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This is a derivative model of the already released "Megalover Ver.3.0," equipped with a battery that has approximately five times the capacity compared to previous models. Additionally, by placing two drive wheels at the front and rear center of the body, it enables pivot turns around the center of the body. This product balances stable operational performance provided by the large-capacity battery with a structural design that allows for stable and reliable turning even when many devices are mounted. It is suitable for serious demonstration experiments aimed at practical application and for research and development purposes that require long operational times. 【Features】 ■ Drive wheels are positioned at the center of the body, enabling zero-radius turning ■ Equipped with a large-capacity Li-Fe battery, extending operating time ■ Control via wired/wireless connection is possible ■ Programmable with Arduino IDE ■ Adopts an easily expandable aluminum frame ■ Standard equipped with an emergency stop switch ■ Compatible with control via ROS (ROS 1, ROS 2) ■ Supports a variety of optional accessories
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Free membership registrationThis product is a derivative model of the "Mecanum Rover Ver. 3.0" equipped with a high-capacity battery. It maintains a portable weight of approximately 40 kg while achieving about four times the operating time (based on experiments and calculations conducted in our company). It inherits excellent features such as an aluminum chassis that facilitates additional processing and customization, compatibility with Arduino IDE for easy software development, support for ROS 1 and ROS 2 for flexible and advanced control, and a direct drive type in-wheel motor that enables quiet operation. By equipping it with a high-capacity battery, it can operate for extended periods even when large power-consuming expansion devices are attached, further expanding the range of applications for the cart robot. 【Features】 ■ Equipped with a high-capacity Li-Fe battery to extend operating time ■ Four-wheel Mecanum wheel structure achieving a portable weight of approximately 40 kg ■ Control possible via wired/wireless connection ■ Programmable with Arduino IDE ■ Adopts an easily expandable aluminum frame ■ Standard emergency stop switch included ■ Compatible with control via ROS (ROS 1, ROS 2) ■ Supports a variety of optional accessories
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Free membership registrationJAKA Zu 18 features an easy-to-use GUI visual programming interface, lowering the barrier to entry for specialized knowledge and making it easy to implement. It has a payload capacity of 18 kg and a working range of 1,073 mm. It offers high positioning accuracy and can handle tasks ranging from lifting to delicate and precise operations. It can be utilized for various tasks such as packaging, palletizing, welding, and screw tightening. 【Main Features】 - Low barrier to entry for specialized knowledge with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring needed with Wi-Fi communication (wired operation is also possible) - High speed and high precision - High cost performance - Space-saving
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Free membership registrationJAKA Zu 12 adopts an easy-to-use GUI visual programming, lowering the barrier for expertise and making it easy to implement. It has a payload capacity of 12 kg and a working range of 1,327 mm. Despite its high payload capacity, it is relatively lightweight and can be mounted at any angle. It offers high positioning accuracy and can be utilized for tasks such as packaging and palletizing. 【Main Features】 - Low barrier for expertise with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring needed with Wi-Fi communication (wired operation is also possible) - High speed and high precision - High cost performance - Space-saving
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Free membership registrationJAKA Zu 7 adopts an easy-to-use GUI visual programming, lowering the barrier for expertise and making it easy to implement. It has a portable weight of 7kg and a working range of 819mm. It offers high positioning accuracy and can be utilized for transporting heavy products. 【Main Features】 - Low barrier for expertise with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring needed with Wi-Fi communication (wired operation is also possible) - High speed and high precision - High cost performance - Space-saving
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Free membership registrationThe JAKA Zu 5 adopts an easy-to-use GUI visual programming interface, lowering the barrier for expertise and making it easy to implement. It has a payload capacity of 5kg and a working range of 954mm. Despite its compact size, it is an ideal collaborative robot for automating tasks that require a high level of precision. It offers high positioning accuracy and can be utilized for repetitive tasks such as picking, welding, and assembly. 【Main Features】 - Low barrier to expertise with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring needed with Wi-Fi communication (wired operation is also possible) - High speed and high precision - High cost performance - Space-saving
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Free membership registrationJAKA Zu 3 features an easy-to-use GUI visual programming interface, lowering the barrier for expertise and making it easy to implement. It has a portable weight of 3kg and a working range of 626mm. This collaborative robot is lightweight and space-saving, making it suitable for tabletop use. It offers high positioning accuracy and can be utilized for assembly tasks of precision equipment such as screw tightening and electronic components. 【Main Features】 - Low barrier for expertise with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring needed with Wi-Fi communication (wired operation is also possible) - High speed and high precision - High cost performance - Space-saving
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Free membership registrationThe JAKA MiniCobo adopts an easy-to-use GUI visual programming interface, lowering the barrier to entry for expertise and making implementation simple. It has a payload capacity of 1 kg and a working range of 580 mm. It is lightweight, compact, and highly flexible, yet easy to install. It is particularly suitable for the education sector. 【Main Features】 - Low barrier to expertise with GUI visual programming - Safety ensured with feedback control - No unnecessary wiring required with Wi-Fi communication (wired operation is also possible) - High speed and precision - High cost performance - Space-saving
