts for geometry, robot kinematics and the specified process requirements.

Your team defines the process and reviews the result. Available program formats depend on the integration and target system. Validation on the physical cell remains part of commissioning.

Does byte robotics replace our offline programming environment?

byte robotics adds automated motion planning to your engineering environment. The integrations for Visual Components, KUKA.Sim and iiQWorks.Sim build on your existing simulation and programming workflow.

Planning uses the robot cell, relevant geometry, process positions and constraints. We review the requirements for your software version before you get started.

Is byte robotics suitable for our robot and application?

Our technology is designed to address different robot kinematics and manufacturing tasks that can be described digitally. Suitability depends on the robot model, process requirements, available data and selected integration.

Share your engineering environment, robot model and task with us. Together, we can assess the prerequisites and a suitable starting point. Collision checks depend on the geometry provided and how it is modeled.

How does byte robotics reduce programming effort?

The software automates the search for suitable robot motion and its optimization. Your team can evaluate sequences in the virtual environment and regenerate them when requirements change.

The effort saved depends on the task, data quality and existing workflow. A demonstration based on your application helps establish the potential.

Can we integrate motion planning into our own software?

byte robotics Headless provides the planning and optimization technology as a software component. Your application supplies the task and robot data, then consumes the generated motion.

We agree on interfaces, data formats, deployment and licensing in the context of your architecture and application. A description of your product and intended workflow is a useful starting point.

Turn cycle-time potential into better production performance.

Talk to us
Funding & recognition

Supported on the path from research to industry.

Public funding helped us turn research into robust industrial technology. In 2023, the team behind byte robotics, then known as AuRora, won the Automotive cluster of the IQ Innovation Award Central Germany. Two awards in the Startup Competition – Digital Innovations followed in 2025.