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  • SCIENTIFIC CAMERAS
    • compact sCMOS
      • pco.panda 26 DS
        pco.panda 26 DS
        • double shutter images with 1 µs interframing time
        • true charge domain global shutter
        • 5120 x 5120 pixel resolution
        • dust-protected housing
        • ultra-compact design
        • up to 65 % quantum efficiency
        • low jitter
        • pixel size 2.5 µm x 2.5 µm
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      • pco.panda 26
        pco.panda 26 sCMOS camera
        pco.panda 26
        • available in mono and color
        • true charge domain global shutter
        • 5120 x 5120 pixel resolution
        • dust-protected housing
        • ultra-compact design
        • up to 65 % quantum efficiency
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      • pco.panda 4.2 bi UV
        pco.panda 4.2 bi UV
        • 190 nm - 1100 nm spectral range
        • back illuminated sensor
        • ultra-compact design
        • 2048 x 2048 pixel
        • USB 3.1 Gen1
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      • pco.panda 4.2 bi
        pco.panda 4.2 bi
        • back illuminated sensor
        • up to 95 % quantum efficiency
        • ultra-compact design
        • 2048 x 2048 pixel
        • USB 3.1 Gen1
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      • pco.panda 4.2
        pco.panda preview image blue scmos camera  front left
        pco.panda 4.2
        • 2.1 e- med readout noise
        • up to 80 % quantum efficiency
        • ultra-compact design
        • 2048 x 2048 pixel
        • USB 3.1 Gen1
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    • cooled sCMOS
      • pco.edge 26 CLHS
        pco.edge 26 CLHS
        • high resolution: 5120 x 5120 pixel
        • high speed: 150 fps
        • parasitic light sensitivity: 1/10,000
        • temperature-stabilized image sensor
        • fiber optic data interface
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      • pco.edge 26
        pco.edge 26 preview image
        pco.edge 26
        • true charge domain global shutter
        • 5120 x 5120 pixel resolution
        • down to -20°C adjustable cooling
        • compact design
        • up to 72 % quantum efficiency
        • USB 3.1 Gen1
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      • pco.edge 10 bi CLHS
        pco.edge 10 bi CLHS
        • back illuminated with high MTF
        • high resolution: 4432 x 2368 pixel
        • low readout noise: 0.8 e-
        • 25,000:1 dynamic range
        • temperature-stabilized image sensor
        • fiber optic data interface
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      • pco.edge 10 bi LT
        pco.edge 10 bi LT
        • back illuminated with high MTF
        • high resolution: 4416 x 2368 pixel
        • low readout noise: 1.3 e- @ 120 fps
        • 15,385:1 dynamic range
        • temperature-stabilized image sensor
        • fiber-optic data interface
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      • pco.edge 6.2 LE
        pco.edge 6.2 LE
        • wide exposure time range: 1 ms up to 3600 s
        • extremely low dark current
        • deep-cooled down to -20 °C
        • no glow modification
        • high resolution: 6.2 MPixel
        • true charge domain global shutter
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      • pco.edge 5.5
        pco.edge 5.5 preview image
        pco.edge 5.5
        • 1.0 e- med readout noise
        • 2560 x 2160 pixel resolution
        • 30 000 : 1 dynamic range
        • 100 fps maximum frame rate
        • rolling & global shutter functionality
        • Camera Link HS or USB 3.0
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      • pco.edge 4.2 bi XU
        pco.edge 4.2 bi XU
        • high spatial resolution: 2048 x 2048 pixel
        • pixel size: 6.5 µm x 6.5 µm
        • low readout noise: 1.9 e- med
        • well suited for EUV & soft X-ray applications
        • high QE in the energy range 30 to 1000 eV
        • usable with vacuum down to 1 x 10^-7 mbar
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      • pco.edge 4.2 bi UV
        pco.edge 4.2 bi preview
        pco.edge 4.2 bi UV
        • 190 nm - 1100 nm spectral range
        • back illuminated sensor
        • up to 95 % quantum efficiency