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Free membership registrationThis product, equipped with a four-wheel independent steering mechanism, stands out in our lineup of ROS-compatible research and development mobile robots, represented by the "Megalover Ver.3.0," particularly for its excellent quietness and controllability. It achieves a balance between "silent operation that does not interfere with voice recognition" and "high positioning accuracy, which is fundamental for automatic control," both of which are increasingly demanded in the fields of transport robots and communication robots today. It is suitable for research and development applications of advanced service robots and transport robots in special environments. In this product, the excellent basic performance of the 4WDS rover is maintained while increasing the payload capacity to approximately 120 kg, providing ample load-bearing performance even when equipped with various measuring instruments and computing devices. 【Features】 ■ Achieves a payload capacity of approximately 120 kg while enabling quiet and precise operation ■ Independent steering for all drive wheels (4WDS structure) ■ Control possible via wired/wireless connection ■ Complex control can be easily implemented ■ Programmable with Arduino IDE ■ Adopts an easily expandable aluminum frame ■ Compatible with control via ROS1 ■ Standard emergency stop switch included ■ Supports a variety of optional accessories
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Free membership registrationThe Mecanum Rover G120A is the successor to our research and development robot platform, the Mecanum Rover G120. It inherits many features such as an aluminum frame that makes additional processing and customization easy, compatibility with Arduino IDE for easier software development, and support for ROS1 to achieve flexible and advanced control. Despite being a super-large unit, it can be widely utilized according to various applications. By equipping it with four mecanum wheels, it allows for highly flexible movement that combines forward, backward, left, right, and rotation. It is particularly suitable for research and development projects requiring precise position control, such as transportation and autonomous movement, and it can be expanded and customized to meet the objectives of research and development through a rich array of options. 【Features】 ■ Achieves a load capacity of approximately 120 kg ■ Quiet structure utilizing direct drive motors ■ Equipped with four mecanum wheels for omnidirectional movement ■ Control possible via wired or wireless connection ■ Programmable with Arduino IDE ■ Standard emergency stop switch included ■ Compatible with control via ROS1 ■ Features an easily expandable aluminum frame ■ Supports a variety of optional components
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Free membership registrationThe Light Rover is an educational robot kit equipped with a Raspberry Pi 4 Model B (4GB RAM version) and a compact LiDAR (LRF) mounted on an easy-to-handle tabletop-sized cart robot chassis. With a projection area of 160mm square, it is suitable for learning purposes on a desk and can operate in limited spaces, making it usable in more scenarios than ever before. Despite its small size, it is equipped with LiDAR (LRF), allowing it to accurately recognize the surrounding environment. It also supports control via ROS, enabling easy experimentation and practice of modern controls required for cart robots, such as executing SLAM utilizing the computational power of the Raspberry Pi 4. 【Features】 ■ Standard equipped with Raspberry Pi 4 Model B and LiDAR (LRF) ■ Achieves speed control via encoders ■ Can be powered from mobile batteries and other sources ■ Comes with sample programs necessary for learning ■ Camera unit for Light Rover is also available in the lineup
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Free membership registrationThe "4WDS Rover X40A" is a research and development cart robot equipped with independent steering axes for each of its four wheels, enabling movement in all directions while using standard wheels. Among our lineup of ROS-compatible research and development cart robots, represented by the "Megalover Ver.3.0," it excels particularly in quietness and controllability, making it suitable for advanced service robots and transport robots in specialized environments, especially for applications requiring "extremely low operational noise while achieving high positioning accuracy." 【Features】 ■ Independent steering for all drive wheels (4WDS structure) ■ Direct drive motors adopted for further noise reduction ■ Complex control can be easily implemented ■ Achieves a transportable weight of approximately 40kg ■ Control possible via wired/wireless connection ■ Programmable with Arduino IDE ■ Uses an easily expandable aluminum frame ■ Compatible with control via ROS1 ■ Standard equipped with an emergency stop switch ■ Supports a variety of optional accessories
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Free membership registrationThe Megarover F120A is the successor model to the large research and development cart robot "Megarover F120." It maintains features such as a body that achieves a load capacity of approximately 120 kg and compatibility with Arduino IDE and ROS1, while adopting direct drive in-wheel motors to further enhance quiet operation compared to previous models. Users can select wheel structures and load-bearing capabilities tailored to various research and development projects, enabling serious development and implementation with practical applications in fields such as automated transport, autonomous control of robots, and foundational research in automation. 【Features】 ■ Achieves a load capacity of approximately 120 kg ■ Large cart robot with two-wheel drive ■ Quiet structure utilizing direct drive motors ■ Control via wired/wireless connection is possible ■ Programmable with Arduino IDE ■ Features an easily expandable aluminum frame ■ Standard equipped with an emergency stop switch ■ Compatible with control via ROS1 ■ Supports a variety of optional accessories *For more details, please feel free to contact us.
