List of Specially equipped vehicles products
- classification:Specially equipped vehicles
31~45 item / All 183 items
Since the construction-generated soil will be recycled on-site, the disposal costs for leftover soil and the costs for new purchases will be significantly reduced. 【Disaster Prevention】
- Special Construction Method
The Noto Reconstruction Office of the Ministry of Land, Infrastructure, Transport and Tourism has featured our 3D printer in the Nikkei newspaper.
The official X account of the Noto Reconstruction Office of the Ministry of Land, Infrastructure, Transport and Tourism and the Nihon Keizai Shimbun have published that our 3D printer has been adopted for the reconstruction of Noto. The official X account of the Noto Reconstruction Office introduces the use of our products in the restoration work of the Noto Expressway. Additionally, the Nihon Keizai Shimbun mentions that structures made with our products are being used for the restoration of roads damaged by the Noto Peninsula earthquake, and that the construction period can be shortened by about two weeks, so please take a look.
Contributing to the second stage of public infrastructure! Bringing public infrastructure development to the ground. A robust outdoor storage tank for hazardous materials capable of responding to the ...
- Water Treatment
Repair polishing of automotive bodies and resin parts requiring highly skilled techniques. Sensitive contact with the workpiece using high-speed autonomous correction control of contact force. Automat...
- Specially equipped vehicles
A success story in automotive body repair polishing with European automotive manufacturers! By utilizing FerRobotics' ACT for robotic automation of post-paint repair polishing, we achieve labor reduction in expert polishing tasks that require master-class polishing technology.
Complete control of pressing force with high-speed automatic correction using our technology ACT at the end effector. World-class companies (users) share their success stories in a video. Repair polishing, which is necessary to remove dust and minor scratches mixed in after painting automotive bodies and resin parts without damaging the underlying surface, is truly a task that requires skilled craftsmanship. By utilizing FerRobotics' ACT to automate this expert-level polishing, we achieve labor-saving in expert polishing tasks. Additionally, by rapidly correcting and precisely maintaining the pressing force, we dramatically improve the consumption of consumables and significantly contribute to cost reduction. ■ Benefits: - Dramatic improvement in cycle time due to high-speed autonomous correction control of pressing force. - Automation of manual tasks requiring high skill, achieving reduction in labor costs. - Maintaining a high level of quality, enabling polishing 24/7, 365 days a year. - Significant cost reduction by suppressing the consumption of consumables through high-speed autonomous correction control of pressing force. - Allowing robots to handle 3K jobs. - Avoiding the risk of vibration-related issues through automation. - High ROI (return on investment), allowing for early recovery of capital investment.
Meet strict finishing quality requirements and reduce cycle time! High-speed autonomous correction of contact force increases robot trajectory speed, enabling high-quality automatic polishing.
- Specially equipped vehicles
With high-speed automatic correction of contact force, industrial robots are endowed with human-like senses (tactile perception), automating polishing and grinding processes with the best quality! Dra...
- Specially equipped vehicles
Solve management issues and recruitment difficulties through the automation of skilled and hazardous tasks! Automated polishing that gives industrial robots human-like sensory capabilities with high-s...
- Specially equipped vehicles
Robot polishing that significantly reduces teaching effort! High-speed autonomous correction of pressing force ACF! Automating skilled and hazardous tasks to solve management issues and recruitment difficulties! Automatic polishing that gives industrial robots a human-like sense with a high-speed autonomous control unit for contact force!
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during polishing and grinding processes, which require skilled techniques, at high speed. This technology allows for consistent polishing/grinding with a set contact force, unaffected by variations in processing speed or gravitational load differences due to angles. With the end effector (ACF) utilizing ACT technology, it instantly adjusts to changes in the dimensional tolerances, curved shapes, and non-flat surfaces of the workpiece by rapidly and automatically correcting the stroke's extension and contraction, maintaining contact with the workpiece at the set force. This technology can increase the speed at which devices and robots move along their trajectories, thereby enhancing processing speed and improving cycle times. Additionally, in robotic polishing and grinding, the ACF controls the contact pressure through the extension and contraction of its stroke, eliminating the need to move the heavy robot arm for corrections, which further assists in improving the processing speed of robotic polishing. Moreover, since it automatically corrects tool loads affected by gravity changes due to the robot's angle, it consistently maintains uniform contact pressure from any angle, enabling a finish without processing inconsistencies.
