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High-Speed Progressive Stamping Die for Electronic Components with 600 SPM, 0.05 mm – 1.0 mm Thickness, and Customizable Design

High-Speed Progressive Stamping Die for Electronic Components with 600 SPM, 0.05 mm – 1.0 mm Thickness, and Customizable Design

Detail Information
Place of Origin
CN
Brand Name
METS
Service:
OEM ODM,OEM/ODM,OEM Service
Thinckness:
0.05 Mm – 1.0 Mm
Bending Length:
Customized
Product Use:
Industrial Machinery
Diesize:
Customizable Based On Part Dimensions
Working Principle:
Fin Pressing System
Tip Type:
Flat, Round, Conical, Reflector, Custom
Maxdiesize:
1000 X 800 Mm
Highlight:

600 SPM Progressive Stamping Die

,

0.05 mm – 1.0 mm High-Speed Stamping Die

,

Customizable Electronic Component Stamping Die

Product Description
High-Speed Progressive Stamping Die for Electronic Components
The High-Speed Progressive Stamping Die for Electronic Components is a precision tooling solution developed for continuous, high-volume production of small and complex metal components. It is designed to perform multiple stamping operations in a single progressive die, including punching, blanking, bending, forming, coining, embossing and cut-off.
Unlike conventional single-operation tooling, a progressive stamping die processes metal strip continuously as it moves through a series of precisely engineered stations. Each station performs a specific operation, allowing the finished component to be produced automatically at high speed with consistent dimensional accuracy.
This type of tooling is particularly suitable for electronic and electrical components that require small dimensions, narrow material thicknesses, precise holes, tight pitch and repeatable forming geometry. Typical applications include connector terminals, contact terminals, lead frames, battery contacts, spring contacts, shielding components, electronic brackets, sensor terminals and precision conductive parts.
High-Speed Progressive Stamping Die for Electronic Components
Designed for Continuous High-Speed Production
The progressive die is integrated with an automatic feeding system so that coil material can move continuously through the tooling. This reduces manual handling and makes the process suitable for automated production lines.
A typical process may include:
Coil Feeding -> Guiding -> Pilot Positioning -> Piercing -> Blanking -> Bending -> Forming -> Coining -> Cut-Off -> Finished Component
The exact station sequence is customized according to the customer's component design.
For electronic components, even small dimensional deviations can affect assembly, electrical contact, insertion force or product reliability. Therefore, the die structure is engineered around the required critical dimensions and production tolerances.
Key Features
High-Speed Progressive Stamping
Designed for continuous production on high-speed stamping presses, supporting demanding electronic component production.
Multi-Station Tooling
Multiple operations integrated into one die, including punching, blanking, bending, forming, embossing, coining and cut-off.
Precision Component Manufacturing
Precision punches, die inserts, guide systems and forming stations engineered for critical dimensions.
Fine Pitch Capability
Designed for small-pitch electronic components with minimum pitch of approximately 0.5 mm for suitable projects.
High Material Utilization
Strip layout optimized to reduce unnecessary scrap and improve material utilization.
Automatic Coil Feeding
Integrated with automatic coil feeding systems for continuous and unmanned production.
Long Tooling Life
Wear-resistant tool steels and carbide components selected for optimal performance.
Custom Electronic Component Tooling
Every progressive die engineered around specific component, material, press and production requirements.
Suitable for Conductive Materials
Designed for copper, brass, phosphor bronze, beryllium copper, stainless steel and other electronic materials.
Integrated Engineering Support
Support from initial tooling analysis through manufacturing, trial stamping, inspection and production.
Technical Parameters
Parameter Specification
Product Name High-Speed Progressive Stamping Die
Application Electronic & Electrical Components
Die Type High-Speed Progressive Die
Process Punching, Blanking, Bending, Forming, Coining, Embossing, Cut-Off
Suitable Materials Copper, Brass, Phosphor Bronze, Beryllium Copper, Stainless Steel
Material Thickness Approx. 0.05-2.0 mm, Customized
Minimum Pitch From approx. 0.5 mm, depending on design
Stamping Speed Up to 600 SPM or higher for suitable applications
Precision Up to approx. ±0.003 mm for suitable features
Tooling Materials SKD11, DC53, D2, SKH-9, Carbide and other tool steels
Machining CNC Milling, Wire EDM, Grinding, Precision Machining
Feeding Method Automatic Coil / Strip Feeding
MOQ 1 Set
Delivery Approx. 7-35 Days, Project Dependent
Technical values are indicative. Final stamping speed, tolerance, pitch, material thickness and tooling life depend on the component geometry, material properties, press equipment and production requirements.
