| MOQ: | 1000pcs |
| Standard Packaging: | Wooden crate packaging, moisture and shock resistant, each mold set packed separately |
| Delivery Period: | 25-35 work days |
| Payment Method: | T/T |
METS provides professional OEM stamping services, customized sheet metal processing, and precision metal stamping parts for manufacturers across automotive, electrical, electronics, appliances, machinery, renewable energy, and industrial equipment industries.
As an experienced metal stamping manufacturer, we integrate stamping die design, tooling manufacturing, precision stamping, sheet metal forming, bending, punching, deep drawing, welding, and secondary processing into one manufacturing solution. This allows customers to source customized sheet metal components directly from one supplier, from initial drawing review and tooling development to prototype production and mass manufacturing.
Our customized metal stamping parts can be manufactured according to customer drawings, samples, CAD files, or technical specifications. Depending on the application, we process stainless steel, carbon steel, aluminum, copper, brass, silicon steel, spring steel, and other engineering materials.
For sheet metal connection applications, we manufacture various stamped brackets, connecting plates, mounting plates, clips, terminals, fastening components, structural connectors, support parts, and customized sheet metal connection parts. These components can be designed with holes, slots, bends, embossments, tabs, ribs, and other functional structures to meet specific assembly requirements.
METS supports both prototype and mass-production projects, providing flexible OEM/ODM manufacturing solutions for simple stamped parts as well as complex multi-stage components.
Customized stamping parts are manufactured according to customer drawings and dimensional requirements, with process control focused on repeatability, dimensional consistency, and reliable assembly.
Our manufacturing capabilities cover punching, stamping, bending, forming, deep drawing, cutting, welding, and selected secondary operations according to product requirements.
In-house tooling capabilities allow the stamping process and die structure to be developed together, helping improve production stability and optimize complex stamped geometries. METS's published capabilities include progressive and compound tooling for multi-operation stamping.
We can process:
Stamped sheet metal connection parts can integrate multiple holes, slots, bends, tabs, embossments, and mounting structures into one component, reducing the need for multiple separate parts.
METS supports product development, prototype sampling, small-batch production, and high-volume manufacturing according to project requirements.
Customers can provide PDF, DWG, DXF, STEP, IGS, CAD drawings, 3D models, or physical samples for quotation and engineering evaluation.
| Parameter | Specification |
|---|---|
| Product Name | OEM Metal Stamping Parts |
| Product Type | Customized Sheet Metal Stamping / Connection Parts |
| Manufacturing Process | Stamping, Punching, Bending, Forming, Deep Drawing, Welding |
| Stamping Method | Progressive Die, Compound Die, Single Die, Custom Tooling |
| Materials | Stainless Steel, Carbon Steel, Aluminum, Copper, Brass, Silicon Steel, Spring Steel |
| Material Thickness | Approx. 0.1-6.0 mm, customized according to part design |
| Part Dimensions | Customized according to drawings |
| Tolerance | Up to approximately ±0.01 mm depending on material, geometry, and process |
| Surface Treatment | Polishing, Plating, Anodizing, Powder Coating, Passivation, Heat Treatment |
| Secondary Processing | CNC Machining, Deburring, Tapping, Welding, Assembly |
| Tooling | Progressive Die, Compound Die, Bending Die, Deep Drawing Die |
| Drawing Formats | PDF, DWG, DXF, STEP, IGS |
| Production Volume | Prototype, Small Batch, Medium Volume, Mass Production |
| Inspection | Dimensional Inspection, Material Inspection, Surface Inspection, Final Inspection |
| Customization | OEM / ODM |
| Application | Automotive, Electronics, Electrical, Appliances, Machinery, Renewable Energy |
The parameter ranges are project-dependent. METS's published product information lists material thickness ranges from approximately 0.1-6.0 mm for different stamping applications and tolerances down to ±0.01 mm on suitable precision components.
Punching is used to create accurate holes, slots, openings, and cut-out structures. It is especially suitable for mounting plates, brackets, terminals, connection components, and electronic shielding parts.
CNC and stamping-based bending processes create precise angles and structural profiles for brackets, mounting components, support plates, and connection parts.
Progressive stamping combines multiple operations into a continuous production process. Punching, bending, forming, embossing, coining, and cutting can be integrated into multiple die stations for efficient high-volume production.
