MORITEX North America Inc

San Jose, CA 95119

COMPANY OVERVIEW

About MORITEX North America Inc

600

Contact

6862 Santa Teresa Blvd
San Jose, CA 95119
United States
http://www.moritex.com
408-363-2100
408-363-9980

More Info on MORITEX North America Inc

MORITEX is a global supplier of best-in-class lens and lighting components, custom solutions, and fully integrated hardware systems for machine vision applications. We provide high value-added leading edge technologies, products, and services that combine our expertise in optics, lens, LED, and fiber optic technologies to support manufacturing and factory automation in all major markets. Our extensive background and experience in high performance optical systems design uniquely enables us to provide vertically integrated solutions.

Products

Buyer's Guide

MTL Series : Bi-Telecentric Lenses for Gauging and Metrology

The MTL Series bi-telecentric lenses are the latest flagship products to come from MORITEX cutting-edge optical design team and boast the tightest object and image side telecentricity...
Buyer's Guide

ML-MCHR Series: Megapixel High Resolution Macro Lens

Factory automation Megapixel Macro Lenses featuring high resolution, low distortion, and compact, high vibration resistance design to enable sharper, higher contrast images than...
Buyer's Guide

MML-ST Series: MML Standard Telecentric Lenses

From the originator of the compact telecentric lens, this series features a long DOF, small diameter, and various WD options making them ideal for system alignment and OCR applications...
Buyer's Guide

MML-HR Series: High Resolution MML Telecentric Lenses

This series features high resolution and contrast designs with versatile configurations that support mega pixel cameras with 1.3 million pixels or more (4.65μm/pixel) for high...
Buyer's Guide

MML-HR 5M Series: MML High Resolution 5M Telecentric Lenses

High-resolution models designed to provide the best contrast and NA of all the telecentric MML Series for use with high performance 5 megapixel and higher, small pixel pitch sensors...

Articles

Photo 141557840 © Phuchit | Dreamstime.com
Photo 141557840 © Phuchit | Dreamstime.com
Photo 141557840 © Phuchit | Dreamstime.com
Photo 141557840 © Phuchit | Dreamstime.com
Photo 141557840 © Phuchit | Dreamstime.com
Cameras and Accessories

Tools for Illumination Specification

Getting illumination right for your application means starting early in the process and using all the tools available to you from lighting suppliers.
Figure 1: Opto Engineering’s F-Mount TC12M lens fit image sensors up to APS-H format and feature working distances up to 542.8 mm and magnification up to 1.825X.
Figure 1: Opto Engineering’s F-Mount TC12M lens fit image sensors up to APS-H format and feature working distances up to 542.8 mm and magnification up to 1.825X.
Figure 1: Opto Engineering’s F-Mount TC12M lens fit image sensors up to APS-H format and feature working distances up to 542.8 mm and magnification up to 1.825X.
Figure 1: Opto Engineering’s F-Mount TC12M lens fit image sensors up to APS-H format and feature working distances up to 542.8 mm and magnification up to 1.825X.
Figure 1: Opto Engineering’s F-Mount TC12M lens fit image sensors up to APS-H format and feature working distances up to 542.8 mm and magnification up to 1.825X.
Cameras and Accessories

Telecentric lens companies keep pace with image sensor evolution

As sensors become larger and higher resolution, choosing the right lens becomes paramount to machine vision system success.
Large Lenses
Large Lenses
Large Lenses
Large Lenses
Large Lenses
Cameras and Accessories

Lens companies keep pace with increasing image sensor sizes

Sensors ranging from 10 to 150 MPixels require appropriate optics for optimal performance.
Figure 1: Available in C-Mount, F-Mount, and M42 x 1.0 options, TECHSPEC SWIR lenses from Edmund Optics are designed for the 0.9 to 1.7 µm range.
Figure 1: Available in C-Mount, F-Mount, and M42 x 1.0 options, TECHSPEC SWIR lenses from Edmund Optics are designed for the 0.9 to 1.7 µm range.
Figure 1: Available in C-Mount, F-Mount, and M42 x 1.0 options, TECHSPEC SWIR lenses from Edmund Optics are designed for the 0.9 to 1.7 µm range.
Figure 1: Available in C-Mount, F-Mount, and M42 x 1.0 options, TECHSPEC SWIR lenses from Edmund Optics are designed for the 0.9 to 1.7 µm range.
Figure 1: Available in C-Mount, F-Mount, and M42 x 1.0 options, TECHSPEC SWIR lenses from Edmund Optics are designed for the 0.9 to 1.7 µm range.
Cameras and Accessories

Manufacturers address non-visible imaging lens requirements

Developers utilizing multispectral, hyperspectral, or SWIR imaging technology must choose suitable lenses.
A large format, bi-telecentric lens provides a 240 mm field of view at a 375 mm working distance above the tray, where parts are gauged for required measurements.
A large format, bi-telecentric lens provides a 240 mm field of view at a 375 mm working distance above the tray, where parts are gauged for required measurements.
A large format, bi-telecentric lens provides a 240 mm field of view at a 375 mm working distance above the tray, where parts are gauged for required measurements.
A large format, bi-telecentric lens provides a 240 mm field of view at a 375 mm working distance above the tray, where parts are gauged for required measurements.
A large format, bi-telecentric lens provides a 240 mm field of view at a 375 mm working distance above the tray, where parts are gauged for required measurements.
Factory Automation

Machine vision system automatically gauges parts and archives images for trending

When a small automotive spiral spring manufacturer sought to improve its production process, Industrial Control was brought on to develop a machine vision system for gauging.
Figure 1: (a) This active extended depth of field demonstration works by simultaneously refocusing the camera and the structured light projector at multiple planes for 3D reconstruction. (b) The image on the top shows a merged image, completely in focus, while the image on the bottom shows one image, partially in focus.
Figure 1: (a) This active extended depth of field demonstration works by simultaneously refocusing the camera and the structured light projector at multiple planes for 3D reconstruction. (b) The image on the top shows a merged image, completely in focus, while the image on the bottom shows one image, partially in focus.
Figure 1: (a) This active extended depth of field demonstration works by simultaneously refocusing the camera and the structured light projector at multiple planes for 3D reconstruction. (b) The image on the top shows a merged image, completely in focus, while the image on the bottom shows one image, partially in focus.
Figure 1: (a) This active extended depth of field demonstration works by simultaneously refocusing the camera and the structured light projector at multiple planes for 3D reconstruction. (b) The image on the top shows a merged image, completely in focus, while the image on the bottom shows one image, partially in focus.
Figure 1: (a) This active extended depth of field demonstration works by simultaneously refocusing the camera and the structured light projector at multiple planes for 3D reconstruction. (b) The image on the top shows a merged image, completely in focus, while the image on the bottom shows one image, partially in focus.
Cameras and Accessories

Machine vision lighting companies address niche imaging requirements

Choosing the correct type of lighting in a machine vision application improves the contrast between features of an object being inspected and its background, while maximizing ...

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