Paper
23 February 2010 Disposable low cost video endoscopes for straight and oblique viewing direction with simplified integration
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Abstract
Video endoscopes with an imager located at the distal end possess a simplified opto-mechanical layout compared to classical setups since an optical relay system is not required. Together with the availability of low price miniature CMOS imagers, this enables for building low cost devices for single usage avoiding the necessity of withstanding autoclaving which is one of the major drivers in both, system fabrication and operating cost. The optical layout has to take into account geometrical as well as opto-electronic aspects and is therefore a trade-off between system diameter, sensitivity and resolution. Consequently, the image circle should be as close as possible to the outer diameter for optimum performance in terms of resolution and sensitivity which goes along with large pixel size. We propose systems designs and prototypes for f/4, 3mm outer diameter endoscopes with 70° and 110° field of view using a CMOS imager with 650x650 pixels of 2.8μm pitch. The final systems are based on a simplified and rugged integration using a single polymer lens made by injection molding, a GRIN lens and a dispensed lens made of UV curing material allowing for high performance paired with low fabrication cost. Additionally, a side view system angled at 30° is presented based on a tilting reflection prism requiring minimum construction space allowing for an outer diameter of 3mm.
© (2010) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
F. C. Wippermann, E. Beckert, P. Dannberg, B. Messerschmidt, and G. Seyffert "Disposable low cost video endoscopes for straight and oblique viewing direction with simplified integration", Proc. SPIE 7556, Design and Quality for Biomedical Technologies III, 755607 (23 February 2010); https://doi.org/10.1117/12.840692
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Cited by 4 scholarly publications.
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KEYWORDS
Imaging systems

Polymers

GRIN lenses

Endoscopes

Objectives

Packaging

Prisms

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