
Injection Moulding Die
Custom engineered injection moulding dies designed for high repeatability, thermal balance, and tight-tolerance plastic components.
Custom CNC-turned and milled precision components fabricated to sub-micron tolerances for demanding industrial assemblies and OEM machinery.
Jay Tech Industries manufactures critical build-to-print mechanical components for industrial machinery, hydraulic systems, and automated machinery builders. Operating advanced CNC turning centers and milling cells, we deliver high-concentricity shafts, threaded flanges, bushings, and guide pins with certified material traceability.

All dies and tooling components undergo rigorous metallurgical testing, hardness verification, and multi-axis CMM dimensional auditing prior to dispatch.
| Engineering Parameter | Jay Tech Industries Standard Specification |
|---|---|
| Concentricity & Runout | Within 0.005 mm TIR |
| Threads | Metric, UNC, UNF, BSP, NPT to Class 6H/6g Standard |
| Certifications | EN 10204 3.1 MTC + Full Dimensional CMM Report |
| Packaging | Anti-Rust VCI Vacuum Packaging & Individual Protective Sleeves |
| Turning Capacity | Diameter: Ø10 mm to Ø350 mm × Length: 800 mm |
| Milling Accuracy | Positional Accuracy within ±0.004 mm |
| Quality Standard | ISO 9001:2015 Continuous Quality Compliance |
Engineered with high-durability alloy tool steels to guarantee long operational lifespan, minimal tool wear, and repeatable cycle accuracy.
Multi-axis CNC turn-mill execution achieving complete parts in a single setup
Cylindrical grinding and superfinishing for tight seal journal bearing seats
Full material test certificate (MTC) and ultrasonic flaw detection traceability
Precision thread whirling and internal spline broaching capabilities
Our tooling solutions are trusted by tier-1 automotive suppliers, pharmaceutical medical packaging manufacturers, and industrial engineering firms across Gujarat and Pan-India.
Share your requirement or drawing. We’ll review the details and respond to discuss the right engineering approach.

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