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Robotics & DronesP-084

Robot Control Cabinet

Enclosures housing robot controllers, servo drives, and power supplies with organized cable management and thermal design. RAL 7035 powder coat finish meets industrial cleanroom and factory floor aesthetic standards. Made by WERIX Metal from SPCC 1.5mm / AL5052 1.2mm to a tolerance of ±0.1mm, finished with powder coat RAL 7035. Typical order volume is from 1 to 1000+. Free DFM quote within 24 hours.

Engineering drawing available on request

Send your target specifications — we reply with a drawing and a DFM quote within 24 hours.

Robotics & DronesControl CabinetP-084

Robot Control Cabinet

Enclosures housing robot controllers, servo drives, and power supplies with organized cable management and thermal design. RAL 7035 powder coat finish meets industrial cleanroom and factory floor aesthetic standards.

MaterialSPCC 1.5mm / AL5052 1.2mm
Tolerance±0.1mm
Surface Finishpowder coat RAL 7035
MOQ / Volumefrom 1 to 1000+
Full specification
Part numberP-084
Product typeControl Cabinet
IndustryRobotics & Drones
MaterialSPCC 1.5mm / AL5052 1.2mm
Tolerance±0.1mm
Surface Finishpowder coat RAL 7035
Manufacturing processeslaser cutting · CNC bending · hardware insertion
MOQ / Volumefrom 1 to 1000+
Engineering Notes

Robot Control Cabinet: manufacturing notes

Robot Control Cabinet has to survive its application, not just its inspection report. This page sets out how the part is actually made — the material decision, the forming sequence and the tolerance strategy — so a buyer or engineer can judge whether the specification matches the application before a drawing is even sent.

Why this part is made in aluminium

Robot Control Cabinet is specified in SPCC 1.5mm / AL5052 1.2mm. Aluminium buys weight reduction and thermal conductivity, at the cost of stiffness: a section that is stiff enough in 1.5 mm steel needs either a thicker gauge or formed stiffeners in aluminium. It anodises rather than paints when a hard, non-flaking surface is wanted, and it needs dedicated tooling and fixturing because the soft surface marks easily during handling.

How the part is formed

The production route for this part is laser cutting, CNC bending, hardware insertion. Fiber laser cutting separates the blank without hard tooling, which is what makes a first article economical: the profile can change between the prototype and the production run without a die sunk. The trade-off is a small heat-affected edge, so on parts that will be painted we deburr and, where the edge is a sealing face, dress it flat before coating. Bending is where most tolerance stack enters a sheet metal part. We set the bend allowance from the part’s own material and radius using the K-factor the press is running, then verify the first article on the machine rather than from the drawing, because springback moves with material batch and grain direction.

What ±0.1mm actually requires on the shop floor

The drawing calls for ±0.1mm. On a part like this that is a process decision, not an inspection decision: it fixes which machine holds the critical features, how the part is fixtured for each operation, and whether a formed feature can be checked after coating or has to be measured before it. We confirm the first article against the drawing and record the values, so the tolerance is demonstrated rather than assumed. If a dimension in your drawing is tighter than this part needs, it is usually worth relaxing it — over-toleranced features are one of the quietest cost drivers in a sheet metal quote.

Finishing: powder coating

powder coat RAL 7035. Powder coating builds a film of roughly 60–120 µm per face and cures at 180–200 °C. Two consequences get designed for: the film adds to every mating dimension, and the cure temperature is high enough to move an unsupported panel, so stiffening or return flanges go in before the part reaches the oven. Colour is matched to the RAL range given on the drawing.

Frequently asked questions

What is the minimum order quantity for robot control cabinet?
The order range for this part is from 1 to 1000+. Below the low end of that range the tooling and setup are spread over too few pieces to be economic, so if you are prototyping we would normally build the first units from the same process route and quote the production quantity separately.
Can the material be changed to reduce cost or weight?
Yes, and it is worth asking before the design is frozen. The current specification for this part is SPCC 1.5mm / AL5052 1.2mm; depending on the service environment, a different grade or a lighter gauge with formed stiffening can meet the same requirement. What we would not do is change the material without re-checking the bend radii, the welding process and the coating system, because all three move with the substrate.
What finishing options are available for this part?
The current finish specification is powder coat RAL 7035. Powder coating, anodising, zinc or nickel plating, brushing and blasting are all available in-house, so the finish can be changed without changing supplier — and where the part will be seen, we match colour to the RAL or Pantone reference on your drawing.
How long does production take, and what do you need from us to quote?
Prototypes are typically 3–7 business days and production runs 7–15 days once the drawing is released and the finish is confirmed. To quote we need the drawing or CAD file (STEP, DXF, DWG, IGES or PDF), the material and finish, the quantity and the destination — and any tolerance or inspection requirement that is not already on the drawing. You get a DFM review with the quotation, not after it.
ISO 9001 · Quality Assurance

Checked at every stage

Four-step quality control from raw material to shipment. Precision inspection at every stage. FAI reports provided on request.

WERIX Metal is certified to the ISO 9001 quality management standard.

3,000+ m²
manufacturing space
11+
years
5,000+
clients served
24 h
quote reply
01

Incoming Material

Each batch of raw sheet metal checked for thickness, grade, and surface finish before production begins.

02

In-Process Check

First-article inspection and random sampling at every workstation: laser, bend, weld, stamp.

