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Product Index :: Sensing Solutions :: Vision Sensors / Machine Vision Systems

FZ4 Vision Sensor


FZ4 Vision Sensor

 

Download Product Brochure

* Ordering information
* Specifications
* Configurations
* Dimensions, and etc

 

  can be found in our PDF brochure.
 

 

 

Keep on Evolving to the Top of Image Sensing

 

Speed and accuracy determine the basic performance of sensing. Usability efficiently puts that performance to work. OMRON's FZ Series of Vision Sensors represent an evolutionary journey that takes these three aspects from the past and into the future to allow you to increase quality.

 

 

 

 

 

 

» Inquiry About FZ4 Vision Sensor

Features

 

Quad Processing    Class No.1 speed  


Single processing led to dual processing, and now the FZ4 takes evolution one step farther with quad processing featuring multi-core, multi-thread operation. Parallel execution of the process flow is automatically calculated to achieve optimum allocation of tasks according to the processor load to achieve the fastest processing in this class. The rapidly-evolving Intel® processors are used. Performance is maximized with a unique software structure that is matched to the processors.

 

 

Four-track Parallel Processing

 

Quad Processing

 

Software that has been designed specifically for quad processing automatically determines the faster processing scheme. Maximum speed has been achieved even for High-resolution Cameras and search processing, both of which place a high load on the system.

 

Example of Faster Operation with Quad Processing

 

 

High-speed Processing for High-resolution Images of 5 Million Pixels


Twice the Processing Speed

 

Search Speed Comparison

Multi-core processing distributes processing to increase speed even for individual processes. The results are the most apparent for high-resolution images.


Increase Quality without Increasing Takt Time

 

Speed Comparison for Position Compensation and Defect Inspection

Even if the takt time takes priority, you can still process high-resolution and Real Color images with limited affect on the takt time. We can help you increase quality for both color and resolution.

 

 

Multi-input Function
Faster processing by preceding image capture and inspection in parallel
  Up to 32 image capture 

Each camera has its own image buffer for storing image data that is separate from the main memory used for measurement processing. This allows for up
to 32 frames of continuous high-speed image capture even while the main memory is processing measurement data.

 

Difference from conventional method


Inspection of characters printed on electronic components

 

 


A Revolution in Searching Power. Shape Search II

  Greatest Detection     ×    Class No.1 speed  

The technology to find image patterns forms the basis of image sensing. The FZ4 features the Shape Search II, a new processing item that focuses on outline information. Even with overlapping images, tilting, or deformation, both the accuracy of recognizing image patterns and the speed of processing high-resolution images are ensured.

 

Maximizing Detection Performance

 

Contrast, Deformation & Tilting, Blurring, Noise and Defects


 

Maximizing Speed


High-speed Processing at High Resolution Throughout 360° Rotation

 

Camera Resolution and 360° Search Processing Time

With previous searching, the processing time was greatly increased if the workpiece was rotated or if the image resolution increased. With Shape Search II, processing time is not greatly delayed throughout 360° rotation or if resolution is increases. Manufacturing takt time can be reduced and inspection items can be added to help increase quality.

 

Maximizing Stability

 

Industry-leading positional precision

 

Linear Data

After finding the general position and orientation of the workpiece, position information on edge points enables finding the precise position and orientation. The edge point position information instead of image density information is used to detect positions more precisely than with normal searching methods.

 

Optimizing Settings


Detection performance, speed, and stability mean that you do not need to adjust detailed parameter settings. You can quickly achieve the optimum settings and minimize setting errors caused by trying to increase performance or caused by worker differences.

 

Parameters can be quickly determined according to the application -> Set the parameter and register modes to complete the setup.

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