Autonomous Mobile Robotのメーカーや取扱い企業、製品情報、参考価格、ランキングをまとめています。
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Autonomous Mobile Robot - メーカー・企業33社の業務用製品ランキング | イプロスものづくり

更新日: 集計期間:Mar 11, 2026~Apr 07, 2026
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Autonomous Mobile Robotのメーカー・企業ランキング

更新日: 集計期間:Mar 11, 2026~Apr 07, 2026
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  1. THK 本社 Tokyo//Machine elements and parts
  2. パナソニック アドバンストテクノロジー Osaka//IT/Telecommunications
  3. Preferred Robotics Tokyo//robot
  4. 4 THKインテックス Tokyo//robot
  5. 5 因幡電機産業 産機カンパニー Osaka//Trading company/Wholesale

Autonomous Mobile Robotの製品ランキング

更新日: 集計期間:Mar 11, 2026~Apr 07, 2026
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  1. AMR Oasis Series [Autonomous Mobile Robot] THK 本社
  2. Basic settings and operation methods for Kachakapro. Preferred Robotics
  3. Autonomous Mobile Robot 'Oasis' THKインテックス
  4. 4 Autonomous Mobile Robot Cobot Cell Series LINKORES THKインテックス
  5. 5 Lynx "Compact High-Mobility Weight AMR" 因幡電機産業 産機カンパニー

Autonomous Mobile Robotの製品一覧

31~60 件を表示 / 全 63 件

表示件数

Autonomous mobile robots 'T8/T5/W3' achieve labor-saving and efficiency in facilities!

Slim-type serving robots, stable shape & large capacity robots, and robots for hotels are now available!

The "T8/T5/W3" is a delivery robot with over 40,000 units operating worldwide and a proven track record in over 60 countries. The "T8" has a narrow width of 60 cm, making it suitable for tight spaces, and is highly maneuverable. The "T5" has a maximum load capacity of 40 kg and excels in both serving and clearing with its four-tier tray. The "W3" can also work in conjunction with elevators for room service. These robots can be used in various locations, including restaurants, nursing facilities, karaoke venues, hotels, hospitals, and commercial establishments. 【Product Lineup】 ■ Slim serving robot "Serving Robot T8" ■ Stable shape & large capacity robot "Serving Robot T5" ■ Hotel robot "Delivery Robot W3" *For more details, please refer to the PDF materials or feel free to contact us.

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Selection Points for Transport and Delivery Robots (AMR) *Comparison Materials Available

This article explains how to choose an AMR (Autonomous Mobile Robot) according to its applications, including features like follow-me functionality, multi-unit collaboration, and types that allow for tray removal!

The use of AMRs (Autonomous Mobile Robots) is gaining attention as we promote factory automation. We often receive inquiries from clients who want to select delivery and transportation robots suited to their applications. By replacing processes that were previously handled by humans with robots, we contribute to cost reduction and labor savings. At HCI, we offer a variety of transportation robots and propose serving and transportation robots (AMRs) that meet your needs. 【Transportation and Delivery Robot 'T300'】 Can lift up to 300 kg! This transport robot can operate in shelf mode, towing mode, lifting mode, and more, thanks to its versatile external attachments. 【Serving and Transportation Robot 'StarShip'】 Transport capacity of up to 200 kg! This serving and transportation robot can be utilized in various environments both inside and outside the factory. 【Transportation and Delivery Robot 'StarLift150'】 Can lift up to 150 kg! This transportation robot automatically lifts and transports goods to their destination. You can also download a comparison chart summarizing the key points of each model. *For more details, please download the PDF or feel free to contact us.

  • 企業:HCI
  • 価格:Other
  • Transport and handling robots
  • Other industrial robots
  • lift
  • Autonomous Mobile Robot

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"Demo unit available" Maximum load capacity 100kg AMR 'MiR100'

★We have a demo unit at our Tokyo lab★ Automate transportation tasks within the facility to increase productivity! Easy to implement with no special programming knowledge required.

The "MiR series" is a transport robot that can navigate automatically while avoiding people and obstacles using cameras and sensors, unlike unmanned guided vehicles (AGVs) that rely on guides such as magnetic tape. It is versatile, capable of not only transporting goods but also automating tasks such as loading work onto conveyors and picking operations in combination with collaborative robots. No special programming knowledge is required, making it easy to implement.

