HYLE Rover:
The Platforms
HYLE Rover platforms are divided into product families distinguished by payload capacity, power and operating scope. Each platform is a neutral, configurable and integration-ready base: an open architecture defined around the project.
Configuration is based on real technical parameters rather than industry categories: working environment, payload, kinematic accuracy and operational continuity. The range adapts to operational complexity without application-specific constraints.
Field experience guides the development of the platforms: every limitation identified in the field informs new engineering directions.
- Native modularity and configurable architectures
- Solutions for indoor and outdoor environments
- Integration of sensors, equipment and custom software
- A range organised by operational capacity and intended use
Two Architectures,
Two Ways to Meet Operating Requirements
- Rover con assi rigidi
Series H
- Rovers with Rigid Axles All-wheel drive.
Complete control.
Structural strength.
Series H uses a rigid-axle architecture with independently driven wheels. Steering is achieved through differential speed control, allowing the rover to turn on the spot and manoeuvre in extremely confined spaces.
This configuration maximises robustness, payload capacity and mobility over challenging terrain and in confined spaces.
The six-wheel-drive design, with an independent electric drive on each side and a reinforced structure, delivers high performance even under demanding operating conditions.
- High mechanical strength
- High payload capacity
- Manoeuvrability in very confined spaces
- Optimum grip on slopes and challenging surfaces
- Rovers with steering axles.
Series S
- Rovers with Steering Axles Dynamic efficiency.
Trajectory accuracy.
Smooth travel.
Series S uses an architecture with front steering axles, designed to ensure dynamic stability and trajectory control in complex operating environments. Its kinematic behaviour is similar to that of conventional agricultural and industrial vehicles, ensuring smooth, predictable travel.
The combination of rear-wheel drive, front steering wheels, a high-rigidity modular chassis and compensation systems optimises force distribution and reduces wheel slip, even on uneven terrain.
- Trajectory accuracy
- Minimal wheel slip
- Optimised energy efficiency
- Dynamic stability on uneven surfaces
HYLE Rover Platforms
Each model has a defined position within the range and meets specific technical parameters.
Platform selection begins with the operating context: the rover’s role, vehicle architecture and required capacity.
The range includes compact models, mid-range platforms and high-capacity solutions. Payload is one of the first selection criteria.
Confined spaces, even surfaces and challenging terrain require different dynamic behaviour. The rover’s structure affects stability, traction and manoeuvring quality.
Controlled trajectories, progressive movements and reduced wheel slip make vehicle architecture a decisive factor.
Sensors, operational modules, equipment, HMI interfaces and application software define the final configuration and the platform selected as its starting point.
The top-of-the-range model in terms of payload capacity and dimensions. Ideal for integrating custom modules, heavy loads and configurations intended for complex, demanding operating environments.
The top-of-the-range model in terms of payload capacity and dimensions. Ideal for integrating custom modules, heavy loads and configurations intended for complex, demanding operating environments.
The compact Series H unit defined by its multi-wheel drive. Designed to operate in very confined spaces where structural robustness and full manoeuvrability are required.
The range includes compact models, mid-range platforms and high-capacity solutions. Payload is one of the first selection criteria.
Confined spaces, even surfaces and challenging terrain require different dynamic behaviour. The rover’s structure affects stability, traction and manoeuvring quality.
Controlled trajectories, progressive movements and reduced wheel slip make vehicle architecture a decisive factor.
Sensors, operational modules, equipment, HMI interfaces and application software define the final configuration and the platform selected as its starting point.
- Dedicated technical consultation
Defining the Platform Best Suited to Your Project Begins with Analysing the Requirements: Payload, Environment, Accuracy, Duty Cycle and Components to Be Integrated. The HYLE Rover Team Is Available for the Technical Discussion Needed to Develop the Solution.