ENGINEERING REVIEW
Design & DFM
Review geometry, interfaces, materials, tolerances and the most suitable manufacturing route.
- Drawing and CAD review
- Tolerance assessment
- Process recommendations
MANUFACTURING FOR ROBOTICS
Custom tooling, molding and precision machining for robotic systems — from functional prototypes and low-volume builds to repeatable production.
ROBOTICS COMPONENTS WE MANUFACTURE
We manufacture functional components for robotic arms, automation equipment, mobile robots and intelligent motion systems—supporting accurate assembly and repeatable performance.
Bearing bores, motor interfaces and cable features.
Rigid, lightweight parts for controlled movement.
Stable positioning for cameras, encoders and sensors.
Gripper bodies, fingers, adapters and tool plates.
Protective plastic and metal electronics housings.
Structural brackets, panels and protective shells.
FROM DEVELOPMENT TO PRODUCTION
Each stage is planned around function, manufacturability and the requirements that matter most to robotic motion and assembly.
ENGINEERING REVIEW
Review geometry, interfaces, materials, tolerances and the most suitable manufacturing route.
FUNCTIONAL BUILD
Produce functional parts for fit, motion, load and assembly evaluation before committing to production.
PILOT VALIDATION
Confirm critical dimensions, finish, assembly behavior and process stability through pilot builds.
SCALE WITH CONTROL
Move into repeat orders with defined inspection requirements, traceability and consistent process control.
One manufacturing partner. Multiple processes coordinated around your robotics project.
Start a ProjectMANUFACTURING CAPABILITIES
Select the right process for each robotics component—from precision metal parts and molded housings to fabricated frames and finished assemblies.
Coordinated quality controlDimensions, materials and finish requirements remain aligned across processes.
MATERIALS & FINISHES
Balance weight, strength, wear resistance and appearance with engineering materials and production-ready finishes matched to each component.
Lightweight housings, joints and structural parts.
6061 · 7075 · ADC12High-load shafts, tooling and wear components.
Carbon · Alloy · Tool SteelCorrosion-resistant precision hardware and frames.
303 · 304 · 316Low-friction guides, bushings and moving parts.
Stable · Wear ResistantDurable covers, gears, clips and cable features.
PA6 · PA66 · Glass-FilledImpact-resistant electronic and control housings.
PC · ABS · PC/ABSSURFACE FINISHING
PRECISION & QUALITY
Robotics components depend on accurate interfaces and repeatable alignment. Inspection planning focuses on the dimensions that influence movement, load transfer and final assembly.
Bearing bores, hole positions, datums and mating features checked against drawing requirements.
Component relationships reviewed to support accurate fit, alignment and controlled movement.
Dimensional reports and quality documentation prepared according to project needs.
INSPECTION SUPPORT
ROBOTICS APPLICATIONS
We manufacture precision parts for robotic systems that demand reliable motion, compact integration and consistent performance in production environments.
Durable housings, joints and structural components for automated production systems.
Lightweight, precise parts for compact and responsive cobot assemblies.
Impact-resistant enclosures and functional components for AMRs and AGVs.
Complex protective parts built for sensing, inspection and field operation.

START YOUR ROBOTICS PROJECT
Send us your drawings, material requirements and expected production volume. Our engineering team will review the project and provide manufacturing feedback before quotation.
Please send your 3D CAD files, 2D drawings if available, preferred materials, required quantity, tolerances, surface finishes and target application. Our engineers can also review incomplete specifications and recommend practical options.
We support rapid tooling, plastic injection molding, CNC machining, die casting, sheet metal fabrication, silicone compression molding and related secondary operations for complete robotic assemblies.
Yes. We can support early functional prototypes, design verification builds, bridge production and repeat production. There is no minimum order quantity, so volumes can scale with your project.
Tolerance depends on the process, material, geometry and feature type. Selected CNC-machined features can reach ±0.01 mm after drawing review, while molded-part tolerances are evaluated according to part design and resin behavior.
Common choices include aluminum, stainless steel, tool steel, zinc alloys and engineering plastics such as ABS, PC, PC-ABS, nylon, POM, PEEK and glass-filled materials. Selection depends on weight, strength, wear, heat and operating environment.
Lead time depends on process, complexity, material and quantity. Selected machined prototypes can be completed in 5–10 days, while rapid tooling and molded production require additional time after design approval.
Depending on project requirements, we use CMM inspection, blue-light scanning, dimensional gauges and first article inspection. Inspection reports can be provided for critical dimensions and assembly interfaces.