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Robotics & Automation

Built for
cobots, grippers,
and everything that moves.

End-effectors, joint housings, sensor mounts, chassis — weight-optimized and precision-machined. 7075 aluminum, titanium, magnesium, carbon fiber. MOQ = 1, production runs to 5,000.

01 · Core parts

Robotics part families we build weekly.

End-effector grippers

Al 7075 · PEEK jaw

Pneumatic, electric and vacuum grippers. Custom jaw profiles in PEEK or Delrin for workpiece-specific contact. Sensor integration, force feedback.

Robot arm joint housings

7075-T6 · 5-axis

Integrated bearing seats, cross-hole cable routing, harmonic drive interfaces. 5-axis machined for single-setup tolerance stack-up.

Custom chassis plates

Al 6061 · tooling

Water-jet and CNC cut mounting plates, cable management channels, PEM-inserted threaded hardware, anodized for corrosion resistance.

Sensor mount brackets

Precision ±0.02 mm

LiDAR, camera, IMU mount brackets. Precise kinematic features for repeatable calibration. Stress-relieved aluminum for dimensional stability.

Gearbox housings

Al 7075 · bore ±0.01

Harmonic drive and planetary gearbox bodies. Precision-ground bearing seats, cross-drilled oiling passages, integrated flange interfaces.

AMR/AGV frames

5052 · welded

Welded aluminum chassis, shock-absorbing motor mounts, wheel housings, battery tray integration. Production-ready sheet metal assemblies.

Drone/UAV components

Carbon · Mg alloy

Ultralight carbon-fiber frames, magnesium motor mounts, precision-machined gimbal bodies, landing gear assemblies.

Cobot tooling

UR · Franka · KUKA

Tool-changer plates compatible with ISO 9409-1. Force-sensor adapters. Quick-change interfaces with repeatability below 0.02 mm.

Test rigs & fixtures

Modular, re-use

Robot test rigs, calibration stands, inspection fixtures. Modular design for multi-project re-use. Kinematic mounting for tool changeover.

FAQ

Robotics questions.

Core workstreams: end-effector grippers (pneumatic and electric), robot arm joint housings with integrated bearing seats, custom chassis plates and frames, encoder housings, sensor mounting brackets, gearbox housings, and cable management hardware. We work with industrial robot integrators, collaborative robot (cobot) builders, AMR/AGV companies, and academic robotics labs.
Yes. 7075-T6 aluminum is our most popular robotics material for weight-critical structural parts. For extreme weight reduction, we offer DMLS topology-optimized brackets (typically 40% lighter at equal stiffness), and carbon fiber composite sheet machining (3K, 12K woven CFRP). Magnesium AZ31 available for ultralight enclosures.
Mounting and structural features: ±0.05 mm is usually adequate. Bearing seats and gearbox housings: ±0.01 mm on bore diameters, 0.01 mm cylindricity, 0.01 mm concentricity. Encoder coupling features: often require ±0.005 mm. We use 5-axis machining for complex joint housings to maintain tolerance stack-up in a single setup.
Yes — we regularly machine parts to fit standard industrial robot flanges (ISO 9409-1 tool-changer patterns), NEMA motor bolt patterns, common gearbox interface patterns (Harmonic Drive, Nabtesco), and UR-series / Franka / KUKA end-effector mounting plates. Send us the interface drawing and we'll design to match.
We machine custom cable management features directly into chassis plates: cable routing channels, strain relief mounts, grommet holes, break-out patterns for standard connectors (M12, M8, USB-C, HDMI). For sheet metal chassis, PEM-insert threaded inserts for accessible cable clamp mounting.
Yes — this is our sweet spot. Robotics companies typically need 10–500 parts per SKU, which is ideal for CNC machining economics. We provide dedicated production cells for repeat customers with lot-level traceability and first-article inspection on every batch. Some customers run quarterly releases of 50–200 units of the same part for years.
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