USB 3.0 Microscope Camera

  • BUC5IC-400BM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE2020BSI Sensor, 4.2MP)

    BUC5IC-400BM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE2020BSI 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-400AM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE2020e Sensor, 4.2MP)

    BUC5IC-400AM TE-Cooling M52/C-mount USB3.0 CMOS Microscope Camera (GSENSE2020e 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-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-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.

  • BUC5IB-170C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX432 Sensor, 1.7MP)

    BUC5IB-170C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX432 Sensor, 1.7MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-2100C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX269 Sensor, 21.0MP)

    BUC5IB-2100C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX269 Sensor, 21.0MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-170M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX432 Sensor, 1.7MP)

    BUC5IB-170M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX432 Sensor, 1.7MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-700M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX428 Sensor, 7.0MP)

    BUC5IB-700M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX428 Sensor, 7.0MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-2600M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX571 Sensor, 26.0MP)

    BUC5IB-2600M Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX571 Sensor, 26.0MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-700C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX428 Sensor, 7.0MP)

    BUC5IB-700C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX428 Sensor, 7.0MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.

  • BUC5IB-2600C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX571 Sensor, 26.0MP)

    BUC5IB-2600C Cooled C-mount USB3.0 CMOS Microscope Camera (Sony IMX571 Sensor, 26.0MP)

    BUC5IB series cameras have adopted SONY Exmor 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 -42 degree 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.