Faro Creaform's HandySCAN 3D is a line of handheld 3D scanners for industrial measurement, boasting over 20 years of development. The device delivers high accuracy, portability, and fast scanning speeds, revolutionizing how businesses measure and inspect product quality.
About two decades ago, Faro Creaform made a breakthrough in 3D measurement by introducing the world's first handheld laser 3D scanner. The arrival of the HandySCAN 3D ushered in a new era for industrial measurement, enabling highly accurate 3D scanning directly on the production floor.
Previously, measurement systems relied on stationary CMMs in laboratories. This resulted in time-consuming and costly measurement processes. The advent of handheld 3D scanners has enabled businesses to perform rapid measurements right on the production site.

For over 20 years, Faro Creaform has continuously developed new 3D scanning solutions to improve accuracy, speed, and industrial application.
The technologies developed by the company have become the benchmark for the mobile 3D measurement industry. Today's handheld 3D scanning systems not only serve quality control but also support product design, reverse engineering, and the digitization of technical data.
Faro Creaform's continuous innovation has helped shape how businesses approach measurement technology in modern manufacturing.
2005 marked the birth of HandySCAN 3D, the first handheld laser 3D scanner with self-positioning capabilities. This device allows users to scan 3D data directly without the need for an external tracking system.
This technology eliminates many limitations of traditional measurement methods and provides accurate measurements even in vibrating production environments.

In 2010, Faro Creaform continued to expand its measurement ecosystem with the introduction of the HandyPROBE mobile probe system and the MetraSCAN 3D scanner.
These systems utilize optical tracking technology combined with dynamic referencing. This allows measurements to be performed directly on the production floor without being affected by vibrations or part movement.
This technology is particularly suitable for industries such as automotive, aerospace, and machine manufacturing.
In 2014, Faro Creaform introduced the GoSCAN series, making 3D scanning technology more accessible to a wider range of users.
These devices can operate with very short setup times and integrate a hybrid positioning system, combining geometric tracking, markers, and textures. This allows users to perform 3D scans quickly without complex preparation.

That same year, Faro Creaform launched the HandySCAN 700, a new generation of handheld 3D scanners with significantly faster data acquisition speeds than previous versions.
This device improves quality control efficiency in manufacturing and delivers higher-resolution 3D data.
This improvement allows businesses to widely apply 3D scanning in product inspection, deviation analysis, and production process optimization.
One of the major challenges of 3D scanning technology is measuring reflective or dark surfaces. To address this, Faro Creaform developed the MetraSCAN 750 system, capable of direct scanning without surface treatment
This technology saves preparation time and increases efficiency in industrial quality control applications.
As automation became a trend in manufacturing, Faro Creaform introduced the CUBE-R automated 3D scanning solution.
This system integrates a 3D scanner with an industrial robot to form an automated measurement cell. This allows businesses to perform quick and repeatable dimensional checks with high accuracy.
In 2019, Faro Creaform launched the HandySCAN 3D BLACK Series with accuracy meeting ISO 17025 standards and complying with VDI VDE 2634 standards.
The device uses green laser technology, enabling faster data acquisition and achieving accuracy up to 25 microns.
This makes the series a reliable measurement solution for high-end quality control applications.

To meet the needs of sheet metal inspection in mass production, Faro Creaform developed the MetraSCAN R BLACK Elite HD system.
This solution allows for the detection of small deviations and deformations on stamped metal parts with high accuracy.
This helps manufacturers improve product quality and reduce errors in the production line.
Recently, Faro Creaform introduced the HandySCAN 3D MAX Series, specifically designed for measuring large-sized parts.
With a wide scanning area and multiple scanning modes, this device is suitable for industries such as energy, aerospace, and large-scale equipment manufacturing.
Faro Creaform continues to develop its measurement ecosystem with the Faro Creaform Metrology Suite software platform and the Faro Creaform OS operating system.
This ecosystem connects 3D scanners, software, and workflows in a unified platform. This optimizes the user experience and enhances measurement efficiency.
In the future, new generations of HandySCAN will continue to improve the flexibility, accuracy, and performance of handheld 3D scanning technology.
In the engineering field, technological solutions are often divided into two groups. The first group consists of essential tools for solving engineering problems. The second group is merely supplementary.
Faro Creaform focuses on developing solutions that are truly necessary for businesses. The company's technologies are designed to address real-world challenges in measurement and quality control.
As a result, HandySCAN 3D scanners have become one of the most important devices in many modern industries.
For over 20 years, HandySCAN 3D has contributed to completely changing the way businesses measure and inspect product quality. Combining high accuracy, portability, and the ability to operate directly on the production floor, this line of machines continues to maintain its leading position in the industrial 3D scanning field.
Faro Creaform's continuous innovation shows that 3D scanning technology still has significant potential for future growth. Further improvements will continue to enhance production efficiency and support businesses in their industrial digital transformation.
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