Compound dies can perform several operations in one press stroke, making them suitable for components requiring consistent dimensional relationships between holes, contours, and formed features.
Deep drawing is available for customized housings, shells, cups, covers, and other three-dimensional sheet metal components requiring controlled forming.
Depending on the product design, stamping parts can be combined with:
METS manufactures customized sheet metal connection parts and stamped connection components for mechanical and electrical assemblies.
Typical products include:
These parts can be designed with different combinations of mounting holes, elongated slots, bends, tabs, embossments, ribs, countersunk holes, and connection features according to the final assembly.
METS combines stamping die development and metal stamping production, allowing the tooling and production processes to be optimized together.
The company's official website states that METS was established in Xiamen and specializes in mold design, mold manufacturing, and precision metal stamping for applications including automotive, electronics, LED products, lead frames, and stator/rotor laminations.
Our engineering team evaluates:
This engineering-first approach helps identify potential manufacturing issues before mass production.
METS provides customized:
Published tooling capabilities include CNC machining, wire EDM, high-speed milling, grinding, die fitting, trial stamping, and tooling modification.
Quality control can include:
For suitable projects, METS publishes capabilities for tolerances down to ±0.01 mm and high-volume production using automated progressive stamping systems.
The following are representative application scenarios for METS's OEM stamping capabilities:
Requirement: High-volume stamped conductive connection components with accurate holes and forming features.
Solution: Progressive die stamping combined with controlled feeding, forming, inspection, and optional surface treatment.
Application: Electrical equipment, connectors, terminals, and industrial control systems.
Requirement: Customized steel mounting bracket with multiple holes and precise bending angles.
Solution: Progressive or compound stamping followed by bending and surface treatment.
Application: Automotive equipment, machinery, appliances, and industrial assemblies.
Requirement: Small precision sheet metal components with tight dimensional requirements and repeatable geometry.
Solution: Precision stamping and custom tooling with controlled material feeding and dimensional inspection.
Application: Electronic connectors, terminals, shielding components, and electrical assemblies.
Requirement: Stable production of large quantities of customized metal components.
Solution: Multi-station progressive stamping for integrated punching, bending, forming, and cutting operations.
Result: Reduced manual processing and improved production consistency.
METS's website lists applications including electronic connectors, sensor components, spring metal parts, automotive components, appliances, industrial machinery, and other customized stamped components.
Choosing the correct stamping process is not simply a matter of pressing sheet metal into a die. The material, geometry, tolerance, production volume, tooling structure, and final application all influence the manufacturing solution.
At METS, our engineers review the complete product structure before tooling production.
For example, for a customized sheet metal connection part, we evaluate:
Material → Thickness → Geometry → Hole Position → Bend Structure → Forming Sequence → Die Layout → Stamping Process → Surface Treatment → Inspection
This process helps control dimensional variation and improve manufacturing efficiency.
For high-volume products, progressive stamping can combine several operations into a single automated production process. This reduces intermediate handling and provides repeatable part geometry from batch to batch.
For lower-volume or structurally simpler products, compound or single-operation tooling may provide a more suitable manufacturing solution.
Our goal is to select the appropriate production method rather than apply the same stamping process to every component.
Customers can provide:
Our engineers review material, dimensions, tolerance, forming structure, production quantity, and tooling requirements.
We provide a customized quotation based on tooling, material, processing, quantity, surface treatment, and packaging requirements.
After order confirmation, the required stamping die or forming tool is designed and manufactured.
The tooling is tested and sample parts are produced for dimensional and functional verification.
After sample approval, production can proceed using the agreed stamping process and quality standards.
Finished parts are inspected, packed according to customer requirements, and shipped by sea, air, or express service.
Different applications require different surface characteristics. Available finishing options may include:
Surface treatment can be selected according to requirements for corrosion resistance, conductivity, appearance, hardness, wear resistance, or assembly performance.
Custom stamping dies are developed according to part geometry and production requirements.
From tooling and prototype development to stamping, secondary processing, inspection, and delivery.
Support for ferrous and non-ferrous materials including stainless steel, steel, aluminum, copper, brass, and silicon steel.
Process control is designed around dimensional accuracy, repeatability, and stable production.
Progressive stamping provides an efficient solution for repeat orders and large production quantities.