  • Transport and handling robots
  • Autonomous Mobile Robot

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[Data] ADLINK ROSCUBE

Introducing the "RQI series" and "RQX series"! Examples of configurations are also included as suggestions for AMR.

In this document, we introduce ADLINK's "ROSCUBE." We feature the "RQP series," as well as the "RQI series" and "RQX series." Please take a moment to read it. 【Contents (partial)】 ■Proposals for AMR ■Autonomous Mobile Robot for Hospital and Medical Industry ■ADLINK ROScube Capabilities ■ADLINK Robotics Solution Architecture ■ROSCube Series (Intel CPU version) ■Agriculture robot *For more details, please refer to the PDF document or feel free to contact us.

  • controller
  • Autonomous Mobile Robot

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Low-cost cart robot platform

It is optimal for research and development use.

The dimensions are 400x395x212.5mm, the portable weight is approximately 40kg, and the maximum speed is about 1.0m/s. It is a lightweight and high-rigidity rover kit made of aluminum alloy. It can be used as a platform for research and development of autonomous mobile robots, unmanned transport robots, cart robots, and AGVs, with features such as SLAM, ROS, and AI implemented.

  • 企業:翔雲
  • 価格:10,000 yen-100,000 yen
  • Trolley
  • Autonomous Mobile Robot

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Autonomous Mobile Robot 'KeiganALI'

From map creation to autonomous movement in as little as 10 minutes! We can quickly respond to changes in layout and work content.

"KeiganALI" is a hybrid AMR that can be used immediately on-site. It is designed to accommodate devices and upper option modules planned by customers. The eight tapped holes on the top surface of the main body allow for easy attachment of aluminum frames and other components. Additionally, it can perform guide-less operation for autonomous movement by creating maps, as well as line tracing (following lines on the floor) using a camera. 【Features】 ■ High expandability through modular design ■ Flexible response to the needs of the site in an era of small quantities and diverse varieties ■ Quick and easy to use on-site ■ Smooth autonomous driving ■ Supports line tracing as well *For more details, please refer to the PDF materials or feel free to contact us.

  • Transport and handling robots
  • Autonomous Mobile Robot

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[Development Achievements] Development of three types of AGVs (Automated Guided Vehicles) for different applications.

Developed three types of small mobile and transport robots for different purposes! They autonomously perform obstacle avoidance and collision avoidance.

Our company has developed three types of small mobile and transport robots for the purpose of improving logistics efficiency within the factory. We offer three types: autonomous mobile robots, small towing robots, and omnidirectional mobile robots. These robots can move freely within the narrow factory space, and they can operate in coordination with multiple robots, autonomously avoiding obstacles and collisions. 【Autonomous Mobile Robot】 - Three-wheel operation with a steering wheel and two drive wheels - Positioning using two independent wheel encoders - Posture and driving control - Various sensor modules (ultrasonic, magnetic, infrared, image, wireless) - Compact and low-cost, with a developed environment *For more details, please refer to the PDF document or feel free to contact us.

  • Other conveying machines
  • Autonomous Mobile Robot

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Towed Autonomous Mobile Robot FMR F7-2000

The RobotBank FMR F7-2000 is an autonomous unmanned towing robot with a maximum towing capacity of 2,000 kg.

■ Product Features High Efficiency Transport: Achieves a maximum stable running speed of 6 m/s. It can simultaneously tow multiple carts, maximizing the efficiency of line supply. Automatic Coupling and Decoupling: Equipped sensors recognize the position and posture of the carts, automatically connecting and disconnecting the hitch pin, eliminating the need for manual labor. Multiple Safety Features: Standard equipped with a multi-layer safety system including laser obstacle avoidance, collision bumper detection, emergency stop button, and audio-visual alarms. High Precision Positioning in Millimeters: Achieves position accuracy of ±10 mm and angle accuracy of ±1° through the fusion of laser SLAM and downward vision SLAM. Omnidirectional Driving Capability: The omnidrive structure supports straight, reverse, arc, and pivot movements, allowing flexible operation even in narrow passages. Floating Obstacle Detection: Features unique sensing technology capable of detecting floating obstacles that are difficult to detect with standard floor sensors. Long Operating Battery: Capable of continuous operation for 6 to 8 hours under rated conditions. Full charging is completed in under 2 hours, maintaining a high operational rate. Flexible Navigation Methods: Supports two navigation modes, 2D LSLAM and downward VSLAM, allowing selection of the optimal method based on the facility environment.

