LRPT-06D500K-A High-Performance 6-DOF Motion Platform With 80°/s(1.2m/s) Ultra-Rapid Response high load hexapod

LRPT-06D500K-A High-Performance 6-DOF Motion Platform With 80°/s(1.2m/s) Ultra-Rapid Response high load hexapod

LRT hexapod is fast response, high precision, and it's supported by a strong and experienced technical team. We provide customers with complete one-stop solutions!
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Product Introduction

LRT high load hexapod is fast response, high precision, and it's supported by a strong and experienced technical team. We provide customers with complete one-stop solutions! Adequate supply, fast shipping, timely delivery, to provide quality products and services. Our products are through strict testing, reliable quality, welcome to consult.

 

  • The hexapod operates under the monitoring and control system.

 

  • The control system adopts a hierarchical control structure.

 

  • The monitoring unit is responsible for human-machine interface interaction, accepting user operation commands. It issues control signals to the real-time control computer.

 

Product details

 

Large carrying capacity Safe and Reliable Sturdy and Durable

 

DOF

Range

Velocity

Acceleration

Pitch

±25°

±30°/s

±150°/s2

Roll

±25°

±30°/s

±150°/s2

Yaw

±30°

±30°/s

±150°/s2

Sway

±0.30m

0.5m/s

5m/s2

Surge

±0.30m

0.5m/s

5m/s2

Heave

±0.18m

0.5m/s

5m/s2

 

product-734-773

Unit: mm

Weight: 600kg

Color: White

Material: Aluminum alloy + Steel

Payload: 500kg

Size: 1900mm*1645mm*1010mm

Size of Payload: ≤2000mm*2000mm*800mm

Installation method: Threaded hole

Mounting Hole Distance: Customize

 

Electrical parameters

 

Power Requirements

Rated Voltage: 220V AC(Range:-10%~10%)

Rated frequency: 50hz(Range:-5%~5%)

Rated power: 8.6Kw

Peak power: 12Kw

Environment

Requirements

Storage environment:

Temperature:-30~65℃

Humidity:5%~95%

Atmospheric pressure:85~108Kpa

Protection Level:IP54

Work environment:

Temperature:-20~50℃

Humidity:5%~95%

Atmospheric pressure:85~108Kpa

Protection Level:IP54

 

Control Software

 

Intelligent software design provides a user-friendly human-machine interface, ensuring the reliability of both the system software and hardware. It enables real-time control of hexapod and continuous monitoring of system status.

 

product-1315-745

 

product-1202-747

 

Delevory

 

product-720-540

 

product-800-800

 

FAQ

 

Electric Cylinders, also known as electric actuators or servo electric cylinders, are precision drive devices that convert the rotary motion of an electric motor into linear motion. They integrate components such as a servo motor, drive, high-precision ball screw or planetary roller screw, and position sensor into a complete, modular linear motion unit.

 

Core Working Principle

 

The core of an electric cylinder is its "rotary-to-linear" conversion mechanism:

 

 

Power Source

A servo motor or stepper motor receives electrical signals from the control system and generates precise rotary motion.

 
 

Motion Conversion

The motor's rotation is transmitted via a synchronous belt or coupling to a high-precision ball screw.

 
 

Linear Output

The nut of the ball screw converts the rotary motion into linear motion, driving the piston rod to extend or retract.

 
 

Precise Control

Using a matched drive and controller, the position, velocity, and force of the piston rod can be precisely controlled, achieving high-accuracy linear positioning.

 

 

Key Features & Advantages

 

Compared to traditional hydraulic and pneumatic cylinders, electric cylinders offer significant advantages:

 

High Precision & Controllability:

Paired with a servo system, positioning accuracy can reach the micron level, enabling complex, programmable motion profiles.

 

High Rigidity & High Force:

Robust construction allows them to withstand high loads and deliver high output force.

 

High Efficiency & Energy Saving:

High energy conversion efficiency (typically over 80%) and near-zero energy consumption in standby mode, far superior to hydraulic systems.

 

Clean & Environmentally Friendly:

No need for hydraulic oil or compressed air, eliminating leakage risks and ensuring a clean operating environment suitable for applications with high cleanliness requirements.

 

Low Noise & Low Maintenance: Smooth, quiet operation; does not require regular oil or filter changes like hydraulic systems, resulting in very low maintenance costs.

 

Flexible Installation: Compact, modular design allows for easy integration into various automated equipment.

 

Intelligence & Networking: Easily connected to PLCs, industrial PCs, etc., enabling remote monitoring, fault diagnosis, and bus control (e.g., EtherCAT, PROFINET).

 

Typical Applications

 

Due to their excellent performance, electric cylinders have become a core component in industrial automation and are widely used in:

 

Industrial Automation: Robot arms, assembly lines, dispensing systems, welding equipment, precision pressing.

 

Testing Equipment: Simulation shake tables, fatigue testers, high-precision positioning platforms (like the motion platform mentioned previously).

 

Aerospace: Aircraft control surface testing, hatch simulation mechanisms.

 

Defense: Radar pitch drive, missile erection devices.

 

Medical Equipment: Surgical robots, lifting and positioning of CT scanner tables, rehabilitation equipment.

 

Special Vehicles: Electric vehicle battery pack testing, driving simulators.

 

Comparison with Hydraulic & Pneumatic Cylinders

 

Characteristic

Electric Cylinder

Hydraulic Cylinder

Pneumatic Cylinder

Precision

Very High

Medium

Low

Controllability

Excellent

Good

Fair

Output Force

High

Very High

Relatively Low

Speed

High

Very High

Extremely High

Maintenance Cost

Low

High

Medium

Cleanliness

Clean

Risk of Oil Contamination

Requires Filtered Air

Energy Consumption

High Efficiency & Energy Saving

Lower Efficiency

Low Efficiency

Cost

Higher Initial Investment

Complex System, Potentially Higher Total Cost

Low Initial Investment

 

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