Applications
High-speed progressive stamping dies are widely used for electronic and electrical components that require continuous production, tight dimensional control and repeatable geometry.
Electronic Connector Terminals
Progressive tooling is suitable for manufacturing connector terminals used in electronic devices, wiring systems, communication equipment and electrical assemblies.
Electrical Contact Components
Copper, brass and phosphor bronze contact components often require accurate forming and consistent contact geometry. Typical products include:
  • Electrical contact terminals
  • Socket terminals
  • Contact springs
  • Conductive clips
  • Connector contacts
  • Power terminals
  • PCB terminals
Semiconductor Lead Frames
Lead frames require highly precise stamping operations because their dimensions directly influence semiconductor packaging and subsequent assembly.
Battery and Power Electronics Components
Progressive stamping dies can also be designed for battery contact components, conductive plates, spring contacts and other small metal parts used in power electronics.
Electronic Shielding Components
Thin metal shielding parts often require high-speed punching and forming with stable dimensional control. Applications include:
  • EMI/RFI shielding components
  • Electronic housings
  • Shielding clips
  • Grounding contacts
  • Retaining clips
Customization
Electronic components can have extremely different geometries, material specifications and tolerance requirements. Therefore, the progressive stamping die is developed according to the actual component rather than using a fixed standard structure.
METS can customize the tooling based on:
  • 2D engineering drawings
  • 3D CAD models
  • Physical samples
  • Material specifications
  • Material thickness
  • Critical dimensions
  • Production volume
  • Press specifications
Strip Layout Optimization
A carefully designed strip layout helps determine how the component moves through each station. Our engineering team evaluates material utilization, carrier design, feed pitch, station spacing, and forming sequence to achieve production stability and efficiency.
Material and Tool Steel Selection
The tooling material is selected according to the material being stamped and the expected production volume. Available tooling materials may include: SKD11 | DC53 | D2 | SKH-9 | ASP Series | Carbide
Support and Services
Drawing Review
Initial tooling evaluation based on drawings, samples or 3D models.
DFM Analysis
Engineering review of component design and identification of potential stamping challenges.
Progressive Die Design
Tooling structure and station arrangement development.
Strip Layout Development
Optimization for stable feeding and efficient material usage.
Precision Tool Manufacturing
Manufacturing using CNC machining, wire EDM, grinding and precision processes.
Die Assembly
Assembly and checking of all major tooling components.
Trial Stamping
Testing to verify feeding, forming, punching and tooling performance.
Sample Inspection
Inspection of trial samples against customer drawings and critical dimensions.
Tool Adjustment
Adjustment of tooling parameters based on trial results.
Production Support
Technical support for die installation, maintenance and production optimization.
Frequently Asked Questions
What electronic components can be produced with a high-speed progressive die?
The tooling can be used for connector terminals, electrical contacts, lead frames, battery contacts, spring contacts, shielding parts, grounding clips, sensor components and other precision electronic metal parts.
What materials can be stamped?
Common materials include copper, brass, phosphor bronze, beryllium copper, stainless steel and other suitable metal alloys.
What material thickness can the die handle?
For suitable electronic component applications, METS published stamping capabilities cover approximately 0.05 -2.0 mm material thickness. The actual range depends on the component geometry and material.
How fast can the progressive stamping die run?
METS published electronic stamping applications specify speeds of 600 SPM or more for suitable tooling, while some tooling capability information lists up to approximately 1000 SPM. Actual production speed depends on the part design, material, press and tooling structure.
Can you make high-precision connector terminals?
Yes. Progressive stamping dies can be engineered for connector terminals and other electronic components requiring precise holes, small pitch, accurate bending and consistent contact geometry.
Products
PRODUCTS DETAILS
High-Speed Progressive Stamping Die for Electronic Components with 600 SPM, 0.05 mm – 1.0 mm Thickness, and Customizable Design
Detail Information
Place of Origin
CN
Brand Name
METS
Service:
OEM ODM,OEM/ODM,OEM Service
Thinckness:
0.05 Mm – 1.0 Mm
Bending Length:
Customized
Product Use:
Industrial Machinery
Diesize:
Customizable Based On Part Dimensions
Working Principle:
Fin Pressing System
Tip Type:
Flat, Round, Conical, Reflector, Custom
Maxdiesize:
1000 X 800 Mm
Highlight