  • F7-2000 主图修改版0410.png
  • 1980×1320青背景F7-2000-0410.png
  • Substrate transport device (loader/unloader)
  • Sorting machine
  • Trolley
  • Autonomous Mobile Robot

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Towed Autonomous Mobile Robot FMR F7-3000

Equipped with automatic linking and unlinking functions (automatic attachment and detachment) as standard, it can connect and transport multiple wheeled carts and various trolleys at once.

The RobotBank FMR F7-3000 is a large autonomous unmanned towing robot boasting a maximum towing capacity of 3,000 kg. It comes standard with automatic coupling and uncoupling functions, allowing it to connect and transport multiple wheeled carts and various types of trolleys at once. It is designed to support a wide range of environments where the transportation of heavy goods is required, such as automotive assembly lines, automotive parts, home appliances, and general manufacturing, strongly facilitating the automation and unmanned operation of line supply.

  • F7-3000网页顶部图0410.png
  • 1980×1320青い背景ー0410.png
  • Transport and handling robots
  • Substrate transport device (loader/unloader)
  • Conveyor
  • Autonomous Mobile Robot

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Robot Development Platform 'Nova Carter P1'

Designed to seamlessly integrate with class-leading NVIDIA Isaac AMR autonomy platform!

"Nova Carter P1" is a complete robot development platform that accelerates the development and deployment of autonomous mobile robots (AMRs) equipped with the Nova Orin reference architecture. It facilitates the transition from manual forklifts and guided vehicles to fully autonomous vehicles. With a rich sensor portfolio, powerful AI computing capabilities, and customization features, it can safely operate alongside humans in highly dynamic and unstructured environments. 【Features】 ■ Significantly improves productivity ■ Reduces costs and accelerates large-scale deployment ■ Ensures safety in operations such as warehouse management and logistics handling *For more details, please download the PDF or feel free to contact us.

  • Other industrial robots
  • Autonomous Mobile Robot

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High-precision positioning AMR "REX16AMR-III"

30kg work-capable robot included! Molding, high-precision parts processing, and machine tending for heavy work.

The "REX16AMR-III" is a high-precision positioning AMR that utilizes AMR units from TriOrb and collaborative robots from TechMan ROBOT. It achieves corrections not only in the X-axis (forward direction) but also in the Y-axis (approach direction) and θ-axis (rotation direction), allowing it to operate in narrow passages and small intersections. Additionally, it employs Toshiba's lithium-ion batteries, which offer high peak output, short charging times, and minimal degradation, enabling 24-hour operation with energy-saving performance and non-contact power supply. 【Features】 ■ High expandability ■ Multiple units can operate if the passage width is over 2m ■ No need to widen intersections due to a turning radius of "0" ■ All-direction movement means that even if there are protrusions that obstruct the passage of the AMR, there are no issues approaching machinery. *For more details, please download the PDF or feel free to contact us.

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  • Other industrial robots
  • Autonomous Mobile Robot

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CarryBot_Intro_D150_SHI LLC

CarryBot is the ideal delivery solution for environments such as micro-fulfillment centers and factories.

CarryBot is an autonomous mobile robot (AMR) designed for discrete manufacturing companies across fields such as consumer electronics, warehousing, and logistics. It is equipped with autonomous navigation, reliable obstacle avoidance, strong load capacity, and multiple layers of safety protection features, helping companies achieve smart manufacturing and ensure flexible and safe delivery.

  • Transport and handling robots
  • Autonomous Mobile Robot

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AMR | Autonomous Mobile Robot [Free catalog with usage scenarios included]

Easy setup with just one smartphone! The AMR, which is highly active in factories and warehouses, contributes to solving labor shortages and improving work efficiency. *Demo available for testing on-site!

The autonomous mobile robot (AMR) KeiganALI, sold by Sumitomo Heavy Industries, can autonomously navigate by recognizing its surrounding environment and transport goods while avoiding people and obstacles. 【Do you have any of these concerns?】 ◆ Interested in automating on-site operations but unsure if you can manage it… ◆ Unable to make a large capital investment, making the introduction barrier high… ◆ Worried about whether it can adapt to layout changes… This autonomous mobile robot is easy to set up and can be introduced conveniently. It has high customization capabilities and can be used in various situations in manufacturing, such as factories and logistics warehouses. *Demo requests are currently being accepted. You can confirm its performance in the environment where you will use it before introducing it. *We are currently offering a free catalog that illustrates various usage scenarios. For detailed specifications, please download and take a look.

