Our Lamp Base Contact Terminals are designed to provide outstanding electrical conductivity, strong mechanical performance, and long-lasting durability, making them ideal for a wide range of lighting applications. Engineered for stability and safety, these terminals ensure a secure electrical connection to support efficient current flow and prevent power loss or overheating.
Each terminal is produced from high-quality metals, including brass, phosphor bronze, stainless steel, or copper, selected for their excellent conductivity, strength, and forming capabilities. Through precision stamping, bending, and forming processes, every part is manufactured to meet strict dimensional tolerances, ensuring consistent shapes, smooth edges, and reliable contact points for easy and accurate assembly into lamp structures.
To further enhance corrosion resistance and electrical performance, the terminals can be finished with tin, nickel, silver, or gold plating. These coatings not only provide oxidation resistance and improved conductivity, but also ensure low contact resistance and minimal wear in high-temperature or long-term lighting conditions, extending the overall service life of lighting products.
Our terminals are widely used in E10, E14, E27, B22, GU10, and other lamp base types, as well as in LED lighting modules, traditional bulb holders, and various electrical connectors. Whether for household lighting, automotive lamps, industrial luminaires, or smart lighting systems, our products provide safe, stable, and efficient electrical contact.
We offer full customization services, allowing for tailored production based on customer-provided drawings, samples, 3D models, or technical specifications. Various parameters—including outer shape, contact area, terminal size, thickness, punching hole patterns, and tolerance levels—can be adjusted to meet specific assembly needs or automated production requirements.
Excellent Electrical Conductivity
Ensures stable current transmission and low contact resistance for reliable lighting performance.
High Mechanical Strength
Manufactured from durable metals like brass, phosphor bronze, stainless steel, or copper for strong structural stability.
Precision Stamping & Smooth Edges
Advanced stamping technology guarantees accurate dimensions, smooth surfaces, and safe assembly without burrs.
Corrosion & Oxidation Resistant
Optional surface treatments such as tin, nickel, silver, or gold plating enhance rust resistance and long-term reliability.
Heat-Resistant & Long Service Life
Performs consistently under high-temperature working conditions and supports long-term use in lighting systems.
Customizable Design
Available in various sizes, shapes, thicknesses, and tolerances according to customer drawings or 3D models.
Wide Compatibility
Suitable for E10, E14, E27, B22, GU10 lamp bases, bulb holders, LED lighting units, and electrical connectors.
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Stamped Brass Parts are versatile components that find application in a wide range of industries and scenarios due to their durability, precision, and cost-effectiveness. The Brass Stamping Parts, made from Zinc Alloy, offer excellent corrosion resistance, making them suitable for various environmental conditions.
One of the key application occasions for Precision Brass Stampings is in the automotive industry. These Brass Stamped Components are commonly used in manufacturing precision parts for vehicles such as connectors, fittings, and other critical components. The use of Progressive Die in the production process ensures high precision and efficiency, meeting the stringent requirements of the automotive sector.
Another significant scenario for Brass Stamped Fittings and Connectors is in the electronics industry. The reliability and consistency of Brass Blank Stamping Parts make them ideal for producing intricate components used in electronic devices. The affordability of these Brass Components also makes them a preferred choice for mass production.
Moreover, the project inspection of Brass Stamping Parts ensures that each component meets the required specifications and quality standards. This quality control process guarantees that the Precision Parts are free from defects and adhere to the necessary tolerances, making them reliable for diverse applications.
In summary, the versatility and quality of Brass Stamping Parts make them suitable for a wide range of applications, including automotive, electronics, industrial machinery, and more. Whether it's Brass Stamped Components for precision instruments or Brass Stamped Connectors for electronic devices, these components offer durability, precision, and cost-effectiveness, making them indispensable in various industries.
Material Selection
Brass, phosphor bronze, stainless steel, copper, or other alloys depending on conductivity, strength, and application needs.
Dimensions & Tolerances
Customizable length, width, thickness, and geometry with precise tolerances for exact fit.