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Free membership registrationThe Mecanum Rover Ver. 3.0 is the successor to the research and development cart robot "Mecanum Rover Ver. 2.1." It inherits numerous features such as a large chassis with a load capacity of approximately 40 kg, an aluminum construction that allows for easy modifications and customization, compatibility with Arduino IDE for easier software development, and support for ROS1 to achieve flexible and advanced control. Additionally, it adopts a direct drive type in-wheel motor for the drive wheels, successfully reducing operational noise compared to previous models. ◆ ROS 2 compatible firmware has been released! 【Features】 ■ Quiet structure using in-wheel motors ■ Four-wheel Mecanum wheel structure achieving a load capacity of approximately 40 kg ■ Control possible via wired/wireless connection ■ Programmable with Arduino IDE ■ Easy to expand aluminum frame ■ Standard emergency stop switch included ■ Compatible with control via ROS1 and ROS2 *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "Megalover Ver.3.0" is the successor to the research and development cart robot "Megalover Ver.2.1." It inherits numerous features such as a large chassis with a load capacity of approximately 40 kg, an aluminum chassis that is easy to modify and customize, compatibility with Arduino IDE for easier software development, and ROS1 support for flexible and advanced control. Additionally, by adopting a direct drive type in-wheel motor for the drive wheels, it achieves a significant noise reduction of about 20 dB compared to the previous model. While fully meeting the advanced functions and durability required in various automated transport and conveyance scenarios, it is also suitable for applications that demand high quietness, such as those involving voice recognition. ◆ ROS 2 compatible firmware has been released! 【Features】 ■ Quiet structure using in-wheel motors ■ Two-wheel drive cart robot with a load capacity of approximately 40 kg ■ Control possible via wired/wireless connection ■ Programmable with Arduino IDE ■ Easy to expand aluminum frame ■ Compatible with control via ROS1 and ROS2 ■ Standard equipped with an emergency stop switch, with adjustable installation position
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Free membership registrationThe cart robot arm "AMIR 740" is a robotic arm designed for research and development purposes, suitable for installation on research and development cart robots manufactured by Vstone Co., Ltd. It aims to further expand the opportunities for robots to be utilized and to support the acceleration and deepening of numerous research and development projects. 【Features】 - Compatible with installation on cart robots, but can also be used independently - Expands possibilities by equipping an arm - Standard equipped with a gripper that opens up to 90mm - Achieves a payload capacity of 2kg and a maximum reach of 740mm - Programmable with Arduino IDE - Supports control via ROS *For more details, please feel free to contact us.
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Free membership registrationThe Megarover F120 is a large transport robot that significantly enhances the payload capacity to approximately 120 kg, based on the popular two-wheel drive transport robot "Megarover Ver2.1," which is currently on sale. With sufficient payload capacity and the stability and ease of handling provided by two-wheel control, it can be utilized for research and development in various applications. The Megarover F120 follows the basic structure of the well-established Megarover series while greatly enhancing the body structure and motor output. Features such as compatibility with Arduino IDE and ROS have been carried over directly from Megarover Ver2.1, allowing for diverse operations without being limited by the type of application. Additionally, it is well-suited for projects developed based on the Megarover that aim to significantly enhance the payload capacity of transport robots. 【Features】 ■ Achieves a payload capacity of approximately 120 kg ■ Large transport robot with two-wheel drive ■ Control via wired/wireless connection ■ Control through ROS message communication ■ Programmable with Arduino IDE ■ Easy operation with a dedicated wireless controller *For more details, please feel free to contact us.
