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  3. アフレル 東京ロボティクス本部
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アフレル 東京ロボティクス本部

EstablishmentFebruary 22, 2006
capital3000Ten thousand
number of employees40
addressTokyo/Chuo-ku/1F Iwatsuki Nihonbashi Building, 4-15-11 Nihonbashi Honcho, Tokyo
phone0776-25-0303
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last updated:May 19, 2025
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Helpful Article ◆ Automation at Low Cost! Background and Benefits of Introducing Collaborative Robots

In response to the current attention on desktop-type robotic arms that can be installed on desks, this article explains the background, the benefits of implementation, and the process from consideration to installation.

As the global labor force is projected to decline, the sales and adoption of industrial robots are expected to continue to increase in the future. In particular, in the manufacturing sector, the introduction of robots is helping to alleviate labor shortages through automation and labor-saving measures, leading to a trend of reallocating personnel to more optimal departments. This article discusses the current attention on compact robotic arms that can be installed on desktops, explaining the background of their expanding use, the benefits of their adoption, and the process from consideration to implementation. For more details, please visit the URL below. ■ Achieving automation at an affordable price: The background and benefits of the expanding adoption of collaborative robots 【Table of Contents】 - The background of the increasing adoption of collaborative robots - Why are compact robotic arms in demand now? - What are the benefits of introducing tabletop robotic arms?

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Helpful Article ◆ Recommended! Agenda for Robot Arm Introduction Consultation Meeting Released

An introduction to the implementation details of the "Desktop Robot Arm Introduction Consultation Meeting" conducted by Afrel Corporation, along with representative examples of inquiries received so far.

Afrel Co., Ltd. is holding a "Consultation Meeting" aimed at those considering the introduction of desktop robotic arms. This article introduces the detailed content of what can be discussed at this consultation meeting and what can be learned. For more details, please visit the URL below. ■ Recommended for first-timers! Agenda for the Robotic Arm Introduction Consultation Meeting 【Table of Contents】 - What can be learned at the consultation meeting? An opportunity that first-timers should take advantage of - Typical introduction patterns - Productivity improvement: Enhancing production lines, solving labor shortages - Human resource development and employee training - Research: Operating devices with unique tool heads ■ Achieve automation and labor-saving! Apply for the Small Robotic Arm Introduction Consultation Meeting here https://learninglab.afrel.co.jp/consult/robotarm/ ■ Product introduction page for the small robotic arm "DOBOT Magician" is here https://afrel.co.jp/dobot/

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AI (Image Recognition) Product Sorting Learning Set for Educational Institutions

Learn image recognition and deep learning with the small robotic arm "DOBOT Magician."

The "AI (Image Recognition) Product Sorting Learning Set" is a set that allows for the streamlining and automation of parts sorting using a robotic arm and image recognition. It can be easily and affordably implemented, enabling practical learning through hands-on experience from data collection to picking and sorting. 【Features】 * Learning through comparative execution of "rule-based image processing" and "deep learning image processing" * Practical training on a complete system operation from data collection to picking and sorting * Realistic development and learning based on applications in production environments ■DOBOT Magician Product Page https://afrel.co.jp/product/dobot

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[Technical Videos and Sample Programs] DOBOT Magician

Introducing helpful technical videos and sample programs for using the small robot arm DOBOT Magician!

We have published 10 technical videos of the small robot arm DOBOT Magician, along with sample programs (Blockly), firmware, and methods for external connections. For more details, please visit the URL below. 【DOBOT Magician Technical Videos】 https://afrel.co.jp/product/dobot/movie ■Contents 1. Let's write New Year's cards 2. Challenge to knock down dominoes! 3. Connecting the analog switch sensor 4. Connecting the digital sound sensor 5. Connecting the digital switch sensor 6. Connecting the digital touch sensor 7. Connecting the digital light sensor 8. Connecting the digital rotation sensor 9. Returning to the home position The Dobot Magician has an EIO (Extended I/O) to receive STOP signals. It was controlled from a PLC. 10. Challenge to play Old Maid!

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[Video Introduction] Features of DOBOT: Slider Rail and Writing Edition

We will introduce a video showing how to "write with a brush while moving sideways" using the DOBOT Magician and slider rail!

We will introduce the features of the tabletop-sized small robot arm, DOBOT Magician, in a video. *Please watch the video from the "Related Videos" section in the middle of this page. ■Video Content [This Time's Theme: Writing Using a Pen Tool] By utilizing the slider rail, it is possible to write long characters that exceed the movable range of the DOBOT Magician. ■About DOBOT Magician The DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. Its design does not require prior safety training, making it suitable for various locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the use of the robot arm. *DOBOT Magician Product Introduction Page https://afrel.co.jp/product/dobot

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[Video Introduction] DOBOT Features: Slider Rail, Pick & Place

We will introduce a video showing how to use the DOBOT Magician and slider rail to "arrange dominoes while moving sideways"!