Customized dimensions, materials, shapes, finishes, packaging, and production quantities are available.
| MOQ: | 1000pcs |
| Standard Packaging: | Wooden crate packaging, moisture and shock resistant, each mold set packed separately |
| Delivery Period: | 25-35 work days |
| Payment Method: | T/T |
METS provides professional OEM stamping services, customized sheet metal processing, and precision metal stamping parts for manufacturers across automotive, electrical, electronics, appliances, machinery, renewable energy, and industrial equipment industries.
As an experienced metal stamping manufacturer, we integrate stamping die design, tooling manufacturing, precision stamping, sheet metal forming, bending, punching, deep drawing, welding, and secondary processing into one manufacturing solution. This allows customers to source customized sheet metal components directly from one supplier, from initial drawing review and tooling development to prototype production and mass manufacturing.
Our customized metal stamping parts can be manufactured according to customer drawings, samples, CAD files, or technical specifications. Depending on the application, we process stainless steel, carbon steel, aluminum, copper, brass, silicon steel, spring steel, and other engineering materials.
For sheet metal connection applications, we manufacture various stamped brackets, connecting plates, mounting plates, clips, terminals, fastening components, structural connectors, support parts, and customized sheet metal connection parts. These components can be designed with holes, slots, bends, embossments, tabs, ribs, and other functional structures to meet specific assembly requirements.
METS supports both prototype and mass-production projects, providing flexible OEM/ODM manufacturing solutions for simple stamped parts as well as complex multi-stage components.
Customized stamping parts are manufactured according to customer drawings and dimensional requirements, with process control focused on repeatability, dimensional consistency, and reliable assembly.
Our manufacturing capabilities cover punching, stamping, bending, forming, deep drawing, cutting, welding, and selected secondary operations according to product requirements.
In-house tooling capabilities allow the stamping process and die structure to be developed together, helping improve production stability and optimize complex stamped geometries. METS's published capabilities include progressive and compound tooling for multi-operation stamping.
We can process:
Stamped sheet metal connection parts can integrate multiple holes, slots, bends, tabs, embossments, and mounting structures into one component, reducing the need for multiple separate parts.
METS supports product development, prototype sampling, small-batch production, and high-volume manufacturing according to project requirements.
Customers can provide PDF, DWG, DXF, STEP, IGS, CAD drawings, 3D models, or physical samples for quotation and engineering evaluation.
| Parameter | Specification |
|---|---|
| Product Name | OEM Metal Stamping Parts |
| Product Type | Customized Sheet Metal Stamping / Connection Parts |
| Manufacturing Process | Stamping, Punching, Bending, Forming, Deep Drawing, Welding |
| Stamping Method | Progressive Die, Compound Die, Single Die, Custom Tooling |
| Materials | Stainless Steel, Carbon Steel, Aluminum, Copper, Brass, Silicon Steel, Spring Steel |
| Material Thickness | Approx. 0.1-6.0 mm, customized according to part design |
| Part Dimensions | Customized according to drawings |
| Tolerance | Up to approximately ±0.01 mm depending on material, geometry, and process |
| Surface Treatment | Polishing, Plating, Anodizing, Powder Coating, Passivation, Heat Treatment |
| Secondary Processing | CNC Machining, Deburring, Tapping, Welding, Assembly |
| Tooling | Progressive Die, Compound Die, Bending Die, Deep Drawing Die |
| Drawing Formats | PDF, DWG, DXF, STEP, IGS |
| Production Volume | Prototype, Small Batch, Medium Volume, Mass Production |
| Inspection | Dimensional Inspection, Material Inspection, Surface Inspection, Final Inspection |
| Customization | OEM / ODM |
| Application | Automotive, Electronics, Electrical, Appliances, Machinery, Renewable Energy |
The parameter ranges are project-dependent. METS's published product information lists material thickness ranges from approximately 0.1-6.0 mm for different stamping applications and tolerances down to ±0.01 mm on suitable precision components.
Punching is used to create accurate holes, slots, openings, and cut-out structures. It is especially suitable for mounting plates, brackets, terminals, connection components, and electronic shielding parts.
CNC and stamping-based bending processes create precise angles and structural profiles for brackets, mounting components, support plates, and connection parts.
Progressive stamping combines multiple operations into a continuous production process. Punching, bending, forming, embossing, coining, and cutting can be integrated into multiple die stations for efficient high-volume production.