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Free membership registrationDevelopment on the Jetson Nano can be conducted using Jupyter Notebook, a web browser-based development and analysis tool. It can be utilized in a wide range of fields as a learning tool for GPU computing, as well as a base platform for research, development, and implementation that combines information processing with the driving performance of large cart robots. This product features mecanum wheels as the driving wheels. In addition to moving forward and backward and turning left and right, it is also capable of lateral movement, making it particularly well-suited for body control using object recognition. Its ability to handle delicate control, such as slight position adjustments and precise approaches to targets, is a notable characteristic. By enabling modern information processing technologies, such as object recognition using machine learning, to be output immediately to practical large cart robots rather than being confined within a computer, it serves as an effective tool for rapid research and development with implementation in mind.
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Free membership registrationJetBot Mega is a two-wheeled drive cart robot based on the research and development cart robot "Mega Rover," which has a load capacity of approximately 40kg, and applies the JetBot project proposed by NVIDIA. It can combine the chassis of the 40kg Mega Rover with the powerful GPU processing capabilities of the Jetson Nano module. With advanced processing capabilities that can handle tasks such as object recognition using deep learning, it retains the advanced nature of the JetBot project while adding the mobility and load-carrying performance of a large cart robot, which can be utilized through Jupyter Notebook, a web browser-based development and analysis tool. By using JetBot Mega, the JetBot project can be elevated from a simple learning tool to a research and development project aimed at specific applications. 【Features】 ■ Easily develop projects utilizing powerful GPUs ■ A large two-wheeled drive cart robot that supports practical development ■ Simple operation with a dedicated wireless controller *For more details, please feel free to contact us.
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Free membership registrationThe Mecanum Rover G120 is a monster machine that achieves a load capacity of 120 kg by re-evaluating all aspects of its wheel, motor, control board, and chassis structure, while still being based on the body structure of the popular Mecanum Rover. Despite being a super-large unit, it retains features such as compatibility with Arduino IDE and ROS, making it suitable for a wide range of research and development applications. The Mecanum Rover G120, while being a super-large unit, is capable of moving in all directions thanks to its mecanum wheels. It has a maximum speed of 1.3 m/s as measured, allowing it to cater to various research and development needs. It can change direction without a steering mechanism and move sideways without altering its orientation, making it particularly suitable for applications that require precise external position control. 【Features】 - Achieves a load capacity of approximately 120 kg - Equipped with four mecanum wheels for omnidirectional movement - Control via wired/wireless connection - Controlled through ROS message communication - Programmable with Arduino IDE - Easy operation with a dedicated wireless controller *For more details, please feel free to contact us.
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Free membership registration*The product image shows the state with the full surround bumper option attached.* The 4WDS Rover Ver2.1 is a mobile cart robot equipped with independently driven wheels on all four corners, enabling smooth movement in all directions by steering each wheel. It can be utilized for a wide range of applications, including as a base robot for research and development, as well as a transport cart. This time, we have updated from the already released 4WDS Rover Ver2.0 to Ver2.1, incorporating user feedback and further improving reliability. It maintains the advantages of existing products, such as ROS compatibility and a variety of options, while achieving an even better user experience consistently. **Features** - Accurate omnidirectional movement with independently driven wheels and high load capacity - Control via wired/wireless connection - Control through ROS message communication - Programmable with Arduino IDE - Easy operation with a dedicated wireless controller **Changes from 4WDS Rover Ver2.0** - Addition of current control circuit - Improved noise performance of communication path *For more details, please refer to the PDF document or feel free to contact us.*
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Free membership registrationThis product is equipped with omni-wheels, which eliminates the need for complex steering mechanism control, allowing for omnidirectional movement by simply controlling the rotation direction of each wheel. The drive for the wheels uses infinite rotation servos, which are configured with fewer pins than motors using encoders, making it easier to expand compared to other Nexus robots. 【Features】 ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Three ultrasonic sensors installed around the unit ■ Japanese manual available *Please feel free to contact us for more details.
