Product overviewMIK-EC59 is a medical-grade 3D fluorescence camera module designed for endoscopic and minimally invasive applications, combining integrated binocular optics with front-end dual CMOS imaging to deliver true 3D visualization.
Key features- II-generation 3D fluorescence technology — improves depth perception up to 70%
- Integrated binocular camera with ultra-light design
- Dual-channel / front-end dual-lens optical system for true 3D capture
- Chip-on-Tip architecture with dual CMOS direct imaging
- Pixel-level binocular registration to minimize user dizziness
- Scene-linked parallax adjustment for realistic 3D depth
- Display with 2D/3D one-click switching
- Three programmable/customizable buttons for workflow integration
- Ingress protection: IPX8 waterproof
- Thermal conductivity anti-fog design
- Sterilization capability: supports low-temperature plasma and ethylene oxide
- Low-temperature plasma sterilization endurance: >500 cycles
- Video output: supports 4K and 1080p
- Mechanical options: multiple insertion-tube lengths and appearance variants for robotic or specific clinical needs
Standards & Compliance- Safety: complies with GB9706.1-2020 and GB9706.218-2021
- Electromagnetic compatibility: complies with YY 9706.102-2021, GB9706.218-202 and IEC60601-1-2:2014
Technical specifications- Model family: MIK-EC59
- Imaging technology: II-generation 3D fluorescence
- Depth perception improvement: up to 70%
- Optical system: integrated binocular camera, dual-channel/front-end dual lens
- Sensor/capture: chip-on-tip with dual CMOS direct imaging
- 3D registration: pixel-level binocular registration
- Parallax: scene-linked parallax adjustment
- Display modes: 2D and 3D with one-click switching
- User controls: 3 programmable/customizable buttons
- Ingress protection: IPX8
- Anti-fog: thermal conductivity and anti-fog design
- Sterilization: low-temperature plasma and ethylene oxide; low-temperature plasma >500 cycles
- Video output: 4K and 1080p supported
- Mechanical variants: multiple insertion lengths; multiple appearance versions for robotic integration