We will introduce the features of the tabletop-sized small robot arm, DOBOT Magician, in a video. *Please watch the video from the "Related Videos" section in the middle of this page. ■Video Content [This time's theme: Pick & Place using a slider rail] By utilizing a slider rail that is over 1 meter long, we can expand the working range of the DOBOT Magician. This time, we will showcase the process of arranging dominoes in a straight line. ■About DOBOT Magician The DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. Its design does not require prior safety training, making it suitable for various locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the use of the robot arm. *DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Case Study] DOBOT Magician (Demo Unit of Our Product)

Utilizing a small robotic arm for the demonstration of a small six-axis force sensor to maximize the appeal of our products to customers.

We will introduce a case where the DOBOT Magician was utilized in a demonstration of our product (force sensor). For more details, please visit the URL below. ■ What is DOBOT Magician? Despite being priced around 150,000 yen, it is a small robotic arm equipped with a 4-axis arm and comes with standard tool heads such as grippers, suction kits, lighting & drawing tools, and a 3D printer. The dedicated software allows programming by arranging blocks, enabling beginners to smoothly learn and operate the robotic arm. The main unit does not require prior safety training, making it easy to install and use in various locations and scenes. Afrel provides original guides (control learning texts) using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robotic arm.

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【Technical Information】Control two DOBOTs while switching from one PC.

■Sample program available■ We will introduce an article about the case of "pen handover" using two linked DOBOT Magicians!

Here is an article introducing the tabletop-sized small robot arm, DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/5e74a9de878de9e3b730 ■ Content 【Theme: Coordinating two units for pen transfer】 This time, I would like to control the DOBOT by switching between connections as needed. Programming languages: Python, C, C++, C#, Java ■ About DOBOT Magician The DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. Its design does not require prior safety training, making it suitable for a variety of locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the use of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Technical Information] Recognizing individual objects to interact with and moving them with a robotic arm.

■Sample program available■ Introducing a case where objects of the same shape were individually recognized and moved one by one while in contact with each other, without using AI for discrimination!

Here is an article introducing a case study of the tabletop-sized small robot arm DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/3a3ddddeb3ff3f6c7fe3 ■ Content When objects are in contact, they are recognized as a single mass or ignored as a larger size, making it difficult to accurately distinguish the objects. Therefore, we recognized the objects in a separated state and sorted them. Keywords: Python, OpenCV, image recognition ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it suitable for various locations and usable in a wide range of scenarios. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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DobotLab Programming Guide

A teaching material that allows beginners to learn how to control the small robotic arm DOBOT Magician using the easily accessible Dobot Lab.

This is an original teaching material from Afrel. It is a user manual for programming using the compact robot arm "DOBOT Magician" (hereafter referred to as DOBOT), which can be installed on a desktop, along with the dedicated software "DobotLab." 【Features】 - Recommended for those who want to learn the basics of controlling a robot arm for the first time. - By using specially developed software, programming can be done simply by arranging blocks, making it easy for beginners to control the robot arm. 【Learning Content】 - Basic knowledge of DOBOT and fundamental control methods - Controlling the robot arm "DOBOT" with programs using DOBOTBlock Lab (icon-based programming language)

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[Technical Information] Robot Arm × AI for Recognizing and Sorting Screws and Bolts

■Video available■ We sorted screws and bolts using a small robotic arm and AI.

Here is a case article introducing the tabletop-sized small robot arm, DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/86560396dea14f699643 ■ Content We tested whether it is possible to identify small objects such as screws and bolts and sort them using a small robot arm. Keywords: AI, image classification, automatic sorting, pneumatic gripper ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. Its design does not require prior safety training, making it suitable for various locations and applicable in a wide range of scenarios. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Case Study] DOBOT Magician (RPA × Robot Arm)

Graduation research on the collaboration between RPA and small robotic arms with the theme of "Semi-Automation of Shipping Operations."

We will introduce a case where the DOBOT Magician is utilized as a compact robotic arm in conjunction with RPA. For more details, please visit the URL below. ■ What is DOBOT Magician? Despite being priced around 150,000 yen, it is a compact robotic arm equipped with a 4-axis arm and comes with standard tool heads such as a gripper, suction cup kit, writing & drawing tools, and a 3D printer. The dedicated software allows programming by arranging blocks, enabling beginners to smoothly learn and operate the robotic arm. The device does not require prior safety training, making it easy to install and use in various locations and scenarios. Afrel provides original guides (control learning texts) using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robotic arm.

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[Technical Information] Installing an emergency stop switch on the DOBOT.

■Sample program available■ Introducing a case where a simple emergency stop switch was created using an API to stop the operation of DOBOT and an external switch!

