Precision Stamping Dies, Built for High-Volume Production
Progressive, compound and stage dies for precision metal stamping — 2–5 week lead time, SKD11/SKH51 tool steel, ±0.002 mm alignment, in-house machining and tryout.
- Progressive Dies
- Compound and Stage Dies
- Die Steel Expertise
- ±0.002 mm Alignment
- 2–5 Week Lead Time
- Tryout Support
Fast Response within 2 HoursNDA ProtectedSTEP / IGES / X_T / DWG

Trusted Tier-1 & OEM Standards:
SERVICE SCOPE & CAPABILITIES
Stamping Die Types We Manufacture
From high-speed progressive tooling to heavy compound dies, we engineer the die architecture around your part geometry, material grade and annual volume — then build it in-house from design to tryout.
Progressive Dies
Multi-Station High-Speed Tooling
- Multi-station dies for terminals, connectors, brackets and frames
- Strip layout optimization with material utilization of 70%+
- Pilot, guide and sensor positions engineered for high-speed presses
- Powder-HSS or carbide inserts at high-wear stations
Compound Dies
Blank and Form in a Single Stroke
- Simultaneous piercing and blanking with precise hole-to-edge control
- Flat parts with formed features up to medium volumes
- Tight punch-die clearance held by jig grinding and wire EDM
Forming Dies
Bend, Draw and Coining Tooling
- Bending, drawing and coining operations with springback compensation
- Air-bend, bottom-bend and draw tooling for sheet metal parts
- Forming analysis to predict and correct springback before steel is cut
Fine Blanking Dies
Shear-Quality Edges Without Secondary Operations
- V-ring impingement and counter-punch design for full-shear edges
- Holds flatness and edge finish, eliminating shaving or milling
- For gears, levers, plates and high-precision blanks
DFM ENGINEERING SUPPORT
Stamping Die DFM and Engineering Support
Send us your part drawing and annual volume — our engineers run a forming feasibility review before we cut steel, so die cost, part quality and tool life are decided on the drawing, not in the tryout press.
Stamping Feasibility Analysis
Formability and Springback Review
Bend radii, wall angles and draw depth checked against material grade and thickness; springback compensation built into the die geometry.
Strip Layout and Material Yield
Optimized nesting and strip progression cut scrap and lower cost per part — a 10% yield gain often pays for the die.
Clearance, Tolerances and Edge Quality
Punch-die clearance matched to material type and thickness; hole-to-edge and flatness tolerances validated before tooling commit.
Press Compatibility Check
Required tonnage, shut height, die space and feed pitch verified against your press or our in-house tryout presses.
Our 6-Step Die Build Process
Part and Strip Layout
Strip progression designed with material utilization optimization.
Die Design and CAM
3D die design with CAM programming for punches, inserts and plates.
Machining
Wire EDM, jig grinding and CNC machining of die plates and punches.
Heat Treatment
In-house hardening plus TiN / CrN coating per application.
Assembly and Alignment
Bench assembly with guide-post alignment check to ±0.002 mm.
Tryout and Approval
Sample production, CMM measurement and die adjustment to approval.
Free Stamping Die DFM Review
Send your part drawing and volume — receive a feasibility report and quotation within 24 hours.
STEP / IGES / X_T / DWG / PDF
ENGINEERING CAPABILITIES
Stamping Die Precision and Equipment
Stamping Die Specification Matrix
| Specification Parameter | Automotive & EV Standard | High-Precision Custom |
|---|---|---|
| Punch–Die Alignment | ±0.005 mm | ±0.002 mm |
| Die Clearance Control | 5–8% of stock thickness | 3–5% per material grade |
| Part Tolerance | ±0.05 mm | ±0.01 mm |
| Max Die Size | 1,000 mm progressive | 1,200 mm multi-station |
| Stock Thickness | 0.1–4.0 mm | 0.05–6.0 mm fine blanking |
| Lead Time | 3–4 weeks | 2 weeks fast-track |
Key Die-Making Equipment
Wire EDM (Seibu)
Precision punch and insert profiles down to ±0.002 mm with taper and trim passes.