Compound dies can perform several operations in one press stroke, making them suitable for components requiring consistent dimensional relationships between holes, contours, and formed features.
Deep drawing is available for customized housings, shells, cups, covers, and other three-dimensional sheet metal components requiring controlled forming.
Depending on the product design, stamping parts can be combined with:
METS manufactures customized sheet metal connection parts and stamped connection components for mechanical and electrical assemblies.
Typical products include:
These parts can be designed with different combinations of mounting holes, elongated slots, bends, tabs, embossments, ribs, countersunk holes, and connection features according to the final assembly.
METS combines stamping die development and metal stamping production, allowing the tooling and production processes to be optimized together.
The company's official website states that METS was established in Xiamen and specializes in mold design, mold manufacturing, and precision metal stamping for applications including automotive, electronics, LED products, lead frames, and stator/rotor laminations.
Our engineering team evaluates:
This engineering-first approach helps identify potential manufacturing issues before mass production.
METS provides customized:
Published tooling capabilities include CNC machining, wire EDM, high-speed milling, grinding, die fitting, trial stamping, and tooling modification.
Quality control can include:
For suitable projects, METS publishes capabilities for tolerances down to ±0.01 mm and high-volume production using automated progressive stamping systems.
The following are representative application scenarios for METS's OEM stamping capabilities:
Requirement: High-volume stamped conductive connection components with accurate holes and forming features.
Solution: Progressive die stamping combined with controlled feeding, forming, inspection, and optional surface treatment.
Application: Electrical equipment, connectors, terminals, and industrial control systems.
Requirement: Customized steel mounting bracket with multiple holes and precise bending angles.
Solution: Progressive or compound stamping followed by bending and surface treatment.
Application: Automotive equipment, machinery, appliances, and industrial assemblies.
Requirement: Small precision sheet metal components with tight dimensional requirements and repeatable geometry.
Solution: Precision stamping and custom tooling with controlled material feeding and dimensional inspection.
Application: Electronic connectors, terminals, shielding components, and electrical assemblies.
Requirement: Stable production of large quantities of customized metal components.
Solution: Multi-station progressive stamping for integrated punching, bending, forming, and cutting operations.
Result: Reduced manual processing and improved production consistency.
METS's website lists applications including electronic connectors, sensor components, spring metal parts, automotive components, appliances, industrial machinery, and other customized stamped components.
Choosing the correct stamping process is not simply a matter of pressing sheet metal into a die. The material, geometry, tolerance, production volume, tooling structure, and final application all influence the manufacturing solution.
At METS, our engineers review the complete product structure before tooling production.
For example, for a customized sheet metal connection part, we evaluate:
Material → Thickness → Geometry → Hole Position → Bend Structure → Forming Sequence → Die Layout → Stamping Process → Surface Treatment → Inspection
This process helps control dimensional variation and improve manufacturing efficiency.
For high-volume products, progressive stamping can combine several operations into a single automated production process. This reduces intermediate handling and provides repeatable part geometry from batch to batch.
For lower-volume or structurally simpler products, compound or single-operation tooling may provide a more suitable manufacturing solution.
Our goal is to select the appropriate production method rather than apply the same stamping process to every component.
Customers can provide:
Our engineers review material, dimensions, tolerance, forming structure, production quantity, and tooling requirements.
We provide a customized quotation based on tooling, material, processing, quantity, surface treatment, and packaging requirements.
After order confirmation, the required stamping die or forming tool is designed and manufactured.
The tooling is tested and sample parts are produced for dimensional and functional verification.
After sample approval, production can proceed using the agreed stamping process and quality standards.
Finished parts are inspected, packed according to customer requirements, and shipped by sea, air, or express service.
Different applications require different surface characteristics. Available finishing options may include:
Surface treatment can be selected according to requirements for corrosion resistance, conductivity, appearance, hardness, wear resistance, or assembly performance.
Custom stamping dies are developed according to part geometry and production requirements.
From tooling and prototype development to stamping, secondary processing, inspection, and delivery.
Support for ferrous and non-ferrous materials including stainless steel, steel, aluminum, copper, brass, and silicon steel.
Process control is designed around dimensional accuracy, repeatability, and stable production.
Progressive stamping provides an efficient solution for repeat orders and large production quantities.
Customized dimensions, materials, shapes, finishes, packaging, and production quantities are available.