  • Other industrial robots
  • Autonomous Mobile Robot

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Security-oriented autonomous mobile robot software '@mobi'

Efficiency in patrol security! Achieving safe and secure security with autonomous mobile robots!

In the security industry, issues such as labor shortages and the burden of patrolling during nighttime and inclement weather are significant challenges. In particular, patrolling in extensive areas or dangerous locations places a heavy burden on security personnel and carries the risk of accidents. By equipping autonomous mobile robots with '@mobi', these challenges can be addressed, enabling efficient and safe patrolling security. 【Usage Scenarios】 * Indoor patrolling in factories, warehouses, and commercial facilities * Outdoor patrolling in parking lots, parks, and outdoor facilities * Patrolling during nighttime and inclement weather 【Benefits of Implementation】 * Achieving 24/7 patrolling security * Reducing labor costs * Ensuring the safety of security personnel in dangerous locations * Improving efficiency through optimized patrolling routes

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Autonomous Mobile Robot

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[Agriculture] @mobi 2.6

Streamlining harvesting operations with autonomous mobile robots!

In the agricultural sector, labor shortages and the need for increased efficiency are significant challenges. In particular, harvesting is heavily influenced by weather conditions and is physically demanding, leading to a growing demand for automation. @mobi 2.6 contributes to the efficiency of harvesting operations by being mounted on autonomous mobile robots. 【Usage Scenarios】 - Transporting harvested goods - Moving within the fields - Coordination among multiple robots 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Alleviation of work burden

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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Introducing the latest features for warehouses @mobi

Efficiently streamline picking operations with autonomous mobile robots!

In the warehouse industry, improving the efficiency of picking operations and reducing labor costs have become important challenges. There is a demand for addressing labor shortages, increasing the burden on workers, and reducing errors. @mobi 2.6 supports the automation of picking operations by being equipped with autonomous mobile robots. 【Usage Scenarios】 - Product transportation within the warehouse - Automatic movement to picking stations - Integration with inventory management systems 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Reduction in operational errors

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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Introduction of the latest features for entertainment facilities @mobi

Autonomous mobile robots streamline guidance services in entertainment facilities!

In entertainment facilities, guidance services require smooth navigation and information provision for visitors. In particular, providing directions within a large facility and event information are crucial factors that influence customer satisfaction. However, human-guided assistance has its limitations, and congestion can occur during peak times, potentially diminishing visitor satisfaction. The @mobi 2.6, when equipped on autonomous mobile robots, allows for free movement within the facility, enabling accurate information provision and smooth guidance. 【Usage Scenarios】 - Directional guidance in theme parks and amusement parks - Guidance for exhibits in exhibition halls - Floor guidance in commercial facilities 【Benefits of Implementation】 - Reduction in labor costs through the efficiency of guidance services - Improvement in customer satisfaction - Timely provision of the latest information

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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【For Security】@mobi-SLAM

Supports autonomous movement and anomaly detection at security sites with high-precision 3D SLAM.

In the security industry, extensive area monitoring and rapid detection of abnormal situations are required. Especially in nighttime, adverse weather conditions, or places with poor visibility, advanced technology is necessary for monitoring. Traditional surveillance systems are prone to blind spots, increasing the risk of missing abnormalities. @mobi-SLAM prevents self-position loss and creates high-precision maps, enabling efficient patrolling by autonomous mobile robots. This reduces the burden on security personnel and contributes to building a safer environment. 【Use Cases】 - Facility security during nighttime or adverse weather - Patrolling within warehouses and factories - Remote monitoring in hazardous areas - Integration with abnormal detection systems 【Benefits of Implementation】 - Establishment of a 24/7 monitoring system - Reduction of labor costs - Rapid response in case of abnormalities - Improvement in monitoring accuracy

  • Software (middle, driver, security, etc.)
  • Other embedded systems (software and hardware)
  • Embedded system design service
  • Autonomous Mobile Robot

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Robot Cat for the Cleaning Industry

Equipped with physical AI! Streamlining waste collection at cleaning sites.

