Microoptics

The INNO-Concept GmbH services in this field consist of:
Calculating microoptical systems consisting of prism arrays, grid structures (corrugations) and microlens arrays for

- Coupling and uncoupling light in optical light conductors, especially wave conductors for meters
in medicine and environmental analyses.

- Lighting in the broadest sense of the word

- Optical storage of information (digital and analogue).

- Optical communication technology

- Optical imaging (texture analysis, automated sorting and many others)

- Navigation technology.


Optical Image Processing

The principles of optical image processing can always be used to great advantage if it is a matter of processing entire fields or patterns at great speed (real-time).

Digital electronic systems have to record all the positions in an image and serially link the intensity values attained. The digitalisation of images and the subsequent electronic processing of the information with the aid of very precise digital processors often requires too much time, because the processing time increases more than linearly with the information content of the images.

By contrast it is very advantageous that in the image processing necessary and numerically difficult Fourier transformations, convolution and correlation operations can be optically performed in parallel and in real-time.

The INNO-Concept GmbH services in this field consist of:

- Calculating optical systems for the Fourier transformation, convolution and correlation
operations, which are adjusted to the imaging process.

- Calculating the optical filter structures required for the image processing or image
pre-processing.

- Perform investigations to determine if a coherent or incoherent optical image processing is
appropriate for the processing task.



Optical Design

The INNO-Concept GmbH services in this field consist of:

Calculating optical systems (both lens optics as well as reflective optics under the aspect of diffractive structures) for very different applications and spectral ranges, e.g. for

- Spectroscopic devices

- Laser technology

- Material processing with lasers

- Metering

- Holography

- Lighting systems (from spotlights to optical meters)

- Camera lenses ( including anamorphotical optics )

- Optical imaging

- Optical communication technology

- Medical technology.

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