Show sidebar
Close
Close

MIC-T 1.32MP super low readout noise camera

MIC-T 1.32MP super low camera Professional weak optical high speed imaging camera They have very low readout noise level and good performance of the sensitivity,to bring you pure and beautiful picture quality, and perfect combination of sensitivity and speed. Is the pursuit of the details of the performance, high-speed and weak optical imaging applications rare tools.
Close

MIC-T16 Series USB3.0 microscope camera

MIC-T16 Series microscope camera The combination of a USB3.0 high speed data interface, CMOS sensor and built-in ISP image processing engine,results in spectacular image quality at very stable high frame rates. Perfect Color Reproduction USB3.0 High-speed interface
Close

MIC-TH CCD microscope camera

MIC-TH CCD microscope camera 1.4MP 6MP
Close

MIC-TH CMOS microscope camera

MIC-TH CMOS microscope camera

3mp 5mp 10mp

Close

MIC-TSC CCD microscope camera

MIC-TSC CCD microscope camera SXY-CCD420L/CCD480L/540L
Close
Close

MIC-U UN-cooled Camera USB3.0 microscope camera

MIC-U UN-cooled Camera The MIC-U series is designed to meet the needs of customers in more fields. It is designed specifically for industrial environments. The camera's shape has been optimized to be compact and robust. Features Scientific Image Sensor Industrial size Ultra-low light imaging
Close

MIC-W USB3.0 16MP microscope camera

MIC-W USB3.0 16MP microscope camera Feature 1、USB3.0 digital interface 2、Max resolution 4632*3488; 3、Can capture image area for partial image processing 4、Support SDK second development
Close

MIC-YW1600 1″ CCD microscope camera 16MP

MIC-YW1600 1" CCD microscope camera adopts MIC TECH’S new technology and performance standard. The smallest dimension among peers for scientific imaging makes it perfect for micro image capture. ultra-high quantum efficiency 1" Sensor area 1.335um*1.335um pixel size 100Ke- full-well capacity Faster readout by doubling speed 1" area, large field of view The 1" array can not only adapt to more optical interfaces and deliver a greater field of view, but also results in fewer lens switches to find the area of interest on the sample.