Here is an article introducing a case study of the tabletop-sized small robot arm, DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/816b83079a6caf8df625 ■ Content DOBOT Magician does not have an emergency stop button or emergency stop function implemented. Therefore, I would like to create a simple emergency stop switch using an API to stop the operation of DOBOT and an external switch. Keywords: Python, DOBOT ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it suitable for various locations and usable in a wide range of scenarios. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Case Study] DOBOT Magician (AI × Robot Arm)

Utilizing the small robotic arm DOBOT Magician combined with AI in the data science internship at Daihatsu Motor Co., Ltd.

This is an introduction to the case of Daihatsu Motor Co., Ltd. conducting an internship using the small robotic arm DOBOT Magician in collaboration with AI. For more details, please see the URL below. ■ What is DOBOT Magician? Despite being priced around 150,000 yen, it is a small robotic arm equipped with a 4-axis arm and comes with standard tool heads such as a gripper, suction cup kit, writing & drawing tools, and a 3D printer. The dedicated software allows programming by arranging blocks, enabling beginners to smoothly learn and operate the robotic arm. The main unit does not require prior safety training, making it easy to install and use in various locations, allowing for versatile applications in different scenarios.

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[Technical Information] Bulk Picking with Robot Arm × Image Recognition

■Sample program available■ Introducing a case where overlapping objects were moved using a robotic arm for bulk picking!

Here is an article introducing a case study of the tabletop-sized small robot arm DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/5d8890ade413db114e99 ■ Content When the objects to be distinguished are touching or overlapping, they are recognized as a single mass, which can lead to them being ignored as a larger size, making it difficult to accurately identify the objects. Therefore, to enable the recognition of overlapping objects individually, we added a motion to break apart the objects at the areas where they seem to overlap. Keywords: Python, OpenCV, image recognition, AI ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it suitable for various locations and usable in a wide range of scenarios. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Technical Information] Recognizing each object individually, distinguishing and sorting them with AI.

■Sample program available■ Introducing a case where multiple types are individually recognized by AI (image recognition) and picked by a robotic arm!

Here is an article introducing a case study of the tabletop-sized small robot arm DOBOT Magician. ■ Article here https://qiita.com/shimamotosan/items/2b35b6290c0e959fa52a ■ Content Created a program to distinguish and sort multiple types of objects that interact with each other. Keywords: Python, OpenCV, image recognition ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety education, making it suitable for various locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Technical Information] Extracting the outline of the subject from a green background (AI)

■Sample program available■ Introducing the "method for acquiring the region of the target object" to classify objects using AI (image recognition) and sort them with a robotic arm!

Here is an introduction to a case study article about the tabletop-sized small robot arm DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/57bdc00464d6ec703fc7 ■ Content We will introduce a method to extract the background color and separate the object from the background. Keywords: Python, OpenCV, image recognition ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. Its design does not require prior safety training, making it suitable for various locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Technical Information] How to Use DobotLab Teaching & Playback

Introducing the direct teaching method using the user-friendly robot arm control software "DobotLab" for beginners!

Here is an article introducing the tabletop-sized small robot arm, DOBOT Magician. ■ Article link https://qiita.com/shimamotosan/items/f07ac90cbba298c14824 ■ Content We will introduce the direct teaching method using the user-friendly robot arm control software "DobotLab" for beginners! Keywords: dobot, robot arm, DobotLab ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it suitable for various locations and applications. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the use of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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【Technical Information】Set Home Position (DOBOTLab)

Introducing how to set the home position of the small robotic arm DOBOT Magician using the control software "DobotLab".

Here is an introduction to a case study of the tabletop-sized small robot arm, DOBOT Magician. ■ Article here https://afrel.co.jp/technology-info/dobot/product/50475/ ■ Content DOBOT has a coordinate called the home position, which can be set arbitrarily. This is the reference coordinate when executing the home command (the action of moving to the home position), and it can reset the coordinate deviation to some extent. ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it less restricted in terms of usage locations and applicable in various scenes. Afrel provides original guides using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python) to support the utilization of the robot arm. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[For Educational Institutions] Robot Arm × Image Processing AI・IoT Learning Set

Recommended for learning at universities, technical colleges, and vocational schools! A system for the collaboration between production lines and robotic arms, along with image processing, can be easily and practically learned.

The newly released "DOBOT Magician AI・IoT Learning Set" allows users to acquire fundamental knowledge of robot control, image processing, and AI/IoT using the small robotic arm DOBOT Magician and Raspberry Pi 4B. The teaching materials include many examples, enabling learners to intuitively progress through their studies by working on tasks while operating the small robotic arm in a short amount of time. It is recommended for those who wish to learn about robots and open-source technologies, which are increasingly being utilized in the industrial sector. ■ Features - Learn the processes of machine learning and classification methods, how to set thresholds, and the differences between classifiers. - Use a microscope to distinguish fine differences such as scratches and gloss. - Utilize a conveyor belt to create an environment for learning about smart factories. ■ Learning Flow 1) Create a dataset Capture images of good and defective products. 2) Learning and inference Use the dataset to learn, create a weight data file, and perform inference. Send the results of good/defective to the DOBOT Magician based on the inference results. 3) Control the DOBOT Magician Sort based on the good/defective results.