600 SPM Progressive Stamping Die

,

0.05 mm – 1.0 mm High-Speed Stamping Die

,

Customizable Electronic Component Stamping Die

Product Description
High-Speed Progressive Stamping Die for Electronic Components
The High-Speed Progressive Stamping Die for Electronic Components is a precision tooling solution developed for continuous, high-volume production of small and complex metal components. It is designed to perform multiple stamping operations in a single progressive die, including punching, blanking, bending, forming, coining, embossing and cut-off.
Unlike conventional single-operation tooling, a progressive stamping die processes metal strip continuously as it moves through a series of precisely engineered stations. Each station performs a specific operation, allowing the finished component to be produced automatically at high speed with consistent dimensional accuracy.
This type of tooling is particularly suitable for electronic and electrical components that require small dimensions, narrow material thicknesses, precise holes, tight pitch and repeatable forming geometry. Typical applications include connector terminals, contact terminals, lead frames, battery contacts, spring contacts, shielding components, electronic brackets, sensor terminals and precision conductive parts.
High-Speed Progressive Stamping Die for Electronic Components
Designed for Continuous High-Speed Production
The progressive die is integrated with an automatic feeding system so that coil material can move continuously through the tooling. This reduces manual handling and makes the process suitable for automated production lines.
A typical process may include:
Coil Feeding -> Guiding -> Pilot Positioning -> Piercing -> Blanking -> Bending -> Forming -> Coining -> Cut-Off -> Finished Component
The exact station sequence is customized according to the customer's component design.
For electronic components, even small dimensional deviations can affect assembly, electrical contact, insertion force or product reliability. Therefore, the die structure is engineered around the required critical dimensions and production tolerances.
Key Features
High-Speed Progressive Stamping
Designed for continuous production on high-speed stamping presses, supporting demanding electronic component production.
Multi-Station Tooling
Multiple operations integrated into one die, including punching, blanking, bending, forming, embossing, coining and cut-off.
Precision Component Manufacturing
Precision punches, die inserts, guide systems and forming stations engineered for critical dimensions.
Fine Pitch Capability
Designed for small-pitch electronic components with minimum pitch of approximately 0.5 mm for suitable projects.
High Material Utilization
Strip layout optimized to reduce unnecessary scrap and improve material utilization.
Automatic Coil Feeding
Integrated with automatic coil feeding systems for continuous and unmanned production.
Long Tooling Life
Wear-resistant tool steels and carbide components selected for optimal performance.
Custom Electronic Component Tooling
Every progressive die engineered around specific component, material, press and production requirements.
Suitable for Conductive Materials
Designed for copper, brass, phosphor bronze, beryllium copper, stainless steel and other electronic materials.
Integrated Engineering Support
Support from initial tooling analysis through manufacturing, trial stamping, inspection and production.
Technical Parameters
Parameter Specification
Product Name High-Speed Progressive Stamping Die
Application Electronic & Electrical Components
Die Type High-Speed Progressive Die
Process Punching, Blanking, Bending, Forming, Coining, Embossing, Cut-Off
Suitable Materials Copper, Brass, Phosphor Bronze, Beryllium Copper, Stainless Steel
Material Thickness Approx. 0.05-2.0 mm, Customized
Minimum Pitch From approx. 0.5 mm, depending on design
Stamping Speed Up to 600 SPM or higher for suitable applications
Precision Up to approx. ±0.003 mm for suitable features
Tooling Materials SKD11, DC53, D2, SKH-9, Carbide and other tool steels
Machining CNC Milling, Wire EDM, Grinding, Precision Machining
Feeding Method Automatic Coil / Strip Feeding
MOQ 1 Set
Delivery Approx. 7-35 Days, Project Dependent
Technical values are indicative. Final stamping speed, tolerance, pitch, material thickness and tooling life depend on the component geometry, material properties, press equipment and production requirements.
Applications