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Free membership registrationThis is a cart robot equipped with 100mm omni-wheels. Its compact body has no loading space. The ultrasonic sensors mounted in three directions help detect surrounding obstacles. Research and development can be specialized in control using omni-wheels and ultrasonic sensors. 【Features】 ■ Movement in all directions is possible solely by the rotation direction of the motor ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Equipped with ultrasonic sensors ■ Comes with encoder-type DC motor ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a caterpillar-type robot equipped with an Arduino-compatible board. It has been developed based on the technology of the new track mobile tank robot (10022). It excels in mobility, capable of traversing rough terrain and overcoming obstacles, and by combining it with various sensors and parts, it allows for a wide range of applications. With excellent stability, towing power, and low axle pressure, it is expected to have a truly broad range of uses. 【Features】 ■ Equipped with an Arduino-compatible board and IO expansion board ■ The development environment is available for free using "Arduino IDE" *For more details, please feel free to contact us.
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Free membership registrationThis product is a platform set for creating omnidirectional moving robots. The controller board is not included. Since it comes with omni-wheels, motors, and a base for installation, you can quickly create the foundation for an omnidirectional moving robot. The included aluminum board has holes, allowing for the installation of controllers, sensors, and more. You can use your preferred microcontroller board for learning and development of omnidirectional movement. *Please feel free to contact us for more details.*
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Free membership registrationThis product is a platform set for creating omnidirectional moving robots. It does not include a controller board. Since it comes with omnidirectional wheels and motors, as well as a base for installation, you can quickly create the foundation for an omnidirectional moving robot. The included aluminum board has holes, allowing for the installation of controllers, sensors, and more. You can use your preferred microcontroller board for learning and development related to omnidirectional movement. *For more details, please feel free to contact us.*
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Free membership registrationThis is a simple configuration of a general-purpose cart robot that controls two motors. It is equipped with three bumper sensors and three ultrasonic sensors, making it suitable for research on autonomous mobile cart robots. It is based on the open-source hardware Arduino microcontroller, allowing for the addition of various optional parts. This enables the creation of highly versatile robots. 【Features】 ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free with "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Excellent portability of the body structure ■ Encoder-type DC motors ■ Equipped with ultrasonic sensors and bumper sensors ■ Programming using the Arduino microcontroller board is possible *For more details, please feel free to contact us.
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Free membership registrationThis is a caterpillar-type robot equipped with an Arduino-compatible board. It features track wheels, two coreless encoder-type 12VDC motors, and an Arduino328 microcontroller board, making it easy to expand with sensors. This product is intended for use in rescue operations and similar applications. It excels in mobility, capable of traversing rough terrain and overcoming obstacles. With excellent stability, traction, and low axle pressure characteristics, it is expected to have a wide range of applications. 【Features】 ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free through "Arduino IDE" ■ Japanese manual provided *For more details, please feel free to contact us.
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Free membership registrationThis is a small and compact cart robot equipped with 58mm omni-wheels. The all-direction movement with four wheels is more intuitive and easier to understand than with three wheels, and the torque is greater due to the additional motors. Straight-line movement is also easier compared to three wheels. 【Features】 ■ Movement in all directions is possible by simply changing the rotation direction of the motors ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Equipped with ultrasonic sensors ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 48mm omni-wheels. It is compact with a width of 18cm, allowing for space-saving experiments. It has a three-tier structure, with space on the upper tier for placing items. The main body is made of aluminum alloy and features mounting holes to accommodate various optional parts. Additionally, ultrasonic sensors are installed at three locations around the perimeter, which help with collision avoidance in the surrounding area. 【Features】 ■ Movement in all directions is possible solely by controlling the motor's rotation direction ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free with "Arduino IDE" ■ Japanese manual provided ■ Main body made of aluminum alloy ■ Ultrasonic sensors included ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 100mm omni-wheels. Among the robots with 100mm omni-wheels from Nexus, it has a low height of 108cm. While the height is kept low, it is equipped with a top plate, providing space to place items on it. The main body is made of aluminum alloy and has mounting holes to accommodate various optional parts. Additionally, ultrasonic sensors are installed at three locations around the perimeter, which help with collision avoidance in the surrounding area. 