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five-camera 3D wheel aligner features

Extremely High Measurement Accuracy: It is usually equipped with high-resolution cameras. Relying on the collaborative stereoscopic vision sensing capability of multiple cameras, it can capture and analyze the wheel and chassis structure from multiple angles. The measurement accuracy can often reach 0.1 mm or 0.01 degrees, enabling accurate acquisition of key alignment parameters such as wheel camber, toe-in, and caster.
Efficient Data Collection:
Due to the large number of cameras, the speed of image capture and processing is fast. During the process of moving the vehicle or rolling the wheels, it can continuously capture the target at a higher frame rate and quickly obtain complete measurement data. Compared with traditional wheel alignment machines with fewer cameras, it significantly shortens the inspection time for a single vehicle.
Strong Spatial Adaptability:
The layout of five cameras can create a wider and more flexible monitoring field of view. For unconventional vehicle models such as ultra-long, ultra-wide, and ultra-narrow ones, and even vehicles with special chassis structures, it can find suitable shooting and observation angles to successfully complete alignment measurement, overcoming the limitations of ordinary 3D wheel alignment machines in adapting to different vehicle types.
Excellent Anti-Interference Performance:
Even if there are certain changes in on-site light or the vehicle is parked with a slight tilt, the multi-camera system can reduce the interference of factors such as uneven light and incorrect vehicle body posture on measurement through the images of other cameras and algorithm compensation mechanisms. This ensures the reliability and stability of data, and the measurement results are not prone to large deviations due to external interference factors.
Low Failure Risk:
In addition to the camera components, the rest of the mechanical structure of the equipment is relatively simple, without too many complex and vulnerable electronic circuits and moving transmission parts. Moreover, the cameras used are usually industrial-grade durable products with a long service life. During daily use, hardware failures are less likely to occur, and the frequency of equipment shutdown for maintenance is low.
Convenient Operation and Use:
With the advantage of spatial calculation based on multi-camera imaging, the requirements for site flatness during operation are relatively loose.Maintenance workers only need to simply push the vehicle forward or let the wheels roll naturally, and the system can automatically perform calculation and analysis. There is no need for frequent switching of measurement modes or tedious manual calibration steps, which reduces the work intensity and technical threshold of operators.

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