Application-led manufacturing

Translate sector requirements into drawing requirements.

Instead of claiming blanket approval for every regulated sector, we focus on the part-level questions that engineers need to resolve: function, risk, traceability, inspection and documentation.

AU

Industrial automation

Fixture plates, gripper fingers, sensor mounts and tooling often prioritize repeatable datums, stiffness and serviceability.

Discuss an automation part →
EL

Electronics & instrumentation

Housings, frames and thermal parts bring connector alignment, grounding, cosmetic finish and heat-transfer questions.

Review materials →
MO

Mobility development

Prototype mounts, test hardware and fluid components may require revision speed, fit control and finish compatibility.

Plan prototype stages →
EN

Energy equipment

Manifolds, flanges and equipment components can involve pressure interfaces, corrosion exposure and material records.

Plan verification →
RD

Product R&D

Functional prototypes must answer a design question without locking an immature design into an expensive process.

Use the DFM guide →
EQ

General equipment

Replacement parts, special machine components and custom hardware start with interfaces, operating loads and drawing clarity.

Explore part families →

Regulated or safety-critical work

If a project requires sector-specific certification, process approval, validation, cleanliness, serialization or retention of quality records, state it before quotation. Capability is confirmed case by case; this page does not represent certification for aerospace, medical, automotive or other regulated production.

A useful RFQ names the risk: explain whether failure affects appearance, assembly, sealing, motion, electrical function, test validity or safety. That context helps prioritize the drawing correctly.