【Features】 - Movement in all directions is possible solely by controlling the motor's rotation direction. - Equipped with an Arduino-compatible board and IO expansion board. - The development environment is available for free using "Arduino IDE." - Japanese manual is provided. - Main body made of aluminum alloy. - Equipped with ultrasonic sensors. - Programming is possible in C and C++. - Comes with encoder-type DC motors. - Includes mounting holes for expansion screws and spare space. *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 100mm omni-wheels. It has a three-tier structure, with space on the middle and upper tiers for placing items. In addition to its common use case of transporting cargo, it can also accommodate additional components such as small PCs and cameras. The main body is made of aluminum alloy and features mounting holes to support various optional parts. Additionally, ultrasonic sensors are installed at three locations around the perimeter to assist with collision avoidance. 【Features】 ■ Compact design for easy maneuverability ■ Capable of omnidirectional movement using only the motor's rotation direction ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free with "Arduino IDE" ■ Japanese manual provided ■ Main body made of aluminum alloy ■ Equipped with ultrasonic sensors ■ Comes with encoder-type DC motors ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 100mm omni-wheels. It has a three-tier structure, with space on the middle and upper tiers for placing items. In addition to its common use case of operating while loaded with cargo, it can also accommodate expansion components such as small PCs and cameras. The main body is made of aluminum alloy and features mounting holes that support the addition of various optional parts. Additionally, ultrasonic sensors are installed at six locations around the perimeter, which assist in collision avoidance all around. 【Features】 ■ Research and development as an autonomous mobile cart robot with multiple sensors ■ Capable of movement in all directions using only the motor's rotation direction ■ Equipped with an Arduino-compatible board and an IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Main body made of aluminum alloy ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 100mm omni-wheels. The all-direction movement with four wheels is more intuitive and easier to understand than with three wheels, and the torque is greater due to the additional motors. Straight-line stability is also improved compared to three wheels. 【Features】 ■ Movement in all directions is possible by simply changing the rotation direction of the motors ■ Equipped with an Arduino-compatible board and an IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Excellent portability due to the body structure ■ Equipped with encoder-type DC motors ■ Capable of seamless rotation and all-direction movement *For more details, please feel free to contact us.
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Free membership registrationThis is a cart robot equipped with 60mm small mecanum wheels. Despite its compact size, it has specifications that meet the requirements necessary for controlling mecanum wheels. Its simple configuration, without any sensors, allows for focused learning on the control of mecanum wheels. It is equipped with DC motors with encoders, enabling precise control of the rotation speed, which is essential for mecanum wheels. 【Features】 ■ Equipped with 4-wheel drive mecanum wheels ■ Comes with an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThis is a mecanum wheel robot with a simple structure that keeps the price low. Since it has a simple configuration without any sensors, it allows you to focus on learning the control of mecanum wheels. Equipped with DC motors with encoders, it is capable of controlling the rotation speed, which is essential for mecanum wheels. It is recommended for use as an introductory tool for mecanum wheel control. 【Features】 ■ Equipped with 4-wheel drive mecanum wheels ■ Includes an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Japanese manual provided ■ Body made of aluminum alloy ■ Equipped with encoder-type DC motors ■ Programming possible in C and C++ *For more details, please feel free to contact us.
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Free membership registrationBy changing the rotation direction and speed of each wheel, stable movement in any direction is possible. By rotating all four wheels simultaneously in the same direction, it can move forward and backward, and by rotating the left and right wheels in opposite directions, it can turn. Additionally, by rotating the front and rear wheels in reverse, it can move sideways. Compared to a three-wheel type, the incorporation of four drive wheels has improved the stability of the vehicle both during operation and when stationary. 【Features】 ■ Simple suspension supports the contact of all four wheels ■ Equipped with an Arduino-compatible board and IO expansion board ■ Development environment available for free using "Arduino IDE" ■ Equipped with a total of four ultrasonic sensors for front, back, left, and right ■ Japanese manual available ■ Body made of aluminum alloy ■ Equipped with encoder-type DC motors ■ Programmable in C and C++ *For more details, please feel free to contact us.