  • Other industrial robots

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[Technical Information] Recognizing the target object from the entire camera image (AI)

Sample program available ■ Introducing a method for object recognition that uses "a single image as training data without cropping the object from the camera image"!

Here is a case article introducing the tabletop-sized small robot arm, DOBOT Magician. ■ Article link: https://qiita.com/shimamotosan/items/d3a06e834d332b914973 ■ Content When distinguishing objects, we use OpenCV to take the extracted objects from camera images as training data or input them into a trained model for classification. Therefore, fine-tuning is necessary to effectively recognize and extract objects from camera images. This time, we will modify the program to classify objects using a single image as training data without extracting objects from the camera image. Keywords: Python, OpenCV, AI, image recognition, dobot ■ About DOBOT Magician DOBOT Magician is a robot arm equipped with a 4-axis arm, priced around 150,000 yen. The device does not require prior safety training, making it suitable for various locations and applicable in a wide range of scenarios. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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[Technical Information] Is it possible to distinguish collected images other than the operating environment as training data?

Sample program available ■ We verified whether it is possible to distinguish images that were not taken in a real operating environment using a smartphone camera as training data!

We would like to introduce a technical verification article on the tabletop-sized small robotic arm, DOBOT Magician. ■ Article here https://qiita.com/shimamotosan/items/1a0c6c73b1e60ae5db43 ■ Content We are collecting learning data for objects to be identified in an environment where sorting is performed. However, in AI-based image recognition, it is possible to include image data collected outside the actual operational environment in the training. This time, we verified whether it is possible to identify objects using images taken with a smartphone camera that are not from the actual operational environment as training data. Keywords: Python, OpenCV, AI, image recognition, dobot ■ About DOBOT Magician DOBOT Magician is a robotic arm equipped with a 4-axis arm, priced around 150,000 yen. The main unit does not require prior safety training, making it less restricted in terms of usage locations and applicable in various scenes. * DOBOT Magician product introduction page https://afrel.co.jp/product/dobot

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Achieving transportation automation: Cat-shaped delivery robot Bella Bot

Automating transportation tasks within the facility with AMR (Autonomous Mobile Robot)! Ensuring high safety with obstacle avoidance features!

BellaBot is a cat-shaped autonomous delivery robot. By automating the cumbersome transportation tasks within facilities, it achieves labor-saving and efficiency improvements. With a 99% obstacle recognition rate, it can flexibly and accurately avoid obstacles without any "dead spots." It selects the optimal route based on the operating environment and moves accordingly. ■ Features - Rich expressions inspired by cats - Safety ensured with omnidirectional 3D obstacle avoidance and the industry's first dual SLAM navigation technology - Tray with four sensors - Interaction possible through voice, lights, touch, and expressions - Intuitive, simple, and easy operation

  • Transport and handling robots

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Hola Bot, a large-capacity transport robot with a maximum carrying weight of 60kg.

An ideal automated transport robot for automating transportation tasks within factories! Waterproof internal cabin with IPX5 rating and hands-free operation for peace of mind! Equipped with voice recognition and calling features!

HolaBot is a large-capacity automated transport robot. By automating transportation tasks that require human labor within factories, it achieves labor reduction and efficiency. In the event of an obstacle, it ensures high safety with a 3D obstacle avoidance technology that can stop within 0.5 seconds. ■Features - Load capacity of 60 kg and a volume of 120 L - Calling function that allows you to summon the robot and assign tasks to it at any time - Equipped with air motion for non-contact operation - Capable of tracking sound through voice recognition and rotating to change direction for ease of use by staff - Intuitive, simple, and easy operation

  • Transport and handling robots

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Easy automation! Compact industrial robot arm DOBOT MG400

Equipped with collision detection and vibration suppression algorithms for precise operation! Standard equipped with an emergency stop button, designed to be even more user-friendly for industrial applications!

This is a compact robot arm with a base size of 190mm x 190mm, featuring a rotation angle of 320 degrees and an arm reach of 44cm. It excels in portability, installation, and operability, ensuring high safety and meeting the automation needs of manufacturing sites. ■Features - Equipped with a standard emergency stop button - Accurate operation with collision detection and vibration suppression algorithms - Safety stop function and brake function during power cut - Terminals for PLC (sequencer) connection (16 input/output terminals each) Additionally, the dedicated software allows programming by arranging blocks, enabling beginners to smoothly learn and operate the robot arm. It can be installed in a space as small as a single A4 sheet of paper, making it versatile for various settings. *DOBOT Magician product page https://afrel.co.jp/product/dobot/ ◆◆Contact Information for Afrel Corporation◆◆ TEL. 0776-25-0303 9:30-17:30 (excluding weekends, holidays, and year-end/New Year) FAX. 0776-25-0309 robotcs-info@afrel.co.jp

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[Textbook] DOBOT MG400 Dobot Studio Pro Guide

If you are considering the introduction of industrial robot arms into your industrial equipment and are having trouble with setup or usage, this is a must-see! Learn everything from initial setup to programming control.