The official YouTube of Far Robotics has uploaded a wealth of videos showcasing various robot polishing applications. Automatic polishing with high-speed automatic pressure correction solves managemen...
- Specially equipped vehicles
Imagine robot polishing that suits your company with examples from Faro Robotics! We have uploaded a wealth of robot polishing application videos on the official Faro Robotics YouTube channel. Solve management challenges with automatic polishing using high-speed automatic pressure correction!
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during processing in polishing and grinding operations, which require skilled techniques, in relation to dimensional tolerances, curved shapes, and non-planar surfaces of the workpiece, at high speed. It also automatically compensates for gravitational loads, allowing for consistent polishing/grinding with a set contact force. End effectors equipped with this technology solve management challenges. This technology can increase the speed at which devices and robots move along their trajectories, thereby enhancing processing speed and improving cycle times. Additionally, in robotic polishing and grinding, the ACF's ability to control contact pressure through the extension and contraction of its stroke means that there is no need to move the heavy robot arm itself for correction, which further assists in improving the processing speed of robotic polishing. Furthermore, since it automatically compensates for tool loads affected by gravity, which changes with the angle of the robot, it maintains a consistent contact pressure from any angle, enabling a finish without processing inconsistencies. Seeing is believing! Please check our website or YouTube (FerRobotics) for application example videos.
Automate the skilled techniques of experienced workers. Uniformly control the polishing process with high-speed automatic correction of contact force for complete automation. Correct for gravitational...
- Specially equipped vehicles
Robot polishing of turbine blades and other curved surfaces requiring specialized techniques is possible with high-speed automatic correction control of pressing force. Gravity compensation is also im...
- Specially equipped vehicles
An end effector that realizes the robotic automation of curved surface polishing, which is a skilled artisan technique! Robot polishing of curved surfaces, such as turbine blades that require specialized skills, is made possible with high-speed automatic correction control of pressing force. Gravity compensation is also implemented to reduce teaching effort!
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during polishing and grinding processes, which require skilled techniques, at high speed. This technology allows for consistent polishing/grinding at the set contact force, unaffected by variations in processing speed or gravitational load differences due to angles. With the end effector (ACF) utilizing ACT technology, it quickly and automatically compensates for changes in dimensional tolerances, curved shapes, and non-flat surfaces by instantly adjusting the stroke, maintaining contact with the workpiece at the set force. This technology can increase the speed of the device or robot's trajectory, thereby enhancing processing speed and improving cycle times. Additionally, in robotic polishing and grinding, the ACF controls the contact pressure through the expansion and contraction of its stroke, eliminating the need to move the heavy robot arm for corrections, which further assists in improving processing speed. Furthermore, it automatically compensates for tool load changes due to gravity based on the robot's angle, ensuring consistent contact pressure from any angle and enabling a finish without processing inconsistencies.
Automation of labor-intensive R-shaped and complex masking tasks without wrinkles or bubbles. Enabling automation of processes that were previously impossible, with high-speed operations.
- Specially equipped vehicles
【FerRobotics】Exhibiting at the 2023 International Robot Exhibition! Displaying multiple types of robotic systems for polishing automation solutions! Achieving the automation of skilled tasks such as polishing and grinding, which were previously considered impossible, along with reduced cycle times and high-quality finishes.
Our unique technology (Autonomous Contact Force Correction Technology (ACT)) enables end effectors to automate polishing and grinding of skilled tasks that were previously deemed impossible, achieving shorter cycle times and high-quality finishes. In response to variations in workpiece dimensions and other changes in the processing target, it autonomously corrects the contact force instantly, ensuring uniform contact force during processing. Gravity correction is also performed autonomously, applying uniform contact force regardless of angle, and easily maintaining finishing quality for workpieces with R shapes, among others. Additionally, due to the high correction speed, even when increasing the robot's trajectory speed, the contact force can be kept constant, allowing for processing and achieving reduced cycle times. 2023 International Robot Exhibition Venue: Tokyo Big Sight Dates: November 29 (Wed) - December 2 (Sat), 2023 Booth: W3-36 You can see the world's technology up close.
