Optics and industrial vision

30 years of experience in optical measurement
High-precision non-contact measurement
Innovative optical systems and algorithms
QMT has been developing cutting-edge quality control solutions for 30 years.

We have been developing industrial vision systems since 1990; this long experience has allowed us to create cutting-edge expertise both in the definition of optical systems and in processing algorithms.

We can therefore design, develop and implement optical systems for industrial solutions for measuring the quality of microtechnical products. These integrate traditional machine vision as well as innovative optical systems to reproduce human vision (3D vision, augmented stereoscopic vision, etc.).

We define the optimal solution to meet specific needs. This approach allows us to perfectly meet the client's expectations with a solution based on a proven standard. This customization can even extend to the creation of a product dedicated to a single client.

Customizable solutions to perfectly meet your needs
Customization
products

QMT products can be customized

Product customization
Solution on
measure

Tailor-made solutions designed to meet specific requirements

Tailor-made solutions
Product
customer

A customized, industrialized solution to be a product

Customer product
Optical inspection
A technology for contactless measurement
A very precise and very quick measurement

A team dedicated to expertise in optics and industrial vision with a very complete infrastructure to conduct studies and define optimal solutions.

Expertise in many types of applications

Expertise in optical inspection for high-speed production with high repeatability. Unlike a human operator, a machine never tires, and its decision criteria remain constant. The solutions developed can address a multitude of applications in quality control, testing, and process automation.

Innovative optical systems

The expertise of the QMT team   covers traditional industrial vision but also innovative optical systems, i.e. systems simulating the gaze of a human being but also 3D vision , augmented stereoscopic vision , chromatic confocal vision ...

Algorithms

QMT experts often use NI's Vision Development module and Vision Builder for Automated Inspection platform to develop algorithms and perform inspections and measurements. They supplement these tools with QMT or open-source algorithms.

Knowledge of the specific characteristics of industrial sectors

We are active in multiple industries , but have particular expertise in our seven strategic sectors: watchmaking, aerospace & defense, medical, automotive, rail, electrical engineering, and energy. Our list of references testifies to our successes.

Artificial intelligence in optical systems

We are developing expertise in artificial intelligence for optical control. Our solutions have limitations that are defined in the QMT approach for implementing artificial intelligence.

Applications
  • The precise dimensional measurement
  • Assembly control
  • aesthetic control
  • Robot guidance
  • Print quality control
Complete mastery of vision systems

In summary, the industrial vision inspection cycle involves capturing one or more images of the object to be inspected, digitizing them, applying image processing algorithms specifically designed for inspection, and providing a verdict based on predefined criteria or initiating further action based on the results. Our experts handle the entire inspection cycle, from selecting the appropriate optics and sensors to interfacing with the industrial environment, including defining and optimizing image processing algorithms.

The Techlab

Some projects require an initial phase of theoretical or experimental study to validate their feasibility. Our team has a laboratory equipped to experimentally resolve technical doubts. In addition, the team includes scientists who can address the problems theoretically. This allows clients to validate the performance of their equipment before implementation.

The choice of equipment

QMT experts select the right equipment for project success, paying close attention to all optical components that determine the quality of the acquired images. The QMT Vision Inspector platform integrates a complete range of equipment that meets our benchmarking criteria to suit all types of projects. We also develop our own innovative optical systems, such as the QMT Line fixture and the QMT Clipse illumination system , to fill market gaps.

Specifics of projects carried out according to ISO 13485 requirements (optional)

The requirements of ISO 13485 apply to companies that design control systems for use in medical devices. Throughout the value chain, QMT products   They are designed, developed, and manufactured with the aim of being safer and more effective. Particular attention is paid to traceability and risk analysis for the medical sector. The risk analysis is integrated into the product's risk management file.

QMT offers a project delivery process tailored to the medical industry.

With specific experience in the field and ISO 13485 certification

The medical industry is one of QMT's strategic sectors
Medical sector
We meet our clients' needs with our latest generation technological platform integrating artificial intelligence
Customized solutions for testing and quality control

Automatic defect detection, texture characterization, and perceived color

High-precision measurement in demanding industrial environments

Multi-physics measurements with actuation and automation mechanisms

Measurements and controls specific to watchmaking

Experience combined with skills

The QMT team for optics and industrial vision
Damien Commandoire
Developer
Industrial Vision
Claude Détée
Industrial Vision Expert
Jérôme Pinard
Developer
Industrial Vision
Fabrice Seyve
Industrial Vision Expert
QMT's expertise in implementing solutions

Understanding the client's needs, defining the optimal solution architecture, and integrating the system into the client's environment.

Software development or customizations integrating signal acquisition, processing, communication, and results management

Design and development of Multi-Inspection Mechatronic (M2IS) systems for testing and micromanipulating devices to be controlled

Development and design of innovative optical systems and algorithms to reproduce human vision (3D vision, augmented stereoscopic vision, etc.)

Multi-physics measurements

Integration of multi-physics measurements (torque, force, velocity, position, etc.) into systems to enable characterization and automation

Model selection, dataset creation, data management, and integration into an automated process