03

Final Inspection

Dimensions checked against customer drawings. Precision instruments used for tight-tolerance parts.

04

Shipment Audit

Packaging, labeling, and surface protection inspected before dispatch. Each batch traced.

Frequently asked questions

What industries does WERIX serve?

WERIX serves 14+ industries: telecom, data center, new energy, automotive/EV, industrial automation, 3D printing, power grid, robotics, banking equipment, consumer electronics, LED lighting, home appliances, and more. See the full industry list.

Can WERIX make custom sheet metal parts for my specific industry?

Yes. WERIX manufactures custom sheet metal parts for any industry. Upload your CAD file and our engineers will provide DFM feedback and process recommendations specific to your application.

Can I order a variant that is not shown in the catalogue?

Yes. The catalogue shows representative parts to demonstrate what we manufacture. Dimensions, hole patterns, materials, finishes and quantity are all customised — upload your own drawing and we will quote against it.

Do you support OEM and ODM projects?

Yes. We manufacture to your drawings as a contract manufacturer, and can also support design work — DFM feedback, material selection, tolerance rationalisation and assembly design — when you are still finalising the product.

How do you protect tooling that you build for my project?

Stamping dies built for your programme are dedicated to your parts and are not used for other customers. Die ownership, maintenance responsibilities and tooling transfer terms are set out in writing before the project starts.

What kinds of sheet metal parts does WERIX make?

Enclosures, chassis, brackets, panels, racks, frames and stamped components across telecom, data center, EV, industrial and medical equipment. The catalogue shows representative parts; every dimension, material and finish is then customised to your drawing.

Do you make parts for data centers and AI servers?

Yes. WERIX builds 19-inch rack chassis, GPU enclosures, PDUs, liquid-cooling manifolds and cable management from 1.0-2.0 mm steel or 5052 aluminium, with +/-0.10 mm cut tolerance. See the data center parts we supply and the materials we recommend.

Can WERIX handle both CNC fabrication and stamping for the same product?

Yes. A part can start as laser-cut and bent for prototyping, then move to progressive-die stamping at volume - same factory, same datum, same inspection plan. Our capabilities cover both paths under one roof.

Do you offer design help (DFM) for my product?

Yes. As a contract manufacturer we provide DFM feedback, material selection, tolerance rationalisation and assembly design while you finalise the product. Upload the drawing to the quote form and an engineer returns notes with the price.

Do you make sheet metal parts for EV and battery energy storage (BESS)?

Yes. WERIX builds battery enclosures, busbar covers, inverter cabinets and mounting structures from 1.0–3.0 mm 5052 aluminium or 304 stainless, typically held to ±0.10 mm cut tolerance with powder coating or anodizing. We support prototypes through volume stamping on one floor, so the same part scales from sample to production. See the industries we serve.

Can you supply sheet metal for telecom and 5G equipment?

Yes. We manufacture 19-inch rack chassis, RF shields, antenna brackets and outdoor cabinets in galvanized or stainless steel and 5052 aluminium, with PEM hardware insertion and powder or plating finishes. ±0.10 mm cut tolerance and batch traceability come as standard. Browse the telecom parts we supply and the materials we recommend.

Do you fabricate enclosures for medical equipment?

Yes — WERIX manufactures metal enclosures, brackets and chassis for medical equipment under our ISO 9001 quality system, with first article inspection, dimensional reports and batch traceability. Device-level biocompatibility or ISO 13485-certified manufacturing is outside our scope; tell us the requirement and we confirm whether it fits before quoting. See the about page for our certifications.

Do you build liquid-cooled cold plates and rack manifolds for AI data centers?

Yes. Alongside the 19-inch rack chassis, GPU enclosures and PDU housings we build, we fabricate liquid-cooling manifolds, cold-plate mounting frames and coolant distribution brackets from 1.0–2.0 mm 5052 aluminium or cold-rolled steel, held to ±0.10 mm cut tolerance so mounting holes line up across a rack. See the data center parts we supply and the 5052 guide for the alloy we recommend.

Can you fabricate EV charger and battery energy storage (BESS) enclosures?

Yes. We build EV charger enclosures, BESS cabinet shells, battery module enclosures and busbar covers from 1.0–3.0 mm 5052 aluminium or 304 stainless, with powder coating or anodizing and ±0.10 mm cut tolerance. The same part can run as a laser-cut sample and then move to volume stamping on one floor. Browse the new energy parts and the 304 guide for material choices.

Which stainless grade do you recommend for medical equipment enclosures?

304 is the default for most medical carts, enclosures and brackets; 316L is specified where the part sees frequent cleaning chemicals, saline or sterilisation. Both are fabricated under our ISO 9001 system with first article inspection and batch traceability. Device-level biocompatibility or ISO 13485-certified manufacturing is outside our scope — tell us the requirement and we confirm fit before quoting. Compare the grades in our 304 guide and 304 vs 316 comparison.

What finish do you recommend for outdoor telecom and 5G cabinets?

Outdoor telecom cabinets pair a gasketed, welded seam with outdoor polyester powder coating over phosphate pretreatment — the default for 5G enclosures and antenna brackets. For coastal or highly corrosive sites, move to 316 stainless or hot-dip galvanized steel under the powder topcoat. All finishes are carried out by our licensed partner plants to specification and inspected by us. See the finishes overview and the telecom parts we supply.