        • down to -25°C adjustable cooling
        • 2048 x 2048 pixel resolution
        • USB 3.1 Gen1
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      • pco.edge 4.2 bi
        pco.edge 4.2 bi preview
        pco.edge 4.2 bi
        • back illuminated sensor
        • up to 95 % quantum efficiency
        • down to -25°C adjustable cooling
        • 2048 x 2048 pixel resolution
        • 40 fps maximum frame rate
        • USB 3.1 Gen1
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      • pco.edge 4.2
        pco.edge 4.2 preview image
        pco.edge 4.2
        • 0.8 e- med readout noise
        • 2048 x 2048 pixel resolution
        • up to 37 500 : 1 dynamic range
        • 100 fps maximum frame rate
        • up to 82 % quantum efficiency
        • Camera Link HS or USB 3.0
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      • pco.edge 4.2 LT
        pco.edge 4.2 LT preview
        pco.edge 4.2 LT
        • 0.8 e- med readout noise
        • 2048 x 2048 pixel resolution
        • 37 500 : 1 dynamic range
        • 40 fps maximum frame rate
        • up to 82 % quantum efficiency
        • USB 3.0 interface
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      • pco.edge 3.1
        pco.edge 3.1 preview
        pco.edge 3.1
        • 1.1 e- med readout noise
        • 2048 x 1536 pixel resolution
        • 27 000 : 1 dynamic range
        • rolling & global shutter functionality
        • USB 3.0 interface
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    • UV sensitive
      • pco.edge 4.2 bi XU
        pco.edge 4.2 bi XU
        • high spatial resolution: 2048 x 2048 pixel
        • pixel size: 6.5 µm x 6.5 µm
        • low readout noise: 1.9 e- med
        • well suited for EUV & soft X-ray applications
        • high QE in the energy range 30 to 1000 eV
        • usable with vacuum down to 1 x 10^-7 mbar
        Show product
      • pco.edge 4.2 bi UV
        pco.edge 4.2 bi preview
        pco.edge 4.2 bi UV
        • 190 nm - 1100 nm spectral range
        • back illuminated sensor
        • up to 95 % quantum efficiency
        • down to -25°C adjustable cooling
        • 2048 x 2048 pixel resolution
        • USB 3.1 Gen1
        Show product
      • pco.panda 4.2 bi UV
        pco.panda 4.2 bi UV
        • 190 nm - 1100 nm spectral range
        • back illuminated sensor
        • ultra-compact design
        • 2048 x 2048 pixel
        • USB 3.1 Gen1
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    • SWIR sensitive
      • pco.pixelfly™ 1.3 SWIR
        pco.pixelfly™ 1.3 SWIR
        • VIS & SWIR sensitivity 400 to 1700 nm
        • small pixel size 5 µm x 5 µm
        • long exposure times due to low dark current
        • excellent peak QE of 90 %
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    • streaming
      • pco.edge 26 CLHS
        pco.edge 26 CLHS
        • high resolution: 5120 x 5120 pixel
        • high speed: 150 fps
        • parasitic light sensitivity: 1/10,000
        • temperature-stabilized image sensor
        • fiber optic data interface
        Show product
      • pco.edge 10 bi CLHS
        pco.edge 10 bi CLHS
        • back illuminated with high MTF
        • high resolution: 4432 x 2368 pixel
        • low readout noise: 0.8 e-
        • 25,000:1 dynamic range
        • temperature-stabilized image sensor
        • fiber optic data interface
        Show product
      • pco.edge 10 bi LT
        pco.edge 10 bi LT
        • back illuminated with high MTF
        • high resolution: 4416 x 2368 pixel
        • low readout noise: 1.3 e- @ 120 fps
        • 15,385:1 dynamic range
        • temperature-stabilized image sensor
        • fiber-optic data interface
        Show product
      • pco.edge 5.5 (10G FOL)
        pco.edge 5.5 (10G FOL)
        • 10G FOL data interface
        • high-speed streaming
        • 1.0 e- med readout noise
        • 2560 x 2160 pixel resolution
        • 100 fps maximum frame rate
        • rolling & global shutter functionality
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      • pco.edge 4.2 (10G FOL)
        pco.edge 4.2 (10G FOL)
        • 10G FOL data interface
        • high-speed streaming
        • 0.8 e- med readout noise
        • 2048 x 2048 pixel resolution
        • 100 fps maximum frame rate
        • up to 82 % quantum efficiency