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Free membership registrationThe Nano Rover is a shape-drawing robot equipped with a pen up-and-down function. As an educational tool, it can be utilized not only for learning programming but also for studying general subjects like mathematics in a more efficient, enjoyable, and experiential manner. By introducing this product into educational settings, it can serve both as a tool for learning programming and for better understanding general subjects like mathematics. Particularly in mathematics, it is expected to deepen the understanding of robotics as an application of math and the essential knowledge of math that supports robotics, effectively contributing to the acquisition of knowledge and skills that are truly useful in real-world situations. 【Features】 ■ Simply input a mathematical formula to draw it directly as a graph on paper ■ Equipped with a high-precision encoder and pen up-and-down mechanism ■ Features a full-color LED that indicates the operating status ■ Compatible with various programs and control methods
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Free membership registrationThis product is a set of four mecanum wheels that can withstand high loads. The high load capacity omni-mecanum series is designed for use both outdoors and indoors. This product is mainly recommended for industrial use and for applications with heavy loads, such as carts. *For more details, please refer to the PDF document or feel free to contact us.*
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Free membership registrationThis product is a set of four mecanum wheels that can withstand high loads. Each wheel has rollers arranged at a 45-degree angle to the axle. In a cart-type robot equipped with mecanum wheels, omnidirectional movement is possible simply by controlling the rotation direction of each wheel, eliminating the need for complex steering mechanisms. Additionally, compared to omni-wheels, mecanum wheels offer greater freedom in wheel arrangement, allowing for configurations that are closer to the shape of conventional vehicles. Mecanum wheels are primarily designed for operation with four wheels. The high-load omni-mecanum series is designed for use both outdoors and indoors. This product is mainly recommended for industrial applications and areas with heavy load requirements, such as carts. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThis product is an omni wheel that can withstand high loads. The high load capacity omni and mecanum series are designed for use both outdoors and indoors. In a cart-type robot equipped with omni wheels, all-direction movement is possible simply by controlling the rotation direction of each wheel, eliminating the need for a complicated steering mechanism. Operation is typically based on three or four wheels. This product is mainly recommended for industrial use and in areas with heavy load requirements, such as carts. *The product image is a comparison with a LEGO-compatible 60mm aluminum mecanum wheel. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThis is a set of four 203mm high load-bearing mecanum wheels (with PU rollers) consisting of two left and two right wheels. The wheels feature polyurethane rollers arranged at a 45-degree angle to the axle. In a cart-type robot equipped with mecanum wheels, omnidirectional movement is possible simply by controlling the rotation direction of each wheel, eliminating the need for a complicated steering mechanism. Additionally, compared to omni wheels, mecanum wheels offer greater flexibility in wheel arrangement, allowing for configurations closer to that of conventional vehicles. Mecanum wheels are primarily designed for operation with four wheels. *For more details, please refer to the PDF document or feel free to contact us.*
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Free membership registrationThis product is a set of four mecanum wheels that can withstand high loads. Each wheel has rollers arranged at a 45-degree angle to the axle. In a cart-type robot equipped with mecanum wheels, omnidirectional movement is possible simply by controlling the rotation direction of each wheel, eliminating the need for a complicated steering mechanism. Additionally, compared to omni wheels, mecanum wheels offer greater freedom in wheel arrangement, allowing for configurations that are closer to the shape of conventional vehicles. Mecanum wheels are primarily designed for operation with four wheels. The high-load omni-mecanum series is designed for use both outdoors and indoors. This product is mainly recommended for industrial applications and areas with heavy load requirements, such as carts. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThis product is an omni wheel that can withstand high loads. The high load capacity omni and mecanum series are designed for use both outdoors and indoors. In a cart-type robot equipped with omni wheels, all-direction movement is possible simply by controlling the rotation direction of each wheel, eliminating the need for a complicated steering mechanism. Operation is typically based on three or four wheels. This product is mainly recommended for use in areas with heavy loads, such as carts. *The image shown is a comparison between a 254mm high load capacity omni wheel and a LEGO-compatible 60mm aluminum mecanum wheel. Please note that it may differ slightly from the actual product, so check the dimension image for details. *For more information, please refer to the PDF document or feel free to contact us.
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Free membership registrationThis is a set of four 152mm high load-bearing mecanum wheels (with PU rollers) (2 for the left, 2 for the right). The independent drive of each wheel allows for movement in any direction without changing the mounting angle of the wheels themselves. This mechanism enables the robot to move freely forward, backward, left, and right without the need for steering. The rollers attached to the mecanum wheels are fixed at a 45° angle to the wheels, ensuring reliable contact with the ground while maintaining stability. The overall shape is designed similarly to standard wheels, and each wheel is driven by a different motor. Mecanum wheels are primarily operated with four wheels. *For more details, please refer to the PDF document or feel free to contact us.*
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Free membership registration