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Process Overview
This implementation case is to provide a pleasant environment at the Shinjeon Tteokbokki factory/company. Introduction of industrial Cleaning Robot robots This is an example of this. The industrial Cleaning Robot robots Phantas and VC40 introduced are being utilized in various spaces, including the Shinjeon Tteokbokki Manufacturing line, the Shinjeon Museum (Tteokbokki Museum), and even the tennis court for employee welfare.
Especially with the introduction of Cleaning Robot robots Work efficiency class Hygiene management It has been significantly improved, contributing to providing a pleasant space where both employees and customers can feel safe.
Warranty Period
1 year
Year of execution
2024
Project period
2 weeks
Project Background and Purpose
Sinjeon Tteokbokki, through Cleaning Robot robots equipped with autonomous driving technology, advanced cameras, and sensors unmanned Cleaning Robot system We aimed to establish [it]. By having existing cleaning personnel and robots cooperate to share Cleaning Robot tasks, we increase Cleaning Robot efficiency, and through night Cleaning Robot, provide an environment where work can be focused during daytime hours. In addition, a heterogeneous and multi-type robot integrated control system SOLlink You can control the robot remotely and check the work report after every Cleaning Robot task, maximizing management efficiency and convenience.
Components
| Robot | Phantas Industrial Cleaning Robot Robot: A multi-functional robot responsible for wet and dry Cleaning Robot in large Manufacturing lines and museum spaces, maintaining hygiene in corridors and process lines. VC40 Industrial Cleaning Robot Robot: Introduced to the tennis court, an employee welfare facility, it automatically Cleaning Robot tennis ball dust and other debris from the floor. |
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Workflow
| STEP 1. | Cleaning Robot Zone Selection and Setup: The industrial cleaning robot selects a designated Cleaning Robot zone and simply sets the required Cleaning Robot mode (wet, dry). |
|---|---|
| STEP 2. | Start Cleaning Robot : The robot moves according to the set Cleaning Robot zone and begins Cleaning Robot. |
| STEP 3. | Movement Between Zones: After completing Cleaning Robot of one zone (A), it moves to the next zone (B) to Cleaning Robot continuously. |
| STEP 4. | Job Completion and Return: Once the Cleaning Robot job is complete, the robot automatically returns to the charging station to recharge. |
β» The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.
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Incheon Airport's Industrial Cleaning Robot Review π The Ultimate Carpet Cleaning Robot Has Arrived!
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Why Membership Golf Courses Always Stay Cleanπ All-in-One Cleaning Robot: Pantas
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Industrial cleaning robots now cover Incheon Airport. Gausium's SC75 industrial cleaning robot, unveiled at Incheon Airport π
Process Overview Two cleaning robots in Terminal 1 and six in Terminal 2, operating in each area of Incheon Airport, were verified for operational stability. Based on the verification of operational stability, the goal is to expand the introduction of cleaning robots across all areas of Incheon Airport. Warranty Period 1 Year Performance Year 2024 Project Duration 30 days Project Background and Objectives Disadvantages of Previous Robots The robot does not have an automatic water supply and drainage system, so personnel must manually carry and dispose of the water. When full, the robot can weigh hundreds of pounds, making it difficult to manage because of the heavy load. Proposed water supply and drainage options include workstation and SOLlink remote control. The Gausium cleaning robot supports automatic charging and features automatic water supply and drainage through the workstation. If the water supply and drainage functions are unavailable due to insufficient facility coordination, the kitchenette can be set as a maintenance point via SOLlink, allowing the robot to be remotely moved to that location for easier management.
Process Overview
This implementation case is to provide a pleasant environment at the Shinjeon Tteokbokki factory/company. Introduction of industrial Cleaning Robot robots This is an example of this. The industrial Cleaning Robot robots Phantas and VC40 introduced are being utilized in various spaces, including the Shinjeon Tteokbokki Manufacturing line, the Shinjeon Museum (Tteokbokki Museum), and even the tennis court for employee welfare.
Especially with the introduction of Cleaning Robot robots Work efficiency class Hygiene management It has been significantly improved, contributing to providing a pleasant space where both employees and customers can feel safe.
Warranty Period
1 year
Year of execution
2024
Project period
2 weeks
Project Background and Purpose
Sinjeon Tteokbokki, through Cleaning Robot robots equipped with autonomous driving technology, advanced cameras, and sensors unmanned Cleaning Robot system We aimed to establish [it]. By having existing cleaning personnel and robots cooperate to share Cleaning Robot tasks, we increase Cleaning Robot efficiency, and through night Cleaning Robot, provide an environment where work can be focused during daytime hours. In addition, a heterogeneous and multi-type robot integrated control system SOLlink You can control the robot remotely and check the work report after every Cleaning Robot task, maximizing management efficiency and convenience.
Components
| Robot | Phantas Industrial Cleaning Robot Robot: A multi-functional robot responsible for wet and dry Cleaning Robot in large Manufacturing lines and museum spaces, maintaining hygiene in corridors and process lines. VC40 Industrial Cleaning Robot Robot: Introduced to the tennis court, an employee welfare facility, it automatically Cleaning Robot tennis ball dust and other debris from the floor. |
|---|
Workflow
| STEP 1. | Cleaning Robot Zone Selection and Setup: The industrial cleaning robot selects a designated Cleaning Robot zone and simply sets the required Cleaning Robot mode (wet, dry). |
|---|---|
| STEP 2. | Start Cleaning Robot : The robot moves according to the set Cleaning Robot zone and begins Cleaning Robot. |
| STEP 3. | Movement Between Zones: After completing Cleaning Robot of one zone (A), it moves to the next zone (B) to Cleaning Robot continuously. |
| STEP 4. | Job Completion and Return: Once the Cleaning Robot job is complete, the robot automatically returns to the charging station to recharge. |
β» The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.










