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Engineering Services

Every engineering step
a product ever needs

The six service areas below follow the natural flow of a product development project. Work with us on a single step — or on the entire chain.

01 / DESIGN

Design

A good product is won on paper. From concept sketch to a validated 3D solid model, we run every stage of design with engineering discipline.

  • Complex structural design: 3D solid modeling of multi-part systems, welded structures, and housings and frames operating under high loads.
  • Casting & molding solutions: mold-ready geometry for investment casting, sand casting and injection-molded parts — with shrinkage allowances, cores, feeders and parting-surface strategy built in.
  • Design for manufacturing (DfM/DfC): every design decision is evaluated at the design stage for machining, casting or sheet-metal feasibility and its cost impact.
  • Reverse engineering: measuring, modeling, improving and localizing existing parts.
MODULE: DESIGN CAD / SURFACE / SOLID CV-2 CV-3 G2 CONTINUITY — CLASS-A SURFACE DFM CHECK: PASSED ✓
02 / DETAIL ENGINEERING

Detail Engineering

A design is an idea; a project is a commitment backed by calculation. We turn designed systems into engineering projects reliable enough for the field.

  • Engineering calculations: strength, fatigue, vibration and thermal assessments; finite element (FEA) verification in critical regions.
  • Material selection: justified material decisions across steels, aluminum, casting alloys and polymers — balancing operating conditions, manufacturing method and cost.
  • Tolerancing & standards compliance: GD&T referenced to ISO/EN/ASME standards, surface finish and heat-treatment definitions.
  • System integration: engineering of the assembly environment the part will live in — interfaces, fasteners and connections.
MODULE: ENGINEERING FEA / CALC / GD&T q = 18.5 kN/m δmax = 5qL⁴/384EI ≤ L/300 ✓ σ_vm = 142 MPa S355: fy = 355 MPa SF = 2.50 → OK MATERIAL: S355J2+N — EN 10025-2 TOLERANCING: ISO 2768-mK / GD&T ASME Y14.5
03 / PROTOTYPING SOLUTIONS

Prototyping Solutions

The moment an engineered system first meets the physical world is critical. The right prototype catches dozens of would-be production errors in advance.

  • Process selection: CNC machining, investment casting, 3D printing or sheet metal — the right prototyping method chosen with engineering justification based on geometry, quantity and budget.
  • Build through supplier partnerships: prototype manufacturing planned, managed and accepted through our network of suitable, qualified suppliers.
  • Dimensional verification: inspection of the produced prototype against project tolerances, with measurement report and deviation analysis.
  • Iteration management: test results fed rapidly back into the model and the next prototype.
MODULE: PROTOTYPE CNC / CAST / AM T04 — Ø12 ENDMILL n = 8500 rpm f = 1450 mm/min PROCESS SELECTION MATRIX CNC 5-AX INV. CAST AM / SLM PROTO #2 — DIMENSIONAL REPORT: 46/46 OK
04 / DOCUMENTATION

Documentation

A product is only as manufacturable as its documentation. Every product we prototype or engineer is delivered with a complete engineering package that any qualified manufacturer can build from.

  • Technical drawing package: dimensioned, toleranced, revision-controlled 2D manufacturing drawings and 3D models (STEP/Parasolid).
  • Bill of materials (BOM): a complete product tree with standard-part references, material certificate requirements and sourcing notes.
  • Manufacturing & inspection instructions: process definitions including heat treatment, coating, welding (WPS) and measurement plans.
  • Manufacturing-ready handover: the package is directly ready for quoting, ordering and series production.
MODULE: DOCUMENTATION 2D / 3D / BOM / QC A–A Ø88 h6 SYN-26-014 REV: C SHT 1/12 RELEASED READY FOR MANUFACTURING PACKAGE: 2D ×12 · STEP · BOM · QC
05 / SUPPLIER SELECTION

Supplier Selection

Even the best project loses value at the wrong supplier. We determine, with an engineer's eye, which technical specification your work should carry — and which supplier it should go to.

  • Technical specification writing: RFQ documents that define materials, tolerances, acceptance criteria and test requirements clearly — leaving no room for dispute.
  • Supplier assessment: capability analysis based on machine park, quality infrastructure, certification and references; a shortlist matched to your needs.
  • Quote comparison: bids scored not only on price but on technical compliance, lead time and risk.
  • Process oversight: first article inspection (FAI/PPAP approach), interim audits and dimensional acceptance support at delivery.
MODULE: SOURCING RFQ / AUDIT / FAI RFQ TECH SPEC SUP-A SUP-B SUP-C SCORING QUALITY CAPACITY LEADTIME COST CERT/ISO SUP-B 92/100 FAI: FIRST ARTICLE INSPECTION — APPROVED
06 / SOLUTION CREATION

Solution Creation

Where all five disciplines converge on one project: from the smallest machine element to the most complex structure, we take on every engineering step and hand you a working solution.

  • End-to-end responsibility: from needs analysis to a manufacturing-ready package and a verified prototype — one point of contact, one responsibility.
  • Independent of scale: improving a single fastener and developing a complete system from scratch receive the same engineering rigor.
  • We start from the problem: you don't have to say "draw this part" — say "solve this problem," and we'll shape the solution together.
  • Sustainable handover: when the project ends, the knowledge isn't locked up with us; files are handed over with design rationale and maintenance foresight.
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MODULE: SOLUTION END-TO-END 1 2 3 4 ASSEMBLY: SYN-26-000 — 4 ITEMS STATUS: SOLUTION DELIVERED ✓

Which step do you need support with?

We're here for a single link in the chain — or for all of it. Tell us about your project and let's map out your engineering roadmap together.

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