★Afrell Original Teaching Material★ This is a teaching material that allows you to learn how to control the industrial small robot arm "DOBOT MG400" using dedicated software. 【Recommended for】 - Those who want to learn the basics of controlling a robot arm for the first time - Those considering the introduction of MG400 industrial equipment and are having trouble with setup, usage, and support 【Features】 - Learn the basic operational methods from hardware setup after unpacking to programming control - Practically experience "Direct Teaching" and "Piece Picking," which are in high demand in the industrial sector, by moving the robot - Includes tasks using the suction cup and separately sold gripper that come with the DOBOT MG400 unit - Latest information on applications and firmware updates is published online 【Learning Content】 - Basic knowledge of DOBOT MG400 - Basic control methods using the dedicated software "Dobot Studio Pro" - Control methods using suction cups and small electromagnetic grippers

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Automation of transportation operations ■ Door-equipped automatic transport robot SwiftBot

An automatic transport robot with electric automatic opening and closing doors that ensures clean and safe transportation, featuring a function to automatically yield to pedestrians and real-time route projection for safety assurance.

SwiftBot is an automated transport robot with doors. By automating complex transportation tasks within facilities such as factories and medical institutions, it achieves labor-saving and efficiency improvements. With a 99% obstacle recognition rate, it can avoid obstacles flexibly and accurately without any "dead spots." It selects the optimal route based on the operating environment and moves accordingly. ■ Features - Maximum load capacity of 35 kg - Automatic pedestrian yielding function to improve efficiency and performance during rush hours - All-direction detection capability for enhanced safety - Real-time status projection on the floor to visualize the robot's movements - Hygienic delivery with an electric automatic opening and closing door - Compatible with Type-C/4G/LORA/Wifi, equipped with IoT functions that can connect with various devices - Automatic charging function - Ability to call the robot from a smartphone even from a distance

  • Transport and handling robots

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Smart Autonomous Delivery Robot PuduBot2

An automatic transport robot that senses its surroundings in 360 degrees to achieve safe operation. Equipped with superior features compared to conventional models, it demonstrates improved stability and high performance.

PuduBot2 is an automated transport robot with improved mobility stability. By automating complex transportation tasks within facilities such as factories and medical institutions, it achieves labor-saving and efficiency. With a 99% obstacle recognition rate, it can flexibly and accurately avoid obstacles without any "dead spots." It selects the optimal route based on the operating environment and moves accordingly. It operates for up to 24 hours on a 3-hour charge. ■ Features - Maximum load capacity of 40kg - Dual lidar sensors accurately detect the surrounding environment in 360°, ensuring safe and reliable movement - Industry-leading chassis system adapts to various surfaces, enhancing mobility stability - Equipped with automatic charging functionality - Can be summoned from a distance using a smartphone - Equipped with a high-performance LFP battery, allowing operation for up to 24 hours on a 3-hour charge - Completely sealed mechanical design to shut out dust and water - Excellent IoT compatibility, supporting Type-C/4G/LoRa/Wi-Fi connections

  • Transport and handling robots

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[BellaBot Video Case Introduction] Special Nursing Home for the Elderly

This introduces how the cat-shaped automated transport robot BellaBot is being utilized for transporting meals, sheets, documents, and more in a special nursing home.

BellaBot is a cat-shaped autonomous delivery robot. By automating the cumbersome transportation tasks within facilities, it achieves labor-saving and efficiency. This time, we will introduce how BellaBot is being utilized in a special nursing home.

  • Transport and handling robots

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[PuduBot Video Case Introduction] Support for Quality Inspection Process and Factory Automation

Introducing how the automated delivery robot PuduBot is utilized for transporting inspection samples in the quality inspection process of a hard disk circuit board manufacturer!

PuduBot is an automatic delivery robot with a maximum load capacity of 30 kg. By automating the complicated transportation tasks within facilities, it achieves labor-saving and efficiency. This time, we will introduce how BellaBot is being utilized at a hard disk circuit board manufacturer.

  • Transport and handling robots

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[Data Publicly Available] Understandable through Video! Functions and Use Cases of Small Robot Arms

Introducing the operation methods of DOBOT Magician, verification of maximum speed and load capacity, and examples of applications such as automatic sorting and pickup using AI and image recognition in videos.

This document provides clear video examples of how to operate the DOBOT Magician, verify its maximum speed and payload, and utilize it for tasks such as automatic sorting of parts using AI and image recognition, as well as parts pickup. *Recommended for: - Automation personnel gathering information on small robotic arms - Those who want to envision the situation after implementation - Those who want to see the movements of small robotic arms *Table of Contents: - Operating the DOBOT Magician (DOBOTStudio, Direct Teaching, Control Panel) - Verifying the functions of the DOBOT Magician (Maximum speed, Payload) - Examples of using the DOBOT Magician (Moving and flipping cases, Custom soft gripper hand usage, Keyboard typing with two units linked, Pickup and alignment of 7mm parts, Automatic sorting of parts using AI and image recognition, Image processing sorting using deep learning) - 10 selected technical videos - For those who want to know more *For more details, please download the PDF or contact us.