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  • HIGHSPEED CAMERAS
    • compact & ruggedized
      • pco.dimax cs1
        pco.dimax cs preview image
        pco.dimax cs1
        • 3086 fps @ 1.3 MPix resolution
        • compact design
        • high-g ruggedized body
        • excellent light sensitivity
        • 12 bit dynamic range
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      • pco.dimax cs3
        pco.dimax cs preview image
        pco.dimax cs3
        • 2128 fps @ Full HD resolution
        • 1603 fps @ 2.8 MPix
        • compact design
        • high-g ruggedized body
        • 12 bit dynamic range
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      • pco.dimax cs4
        pco.dimax cs preview image
        pco.dimax cs4
        • 1102 fps @ 4MPix resolution
        • 2128 fps @ Full HD resolution
        • compact design
        • high-g ruggedized body
        • 12 bit dynamic range
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    • internal memory
      • pco.dimax cs1
        pco.dimax cs preview image
        pco.dimax cs1
        • 3086 fps @ 1.3 MPix resolution
        • compact design
        • high-g ruggedized body
        • excellent light sensitivity
        • 12 bit dynamic range
        Show product
      • pco.dimax cs3
        pco.dimax cs preview image
        pco.dimax cs3
        • 2128 fps @ Full HD resolution
        • 1603 fps @ 2.8 MPix
        • compact design
        • high-g ruggedized body
        • 12 bit dynamic range
        Show product
      • pco.dimax cs4
        pco.dimax cs preview image
        pco.dimax cs4
        • 1102 fps @ 4MPix resolution
        • 2128 fps @ Full HD resolution
        • compact design
        • high-g ruggedized body
        • 12 bit dynamic range
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  • FLIM CAMERA
    • pco.flim
      • pco.flim
        pco.flim front
        pco.flim
        • pco.flim laser as light source for epifluorescence measurements
        • selectable laser wavelengths and light output powers
        • 100 ps – 100 µs lifetimes measurable
        • 1008 x 1008 pixel resolution
        • 5 kHz – 40 MHz frequency domain FLIM
        • 45 double frames/s frame rate
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  • INTENSIFIED CAMERAS
    • single-channel
      • pco.dicam C1 UHS
        pco.dicam C1 preview image
        pco.dicam C1 UHS
        • exposure times of 2.5 ns to 1 s
        • 18 mm image intensifier
        • intensified sCMOS technology
        • 1504 x 1504 pixel
        • 143 fps @ full resolution
        • enhanced extinction ratio gating
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      • pco.dicam C1 LT
        pco.dicam C1 preview image
        pco.dicam C1 LT
        • exposure times of 51 ns up to 1 s
        • 18 mm image intensifier
        • intensified sCMOS technology
        • 1504 x 1504 pixel
        • 120 fps @ full resolution
        • enhanced extinction ratio gating
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      • pco.dicam C1
        pco.dicam C1 preview image
        pco.dicam C1
        • exposure times down to 4 ns
        • 25 mm image intensifier
        • intensified sCMOS technology
        • 2048 x 2048 pixel
        • 106 fps @ full resolution
        • enhanced extinction ratio gating
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    • multi-channel
      • pco.dicam C8 UHS
        pco.dicam C8
        pco.dicam C8 UHS
        • 8-channel intensified sCMOS technology
        • exposure times down to 2.5 ns
        • 8 images in 20 ns
        • 16 images in 620 ns
        • 1504 x 1504 pixel
        • 80G fiber optic data interface
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      • pco.dicam C8 LT
        pco.dicam C8
        pco.dicam C8 LT
        • 8-channel intensified sCMOS technology
        • exposure times down to 51 ns
        • 8 images in 408 ns
        • 16 images in 960 ns
        • 1504 x 1504 pixel
        • 8 x 10G fiber optic data interface
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      • pco.dicam C4 UHS
        pco.dicam C4 preview image
        pco.dicam C4 UHS
        • 4-channel intensified camera
        • exposure times down to 2.5 ns
        • 18 mm image intensifier
        • 1504 x 1504 pixel
        • 2.6 GByte/s fibre optic data interface