High-speed autonomous correction of contact force increases the robot's trajectory speed, while autonomous correction of gravitational load controls the pressing force at high speed without being affe...
- Specially equipped vehicles
【FerRobotics】Exhibiting at the 2023 International Robot Exhibition! Displaying multiple types of robotic systems for polishing automation solutions! Achieving the automation of skilled tasks such as polishing and grinding, which were previously considered impossible, along with reduced cycle times and high-quality finishes.
Our unique technology (Autonomous Contact Force Correction Technology (ACT)) enables end effectors to automate polishing and grinding of skilled tasks that were previously deemed impossible, achieving shorter cycle times and high-quality finishes. In response to variations in workpiece dimensions and other changes in the processing target, it autonomously corrects the contact force instantly, ensuring uniform contact force during processing. Gravity correction is also performed autonomously, applying uniform contact force regardless of angle, and easily maintaining finishing quality for workpieces with R shapes, among others. Additionally, due to the high correction speed, even when increasing the robot's trajectory speed, the contact force can be kept constant, allowing for processing and achieving reduced cycle times. 2023 International Robot Exhibition Venue: Tokyo Big Sight Dates: November 29 (Wed) - December 2 (Sat), 2023 Booth: W3-36 You can see the world's technology up close.
Achievements in the automotive industry are proof of improvement results. Fully automated polishing system for removing spot welding spatter on white bodies. Autonomous correction control of contact f...
- Specially equipped vehicles
【FerRobotics】Exhibiting at the 2023 International Robot Exhibition! Displaying multiple types of robotic systems for polishing automation solutions! Achieving the automation of skilled tasks such as polishing and grinding, which were previously considered impossible, along with reduced cycle times and high-quality finishes.
Our unique technology (Autonomous Contact Force Correction Technology (ACT)) enables end effectors to automate polishing and grinding of skilled tasks that were previously deemed impossible, achieving shorter cycle times and high-quality finishes. In response to variations in workpiece dimensions and other changes in the processing target, it autonomously corrects the contact force instantly, ensuring uniform contact force during processing. Gravity correction is also performed autonomously, applying uniform contact force regardless of angle, and easily maintaining finishing quality for workpieces with R shapes, among others. Additionally, due to the high correction speed, even when increasing the robot's trajectory speed, the contact force can be kept constant, allowing for processing and achieving reduced cycle times. 2023 International Robot Exhibition Venue: Tokyo Big Sight Dates: November 29 (Wed) - December 2 (Sat), 2023 Booth: W3-36 You can see the world's technology up close.
High-speed autonomous correction of contact force and autonomous correction of tool gravity load. By increasing the robot's trajectory speed, stable high-quality automatic polishing is possible with u...
- Specially equipped vehicles
Mold polishing can now be automated. Molds with free-form surfaces. An end effector that autonomously adjusts to maintain constant contact force at high speed and also autonomously corrects the tool's gravitational load. With high-speed automatic correction control, the robot's trajectory speed is increased, enabling stable, high-quality automatic polishing with uniform force regardless of the angle!
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during processing in grinding and polishing, which require skilled techniques, in response to dimensional tolerances, curved shapes, and non-planar surfaces of the workpiece, at high speed. It also automatically adjusts for gravitational loads, allowing for consistent grinding/polishing with a set contact force. This technology increases the speed at which devices and robots can move along their trajectories, thereby enhancing processing speed and improving cycle times. Additionally, in robotic polishing and grinding, the ability to control the contact pressure through the expansion and contraction of the ACF itself means that there is no need to move the heavy robot arm for corrections, which further assists in improving the processing speed of robotic polishing. Furthermore, since it automatically corrects tool loads affected by gravity, which changes with the angle of the robot, it maintains a consistent contact pressure from any angle, enabling a finish without processing inconsistencies. Seeing is believing! Please check our website or YouTube (FerRobotics) for application example videos.