Waida Jig Grinder
Holds punch-die alignment and roundness on hardened components.
Mikron High-Speed CNC
Die plates, strippers and retainers machined in hardened or pre-hardened state.
High-Speed and Gantry Presses
In-house tryout presses for sample production and die adjustment before delivery.
Quality-Critical Build Sequence
Steel Verification
Spectrometer check of incoming tool steel grades.
Precision Machining
Wire EDM, jig grinding and CNC machining to print.
Hardening and Coating
In-house vacuum heat treatment with HRC records.
Alignment and Tryout
Assembly, alignment check and CMM-measured sample parts.
DIE MATERIALS AND COMPLIANCE
Tool Steels, Coatings and Material Traceability
Die steel selection drives tool life, part cost and maintenance intervals. We stock and certify the grades that dominate stamping die construction — from long-run blanking to abrasive high-speed punching.
D2 / SKD11
Best For
Properties
Typical Hardness
M2 / SKH51
Best For
Properties
Typical Hardness
Tungsten Carbide Inserts
Best For
Properties
Coating Options
Material Certificates Included with Every Die
Spectrometer analysis, heat treatment logs and hardness records ship with the tool — PPAP-ready documentation on request.
🔒 IATF 16949 | ISO 9001:2015 | PPAP Level 3
QUALITY ASSURANCE & INSPECTION
Rigorous Precision Inspection & Quality Control Standards
🔬 Inspection HardwareHigh-Precision Testing Equipment
- ZEISS CMM for complex 3D contours
- Nikon optical projector & tool presetters (0.001 mm resolution)
- Vickers hardness testers & surface roughness gauge
🎯 Quality StandardsZero-Defect Quality Assurance
- 100% critical dimension inspection before packaging & shipment
- Concentricity & runout verification under optical magnifiers
- Surface micro-scratch & polish quality double-check
📜 Material ComplianceFull Material & Heat Treatment Traceability
- Spectrometer material composition analysis report provided
- Original Mill Test Certificate (MTC) & heat treatment logs
- RoHS & REACH environmental compliance statements
Download Sample Quality Control & Inspection Reports
Review our standard CMM inspection sheet, Material Composition Certificate, and RoHS report templates.
ORDERING PROCESS & FREQUENTLY ASKED QUESTIONS
How to Order Stamping Dies and Frequently Asked Questions
📁 Step 1
Submit CAD & Specs
Send 2D/3D drawings (STEP, DWG, PDF) with quantity, material, and tolerance requirements.
⏱️ Step 2
24H DFM & Quotation
Our engineering team conducts DFM analysis and provides a competitive quote within 24 hours.
⚙️ Step 3
Precision Manufacturing
CNC turning, vacuum heat treatment, jig grinding, and surface coating per your specifications.
✈️ Step 4
100% QC & Express Shipping
100% CMM dimensional verification, anti-rust packaging, and global air express delivery.
Progressive dies (multi-station), compound dies (blank and form in one stroke), forming dies and fine blanking dies — for stock thicknesses from thin foil to heavy plate.
2–5 weeks depending on station count and complexity. Prototype and short-run tools can be fast-tracked to 2 weeks.
D2/SKD11 and M2/SKH51 are standard; tungsten carbide inserts for million-stroke applications. Heat treatment is done in-house with hardness records.
Yes — every die is tried out on our own presses and samples are CMM-measured and approved before delivery.
Yes. Our engineers design the complete strip layout and die, optimizing material utilization and station balance before steel is cut.
Yes — we repair and rebuild dies from other suppliers, including punch replacement, clearance correction and coating renewal.
Material certificates, heat treatment logs, CMM dimensional reports and a tryout summary — the documentation pack automotive and electronics customers need for PPAP submission.
Ready to Build Your Stamping Die?
Send us your part drawing and annual volume today for a free DFM review and detailed quotation within 24 hours.
🔒 100% Confidential | NDA Protected | Instant DFM Assessment
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