Robot Tank with Lidar for SLAM Mapping, AI Vision, Python ROS Integration, Tracked Mobility Kit

¥211,890
配送料無料

Robot Tank with Lidar for SLAM Mapping, AI Vision, Python ROS Integration, Tracked Mobility Kit

  • ブランド: Unbranded
販売元:

Robot Tank with Lidar for SLAM Mapping, AI Vision, Python ROS Integration, Tracked Mobility Kit

  • ブランド: Unbranded

¥211,890

保存する ¥105,900 (33%)

希望小売価格

¥317,790
在庫あり
配送料無料

14日間返品ポリシー

販売元:

¥211,890

保存する ¥105,900 (33%)

希望小売価格

¥317,790
在庫あり
配送料無料

14日間返品ポリシー

支払い方法:

説明

Robot Tank with Lidar for SLAM Mapping, AI Vision, Python ROS Integration, Tracked Mobility Kit

Robust crawler robot tank designed for development, research, and field testing. The chassis is finished in green aluminum alloy oxide for a durable, lightweight shell and low center of gravity mobility suitable for tracked movement and modular sensor payloads. Key benefits Reliable mobility for varied terrain: tracked crawler design provides stable traction and a platform for sensors and manipulators. Accurate perception and mapping: SLAM lidar plus HD and depth cameras enable realtime mapping, obstacle detection, and depthaware vision. Strong actuation and expandability: torque gear motors deliver controlled movement while an onboard robot expansion board supports additional modules and I O. Flexible development and simulation: native Python and ROS compatibility with Rviz, Movelt, and Qt toolboxes for robotic arm control and realistic environment simulation. Multiple control options: operate from a mobile app, a handle controller for firstpersonview effects, or program online through JupyterLab for remote experiments. Core features Chassis material: green aluminum alloy oxide for a balance of durability and light weight. Perception suite: SLAM lidar for mapping, HD camera for detailed imaging, and depth camera for 3D sensing. Drive system: torque gear motors designed for precise lowspeed control and reliable crawler movement. Expansion and I O: powerful onboard robot expansion board to connect actuators, sensors, and custom modules. Software toolchain: preconfigured for Python and ROS with Rviz, Movelt, and Qt toolboxes to support simulation, planning, and arm control workflows. Control modes: mobile application control, handle controller for FPV teleoperation, and JupyterLab for online programming and data analysis. Compatibility and integration Works with standard ROS toolchain components and Python development environments. Supports realworld simulation to match physical testing using Rviz and Movelt toolboxes. Modular hardware interfaces enable integration of additional sensors, manipulators, and communication modules via the expansion board. Practical use scenarios Indoor mapping and inspection: perform autonomous SLAMbased mapping of warehouses, labs, and test sites while streaming HD and depth video for remote review. Education and research: teach and prototype ROS navigation, manipulation, and perception algorithms using Rviz, Movelt, and JupyterLab workflows. Remote teleoperation and prototyping: use the handle controller and mobile app for FPV exploration, then attach manipulators and develop arm control sequences in simulation and on the physical platform. What this product solves Provides a ready platform to develop and validate robotics algorithms without building a chassis from scratch. Combines mapping, vision, and mobility so teams can focus on software and application development. Offers multiple control and programming interfaces to fit development, teaching, and field deployment needs. Who this is for Robotics developers and integrators needing a versatile, sensorready mobile base. Universities and labs teaching ROS, perception, and manipulation. Prototype teams requiring a stable platform for teleoperation, mapping, and arm experiments. Technical highlights at a glance Material: green aluminum alloy oxide Mobility: crawler tank chassis with torque gear motors Sensors: SLAM lidar, HD camera, depth camera Electronics: onboard robot expansion board for additional modules Software: Python and ROS compatibility with Rviz, Movelt, and Qt toolboxes Control options: mobile app, handle controller for FPV, JupyterLab online programming The design balances durability, sensing capability, and developerfriendly software integration to accelerate robotics development and practical testing.
  • Fruugo ID: 460142284-968526446
  • EAN: 6119562023434

製品安全情報

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以下の情報は、この製品を販売する独立したサードパーティ小売業者によって提供されています。

製品安全ラベル

CE Mark
安全上の警告:
  • Please use this product under adult supervision; keep away from fire
  • high temperature and sharp objects to prevent product damage or safety hazards; if the product is damaged
  • deformed or malfunctions
  • stop using it immediately and dispose of it properly.

配送と返品

24時間以内に発送

  • STANDARD: 無料 - 間の配達 金 30 1月 2026–火 17 2月 2026 - 無料

中国より発送。

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製品コンプライアンスの詳細

以下に概説されているこの製品に固有のコンプライアンス情報を参照してください。

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製造業者:
次の情報は、Fruugoで販売される関連製品の製造業者の連絡先詳細です。

  • Essentialsd
  • Shenzhen Kulomi Technology Co., Ltd.
  • 401-13, Jinhe Building, 8 Xinhe Street, Maan Tang, Bantian
  • Longgang, Shenzhen, Guangdong
  • China
  • Shenzhen
  • CN
  • 518129
  • utopiadealsta@outlook.com
  • 13380310353

EUにおける責任者:
次の情報は、EUにおける責任者の連絡先情報の概要です。ここで言う責任者とはEUに拠点を置く指定経済事業者で、EU域内で販売される関連製品に関するコンプライアンス義務を負う者のことです。

  • Synertrade FR SAS
  • Synertrade FR SAS
  • 9 rue du Bat d'Argent
  • Lyon
  • France
  • Lyon
  • FR
  • 69001
  • info@syner-sarl.cn
  • (+33)774555006
  • https://seller.kuajingmaihuo.com/settle/qualification-service