Precision Engineering
Tooling. Plastic Molding. Finishing. Assembly.
From product design and in-house mold fabrication
to precision plastic parts, secondary processing and tested assemblies.
±10 µm
On specified part features
Clamping-force range
Metric tonnes-force
Against agreed
acceptance criteria
changeovers
Standardized setup routines
From complete
project requirements
±0.01 mm on agreed features. Quotes within 1 week of a complete brief. 2-day buy-off once the tool or process is ready for acceptance.
What can we make for you?
Tool design and mold fabrication.
From moldability review and SolidWorks tool design to in-house CNC / EDM fabrication.
- DFM and mold-flow analysis
- Multi-cavity, insert and unscrewing molds
- Tool trials, buy-off and production handover
Precision plastic parts. Repeatable production.
Injection molding for engineering materials and biopolymers, supported by robotic automation and dimensional inspection.
- 55–550 T molding platform
- Insert molding, overmolding and multi-cavity production
- ±0.01 mm on agreed critical features
Secondary processing for finished components.
Connect molded parts with the decoration, joining and finishing operations your product requires.
- Dual-colour tampo printing
- Ultrasonic welding
- Polishing and painting to agreed specifications
Components brought together. Ready for delivery.
Bring molded parts, wiring and sub-assemblies into a coordinated build, inspection and packaging route.
- Wire-harness integration
- Sub-assembly and product integration
- Kitting, labeling and protective packaging
Major Industries Served
Plastic components, electronic assemblies and integrated manufacturing across six industries.
Water
Modular water storage and growing systems.
Energy
Solar applications, switchgear and LED lighting.
Consumer Appliances
Coffee makers, vacuum cleaners and personal care.
Healthcare
Patient-management and infant-security systems.
Automotive
Instrument clusters and vehicle-monitoring products.
Electronics
Data storage, connected products and industrial controls.
How to start your manufacturing project.
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01
Tell us what you need
Share the drawing, material, critical features and demand. Agree confidentiality before transferring protected files.
-
02
Review our proposal
We align the tooling, process, inspection and commercial scope with you. Quotation within 1 week of a complete brief.
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03
Approve the build and production plan
Agree the manufacturing route and acceptance criteria, then move through tooling, trials and buy-off into production and delivery.
We began with HDD electronics.
We built a future in plastics.
In 2013, we took over an HDD electronics manufacturer and supported its programmes through to end of life. We built on that foundation with in-house tooling, plastic molding and integrated manufacturing, giving GIH a new direction.
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2013
Where we started
We took responsibility for an existing HDD electronics business and its SMT PCBA programmes.
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CAPABILITY BUILD-OUT
We built our tooling and plastics capability
We added molding, product design, CNC / EDM tooling, metrology and integrated assemblies.
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2026 ONWARDS
We brought precision and automation together
We connected precision molding and robotic production with our own tool- and machine-management software.
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2027 / NEXT CHAPTER
Where we’re going next
Our next chapter: an SMT PCBA carve-out and design-led micromolding for optical and semiconductor-packaging applications.
Advancing R &D with
Indonesia’s technical universities.
Our engagement with Indonesia’s technical universities connects manufacturing challenges with research, engineering knowledge and emerging talent. These relationships strengthen our R &D direction and the technical expertise we bring to customer projects.