Robot polishing that inherits the craftsmanship. Automation of sandpaper changes. An end effector that instantly auto-corrects the most important pressing force for polishing.
- Specially equipped vehicles
FerRobotics creates a new standard for polishing automation! Complete automation of the polishing of the roof joint area of automotive bodies with pressure correction control.
- Specially equipped vehicles
Success story of the introduction of an automatic polishing system with a European automobile manufacturer!
FerRobotics creates a new standard in polishing automation! The polishing of the roof joint area of automotive bodies is fully automated with pressure correction control. Our technology, ACT, allows for complete control of pressure with a high-speed automatic correction end effector. Users share their success stories in the video. The complete automation of grinder finishing after welding/brazing in the roof joint area of vehicles significantly improves finishing quality and allows for better management of abrasive material consumption by maintaining consistent pressure. The most important factor for high-quality post-processing is delicate and smooth grinding. The better the polishing finish, the higher the quality of the finish, making it a perfect match for high-end product demands. ■ Benefits: - High-speed autonomous pressure correction control increases the robot's trajectory speed, dramatically improving productivity and cycle time for polishing and brushing. - Maintains a high level of quality, enabling polishing to be performed 24/7. - High-speed autonomous pressure correction control reduces the consumption of consumables, leading to cost savings.
Robotic automation with uniform force application for R-shaped objects such as difficult-to-teach two-wheeled tanks and pipes, utilizing high-speed autonomous correction of pressing force. Improved fi...
- Specially equipped vehicles
The polishing of the R-shaped surface of the two-wheeled tank has significantly reduced teaching effort through autonomous pressure correction. Robots can be used to apply uniform force on tanks and pipes that are difficult to teach. This improves finishing quality and cycle time!
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure that occurs during polishing and grinding processes, which require skilled techniques, at high speed. This technology allows for consistent polishing and grinding with the set contact force, unaffected by variations in processing speed or gravitational load differences due to angles. With the end effector (ACF) utilizing ACT technology, dimensional tolerances and changes in free-form surfaces of the workpiece are automatically corrected at high speed through instantaneous stroke adjustments, maintaining contact with the workpiece at the set force. This technology enables an increase in the trajectory speed of devices and robots, thereby enhancing processing speed and improving cycle times. Additionally, it automatically corrects the gravitational load of the tool that varies with the robot's angle, ensuring a consistent pressing force from any angle and allowing for a finish without processing inconsistencies. ◆Challenges addressed by automating polishing and grinding using our technology: - Increased work speed and improved cycle times, leading to reduced labor costs and profit generation. - Mitigation of the risk associated with the succession of skilled workers. - Relief for workers from the "three K" jobs (dirty, dangerous, and difficult). - High reproducibility and consistent work 24/7. - Reduction of consumable usage and cost savings through processing with a constant pressing force.
An end effector that enables automation systems for high-speed processing and high-quality finishing, allowing for the craftsmanship techniques (polishing, grinding) and hazardous tasks that have been...
- Specially equipped vehicles
A must-see for those who have failed in automation polishing in the past! Challenge yourself with FerRobotics' high-speed autonomous correction technology for contact force! High-speed autonomous correction of contact force improves processing quality and enables increased robot trajectory speed. It autonomously corrects gravitational loads and controls processing from any direction with uniform force, achieving high-quality and stable automatic polishing.
FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during polishing and grinding processes, which require skilled techniques, at high speed. This technology allows for consistent polishing/grinding at the set contact pressure, unaffected by variations in processing speed or gravitational load differences due to angles. With the end effector (ACF) utilizing this ACT technology, it instantly and automatically compensates for changes in dimensional tolerances, curved shapes, and non-flat surfaces through rapid stroke adjustments, maintaining contact with the workpiece at the set force. This technology increases the speed of the device or robot's trajectory, enhances processing speed, and improves cycle time. The product lineup offers a wide range of options for the best selection for each application! ACF: Head only ACF-K: Versatile tool exchangeable package AAK: Package with angle grinder (available in light grinding and heavy grinding types) AOK: Package with random orbital sander (double action) ASK: Polishing of roof joint areas and brushing of door areas for the automotive industry ABG: Belt grinder