        • enhanced extinction ratio gating
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      • pco.dicam C4 LT
        pco.dicam C4 preview image
        pco.dicam C4 LT
        • 4-channel intensified camera
        • exposure times down to 51 ns
        • 18 mm image intensifier
        • 1504 x 1504 pixel
        • 4 x 10G fiber optic data interface
        • enhanced extinction ratio gating
        Show product
      • pco.dicam C4
        pco.dicam C4 preview image
        pco.dicam C4
        • 4-channel intensified camera
        • exposure times down to 4 ns
        • 25 mm image intensifier
        • 2048 x 2048 pixel
        • 3.4 GByte/s fibre optic data interface
        • enhanced extinction ratio gating
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      • pco.dicam C8
        pco.dicam C8
        pco.dicam C8
        • 8-channel intensified sCMOS technology
        • exposure times down to 4 ns
        • 8 images in 32 ns
        • 16 images in less than 1 µs
        • 2048 x 2048 pixel
        • 80G fiber optic data interface
        Show product
  • OEM CAMERAS
  • SOFTWARE
    • Camera Control Software
      • pco.camware
        pco.camware
        • With pco.camware you adjust all settings of your PCO camera as well as its image acqusition. The camera's parameters and the environment of your application perfectly geared to each other is what brings the desired results to your operation - and pco.camware is exactly the tool to control and achieve this.
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    • Development Tools
      • pco.sdk
        pco.sdk
        • The pco.sdk is a software development kit for Windows and Linux OS. It enables you to control PCO cameras in your own software.
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      • pco.recorder
        pco.recorder
        • The pco.recorder is a software development kit for Windows and Linux OS based on the pco.sdk. It remarkably simplifies your image acquisition, storage and processing for PCO cameras.
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      • pco.cpp
        pco.cpp
        • The pco.cpp is a high-level Software Development Kit (SDK) for Windows and Linux OS that provides a C++ class interface for PCO cameras.
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    • Third Party Software
      • FalCon eXtra
        FalCon eXtra
        • FalCon eXtra is a high-speed video and analysis software for multi-camera control. It is preferentially applied in the field of passive car safety applications and provides the whole range of tasks required for impact testing.
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      • Image Systems TEMA
        TEMA
        Image Systems TEMA
        • TEMA is a software suite for advanced motion analysis tests in research and industry. 
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      • Java
        Java
        • The pco.java package is a comprehensive library of functions to work with PCO cameras.
        • The pco.java ImageIO package provides a plugin for the Java ImageIO API to view PCO’s TIFF and B16 image files (e.g. recorded with pco.camware) in your own Java program.
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      • LabVIEW
        LabVIEW
        • The pco.labview sdk is built as set of libraries. It contains sub VIs and integrates the functions of pco.sdk, pco.recorder and ColorConversion into the LabVIEW application development system. This makes it very simple for you to develop your own LabVIEW applications.
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      • Jetraw by Dotphoton
        Jetraw by Dotphoton
        • Dotphoton’s Jetraw software uses the camera’s calibration data to enhance compression, achieving a compression ratio of up to 10:1 at speeds of 200MB/s/core, and maintaining the image quality.
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      • MATLAB
        MATLAB
        • The pco.matlab package is a set of three components to integrate and use PCO cameras within the MATLAB environment
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      • Micro-Manager
        Micro-Manager
        • μManager provides you the essentials of microscope imaging in one free software package. It operates all PCO cameras and covers the major microscopes and many peripherals.
