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- Acquisition Cards
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- Comparison between Sony's IMX CMOS sensor series
- Why should I color calibrate my camera?
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- What Is Multispectral Imaging?
- Comparison of CMOS cameras
- Color in Image Processing
- Processing Boards in Embedded Vision
- What Is Image Processing
- 3D Technologies in Image Processing
- What Is Embedded Vision
- Why CMOS Image Sensors?
- What Is Time of Flight?
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- CMOS vs. CCD: Sensor Technology
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- NIR: Seeing Clearly Even in Low Light
- High-Sensitivity Industrial Cameras
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- Cameras for Fluorescence Microscopy
- What Is the Role of Computer Vision for Industry 4.0?
- What Is Deep Learning?
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- Blockchain for IoT Sensor Producers
- How will IoT change retail?
- How Do Machines Learn?
- IoT Applications in the Smart City
- Benefits of Cameras in Medicine
- Lab Automation with Vision
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- Image Processing in Industry 4.0
- Machine Vision
- Automated Optical Inspection
- Color Calibration in Medical Technology
Vision Systems and Components
- Software in Image Processing
- Image Pre-processing Strengthens and Streamlines Image Processing Systems
- How to Find the Right Lighting for Your Vision System?
- What is a Machine Vision SDK
- How Can I Find the Right Lens?
- Components of a Vision System
- Cutting Through the Noise: Camera Selection
- Image Processing Systems — The Basics
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Vision CampusCamera Technology Interfaces and Standards Markets and Applications Vision Systems and ComponentsCamera TechnologyComparison between Sony's IMX CMOS sensor series Why should I color calibrate my camera? Expert Tips to Find the Right Lens for a Vision System Expert Tips for Embedded Vision Systems What Is Multispectral Imaging? Comparison of CMOS cameras Color in Image Processing Processing Boards in Embedded Vision What Is Image Processing 3D Technologies in Image Processing What Is Embedded Vision Why CMOS Image Sensors? What Is Time of Flight? What Is Image Quality? Camera Sizes How does a Digital Camera Work? CMOS vs. CCD: Sensor Technology Real-Time Capability NIR: Seeing Clearly Even in Low Light High-Sensitivity Industrial CamerasShow moreShow lessInterfaces and StandardsSystem Setup with CoaXPress 2.0 What Is CoaXPress? Which interface for Embedded Vision? Multi-Camera Systems with GigE 2.0 USB 3.0 – Interface of the Future What Is an Interface? Camera Link Gigabit Ethernet (GigE) GenICam Standard USB 3.0 and USB3 VisionMarkets and ApplicationsCameras for Fluorescence Microscopy What Is the Role of Computer Vision for Industry 4.0? What Is Deep Learning? Robots with Vision Technology Blockchain for IoT Sensor Producers How will IoT change retail? How Do Machines Learn? IoT Applications in the Smart City Benefits of Cameras in Medicine Lab Automation with Vision Medicine with Vision Image Processing in Industry 4.0 Machine Vision Automated Optical Inspection Color Calibration in Medical TechnologyShow moreShow lessVision Systems and ComponentsSoftware in Image Processing Image Pre-processing Strengthens and Streamlines Image Processing Systems How to Find the Right Lighting for Your Vision System? What is a Machine Vision SDK Lighting How Can I Find the Right Lens? Components of a Vision System Cutting Through the Noise: Camera Selection Image Processing Systems — The Basics
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Now in Series Production: Basler blaze 3D Camera
The new Basler blaze with the Sony DepthSense™ IMX556 sensor and state-of-the-art VCSEL laser diodes is a 3D camera based on the time-of-flight principle. It offers almost millimeter-accurate 3D measurements in VGA resolution, is fully daylight-optimized, shock-proof, and water- and dust-proof thanks to IP67 protection. It detects obstacles and determines the position, location and volume of objects within a measuring range of 10 meters. With its integrated lens and invisible infrared illumination, the blaze is a compact and lightweight design that makes it an attractive candidate, also in terms of price, for use in many areas of the smart factory, in automated vehicles and mobile robots, in object recognition, as well as in a wide range of logistics applications. It also provides valuable support for patient positioning during medical examinations.
The camera generates 3D point clouds and 2D gray images at a frame rate of up to 30 fps from multipart images consisting of distance, intensity and confidence map. With its GigE interface and Basler's GenICam-compatible blaze SDK, the camera can be configured quickly and easily. The platform-independent programming interface with sample programs makes it easy to integrate the camera into applications, including multi-camera systems. Pre-installed connections also allow for easy integration of third-party software platforms and libraries.
Would you like to get to know the Basler blaze better? We have compiled comprehensive information about the camera and its applications on our product page .
Webinar "Stronger 3D performance with ToF technology”
Powerful 3D solutions are becoming more and more important for Industry 4.0 and increasing automation. Time-of-Flight is one of the 3D methods that contribute decisively to efficiency in industrial applications with precise measurement in real time. Let our 3D experts explain the ToF method with its functional principle, important influencing factors and the differences to other 3D technologies. With the help of example applications and a live demo, you will learn how ToF can be integrated into your vision system.
Our sales team will be happy to answer any further questions you may have.
You have questions?
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Our Sales and Technical Support experts are avaiable to advise you on all aspects of Basler computer vision components and solutions.