Home/Latest News/First Five-Mode Integration! Transfer Vision Launches 3D Industrial Camera Epic Eye Laser M V3 for Transparent Objects and Intense Sunlight Imaging
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Product Launch2026.06.16

First Five-Mode Integration! Transfer Vision Launches 3D Industrial Camera Epic Eye Laser M V3 for Transparent Objects and Intense Sunlight Imaging

The new generation 'all-round' 3D industrial camera Epic Eye Laser M V3 is officially released! It overcomes the long-standing challenges of 3D imaging for transparent objects, outdoor strong light environments, black reflective materials, and highly reflective materials. Five imaging modes, 8 million pixel 3D color point cloud, up to 48 million pixel RGB image, six resolutions freely combinable, resistant to 600,000 Lux strong light, top-tier in all aspects!

Based on years of experience in industrial vision and understanding of intelligent manufacturing needs across industries, Transfer Vision officially launches the indoor and outdoor general-purpose 3D industrial camera Epic Eye Laser M V3 today. This new product embodies Transfer Vision's full-stack technology accumulation and practical experience over the years, overcoming four major industry pain points: imaging under outdoor strong light, transparent object recognition, highly reflective object recognition, especially black reflective object recognition, while retaining the 'software-hardware-computing integration' intelligent innovation architecture. It meets the core demands of current enterprises for 'cost reduction in operations' and 'efficiency enhancement in applications', driving global industrial vision from 'indoor specialized' to 'full-scenario general-purpose'.

Full-Scenario General-Purpose

Breaking Indoor and Outdoor Boundaries

For a long time, 3D industrial cameras were limited by technical bottlenecks, deployable only in indoor controlled environments. Issues such as outdoor strong light, extreme working conditions, and limited installation space severely constrained the application boundaries of industrial automation. Based on extensive feedback from project sites, Transfer Vision has carried out a full-chain innovation from hardware design to optoelectronic architecture for Epic Eye Laser M V3, completely breaking this industry shackle.

Space Adaptation Without Dead Zones, Small Size Handles Large Scenes

The camera body is only as large as a mainstream smartphone, yet equipped with an ultra-wide field-of-view lens. A single device can cover ultra-large operation scenarios such as full vehicle scanning, container unloading, large workpiece positioning, and complex logistics depalletizing. The ultra-lightweight design allows flexible mounting on various robot end-effectors, reducing end-load while significantly improving robot motion sensitivity and operation efficiency, perfectly solving the common problem of tight installation space in industrial sites.

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Full Environmental Tolerance, Stable Operation in Indoor and Outdoor Full Conditions

Addressing the core challenge of strong light imaging in outdoor scenarios, Epic Eye Laser M V3 achieves industry-leading ambient light resistance of over 600,000 Lux, fearless of direct noon sunlight and strong glare interference. It has been validated through actual project implementation, ending the history of unstable imaging for 3D industrial cameras outdoors.

Built-in Five Imaging Modes, Flexible Online Switching

This product innovatively integrates five imaging modes: structured light, swing line scan, fixed line scan, triple video stream, and binocular passive imaging. Users can freely switch in software according to different application scenarios, allowing a single device to meet multiple scenario needs, maximizing device value. Equipped with Wi-Fi wireless connection, on-site engineers can perform commissioning, maintenance, and upgrades without plugging or unplugging cables, greatly reducing operation and maintenance difficulty.

Standard SDK Interface Open, Fully Supports Secondary Development

To adapt to customization needs across different industries, the product provides a standardized SDK interface, fully compatible with mainstream development languages such as C++, C#, and Python, supporting Windows, Linux, and domestic systems like Kylin and UnionTech UOS. It encapsulates core functional modules such as camera parameter control and real-time data acquisition, accompanied by complete development documentation and sample code to help customers quickly complete secondary development and system integration.