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      • Python
        Python
        • The Python package is a comprehensive library of functions to work with PCO cameras. It enables you to integrate our products in your own Python program.
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    • Microscopy Integration
      • Bruker JPK BioAFM V7
        Bruker JPK BioAFM
        Bruker JPK BioAFM V7
        • The Bruker JPK BioAFM V7 software guides you through the workflow of setting up experiments. Even if you have minimal AFM experience, the interface makes it simple to generate high-quality data.
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      • INSCOPER
        INSCOPER
        • INSCOPER is a full-featured automation and image acquisition software solution for fluorescence microscopy.
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      • Leica LAS X Life Science
        LAS X Life Science
        Leica LAS X Life Science
        • From basic documentation to advanced life science research – the “Leica Application Suite X (LAS X) Life Science” is one software platform for all Leica microscopes.
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      • Molecular Devices MetaMorph
        Molecular Devices MetaMorph with pco.edge
        Molecular Devices MetaMorph
        • MetaMorph by Molecular Devices is a microscope imaging software with a microscopy analysis software option. It automates acquisition, device control, and image analysis, and easily integrates dissimilar fluorescent microscope hardware and peripherals into a single custom workstation.
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      • Nikon NIS-Elements
        Nikon NIS-Elements
        • Nikon NIS-Elements offers powerful image acquisition, analysis, visualization and data sharing tools combined in one imaging solution.
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      • Phi Optics CellVista
        Phi Optics CellVista
        Phi Optics CellVista
        • Phi Optics CellVista software platform controls Phi Optics Quantitative Phase Imaging (QPI) modules and the motorization of commercial microscopes.
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      • Visitron VisiView
        Visitron VisiView
        • VisiView® is a high performance imaging software for bio imaging applications. It is specially designed to meet the needs for high-speed image acquisition and processing with ease of use.
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      • Volocity 3D
        Volocity
        Volocity 3D
        • The Volocity 3D Image Acquisition & Analysis software is a solution for 3D fluorescence image analysis which enables you to conduct research beyond the limitations of 2D.
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      • ZEISS ZEN
        ZEISS ZEN
        ZEISS ZEN
        • ZEN is a software platform that enables you to control all ZEISS image processing systems and operate all your devices conveniently through the same interface. You can see at any time which options the system provides and what actions are recommended next.
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    • Add Ons
      • pco.fileconversion
        pco.fileconversion
        • The pco.fileconversion is a software package to convert different image formats such as 16-bit tif, pcoraw and b16 files, recorded by pco.camware, into various other formats.
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      • pco.logging
        pco.logging
        • With the pco.logging tool you control and monitor your logging and generate detailed support files.
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  • APPLICATIONS
    • Life Science
      • Fluor. Microscopy DNA Micro Arrays
        Fluor. Microscopy DNA Micro Arrays
        • Microarrays are versatile tools for high throughput screening. Nevertheless they are severely limited. Therefore the idea arose why not to copy microarrays? Why not make DNA, RNA and protein microarrays as high quality copies of a high quality original? It worked fine for text books and images. So why not apply it for DNA? Why not build a biomolecule copying machine? A biomolecule xeroxer?
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      • SMLM DNA Origami
        SMLM DNA Origami
        • DNA origami is a powerful method for the programmable assembly of nanoscale molecular structures. For applications of these structures as functional biomaterials, the study of reaction kinetics and dynamic processes in real time and with high spatial resolution becomes increasingly important.
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      • LSFM HSPM Timelapse
        LSFM HSPM Timelapse
        • Oblique plane microscopy (OPM) is a form of light sheet microscopy that uses a single high numerical aperture microscope objective for both fluorescence excitation and collection.
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      • High-Speed Fluor. Microscopy
        High-Speed Fluor. Microscopy
        • The application shows that the mode and dynamics of trypanosome locomotion are a trait of life within a crowded environment. Using high-speed fluorescence microscopy and ordered micro-pillar arrays we show that the parasites mode of motility is adapted to the density of cells in blood.