In the cleaning industry, labor shortages and the reduction of worker burdens are significant challenges. In particular, garbage collection not only incurs high labor costs but also requires ensuring the safety of workers. Robobonyan is equipped with facial recognition AI, natural language processing AI, and object detection AI to streamline waste sorting and collection tasks. This contributes to reducing labor costs and ensuring the safety of workers. 【Usage Scenarios】 - Commercial facilities - Office buildings - Public facilities 【Effects of Implementation】 - Reduction in labor costs - Improvement in work efficiency - Ensuring worker safety

  • 企業:HCI
  • 価格:Other
  • Other machine tools
  • Autonomous Mobile Robot

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For Manufacturing Industry @mobi 2.6

Achieve autonomous movement just by incorporating it into a robot with a mobility mechanism! Coordination of multiple units is also possible!

In the manufacturing industry, accurate following actions are required for tasks such as product transportation and parts supply. Especially as labor shortages become more severe, automating these tasks is essential for improving production efficiency. However, traditional automation systems have faced challenges such as high implementation costs and a lack of flexibility. @mobi 2.6 enables autonomous movement simply by being integrated into existing robots, contributing to the efficiency of manufacturing sites. 【Usage Scenarios】 - Parts supply on the production line - Transportation of finished products - Picking operations within warehouses 【Benefits of Implementation】 - Reduced burden on workers - Increased productivity - Cost reduction

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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Retail-oriented autonomous mobile robot package '@mobi'

Streamline product replenishment operations in stores! Achieve a solution to labor shortages and cost reduction!

The retail industry is facing a serious labor shortage, making the efficiency of product replenishment an urgent issue. In particular, the movement of products from the store's backroom to the sales floor requires time and effort, which can lead to lost opportunities. By utilizing autonomous mobile robots, these challenges can be addressed, and the efficiency of store operations can be improved. 【Usage Scenarios】 * Product replenishment within the store * Transportation of products from the backroom to the sales floor * Automatic replenishment linked with inventory management 【Benefits of Implementation】 * Reduction in labor costs * Shortening of work time * Decrease in lost opportunities * Improvement in customer satisfaction

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Transport and handling robots
  • Autonomous Mobile Robot

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Package for Autonomous Mobile Robots for Food and Beverage: '@mobi'

Streamlining meal service operations! Addressing labor shortages and improving customer satisfaction.

The food service industry is facing a serious labor shortage, and improving the efficiency of serving operations has become an urgent issue. In particular, handling orders during peak times and the rising labor costs are significant factors putting pressure on store operations. By utilizing autonomous mobile robots, it is possible to automate serving tasks, reduce labor costs, improve operational efficiency, and enhance customer satisfaction. 【Use Cases】 - Serving in restaurants and cafes - Room service in hotels and inns - Transporting ordered items in food courts 【Benefits of Implementation】 - Reduction in labor costs - Improved operational efficiency - Increased customer satisfaction - Reduced burden on employees

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Autonomous Mobile Robot

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Software for Autonomous Mobile Robots "@mobi" for Universities

Improve the efficiency of in-house delivery! Reduce the development costs of autonomous mobile robots!

On university campuses, efficient means of transportation are required for the delivery of on-campus mail and equipment. In particular, there are challenges such as the wide range of movement within the campus, congestion during certain times, and a shortage of manpower. The introduction of autonomous mobile robots addresses these challenges and contributes to the efficiency and labor-saving of delivery operations. @mobi supports various shapes and sizes of robots, achieving high-precision autonomous movement within the campus. 【Use Cases】 - Delivery of on-campus mail - Transportation of experimental equipment and supplies - Movement of library materials - Service provision to students and faculty 【Effects of Implementation】 - Reduction in delivery time - Decrease in labor costs - Improvement in operational efficiency - Enhancement of service quality

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Autonomous Mobile Robot

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Package for Autonomous Mobile Robots for Warehouses '@mobi'

Efficient inventory management in warehouses with autonomous mobile robots!

In the warehouse industry, there is a demand for efficiency and accuracy in inventory management. In particular, labor shortages and increased burdens on workers are significant challenges. By utilizing autonomous mobile robots, it is possible to address these issues and improve operational efficiency. @mobi reduces the development costs of autonomous mobile robots and enables smooth movement and accurate positioning within the warehouse. 【Use Cases】 - Automatic transportation of products within the warehouse - Automatic picking of inventory - Streamlining of inventory counting tasks 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Improvement in inventory management accuracy

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Autonomous Mobile Robot

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Software for Autonomous Mobile Robots for Hotels

Streamlining room service! Reducing the development costs of autonomous mobile robots!