High-speed progressive stamping dies are widely used for electronic and electrical components that require continuous production, tight dimensional control and repeatable geometry.
Electronic Connector Terminals
Progressive tooling is suitable for manufacturing connector terminals used in electronic devices, wiring systems, communication equipment and electrical assemblies.
Electrical Contact Components
Copper, brass and phosphor bronze contact components often require accurate forming and consistent contact geometry. Typical products include:
  • Electrical contact terminals
  • Socket terminals
  • Contact springs
  • Conductive clips
  • Connector contacts
  • Power terminals
  • PCB terminals
Semiconductor Lead Frames
Lead frames require highly precise stamping operations because their dimensions directly influence semiconductor packaging and subsequent assembly.
Battery and Power Electronics Components
Progressive stamping dies can also be designed for battery contact components, conductive plates, spring contacts and other small metal parts used in power electronics.
Electronic Shielding Components
Thin metal shielding parts often require high-speed punching and forming with stable dimensional control. Applications include:
  • EMI/RFI shielding components
  • Electronic housings
  • Shielding clips
  • Grounding contacts
  • Retaining clips
Customization
Electronic components can have extremely different geometries, material specifications and tolerance requirements. Therefore, the progressive stamping die is developed according to the actual component rather than using a fixed standard structure.
METS can customize the tooling based on:
  • 2D engineering drawings
  • 3D CAD models
  • Physical samples
  • Material specifications
  • Material thickness
  • Critical dimensions
  • Production volume
  • Press specifications
Strip Layout Optimization
A carefully designed strip layout helps determine how the component moves through each station. Our engineering team evaluates material utilization, carrier design, feed pitch, station spacing, and forming sequence to achieve production stability and efficiency.
Material and Tool Steel Selection
The tooling material is selected according to the material being stamped and the expected production volume. Available tooling materials may include: SKD11 | DC53 | D2 | SKH-9 | ASP Series | Carbide
Support and Services
Drawing Review
Initial tooling evaluation based on drawings, samples or 3D models.
DFM Analysis
Engineering review of component design and identification of potential stamping challenges.
Progressive Die Design
Tooling structure and station arrangement development.
Strip Layout Development
Optimization for stable feeding and efficient material usage.
Precision Tool Manufacturing
Manufacturing using CNC machining, wire EDM, grinding and precision processes.
Die Assembly
Assembly and checking of all major tooling components.
Trial Stamping
Testing to verify feeding, forming, punching and tooling performance.
Sample Inspection
Inspection of trial samples against customer drawings and critical dimensions.
Tool Adjustment
Adjustment of tooling parameters based on trial results.
Production Support
Technical support for die installation, maintenance and production optimization.
Frequently Asked Questions
What electronic components can be produced with a high-speed progressive die?
The tooling can be used for connector terminals, electrical contacts, lead frames, battery contacts, spring contacts, shielding parts, grounding clips, sensor components and other precision electronic metal parts.
What materials can be stamped?
Common materials include copper, brass, phosphor bronze, beryllium copper, stainless steel and other suitable metal alloys.
What material thickness can the die handle?
For suitable electronic component applications, METS published stamping capabilities cover approximately 0.05 -2.0 mm material thickness. The actual range depends on the component geometry and material.
How fast can the progressive stamping die run?
METS published electronic stamping applications specify speeds of 600 SPM or more for suitable tooling, while some tooling capability information lists up to approximately 1000 SPM. Actual production speed depends on the part design, material, press and tooling structure.
Can you make high-precision connector terminals?
Yes. Progressive stamping dies can be engineered for connector terminals and other electronic components requiring precise holes, small pitch, accurate bending and consistent contact geometry.
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