Shape & Design
Flat, flanged, curved, or other special shapes according to drawings, 3D models, or samples.
Surface Treatment
Tin plating, nickel plating, silver plating, gold plating, or no coating for corrosion resistance, conductivity, and aesthetics.
Special Features
Customized punching patterns, embossed logos, or contact points to match specific lamp designs or assembly requirements.
Packaging & Labeling
Tailored packaging, labeling, and barcoding available for assembly lines or retail supply.
OEM & ODM Support – Custom production based on drawings, 3D models, or samples.
Technical Assistance – Guidance on material selection, surface treatment, and design optimization.
Sample & Prototyping – Fast sample production for dimension and fit verification.
Quality Control – Strict inspection according to ISO 9001, RoHS, SGS, or customer-specific standards.
Flexible Packaging & Shipping – Standard or customized packaging with worldwide delivery.
After-Sales Service – Prompt technical support, troubleshooting, and replacement if needed.
Packaging Options – Bulk packaging, PE bags, tape & reel, plastic trays, cartons, or customized solutions to meet client requirements.
Protection Measures – Anti-rust coating, foam, or protective films to prevent damage during transport.
Shipping Methods – Sea freight, air freight, or express delivery (DHL, FedEx, UPS).
Lead Time – Samples: 5–10 days; Mass production: 15–40 days depending on quantity and complexity.
Export Documentation – Packing list, invoice, certificate of origin (CO), or other required documents available upon request.
1. What materials are available for the terminals?
Brass, phosphor bronze, stainless steel, copper, or other alloys based on conductivity and strength requirements.
2. Can the terminals be customized?
Yes, we support OEM/ODM customization according to drawings, 3D models, or samples.
3. What surface treatments are offered?
Tin plating, nickel plating, silver plating, gold plating, or no coating.
4. What are the typical lead times?
Samples: 5–10 days; Mass production: 15–40 days depending on quantity and complexity.
5. Are these terminals suitable for high-temperature applications?
Yes, they are designed to withstand high temperatures typical in lighting systems.
Our Lamp Base Contact Terminals are designed to provide outstanding electrical conductivity, strong mechanical performance, and long-lasting durability, making them ideal for a wide range of lighting applications. Engineered for stability and safety, these terminals ensure a secure electrical connection to support efficient current flow and prevent power loss or overheating.
Each terminal is produced from high-quality metals, including brass, phosphor bronze, stainless steel, or copper, selected for their excellent conductivity, strength, and forming capabilities. Through precision stamping, bending, and forming processes, every part is manufactured to meet strict dimensional tolerances, ensuring consistent shapes, smooth edges, and reliable contact points for easy and accurate assembly into lamp structures.
To further enhance corrosion resistance and electrical performance, the terminals can be finished with tin, nickel, silver, or gold plating. These coatings not only provide oxidation resistance and improved conductivity, but also ensure low contact resistance and minimal wear in high-temperature or long-term lighting conditions, extending the overall service life of lighting products.
Our terminals are widely used in E10, E14, E27, B22, GU10, and other lamp base types, as well as in LED lighting modules, traditional bulb holders, and various electrical connectors. Whether for household lighting, automotive lamps, industrial luminaires, or smart lighting systems, our products provide safe, stable, and efficient electrical contact.
We offer full customization services, allowing for tailored production based on customer-provided drawings, samples, 3D models, or technical specifications. Various parameters—including outer shape, contact area, terminal size, thickness, punching hole patterns, and tolerance levels—can be adjusted to meet specific assembly needs or automated production requirements.
Excellent Electrical Conductivity
Ensures stable current transmission and low contact resistance for reliable lighting performance.
High Mechanical Strength
Manufactured from durable metals like brass, phosphor bronze, stainless steel, or copper for strong structural stability.
Precision Stamping & Smooth Edges
Advanced stamping technology guarantees accurate dimensions, smooth surfaces, and safe assembly without burrs.
Corrosion & Oxidation Resistant
Optional surface treatments such as tin, nickel, silver, or gold plating enhance rust resistance and long-term reliability.