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      • Frequency Domain FLIM
        Frequency Domain FLIM
        • Widefield frequency-domain fluorescence lifetime imaging microscopy (FDFLIM) is a fast and accurate method to measure the fluorescence lifetime of entire images.
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      • Time-Lapse 3-D Measurements
        Time-Lapse 3-D Measurements
        • Light sheet fluorescence microscopy has previously been demonstrated on a commercially available inverted fluorescence microscope frame using the method of oblique plane microscopy (OPM). In this paper, OPM is adapted to allow time-lapse 3-D imaging of 3-D biological cultures in commercially available glass-bottomed 96-well plates using a stage-scanning OPM approach (ssOPM).
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      • LLIM of Chemical Sensors
        LLIM of Chemical Sensors
        • Luminescence Lifetime Imaging of Chemical Sensors - A Comparison between Time-Domain and Frequency-Domain Based Camera Systems
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      • Widefield FLIM of Protoporphyrin IX
        Widefield FLIM of Protoporphyrin IX
        Widefield FLIM of Protoporphyrin IX
        • Achieving a maximal safe extent of resection during brain tumor surgery is the goal for improved patient prognosis. Fluorescence-guided neurosurgery using 5-aminolevulinic acid (5-ALA) induced Protoporphyrin IX has thereby become a valuable tool enabling a high frequency of complete resections and a prolonged progression-free survival in glioblastoma patients.
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      • Fluor. Lifetime Based pH MEAS
        Fluor. Lifetime Based pH MEAS
        • Novel fluorescent diazaoxatriangulenium (DAOTA) pH indicators for lifetime-based self-referenced pH sensing are reported. The DAOTA dyes were decorated with phenolic receptor groups inducing fluorescence quenching via photoinduced electron transfer mechanism.
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      • Hi-Res X-Ray Tomography
        Hi-Res X-Ray Tomography
        • With the help of the pco.dimax S4, the characteristics behind bone fractures are investigated. The goal is to understand the material as well as tissue level strain limits and their relation to failure sites.
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      • Super-Resolution Microscopy
        Super-Resolution Microscopy
        • With the Confocal.nl RCM2, super-resolution imaging over a large FOV is possible. Here we can observe resolved mouse synaptonemal complexes over an incredible 220x220 micron FOV. Using the pco.edge 26 camera and an Olympus Life Science 40x 1.4 NA objective.
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    • Physical Science
      • Propeller Induced Properties
        Propeller Induced Properties
        • Multiple optical measurement techniques have been applied for the investigation of a propeller-wing wind tunnel model. The (half) wind tunnel model is equipped with a nine bladed propeller and its wing has active Coanda blowing over the whole span of the wing.
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      • PIV Tour de France
        PIV Tour de France
        • Particle Image Velocimetry not only allows visualizing the airflow around the bike and rider, but also accurately measures the flow in detail. Development engineers use these results to optimize the performance of bike and clothing and help André Greipel in this way to reach new sportive achievements.
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      • Tracer Dispersion
        Tracer Dispersion
        • COMTESSA stands for Camera Observation and Modelling of 4D Tracer Dispersion in the Atmosphere. COMTESSA’s vision is to elevate the theory and simulation of turbulent tracer dispersion in the atmosphere to a new level by performing completely novel high-resolution 4D measurements.
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      • 3D Flow Field Measurements
        3D Flow Field Measurements
        • Large-volume volumetric flow experiments and their results: The first of these, investigating a thermal plume at low velocities (up to 0.35 m/s) demonstrates the abilities and requirements to reach volume sizes up to and probably beyond one cubic meter.
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      • Tomo PTV Shake the Box
        Tomo PTV Shake the Box
        • A novel approach to the evaluation of time resolved particle-based tomographic data is introduced. By seizing the time information contained in such datasets, a very fast and accurate tracking of nearly all particles within the measurement domain is achieved at seeding densities comparable to (and probably above) the thresholds for tomographic PIV.
