The precise processing capabilities of robots

With our advanced machining centers, we can ensure that each project has excellent surface finish, dimensional accuracy and repeatability. Our professional technology enables us to machine parts with tolerances as small as ±0.0002 inches (±0.005 millimeters), thus ensuring that your robot system operates with unparalleled precision. Our four-axis and five-axis CNC machining capabilities allow us to produce complex parts with strict tolerances, suitable for various robot applications, including:

include
Include
Wrist joint and elbow joint
Wrist joint and
elbow joint
Base and shoulder components
Base and shoulder
components
Mechanical arm and end effector
Mechanical arm
and end effector
Unmanned Ground Vehicle (UGV)
Unmanned
Ground Vehicle
(UGV)
Claw fingers
Claw fingers
Chassis and frame components
Chassis and
frame components
Precision bearings and drive units
Precision bearings
and drive units
Sensor holder
Sensor holder
Lightweight structural components
Lightweight
structural
components
Motor housing
Motor housing
Safety device housing
Safety device
housing
Collaborative robots (cobots)
Collaborative
robots (cobots)
Wrist joint and elbow joint
Base and shoulder components
Mechanical arm and end effector
Unmanned Ground Vehicle (UGV)
Claw fingers
Chassis and frame components
Precision bearings and drive units
Sensor holder
Lightweight structural components
Motor housing
Safety device housing
Collaborative robots (cobots)

Advantages and Features

Our robotic industry solutions boast a number of key advantages and unique features, enabling us to stand out from our competitors.

Ultra-high precision standard

Ultra-high precision standard

Relying on advanced manufacturing technology, we lay a solid foundation of high-precision quality for each part. We can stably achieve a strict tolerance control of ±0.005 millimeters, ensuring that all parts fully meet the design specifications and quality requirements, and precisely match the performance demands of high-end application scenarios.

Fast delivery turnaround

Fast delivery turnaround

Focusing on meeting the customers’ urgent delivery deadlines, we have established an efficient production system. While strictly adhering to the quality standards, we achieve rapid production turnover. Through streamlined and optimized processing procedures, 98% of the orders can be delivered within the agreed time or even ahead of schedule, helping customers shorten the product launch cycle and, on average, improving the launch efficiency by 15%, thereby establishing a competitive advantage in the market.

Comprehensive material adaptation

Comprehensive material adaptation

To meet the specific needs of the robotics industry, we offer a wide range of material options covering metals, plastics, composite materials, etc. All materials have been rigorously selected to ensure that the components fully meet the professional standards of the robotics industry in terms of performance stability and durability, and are suitable for various complex application scenarios.

Full-time expert support

Full-time expert support

From the initial product design stage to the final production implementation, our experienced team will provide professional technical guidance throughout the process. The core engineering team has over 20 years of industry expertise. With profound technical accumulation, they offer precise suggestions and quality guarantees to customers, ensuring that every project achieves high-quality results.

Case study

Our robots and automated manufacturing services have been successfully applied to multiple high-impact projects. Here are some examples that demonstrate our ability to provide high-quality and high-precision parts to meet the specific requirements of the robotics and automation industries.

Mechanical arm assembly
Automated equipment parts
Sensor shell
Automatic control system
Project Background

Project Background: A robotics company needs to provide high-precision components for its new series of robotic arms used in manufacturing.

Challenge

Challenge: To ensure the components required for achieving high performance and high reliability in various industrial environments.

Solution

Solution: We use advanced materials such as titanium alloys and carbon fiber composites to provide precisely machined parts with high strength and low weight.

Result

Result: The robotic arm demonstrated superior performance and reliability, thereby increasing operational efficiency by 30% and reducing energy consumption by 20%.

Mechanical arm assembly

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