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[Explanatory Material] A Deep Dive into the Appeal of the DOBOT MG400 through Four Questions

We will explain the "DOBOT MG400," which allows for easy automation, aimed at those considering the introduction of small industrial robot arms.

This article explains the "DOBOT MG400," a compact robotic arm evolved for industrial use, designed for those considering the introduction of small industrial robotic arms to easily achieve automation. If you want to know what the "DOBOT MG400" is, what it can do, and the differences between it and the "DOBOT Magician," please read on. *Table of Contents - Introduction of Robots in the Industry - In-Depth Analysis with Four Questions! Q1. What is the DOBOT MG400? Q2. What are the features of the DOBOT MG400? Q3. What can the DOBOT MG400 do? Q4. What are the differences between the DOBOT MG400 and the DOBOT Magician? - Reference Information *For more details, please download the PDF or contact us.

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4-axis scalar collaborative robot arm "DOBOT M1 Pro"

A scalar-type collaborative robot arm that increases productivity with precise and smooth operation and high-speed performance. It realizes multiple functions required on the production line.

This is a lightweight and portable 4-axis scalar robot arm. Due to its simple trajectory structure, it has a wide range of motion and smooth operational capabilities. It boasts a repeatable positioning accuracy of ±0.02mm, making it suitable for precise tasks. By combining various tool heads, it can be utilized in a variety of scenarios, contributing to the automation and labor-saving of a wide range of manufacturing processes. ■ Features - Wide range of motion: Radius R400mm x Height H400mm - Precise and smooth operation: Repeatable positioning accuracy of ±0.02mm in a planar coordinate system (XYZ) trajectory - Standard safety stop function with automatic collision detection and emergency stop button - Compatible with external devices such as PLCs (programmable logic controllers) (DC24V/DIO + LAN/Ethernet) ■ Examples of "DOBOT M1 Pro" usage scenarios - Automatic sorting of screws and nuts - Automation of product inspection - Product appearance inspection - Automatic alignment of parts - Industrial welding - Circuit board plugin ▼ For product information, click here https://afrel.co.jp/product/dobot/m1pro/

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DOBOT M1 Pro Guide Set

With programming guide! A guide set to support the introduction of the 4-axis scalar collaborative robot arm "DOBOT M1 Pro" to production sites.

This set includes products such as a guidebook explaining basic control using dedicated software from hardware setup, and an air pump kit, allowing for immediate use of the DOBOT M1 Pro in production environments. 【Product Lineup】 - M1 Pro Start Set A [Model Number: AFD-M1STA] This set comes with the DOBOT M1 Pro and an original Afrel guidebook that explains basic control using the dedicated software "Dobot Studio Pro." You can learn everything from software installation to practical control using end effectors. It includes a suction cup and an air pump kit, so you can get started right away after purchase. - M1 Pro Start Set B [Model Number: AFD-M4STB] This set adds a "Small Electromagnetic Gripper Kit" to the "M1 Pro Start Set A." By adding a small electromagnetic gripper as an end effector, you can switch it out according to the shape and characteristics of the items you want to move, expanding its usability.

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[Textbook] DOBOT M1 Pro Dobot Studio Pro Guide

If you are considering the introduction of industrial robotic arms to your production site and are having trouble with setup or usage, this is a must-see! Learn everything from initial setup to programming control.

★Afreel Original Teaching Material★ This is a teaching material that allows you to learn how to control the industrial robot arm "DOBOT M1 Pro" using the dedicated software for DOBOT M1 Pro. 【Recommended for】 - Those who want to learn the basics of controlling a robot arm for the first time - Those considering the introduction of DOBOT M1 Pro industrial equipment and are having trouble with setup, usage, or support 【Features】 - Learn the basic operational methods from hardware setup to programming control - Includes practical control of the "suction cup" and "small electromagnetic gripper," which are the end effectors of DOBOT M1 Pro 【Learning Content】 - Basic knowledge of DOBOT M1 Pro - Basic control methods using the dedicated software "Dobot Studio Pro" - Control methods using the suction cup and small electromagnetic gripper

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Automated Delivery Robot PUDU Robotics for Streamlining Delivery Operations

Achieving automation and labor-saving in transportation tasks at production sites with automatic delivery robots / BellaBot, SwiftBot, HolaBot, PuduBot2