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      • Flow Investigations
        Flow Investigations
        • A flow-through nacelle investigated at the Institute of Fluid Mechanics and Aerodynamics of the Universität der Bundeswehr in Munich.
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      • Rev. Laser-Induced Amp. Emission
        Rev. Laser-Induced Amp. Emission
        • The physical mechanism underlying this optically induced phase transition process is discussed. It is demonstrated that this phase change can, in principle, be used for an all-optical “write–read–erase” memory device.
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      • Crystal Nucleation in Microdroplets
        Crystal Nucleation in Microdroplets
        • Crystal nucleation is important to control the product properties in industrial crystallization processes. In this work, we propose a simple method to manufacture such devices from polycarbonate as an alternative to conventional chips made of poly (dimethylsiloxane).
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      • Droplets Physics
        Droplets Physics
        • General knowledge tells us that oil and water do not mix. However, if we understand the mixing of oil and water, we better understand the behavior of spilled coffee, we can predict how long it will take for paint to dry, four our glass of beer to lose its 'fizz' and we can understand why the olive oil and vinegar in out 'vinaigrette' indeed refuses to mix.
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      • PRIOR Proton Microscope
        PRIOR Proton Microscope
        • This work describes details to the principle, design and construction of the proton microscope as well as first measurements and simulations of essential components like magnetic lenses, a collimator and a scintillator screen.
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      • Thin Film Analysis
        accurion thin film analysis
        Thin Film Analysis
        • Ellipsometry is a non-destructive, optical technique for surface characterization. Imaging Ellipsometry in particular combines traditional ellipsometry with optical microscopy and thus enables ellipsometric studies with a lateral resolution down to 1µm. Therefore, it is perfectly suited to study structured or very small samples such as MEMs, FETs, Biochips or flakes of 2D-Materials.
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    • Highspeed
      • CTS Anti-Terror Crash Tests
        CTS Anti-Terror Crash Tests
        • Crash tests on terror defense by road blocks filmed on the premises of the CTS Crash Test Facility in Münster, Germany during a conference in October 2017.
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      • Nature Documentation
        Nature Documentation
        • Blue Paw Artists has been making documentary films for international broadcasters like National Geographic, Discovery and the BBC and domestic clients including ZDF, ARTE, ARD and BR for the last 20 years.
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      • Inventus & AMZ Racing Crash Test
        Inventus & AMZ Racing Crash Test
        • Crash test of the nose (crashbox) of a formula student car from AMZ Racing from the ETH in Zürich – one of the most successful teams is this series!
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      • High-Speed Holographic Microscopy
        High-Speed Holographic Microscopy
        • The high-speed impact of a droplet on a bulk fluid at high Weber number is not well understood but is relevant to the production of marine aerosol by raindrop impact on the sea surface. These splashes produce a subsurface cavity and a crown which closes into a bubble canopy, but a floating layer of immiscible oil, such as a crude oil slick, alters the splash dynamics.
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      • EMPT Welding
        EMPT Welding
        • With the help of a special image intensifier camera and a laser, which illuminates the joint area, a new attempt is made to visualize the impact in electromagnetic pulse welding.
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      • Laser Welding
        Laser Welding
        • Filming the welding process is accompanied by an additional obstacle in addition to the high-speeds: During this process, a bright light covers the actual joint area. The bright process glare can be suppressed by a trick. As the glare is usually whitely, it can be concluded that its intensity is spread almost constantly across all (visible) wavelengths.
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      • Fiber Laser Mode Instabilities
        Fiber Laser Mode Instabilities
        • The temporal behavior of mode instabilities in active large mode area fibers is experimentally investigated in detail. Thus, apart from the onset threshold of mode instabilities, the output beam is characterized using both high-speed camera measurements with 20,000 frames per second and photodiode traces.
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      • Health Care: Sonic Toothbrushes
        Health Care: Sonic Toothbrushes
        • The vibration created by a sonic toothbrush ranges between 200 and 400 Hz. This means 24,000 - 48,000 movements per minute. With high-speed vibration, the sonic vibrating toothbrush can effectively clean the teeth and keep the mouth healthy. But have you ever seen how it works? What happens when it runs at high speed?