ParameterLaser M V3
Baseline Length110mm
Recommended Working Distance500~1500mm
Optimal Working Distance900mm
Near Field of View625mm×650mm@0.5m
Far Field of View1730mm×1840mm@1.5m
VDI/VDE Measurement Accuracy0.06mm@1.5m
Z-axis Single Point Repeatability0.04mm@0.7m
Accuracy Error<0.15%
Pixel Count2 million, 8 million
ResolutionDepth: 2840*2840, 1420*1420; RGB: 8000*6000, 4000*3000, 2000*1500
Typical Acquisition Time0.3s~0.9s
Power Supply24V ⎓ 2.5A
Average Power Consumption16W
Standby Power Consumption6.7W
Dimensions (L*W*H)155mm×80mm×66mm
Weight0.95kg

Ultimate Imaging Capability

Overcoming Complex Material Challenges

Precise perception is the core value of industrial vision. In past project practices, we found that 'precision and efficiency cannot be achieved simultaneously' and 'complex materials have imaging blind spots' are two core obstacles restricting industrial vision projects. Epic Eye Laser M V3 achieves comprehensive surpassing in imaging precision, speed, and adaptability through the deep integration of optoelectronic technology and algorithms.

High-Definition Color Imaging, Rich Details and Truer Data

The camera supports simultaneous output of 8 million pixel high-precision color point cloud and 48 million pixel ultra-high-definition color 2D image. While capturing micron-level spatial geometric information, it perfectly restores surface texture, color, and text details of objects. This provides richer training samples for AI deep learning algorithms, achieving a qualitative leap in the accuracy of target recognition and defect detection, especially suitable for scenarios with extremely high detail requirements such as electronics manufacturing and automotive parts inspection.

Multi-Resolution Free Switching, Flexibly Adapting to Production Rhythm

To meet the diverse production needs of industrial sites, Epic Eye Laser M V3 innovatively supports multi-resolution free combination switching. Users can flexibly schedule between 8 million / 2 million point clouds and 48 million / 12 million / 3 million color images according to task type: for high-precision visual inspection tasks, enable the highest resolution mode; for high-frequency pipeline grasping scenarios, switch to high frame rate mode, supporting up to 100 fps real-time 2D video stream output with smooth and blur-free images, achieving the perfect balance between efficiency and precision.

Self-Developed Image Algorithms, Solving Complex Material Imaging 'Black Holes'

Addressing long-standing imaging problems in industrial vision caused by outdoor strong light, black reflective materials, highly reflective materials, and transparent materials, Transfer Vision leverages self-developed optoelectronic hardware and unique image algorithms to create mature and feasible solutions. Whether it is high-reflectivity metal workpieces, highly light-absorbing black rubber, or refraction-complex transparent glass bottles, this camera can generate dense, complete, and high-quality 3D point clouds. The standard intelligent auto-exposure algorithm can complete adaptive light adjustment in milliseconds, perfectly handling extreme lighting environments such as direct sunlight, low light on cloudy days, and frequent indoor-outdoor switching.

Software-Hardware-Computing Integration

Industrial PC Not Mandatory

The traditional 'camera + industrial PC' split architecture has gradually exposed drawbacks such as complex wiring, high communication latency, high integration cost, and difficult maintenance. To solve this problem, Epic Eye Laser M V3 continues the design philosophy of 'software-hardware-computing integration'.

The camera has a built-in high-computing-power edge computing platform, directly solidifying core algorithms originally dependent on external hosts locally in the camera. Without the need for an external industrial PC, it can independently complete complex tasks such as image instance segmentation, 3D point cloud processing, workpiece posture estimation, and robot trajectory planning. This architecture not only significantly simplifies the hardware components of the automation system and reduces on-site wiring workload but also fundamentally eliminates system instability caused by communication latency. According to estimates, automation solutions using this camera can reduce overall integration cost by over 30%, and post-maintenance expenses are also significantly reduced.

At the same time, to meet the ultra-high computing power requirements of some special scenarios, Epic Eye Laser M V3 also retains compatibility with external industrial PCs, allowing users to flexibly choose deployment methods according to actual business needs, balancing system simplicity and expandability.

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