Products

  • BUC6A-280M C-mount USB3.0 CCD Microscope Camera (Sony ICX674ALG Sensor, 2.8MP)

    BUC6A-280M C-mount USB3.0 CCD Microscope Camera (Sony ICX674ALG Sensor, 2.8MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-280C C-mount USB3.0 CCD Microscope Camera (Sony ICX674AQG Sensor, 2.8MP)

    BUC6A-280C C-mount USB3.0 CCD Microscope Camera (Sony ICX674AQG Sensor, 2.8MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-600M C-mount USB3.0 CCD Microscope Camera (Sony ICX694ALG Sensor, 6.0MP)

    BUC6A-600M C-mount USB3.0 CCD Microscope Camera (Sony ICX694ALG Sensor, 6.0MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-600C C-mount USB3.0 CCD Microscope Camera (Sony ICX694AQG Sensor, 6.0MP)

    BUC6A-600C C-mount USB3.0 CCD Microscope Camera (Sony ICX694AQG Sensor, 6.0MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-900M C-mount USB3.0 CCD Microscope Camera (Sony ICX814ALG Sensor, 9.0MP)

    BUC6A-900M C-mount USB3.0 CCD Microscope Camera (Sony ICX814ALG Sensor, 9.0MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-900C C-mount USB3.0 CCD Microscope Camera (Sony ICX814AQG Sensor, 9.0MP)

    BUC6A-900C C-mount USB3.0 CCD Microscope Camera (Sony ICX814AQG Sensor, 9.0MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC6A-1200M C-mount USB3.0 CCD Microscope Camera (Sony ICX834ALG Sensor, 12.0MP)

    BUC6A-1200M C-mount USB3.0 CCD Microscope Camera (Sony ICX834ALG Sensor, 12.0MP)

    BUC6A series USB3.0 CCD digital camera adopt Sony ExView HAD CCD sensor as the image capture device. Sony ExView HAD CCD is a CCD that drastically improves light efficiency by including near infrared light region as a basic structure of HAD (Hole-Accumulation-Diode) sensor. USB3.0 is used as the data transfer interface.

  • BUC5IC-2400AC TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX410 Sensor, 24MP)

    BUC5IC-2400AC TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX410 Sensor, 24MP)

    BUC5IC series camera adopts SONY Exmor or GSENSE with big pixel size or full-frame CMOS sensor as the image-picking device and USB3.0 is used as the transfer interface to increase the frame rate.

    With the two-stage peltier cooling sensor chip to -40°C below ambient temperature. This will greatly increase the signal to noise ratio and decrease the image noise. Smart structure is designed to assure the heat radiation efficiency and avoid the moisture problem. Electric fan is used to increase the heat radiation speed.

  • BUC5IC-6200AC TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX455 Sensor, 61MP)

    BUC5IC-6200AC TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX455 Sensor, 61MP)

    BUC5IC series camera adopts SONY Exmor or GSENSE with big pixel size or full-frame CMOS sensor as the image-picking device and USB3.0 is used as the transfer interface to increase the frame rate.

    With the two-stage peltier cooling sensor chip to -40°C below ambient temperature. This will greatly increase the signal to noise ratio and decrease the image noise. Smart structure is designed to assure the heat radiation efficiency and avoid the moisture problem. Electric fan is used to increase the heat radiation speed.

  • BUC5IC-400CM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE400BSI Sensor, 4.2MP)

    BUC5IC-400CM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE400BSI Sensor, 4.2MP)

    BUC5IC series camera adopts SONY Exmor or GSENSE with big pixel size or full-frame CMOS sensor as the image-picking device and USB3.0 is used as the transfer interface to increase the frame rate.

    With the two-stage peltier cooling sensor chip to -40°C below ambient temperature. This will greatly increase the signal to noise ratio and decrease the image noise. Smart structure is designed to assure the heat radiation efficiency and avoid the moisture problem. Electric fan is used to increase the heat radiation speed.

  • BUC5IC-6200AM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX455 Sensor, 61MP)

    BUC5IC-6200AM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (Sony IMX455 Sensor, 61MP)

    BUC5IC series camera adopts SONY Exmor or GSENSE with big pixel size or full-frame CMOS sensor as the image-picking device and USB3.0 is used as the transfer interface to increase the frame rate.

    With the two-stage peltier cooling sensor chip to -40°C below ambient temperature. This will greatly increase the signal to noise ratio and decrease the image noise. Smart structure is designed to assure the heat radiation efficiency and avoid the moisture problem. Electric fan is used to increase the heat radiation speed.

  • BS-1008 Monocular Zoom Microscope Lens

    BS-1008 Monocular Zoom Microscope Lens

    BS-1008 adopts semi-apochromatic parallel optical imaging system, and uses advanced multi-layer coating technology, which perfectly correct the imaging on the edge of field of view, get high-resolution and high contrast images, and naturally restore the true colors of observed objects.

    For applications that require different magnification, Auxiliary Lens or infinity objectives with different magnification can be attached to the front end of the Middle Zoom Module.

    For application that require different sensor size, TV Lens with different magnification can be attached to the back end of the Middle Zoom Module.