Heat-Resistant & Long Service Life
Performs consistently under high-temperature working conditions and supports long-term use in lighting systems.
Customizable Design
Available in various sizes, shapes, thicknesses, and tolerances according to customer drawings or 3D models.
Wide Compatibility
Suitable for E10, E14, E27, B22, GU10 lamp bases, bulb holders, LED lighting units, and electrical connectors.
|
Stamped Brass Parts are versatile components that find application in a wide range of industries and scenarios due to their durability, precision, and cost-effectiveness. The Brass Stamping Parts, made from Zinc Alloy, offer excellent corrosion resistance, making them suitable for various environmental conditions.
One of the key application occasions for Precision Brass Stampings is in the automotive industry. These Brass Stamped Components are commonly used in manufacturing precision parts for vehicles such as connectors, fittings, and other critical components. The use of Progressive Die in the production process ensures high precision and efficiency, meeting the stringent requirements of the automotive sector.
Another significant scenario for Brass Stamped Fittings and Connectors is in the electronics industry. The reliability and consistency of Brass Blank Stamping Parts make them ideal for producing intricate components used in electronic devices. The affordability of these Brass Components also makes them a preferred choice for mass production.
Moreover, the project inspection of Brass Stamping Parts ensures that each component meets the required specifications and quality standards. This quality control process guarantees that the Precision Parts are free from defects and adhere to the necessary tolerances, making them reliable for diverse applications.
In summary, the versatility and quality of Brass Stamping Parts make them suitable for a wide range of applications, including automotive, electronics, industrial machinery, and more. Whether it's Brass Stamped Components for precision instruments or Brass Stamped Connectors for electronic devices, these components offer durability, precision, and cost-effectiveness, making them indispensable in various industries.
Material Selection
Brass, phosphor bronze, stainless steel, copper, or other alloys depending on conductivity, strength, and application needs.
Dimensions & Tolerances
Customizable length, width, thickness, and geometry with precise tolerances for exact fit.
Shape & Design
Flat, flanged, curved, or other special shapes according to drawings, 3D models, or samples.
Surface Treatment
Tin plating, nickel plating, silver plating, gold plating, or no coating for corrosion resistance, conductivity, and aesthetics.
Special Features
Customized punching patterns, embossed logos, or contact points to match specific lamp designs or assembly requirements.
Packaging & Labeling
Tailored packaging, labeling, and barcoding available for assembly lines or retail supply.
OEM & ODM Support – Custom production based on drawings, 3D models, or samples.
Technical Assistance – Guidance on material selection, surface treatment, and design optimization.
Sample & Prototyping – Fast sample production for dimension and fit verification.
Quality Control – Strict inspection according to ISO 9001, RoHS, SGS, or customer-specific standards.
Flexible Packaging & Shipping – Standard or customized packaging with worldwide delivery.
After-Sales Service – Prompt technical support, troubleshooting, and replacement if needed.
Packaging Options – Bulk packaging, PE bags, tape & reel, plastic trays, cartons, or customized solutions to meet client requirements.
Protection Measures – Anti-rust coating, foam, or protective films to prevent damage during transport.
Shipping Methods – Sea freight, air freight, or express delivery (DHL, FedEx, UPS).
Lead Time – Samples: 5–10 days; Mass production: 15–40 days depending on quantity and complexity.
Export Documentation – Packing list, invoice, certificate of origin (CO), or other required documents available upon request.
1. What materials are available for the terminals?
Brass, phosphor bronze, stainless steel, copper, or other alloys based on conductivity and strength requirements.
2. Can the terminals be customized?
Yes, we support OEM/ODM customization according to drawings, 3D models, or samples.
3. What surface treatments are offered?
Tin plating, nickel plating, silver plating, gold plating, or no coating.
4. What are the typical lead times?
Samples: 5–10 days; Mass production: 15–40 days depending on quantity and complexity.
5. Are these terminals suitable for high-temperature applications?
Yes, they are designed to withstand high temperatures typical in lighting systems.