The Autonomous Delivery Vehicles Manufacturer
Linya Technology was established in 2015. It is a high-tech enterprise specializing in the research, design, production and sales of robots. It has a factory covering an area of over 20,000 square meters.
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Autonomous Delivery Car
The autonomous delivery car is a new generation of unmanned delivery equipment that focuses on intelligent perception and safe driving. It features a modern streamlined design. The car dimensions are
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Driverless Delivery Vehicle
The driverless delivery vehicle is equipped with an on-board high-definition touch screen and an intelligent interaction system. Users can complete product selection and payment through the touch
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Delivery Autonomous Vehicle
The intelligent delivery autonomous vehicle is an intelligent unmanned delivery robot specially designed for outdoor scenarios. It integrates modern streamlined design into various environments, and
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Driverless Delivery Cars
The vehicle has real-time monitoring and intelligent scheduling functions. Relying on panoramic surveillance cameras and 5G networks, it can realize the full-process visualization of the delivery
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Driverless Delivery Vehicles
Driverless delivery vehicles adopt a modern streamlined appearance design, balancing aesthetics and practicality. The body is made of high-strength alloy material, ensuring the robustness, collision
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Automated Delivery Vehicles
In terms of efficiency and cost advantages, automated delivery vehicles can operate 24/7 without interruption, working continuously for over 8 hours. Compared to manual delivery, this significantly
Why choose us
Comprehensive Scenario Coverage
The product's application scenarios span three major domains — Commercial (shopping malls, hotels, restaurants, etc.), Public Services (hospitals, airports, libraries, etc.), and Industrial (factory workshops) — achieving comprehensive, end-to-end coverage ranging "from commercial to industrial."
Strong Supply Chain Integration Capabilities
Establish an integrated model encompassing production, academia, R&D, sales, and service; forge a complete closed loop spanning theoretical research, product development, delivery, and operations; thereby reducing external dependencies and enhancing operational efficiency.
Extensive Product Range
We have currently established multiple product lines — including delivery robots, service robots, commercial cleaning robots, security patrol robots, and autonomous delivery vehicles—covering four core functions: delivery, reception, cleaning, and patrolling.
Our Certifications
The products have obtained specialized international certifications — including the EU's CE, the US's FCC, and Japan's Telec — meeting market access standards for major global markets and clearing the path for overseas expansion.
Artificial Intelligence and Machine Learning
These systems allow ADVs to navigate streets, assess obstacles, and optimize delivery routes. Machine learning improves the vehicle's performance by analyzing data from past deliveries and refining its operations.
LIDAR and Sensors
LIDAR (Light Detection and Ranging) and other sensors, such as cameras and radar, help ADVs detect their surroundings in real time. These technologies ensure that the vehicle can avoid obstacles, follow traffic rules, and make decisions about its environment.
High-Precision GPS
Accurate navigation is essential for deliveries, and high-precision GPS systems ensure that ADVs reach the correct destination efficiently.
Cloud Computing
The data collected by ADVs is processed through cloud platforms, enabling real-time communication, route adjustments, and fleet management.
5G Connectivity
The speed and low latency of 5G networks allow ADVs to communicate with infrastructure and other vehicles in real time, improving safety and operational efficiency.
Types of Autonomous Vehicles Used in Logistics
Self-Driving Trucks
These vehicles are primarily used for long-haul transportation and can autonomously navigate highways and urban environments.
Autonomous Delivery Robots
Small robots designed for last-mile delivery can navigate sidewalks and streets to deliver packages directly to consumers.
Drones
Unmanned aerial vehicles (UAVs) that deliver small packages over short distances, particularly in hard-to-reach or congested areas.

Three Use Cases of Autonomous Vehicles
Automated Vehicles in the Warehouse
Automated stackers, forklifts, pallet trucks, and small carry rack robots are examples of autonomous vehicles used in warehouses. They train themselves to follow their chosen paths and engage in relevant warehousing activities using machine and deep learning.
Autonomous Truck Platoons
Manufacturers and trucking companies are considering truck platooning for long-haul routes.
Platooning allows a convoy of two or more digitally connected trucks to travel closely behind one another. In the use cases studied, a vehicle operated by a driver leads a platoon. The other truck drivers following it monitor the entire system's performance.
Mobile Delivery Hubs
Delivery vehicles are often delayed due to traffic and the difficulty of parking in urban spaces.
These issues may be resolved using mobile delivery hubs, lessening the necessity of bringing big trucks into crowded, busy cities. On the outskirts of an urban region, the mobile delivery hubs would act as access points. Drivers would drop off packages at the mobile delivery hub and then be transported to their destination by a person, a drone, or a self-driving car.
Challenges and Considerations with Autonomous Vehicles
Ensuring the reliability and safety of autonomous vehicle technology is paramount. Rigorous testing and continuous improvement are essential to prevent accidents caused by software or hardware failures.
Autonomous vehicles raise ethical and legal questions, such as determining liability in the event of an accident involving a self-driving vehicle. Policymakers and legal experts need to develop appropriate regulations and standards.
Autonomous cars generate vast amounts of data, which must be protected to prevent privacy breaches and cybersecurity threats.
The implementation of autonomous cars may require upgrades to road infrastructure, such as better signage, improved connectivity, and standardized communication protocols.
Widespread adoption of autonomous cars depends on public acceptance and trust in the technology. Educating the public and addressing concerns about safety and privacy are essential.
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Before Sale |
After Sale |
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Sample Confirmation |
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Comprehensive service with separate after-sale team |
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Providing information consulting and technical guidance. |
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Satisfied solution while any problem identified. |
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Packaging can be customized. |
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Exclusive and unique solution provided by professional engineers. |
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Reply to your enquiry in 24 working hours. |
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New craft, new technology and other related advisory services. |
Packing Details
Packing: Export-grade wooden crate packaging specifically designed for delivery robots to ensure maximum protection during international shipping.
Lead Time: Sample orders (1-5 units) ship in 3-7 working days. Bulk orders (50+ units) typically 20-30 working days.
Warranty: 12 months for core components (main controller, drive motor, sensors, battery).
Support: 24/7 technical support via video call for installation, map optimization, and troubleshooting.

FAQ
As one of the most professional autonomous delivery vehicles manufacturers and suppliers in China, we're featured by quality products and good price. Please rest assured to wholesale the best autonomous delivery vehicles for sale here from our factory. If you have any enquiry about cooperation, please feel free to email us.
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