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    Latent Mobile Robot AMR

    Latent Mobile Robot AMR

    Latent Mobile Robot AMR Large Warehouse Material Handling
    • Product Introduction
    • Product Parameters

    The Latent Mobile Robot AMR or Underdriven FMR is a type of vehicle that uses the differential speed principle as the driving form and uses the screw as the lifting mechanism. Combined with the Dispatch Management System and Traffic Management System, it can meet material handling requirements of up to 2,000 kg in large warehouses. Using QR code or laser SLAM navigation and others, it can adapt to various complex working conditions and environments, with precise positioning and high operating flexibility.

    Features

    • Flexible and good site adaptability
    • Various forms of Navigation and strong vehicle adaptability
    • Suitable for multi-scenarios, efficient, accurate, and easy to deploy

    TECHNICAL PARAMETERS                                                                                                                                         ● Standand ○ Optional -Not available
    Basic
    Parameters
    Model No. A1-LM06 A1-LM10 A1-LM15 A1-LM20 A1-LM30
    Load Capacity kg 600  1000  1500  2000  3000 
    Weight(incl.battery) kg 155  205  255  591  650 
    Max. Lifting Height nm 60  60  60  120  120 
    Carrier Plate Lowered Height h1(mm) 250  256  254  340(380Rotation) 350(390Rotation)
    Body Length L1(mm) 950  1150  1180  1530  1530 
    Body Width b1(mm) 650  820  860  1230  1230 
    Min.Ground Clearance m2(mm) 25  25  25  30  30 
    Min.Turning Radius Wa(mm) 492  600  616  875  875 
    Number of Wheels, Front/Mid/Rear (X=Drive Wheel)   2/2XI2 2/2XI2 2/2X2 2/2X2 2/2X2
    Charging Height mm 110  110  110  100  100 
    Motion
    Performance
    Drive Type   Differential Drive
    Movement Mode   Forward/Backward,Spot Rotation
    Travel Speed (Loaded/Unloaded) m/s 1.5/2.0 1.5/2.0 1.2/1.5 1.0/1.5 0.8/1
    Lifting Speed mm/s 40  40  40  24.5  24.5 
    Max. Gradeability (Loaded/Unloaded) % 3/5 3/5 3/5 3/5 3/5
    Positioning Accuracy mm ±10 ±10 ±10 ±10 ±10
    Angle Accuracy ° ±1 ±1 ± 1 ±1 ±1
    Battery
    Performance
    Rated Voltage V 48  48  48  48  48 
    Battery Capacity Ah 30  40  40  66  66 
    Battery Low-temp Heating  
    Charging Cycles   Full Charge and Discharge ≥ 3000 Times
    Operating Time(Rated Condition) h
    ChargingTIme(30-90%) h 1.2  1.0 
    Charging Mode   Rear Side Charging
    Safety
    Proleclion
    Front Obstace/Avoidance  Laser Detection  
    Rear Obstacle Avoidance Laser Detection  
    Saiety Bumper Detection  
    Left/Right E-stop   Front/Rear Diagonal E-stop
    Tri-color Light & Buzzer   Audible Alarm
    Others QR Code Navigation  
    Laser SLAMNaMgstion  
    Laser Reflector  
    4.3"Dsplay  
    Wired Controller   - - - - -
    MobileAPP  
    RFID Reader   - - - - -
    Working Noise dB ≤75 ≤75 ≤75 ≤75 ≤75
        The above data is sourced from the results obtained through testing by the XGEN Robot Test Team.

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    FAQs

    • What Is FMR?

      FMR stands for Forklift Mobile Robot, which is a type of forklift-style mobile handling robot primarily used for automatic material handling and storage within warehouses.
    • What Handling Or Storage Scenarios Is FMR Suitable For?

      FMR is primarily suitable for common handling and storage scenarios in warehouses, including flat transport, production line connection, cross-floor transportation, and high-level storage.
    • How Much Weight Can FMR Carry, And How High Can It Lift?

      In past project cases of XGEN, the actual implemented maximum load was 30T, and the maximum lifting height was 13.5M.
    • What Are The Advantages Of ASRS Compared To A Traditional Warehouse?

      Compared to traditional warehouses, ASRS have the following advantages: High Space Utilization ASRS makes full use of vertical space with multi-layer shelving and automation equipment, significantly improving storage density and reducing the footprint. High Automation ASRS uses automated equipment such as stackers and conveyor systems, reducing manual labor and increasing operational efficiency and accuracy. Accurate Inventory Management With the use of WMS, ASRS can monitor inventory in real-time, optimizing stock management and reducing overstocking and stockouts. High Operational Efficiency Automated equipment can quickly complete the storage, retrieval, and handling of goods, shortening processing times and improving overall efficiency. Enhanced Safety Automation reduces manual operations, lowering accident risks. Additionally, the system has monitoring and alarm functions that further enhance warehouse safety. Cost Savings Although initial investments may be high, ASRS can significantly reduce operational costs in the long run by reducing labor, improving space utilization, and increasing operational efficiency. Strong Scalability ASRS has a modular design, making it easier to expand or adjust according to changing needs. Environment-friendly Automated equipment reduces energy consumption and carbon emissions, aligning with green and environmental standards.In summary, ASRS outperforms traditional warehouses in space utilization, automation, inventory management, operational efficiency, safety, cost savings, scalability, and environmental friendliness, making them well-suited for modern logistics needs.
    • Can ASRS Be Digitally Managed?

      Yes, ASRS can be digitally managed. Digital management is one of the core advantages of ASRS and is achieved primarily through the following methods: 1. Warehouse Management System (WMS) WMS is the core of digital management in ASRS, enabling real-time inventory monitoring, optimizing storage, managing orders, and processing data to enhance overall operational efficiency. 2. Automation Equipment Integration The automated equipment in ASRS (such as stackers and conveyor systems) is seamlessly connected with the WMS, enabling full-process automation from inbound to outbound operations, reducing manual intervention. 3. Internet of Things (IoT) Technology Through sensors and RFID technology, ASRS can monitor the location, status, and environmental conditions of goods in real-time, ensuring the accuracy and timeliness of inventory data. 4. Data Analysis and Optimization Digital management collects vast amounts of operational data, which is then analyzed to optimize inventory, predict demand, and improve processes, thus increasing warehouse efficiency and reducing costs. 5. Cloud Computing and Big Data Cloud computing and big data technologies support the digital management of ASRS by providing powerful data storage, processing, and analysis capabilities, enabling remote monitoring and management. 6. Artificial Intelligence (AI) and Machine Learning AI and machine learning technologies can be applied to demand forecasting, route optimization, and inventory management, further enhancing the intelligence of the warehouse. 7. Visualization and Real-Time Monitoring Digital management provides visual interfaces and real-time monitoring features, allowing managers to keep track of warehouse status at any time and address issues promptly.
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