Robotics & Automation

Motor mounts, end effectors, gearbox housings, structural frames and actuator parts for robotics and automation teams. Every order gets an engineering review for fit, weight and fatigue.

ISO 9001:2015 certified
Quotes within 24 hours
NDA available on request
Files encrypted
Black anodised joint housing with a bearing, a polished bracket and a link arm on a dark surface
±0.01 mmStandard tolerance
12 daysStandard lead time
98%On-time delivery
ISO 9001Certified

Robotics Components, Built to Spec

Each card gives the tolerance, material and finish these parts usually carry. Parts that are not listed are reviewed and quoted the same way.

Black anodised aluminium mount with an oval base flange and a raised round boss

Motor Mounts and Brackets

Tolerance±0.01 mm
MaterialAL 6061, SS 304
FinishAnodize or E-Nickel
Metal block with a milled slot and pocket in one end

End Effectors and Grippers

Tolerance±0.05 mm
MaterialAL 7075, PEEK
FinishHard Anodize
Dark aluminium plate with a machined dome and two long slots

Structural Frames

Tolerance±0.1 mm
MaterialAL 6061, Welded SS
FinishAnodize or Powder Coat
Black anodised aluminium cylinder with end flanges and a side port

Gearbox Housings

Tolerance±0.01 mm bore
MaterialAL 6061, SS 316
FinishHard Anodize
Black anodised tapered tube made in two sections

Actuator Components

Tolerance±0.02 mm
MaterialSS 303, Ti Gr5
FinishElectropolish
Nickel-plated bracket plate with a row of screw holes

Sensor Brackets and Mounts

Tolerance±0.05 mm
MaterialAL 6061, Delrin
FinishBlack Anodize
Black anodised ring housing with internal ribs, seen from above

Wrist and Joint Components

Tolerance±0.01 mm bore
MaterialAL 7075, SS 17-4
FinishHard Anodize
Custom geometry

Custom Robot Parts

Upload a STEP file and an engineer will review and quote it within 24 hours.

Upload for Review →

Problems We Prevent

A general machine shop treats a robot joint like any other bracket. These are the three mistakes that follow most often.

Shaft in a joint borePlay at the jointBacklash and position errorFit checkedwith the mating partReviewed as an assembly

Backlash and Fit

Parts that pass inspection one by one create backlash and positioning error at the joint.

Tolerances stack up across mating parts. A 0.02 mm error on a motor mount bore plus a 0.02 mm shaft tolerance gives 0.04 mm of play, enough to degrade positioning accuracy along an arm.

Mating assemblies are reviewed for fit and tolerance stack-up during DFM, before manufacture.

Arm link carrying a payloadHeavy linkLess payload capacityPayloadWeight-to-strength reviewed

Weight and Inertia

Over-specified material and thick walls cut payload capacity.

Every gram added to an arm link multiplies inertia at the end effector. A supplier who optimises for easy machining defaults to thicker walls and heavier stock.

DFM review includes weight-to-strength suggestions for structural and linkage parts.

Bracket under repeated loadCyclic loadCracks under cyclic loadFatigue risk flagged

Cyclic Fatigue

Parts that pass static inspection fail under cyclic load after thousands of cycles.

Motor mounts, joints and actuator housings in production robots can see millions of load cycles. Material grade, surface finish and fillet radius all affect fatigue life, and most suppliers quote against the drawing alone.

Material and design choices that risk fatigue failure at your operating loads are flagged.

How a Robotics Order Works

Each order gets a robotics-specific review before any cutting starts, and the documents ship with the parts.

  1. 1Quote within 24 hoursUpload a STEP File and Drawing

    STEP, IGES or a 2D drawing with GD&T callouts and assembly context. Mating parts, load conditions or cycle requirements make the review more useful. An NDA is available on request.

  2. 2Robotics DFM Review

    Your engineer checks fit and tolerance stack-up on mating parts, weight-to-strength on structural parts and material suitability for cyclic load. Issues are raised before cutting starts.

    • Tolerance stack-up analysis
    • Weight optimization review
    • Fatigue risk flagging
  3. 3Material and Finish Confirmed

    Alloy grade, heat treatment where needed, surface finish and special handling (wear surfaces, corrosion resistance, coating compatibility) are written into the work order before production.

  4. 4Manufacture and In-Process QC

    3-axis to 5-axis CNC machining with in-process dimensional checks. Critical bore and fit dimensions are checked against your drawing, and surface finish is verified before shipment.

  5. 512 days standardDelivery with Documentation

    A dimensional inspection report, material certificate and Certificate of Conformance ship with every order. Delivery is tracked worldwide.

    • Dimensional report
    • Material cert
    • Certificate of Conformance

Results

"The DFM feedback on our motor mount assembly caught a tolerance stack issue that would have required a complete redesign after our first build. We shipped on schedule."
BEEX Autonomous SystemsRobotics and autonomous vehicles
Delivery lead time12 days
Engineering teams served300+
On-time delivery rate98%
Quality acceptance rate98%+
Quote turnaround24 hrs
  • ISO 9001:2015 quality management
  • RoHS and REACH compliance available
  • EN 10204 3.1 material certs on request

Frequently Asked Questions

If your question is not here, an engineer can answer it directly.

Can you produce structural robot parts with tight tolerances?

Yes. ±0.01 mm on general structural features and ±0.005 mm on bearing bores, servo flanges and precision locating features. Every critical dimension is CMM-verified before shipping.

What materials do you offer for robot frames and links?

AL 6061-T6 for lightweight structures, AL 7075-T6 for high-strength links and arms, carbon-fibre-filled PEEK for stiffness at low weight, and Ti-6Al-4V for high-stress joints where strength-to-weight matters most.

How fast can you iterate on prototype robot parts?

Prototype parts typically ship in 5 to 10 business days, with DFM review included on every order. Revisions are quoted within 24 hours. For weekly sprints, batch revisions together to keep lead times short.

Can you supply assembly-ready kits?

Yes. Tapped holes, heat-set inserts, reamed bores and matched sub-assemblies can all be delivered ready to integrate. List the assembly requirements when you request a quote and the secondary operations are included.

How do you scale from 1 prototype to 50+ production units?

Parts are made through the same verified supplier network at every quantity, so no re-qualification is needed. Production pricing starts at 10+ units, and a production slot can be held once your design is frozen.

Source Your Next Robot Component

Upload a STEP file with the mating parts or load conditions. An engineer reviews fit, weight and fatigue risk, and the quote arrives within 24 hours.

Bearing seat H780.00
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