PUDU Robotics' robots are automated transport robots that contribute to improving operational efficiency, labor-saving, and productivity in various situations. Afrel has established a service system that allows for a worry-free introduction, from proposing various solutions tailored to needs to providing technical support during implementation. ■ Automated Transport Robot Lineup - BellaBot: An automated transport robot that realizes transportation automation, shaped like a cat. - SwiftBot: An automated transport robot with an electric automatic opening and closing door. - HolaBot: An automated transport robot with a maximum carrying weight of 60 kg, a large-capacity type. - PuduBot2: A smart automated transport robot with improved mobility stability. ■ Ongoing Consultation Sessions for Automated Transport Robot Implementation During the consultation sessions, you can discuss the selection of automated transport robots suitable for your applications, case studies of their use in factories, and utilization methods considering the entire manufacturing process. ◎ If you are interested, please consult with us. - Those who want to automate transportation tasks performed by workers. - Those who want to know case studies of automated transport robots used in factories. ▼ For details and application, click here https://afrel.co.jp/consultation/robotics/

  • Other conveying machines
  • Transport and handling robots

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6-axis collaborative robot arm "DOBOT Nova Series"

A super lightweight 6-axis collaborative robot arm that achieves productivity improvement while saving space.

Achieve maximum performance in the smallest space. The required space is only 1m², allowing for installation without significantly changing the factory layout. Equipped with multiple safety features, it can be easily mastered safely through hand teaching and graphical programming. ■ Features - 40% lighter compared to industrial collaborative robots - User-friendly design achieved through hand teaching and graphical programming - Additional features include collision detection, human motion detection, and automatic posture locking when power is off ■ "DOBOT Nova Series" Utilization System Package Work Magic-1 https://robot.afrel.co.jp/dobot/ ▼ For product information, click here https://robot.afrel.co.jp/dobot/nova/

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6-axis collaborative robot arm "DOBOT CR Series"

A scalar-type collaborative robot arm that increases productivity with precise and smooth operation and high-speed performance. It realizes multiple functions required on the production line.

It has a portable weight capacity of 3 to 16 kg and is equipped with two types of safety features. Direct teaching through button operation allows for the recording and reproduction of trajectories. With over 200 application scenarios, it boasts strengths such as flexibility and ease of use, meeting various needs. ■ Features - Repetition positioning accuracy of ± 0.02 mm, thinner than a human hair - Equipped with visual programming, allowing operation from devices such as smartphones, tablets, and computers. ■ "DOBOT Nova Series" Utilization System Package Work Magic-1 https://robot.afrel.co.jp/dobot/ ▼ For product information, click here https://robot.afrel.co.jp/dobot/cr/

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Picking and Sorting Work Automation System "Work Magic-1"

Working alongside robots, automation begins from that day. Bringing new strength to the field with a compact robotic arm.

With DOBOT, automate and streamline production sites "quickly," "easily," and "safely." ■Features This robot system significantly reduces initial lead times for design and allows for the verification of effectiveness from the day of delivery. Automation for tasks such as picking and sorting has been packaged with DOBOT. With packaged solutions and implementation support, quick deployment is possible. Manuals and operational training materials are provided so that operators and managers can start using it immediately. We offer strong support to ensure it can be operated in-house. ■Three lineups tailored to your plans! We offer "Light," "Standard," and "Pro." Choose the optimal kit from these three options. ■Reference Video Introduction to Work Magic 1 [Pro] System Package https://www.youtube.com/watch?v=lJyU8UzQGzQ&t=1s ------------------------------------------------------------ ▼For product information, click here https://robot.afrel.co.jp/dobot/

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Solving labor shortages with automated transport robots: 'Automated Transport Cat Bot - F1'

For factories and medical institutions: Automated transport robots that work alongside people alleviate labor shortages.

The cat-shaped design of PUDU Bellabot is well-known for alleviating labor shortages in factories and medical institutions. ■Features - Cat-shaped, friendly design - No need for facility construction or system replacement; it can start working together from the day it is introduced. We provide an introduction program that includes initial setup such as mapping and maintenance services as a single package. ------------------------------------------------------------ ▼For product information, click here https://robot.afrel.co.jp/pudu/

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[Useful Materials] Subsidy for Labor-Saving Investment in Small and Medium Enterprises ■ Comprehensive Explanation Materials

A Comprehensive Guide on Effectively Utilizing the "Subsidy for Labor-Saving Investments for Small and Medium Enterprises" and the Application Process.

This document focuses on the new subsidy system called "Small and Medium-sized Enterprises Labor-saving Investment Subsidy," which is specifically designed for the introduction of robots in production sites, including factories. It introduces an overview of the subsidy, key points for application, and examples of products eligible for this subsidy. If you are struggling with investment plans aimed at labor-saving and automation of manufacturing processes through robot introduction, please take a look. 【Recommended for the following people】 ● Those who want to utilize subsidies to improve factory productivity ● Those who want to achieve automation and productivity improvement through robot utilization ● Those considering the introduction of sorting robots and automated transport robots ● Those thinking about introducing collaborative robots for new business ventures ● Those planning to develop human resources related to RX promotion ■<Recommended for robot introduction in production sites> Comprehensive explanation document on tips for effectively utilizing the "Small and Medium-sized Enterprises Labor-saving Investment Subsidy" and the application process■ ▼ Download here https://robot.afrel.co.jp/media/materials/explanation/shoryokuka2024_by_afrelrobotics-3/

  • Management Seminar

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[Useful Materials] Explanation Document on Tips for Training to Foster Literacy

The quality of robot operation is determined by the positive feelings of on-site staff! A guide to training tips for fostering literacy.

