Design & prototype
Define the application and critical requirements, develop the product CAD and evaluate the prototype.
PRECISIONGIH’s development process connects concept design, manufacturability, prototyping and validation with production and shipment support. Development process ↗
Define the application and critical requirements, develop the product CAD and evaluate the prototype.
Review molding feasibility and flow, develop the tool design in SolidWorks and agree the mold acceptance requirements.
Establish the production settings, evaluate molded parts and approve the process against agreed criteria.
Complete the agreed finishing and joining operations, check the assembly and prepare protective packaging.
Agree storage, dispatch, freight and handover requirements for the finished product.
| Handover | Project output |
|---|---|
| Design → tooling | Approved CAD and drawing, BOM, material, interfaces, critical features and feasibility questions. Tooling owns mold-specific DFM and flow review. |
| Tooling → molding | Machine and resin selection, mold interface, cavity layout, trial conditions, inspection plan and sample acceptance. |
| Molding → finishing | Part release condition, cosmetic zones, gate/edge requirements, artwork and handling requirements. |
| Finishing → assembly | Approved part condition, assembly BOM, joining and wiring instructions, fixtures and functional checks. |
| Assembly → delivery | Final acceptance, protective packaging, labels, shipment documents and delivery responsibilities. |
| Commitment | Scope |
|---|---|
| 1-week quotation | Quotation within 1 week of receiving complete project requirements. |
| 2-day buy-off | A 2-day acceptance window once the tool or process is ready against agreed criteria. |
| Quick mold changeovers | SMED-based setup preparation and standardized routines. Actual changeover time depends on the mold and machine. |