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- Acquisition Cards
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- Embedded Vision Portfolio
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- Comparison 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?
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- CMOS vs. CCD: Sensor Technology
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- NIR: Seeing Clearly Even in Low Light
- High-Sensitivity Industrial Cameras
- Interfaces and Standards
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- Cameras 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
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- 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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Computer Vision Solutions for Medical & Life Sciences
We now offer computer vision solutions for the Medical & Life Sciences field. A close dialog with the customer to understand the detailed requirements is a key element in the solution. On this basis, we develop a concept and then provide a complete, cost-optimized system. Components from the entire Basler portfolio are available to use in the system:
- Cameras with different sensors, resolutions, frame rates, interfaces and lens mounts
- Lenses with S, C and F mounts, for different sensor formats and with all common focal lengths
- Processing hardware based on the technologies of leading providers such as NVIDIA® or NXP® as well as frame grabber solutions as a standard or custom design
- Devices for communication / connectivity with different industrial interface standards or IoT-based with cloud connectivity
- Peripherals with trigger boards, lighting, hubs and switches
- Software with driver, system and (AI-based) application software
As part of the contract development, we select the appropriate individual components consistent with the customer requirements and in a constant dialog with the customer. Knowledge of the entire imaging pipeline guarantees an efficient consulting and development process leading all the way to series production and long-term lifecycle management of the customer’s system.
“Above all, our customers benefit from the precise interaction of image capture, processing and analysis. We have already successfully implemented this combination in numerous projects for a wide range of customers,” explains Marcus Birkenfeld, Global Business Leader Medical & Life Sciences at Basler AG. “Our wealth of experience is highly diversified. It ranges from automated lab diagnostics via artificial intelligence and contactless patient positioning in computer tomography to applications in ophthalmology, for which Basler has developed and implemented complete customized vision systems. In each new project, our customers benefit from our previous experiences, which makes us the ideal partner for vision-based development projects.”
Explore all the details and numerous Use Cases regarding our computer vision solutions for Medical & Life Sciences ! Our Sales Team is pleased to assist you in case of any questions or requests!
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