This document introduces two key points on training aimed at fostering the literacy of on-site staff, which is crucial for enhancing the quality of robot operations and achieving objectives. ■ Point 1: What are the tips for training that can help on-site staff develop a positive attitude towards robot implementation before its introduction? ■ Point 2: What are the specific ways to address five scenarios that can help alleviate the concerns of on-site staff during the implementation? 【Recommended for】 ● Those who want to alleviate the concerns of on-site staff and foster a positive mindset before introducing robots in production sites. ● Those who want to grasp hints on the literacy that on-site staff should acquire when introducing robots in production sites. ● Business owners, production management leaders, and HR leaders involved in activities to introduce robots in production sites. ■ <The quality of robot operations is determined by the positive attitude of on-site staff!> A guide to tips for training aimed at fostering literacy ▼ Download here https://robot.afrel.co.jp/media/materials/explanation/training_tips_for_fostering_literacy/

  • Management Seminar

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[Information] A Thorough Explanation of Two Key Points to Implement Before Introducing Collaborative Robots

Optimal for Mid-sized Manufacturing Companies Considering Automation: A Comprehensive Guide on Two Key Points to Implement Before Introducing Collaborative Robots

In this document, we will introduce two key points regarding the training aimed at fostering the literacy of on-site staff, which is crucial for enhancing the quality of robot operations and achieving objectives. ■ Point 1: Sharing the purpose of robot implementation within the company is essential! ■ Point 2: Four common barriers to implementation + one additional point 【Recommended for】 ● Those considering robot implementation to improve productivity ● Those considering robot implementation to expand production capacity ● Those considering robot implementation to address labor shortages ■ <Ideal for mid-sized manufacturing companies considering automation> A comprehensive guide on two points to consider before introducing collaborative robots ■ ▼ Download here https://robot.afrel.co.jp/media/materials/explanation/two-points-to-before-introducing/

  • Technical and Reference Books

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[Useful Materials] Ask the Professionals! Comprehensive Explanation of Subsidies for Labor-Saving Investments in Small and Medium Enterprises

Insights from a Grant Expert! Comprehensive Explanation Materials on "Human Resource Development Support Grant"

This document introduces the "Human Resource Development Support Subsidy," which can be utilized when taking external training necessary for acquiring knowledge for in-house DX (digital transformation). It outlines the process from preparation and application to receiving the subsidy, as well as key points to keep in mind. If you are struggling with investment plans aimed at labor-saving and automation of manufacturing processes through robot implementation, please take a look. 【Recommended for the following people】 ● Those who are considering starting human resource development within their company ● Those who believe that developing human resources for automation and productivity improvement using robots is essential ● Those planning human resource development related to RX promotion ■ <Thorough Explanation of Utilizing Subsidies for DX Human Resource Development Training> Hear from the Subsidy Experts! Comprehensive Explanation Document on "Human Resource Development Support Subsidy" ■ ▼ Download here https://robot.afrel.co.jp/media/materials/explanation/jinzaikaihatsu_joseikin/

  • Management Seminar

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Tabletop Robot Arm DOBOT Magician

High-precision, multifunctional compact type robot arm DOBOT Magician

The DOBOT Magician is priced around 150,000 yen, yet it features a 4-axis arm and comes with standard tool heads such as a gripper, suction cup kit, writing & drawing tools, and a 3D printer. Additionally, the dedicated software allows programming by arranging blocks, enabling beginners to smoothly learn and operate the robot arm. The main unit does not require prior safety training, making it less restricted in terms of installation and usage locations, and it can be utilized in various scenarios. Afrel provides original guides (control learning texts) using dedicated software (DobotStudio) and programming languages (C, C#, Java, Python, Arduino, AI, image processing, and image recognition) to support the use of the robot arm. *DOBOT Magician product page https://afrel.co.jp/product/dobot-magician/ ◆◆ Afrel Corporation Contact Information ◆◆ TEL. 0776-25-0303 9:30-17:30 (excluding weekends, holidays, and year-end/New Year) FAX. 0776-25-0309 info@afrel.co.jp

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  • 義務化された熱中症対策に取り組む製造現場、工場、物流倉庫へ 排気熱風なく※室温-4.1℃の冷風を 工事不要で暑さ対策 気化式スポットクーラー Pure Drive ピュアドライブ ※環境条件…室温35℃/湿度50%/風量「中」
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