In the hotel industry, labor shortages and the improvement of customer service quality are significant challenges. In particular, efficient room service is required for tasks such as replenishing amenities and supplies in guest rooms and providing room service. It is important to streamline these operations to enhance customer satisfaction and reduce employee burden. Our '@mobi' utilizes autonomous mobile robots to address these challenges and support hotel operations. 【Usage Scenarios】 - Automatic transportation of amenities and supplies to guest rooms - Provision of room service - Moving to guest rooms after cleaning 【Benefits of Implementation】 - Reduction in labor costs - Significant improvement in operational efficiency - Increase in customer satisfaction

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • Autonomous Mobile Robot

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Package for Autonomous Mobile Robots for Logistics @mobi 2.6

Efficiently streamline transportation operations in logistics sites with autonomous mobile robots!

In the logistics industry, transportation operations face challenges such as labor shortages and the need for improved work efficiency. In particular, accurate and rapid transportation is required for moving goods within warehouses and supplying parts within factories. Autonomous mobile robots can address these challenges and contribute to operational efficiency. @mobi 2.6 enables autonomous movement simply by being integrated into existing robots, supporting the efficiency of logistics sites. 【Usage Scenarios】 - Product transportation within warehouses - Parts supply within factories - Sorting operations at distribution centers 【Benefits of Implementation】 - Reduction in labor costs through automation of transportation operations - Increased productivity due to shortened work hours - Reduced accident risks through improved safety

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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For Manufacturing Industry @mobi 2.6

Achieve autonomous movement just by incorporating it into a robot with a mobility mechanism! Coordination between multiple units is also possible!

In the manufacturing industry, accurate following actions are required for tasks such as product transportation and parts supply. Especially as labor shortages become more severe, automating these tasks is essential for improving production efficiency. However, traditional automation systems have faced challenges such as high implementation costs and lack of flexibility. @mobi 2.6 achieves autonomous movement simply by being integrated into existing robots, contributing to the efficiency of manufacturing sites. 【Usage Scenarios】 - Parts supply on the production line - Transportation of finished products - Movement to inspection processes 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Increase in productivity

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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Retail-oriented package for autonomous mobile robots @mobi 2.6

Automate inventory management and achieve operational efficiency!

In the retail industry, accurate inventory management and efficient product replenishment are essential. In particular, labor shortages and delays in operations can lead to lost opportunities and decreased customer satisfaction. Autonomous mobile robots equipped with @mobi 2.6 address these challenges. 【Use Cases】 - Product transportation within warehouses - Inventory checks in stores - Automation of inventory counting tasks 【Benefits of Implementation】 - Improved accuracy in inventory management - Reduced working hours - Lower labor costs

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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[For Security] @mobi Latest Feature Introduction

Efficient security patrols with autonomous mobile robots!

In the security industry, the shortage of personnel and the burden of patrol duties during nighttime and adverse weather conditions are significant challenges. In particular, patrolling extensive areas or dangerous locations requires a balance between ensuring personnel safety and performing duties efficiently. The @mobi 2.6 addresses these issues by being equipped on autonomous mobile robots. 【Usage Scenarios】 - Patrolling within facilities, parking lots, and outdoors - Patrolling during nighttime or adverse weather conditions - Patrolling in hazardous areas 【Benefits of Implementation】 - Increased efficiency and reduced manpower in patrol duties - Stable patrolling 24/7, 365 days a year - Reduced personnel risk in hazardous areas

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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Introduction of the latest features for the cleaning industry @mobi

Efficiently streamline cleaning operations with autonomous mobile robots!

In the cleaning industry, labor shortages and the need for work efficiency are significant challenges. Especially in cleaning large spaces or areas with complex structures, it requires considerable time and effort, making efficient cleaning methods essential. The @mobi 2.6, when equipped on autonomous mobile robots, achieves the automation of cleaning tasks and addresses these challenges. 【Usage Scenarios】 - Cleaning in various locations such as office buildings, commercial facilities, factories, and warehouses - Coordinated cleaning with multiple robots - Cleaning in areas where LiDAR has difficulty reaching 【Benefits of Implementation】 - Reduction in cleaning time - Decrease in labor costs - Improvement in cleaning quality

  • atmobi-v2_6-260px.png
  • Transport and handling robots
  • Autonomous Mobile Robot

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