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      • Droplets on Waterproof Material
        Droplets on Waterproof Material
        • High-speed imaging of a droplet shows that the droplet behaves like a ball when it falls onto a piece of waterproof material. It will be compressed and bounces into the air after it drops and hits the material. To film this amazing phenomenon, a high-speed camera that can achieve extremely low exposure time, high frame rate and most importantly high sensitivity to capture the moment is required to show you the truth.
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      • Synchrotron X-Ray Radioscopy
        Synchrotron X-Ray Radioscopy
        • We use synchrotron X-ray radioscopy to study particle dynamics and analyse particle motions by applying novel image processing techniques. The aim of this work is to observe interactions between particles or particle clusters and the film surfaces, and to understand how liquid flow in films is reduced and film stability increased by such particles.
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      • AI Monitoring of Laser Welding
        AI Monitoring of Laser Welding
        • With an X-ray experiment at the European Synchrotron ESRF in Grenoble (France), Empa researchers were able to demonstrate how well their real-time acoustic monitoring of laser weld seams works. With almost 90 percent reliability, they detected the formation of unwanted pores that impair the quality of weld seams. Thanks to a special evaluation method based on artificial intelligence (AI), the detection process is completed in just 70 milliseconds.
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    • Industrial
      • EOS 3D Printing
        EOS 3D Printing
        • Additive manufacturing is currently making a giant leap towards mass production. Technological processes have matured and industrial 3D printing has proven to be an efficient manufacturing process. EOS is launching an innovative quality monitoring solution for optical tomography. The heart of the system is the pco.edge sCMOS camera.
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      • Vertical Visualization of Flow Fields
        Vertical Visualization of Flow Fields
        • Flows can be visualized by floating particles or gas bubbles. These particles or gas bubbles must be so small that they follow the flow without distortion.
        Show application
      • Modular Wafer Inspection
        Modular Wafer Inspection
        • Silicon carbide (SiC) is a wide bandgap semiconductor, which is especially used for high-power, high-temperature and high-frequency devices due to its high energy efficiency. Despite great improvements in the material quality of SiC substrates and epitaxial wafers within the last years, critical defects like stacking faults (SFs) and basal plane dislocations (BPDs) can still lead to bipolar degradation and finally to complete failure of the device.
        Show application
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    Do you need technical assistance? Please write a support ticket or call us directly.

    In addition, you will find drivers, software, plugins for third party software, manuals and firmware updates in the download section below.

    The products noted in light gray are discontinued but still available for support.

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    SCIENTIFIC CAMERAS
    • pco.pixelfly™ 1.3 SWIR
    • pco.edge 26 CLHS
    • pco.panda 26 DS
    • pco.panda 26
    • pco.edge 26
    • pco.edge 10 bi CLHS
    • pco.edge 10 bi LT
    • pco.edge 6.2 LE
    • pco.edge 5.5
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    • pco.panda 4.2 bi UV
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    • pco.1300 solar
    • pco.1600
    • pco.2000
    • pco.4000
    • sensicam qe
    • sensicam uv
    HIGHSPEED CAMERAS
    • pco.dimax S1
    • pco.dimax S4
    • pco.dimax HD / HD+
    • pco.dimax HS1
    • pco.dimax HS2
    • pco.dimax HS4
    • pco.dimax cs1
    • pco.dimax cs3
    • pco.dimax cs4
    • pco.1200 hs
    • pco.1200 s
    • hsfc pro
    FLIM CAMERA
    • pco.flim
    INTENSIFIED CAMERAS
    • pco.dicam C8 UHS
    • pco.dicam C8 LT
    • pco.dicam C4 UHS
    • pco.dicam C4 LT
    • pco.dicam C1 UHS
    • pco.dicam C1 LT
    • pco.dicam C1
    • pco.dicam C4
    • pco.dicam C8
    • dicam pro
    • hsfc pro
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