flyer optik design - startseite tu ilmenau · b) a focus sensor system sf f 1 f ’ 1 2 f ’ y’...

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LENS DESIGN Objective of a chromatic confocal point sensor Some of the areas of works in optical designs: Availible Software: Paraxial conception of imaging optical systems with our progam PARAX Lens design for adaptive automotive head lights Simulation of Internal multiple reflections and scattered light in photolithographic and other optical systems Design of hyperchromatic objective lenses (chromatic confocal sensor) Design and simulation of optical systems containing holographic and diffractive optical elements Optical design with free form optical surfaces Computation of specially adapted optical systems 1 2 3 5 4 6 7 8 9 10 11 12 0 Calculation of a Fresnel lens for a spotlight Analysis for internal multiple reflections in: A) a photolithographic objective and B) a focus sensor system s F1 F’ 1 F2 F’ 2 y’ F’ -f’ H’ s Displayebene mit Eintrittspupille H H’ 1 1 Zwischenbild- ebene Austritts- pupille H H’ 2 2 Sensorebene Paraxial concept of a specially adapted optical system for the measurement of light densities on LCD-Displays Retikel Wafer Asap.lnk PARAX_05 (2).lnk CODE V 9.80.lnk LensVIEW (2).lnk Zemax.lnk Advanced Systems Analysis Program (Breault Research Organization) PARAXiales Dimensionierungsprogramm ( FGTO/ B. Mitschunas) LensVIEW (Optical Data Solutions, Inc.) ZEMAX (Focus Software, Inc) CODE V (Optical Research Associates) B) A) (only for education) Department of Mechanical Engineering Institute of Micro- and Nanotechnologies FG Technische Optik Dr. Beate Mitschunas, Matthias Hillenbrand Prof. S. Sinzinger Phone +49 3677 69-1805 Fax +49 3677 69-1281 [email protected] www.tu-ilmenau.de/tou

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Page 1: Flyer Optik Design - Startseite TU Ilmenau · B) a focus sensor system sF F 1 F ’ 1 2 F ’ y’ F’-f H’ Displayebene mit Eintrittspupille H 1 H’ 1 Zwischenbild-ebene Austritts-pupille

www.tu-ilmenau.de/optik

LENS DESIGN

Objective of a chromatic confocal point sensor

Some of the areas of works in optical designs:

Availible Software:

Paraxial conception of imaging optical systems with our progam PARAX

Lens design for adaptive automotive head lights

Simulation of Internal multiple reflections and scattered light in photolithographic and other optical systems

Design of hyperchromatic objective lenses (chromatic confocal sensor)

Design and simulation of optical systems containing h o l o g r a p h i c and diffractive optical elements

Optical design with free form optical surfaces

Computation of specially adapted optical systems

1

2

3

5

4

6

7

8

9

10

11

12

0

Calculation of a Fresnel lens for a spotlight

Analysis for internal multiple reflections in:A) a photolithographic objective and B) a focus sensor system

s

F1 F ’1

F2F ’2

y’

F’

-f’

H’

s

Displayebene mitEintrittspupille

H H’1 1 Zwischenbild-ebene

Austritts-pupille

H H’2 2

Sensorebene

Paraxial concept of a specially adapted optical system for the measurement of light densities on LCD-Displays

Retikel

Wafer

Asap.lnk

PARAX_05 (2).lnk

CODE V 9.80.lnk

LensVIEW (2).lnk

Zemax.lnk

Advanced Systems Analysis Program (Breault Research Organization)

PARAX iales Dimensionierungsprogramm ( FGTO/ B. Mitschunas)

LensVIEW (Optical Data Solutions, Inc.)

ZEMAX (Focus Software, Inc)

CODE V (Optical Research Associates)

B)

A)

(only for education)

www.tu-ilmenau.de/optik

cha es ,t dp iu ea OH ptik sti mm

t!

Department of Mechanical Engineering

Institute of Micro- and Nanotechnologies

FG Technische Optik

Dr. Beate Mitschunas, Matthias Hillenbrand

Prof. S. Sinzinger

Phone +49 3677 69-1805

Fax +49 3677 69-1281

[email protected]

www.tu-ilmenau.de/tou