The Conductive Contact Spring is a precision-engineered electrical contact component designed to provide reliable electrical conductivity, stable contact pressure, and long-term mechanical performance. Manufactured from high-quality conductive materials including copper alloys, phosphor bronze, and beryllium copper, this spring combines excellent electrical conductivity with outstanding elasticity and contact reliability.
Designed for applications requiring both electrical connection and spring force, conductive contact springs maintain consistent contact between mating components while compensating for dimensional variations, vibration, thermal expansion, and assembly tolerances. Their spring-loaded structure ensures stable contact pressure and reduces the risk of intermittent electrical connections.
| Parameter | Specification |
|---|---|
| Product Name | Conductive Contact Spring |
| Product Type | Electrical Contact Spring / Conductive Spring |
| Main Materials | Copper, Copper Alloy, Phosphor Bronze, Beryllium Copper |
| Common Material Grades | C11000, C17200, C5210, C5191, Custom Grades |
| Wire / Sheet Thickness | 0.1-3.0 mm, Custom |
| Spring Diameter | Custom According to Drawing |
| Manufacturing Processes | Stamping, Bending, Wire Forming, CNC Forming |
| Surface Treatment | Tin Plating, Nickel Plating, Silver Plating, Gold Plating |
| Tolerance | ±0.02-±0.10 mm, Depending on Design |
| Application | Connectors, Switches, Circuit Breakers, Batteries, Electronics |
| Customization | OEM / ODM Supported |
Technical parameters can be adjusted according to the product drawing, electrical requirements, contact force, operating environment, and production process.
We provide OEM and ODM conductive contact spring manufacturing according to customer drawings, samples, specifications, or application requirements.
Our engineering team can customize:
Different materials can be selected according to conductivity, spring force, fatigue resistance, corrosion resistance, and operating temperature requirements.
To optimize electrical and environmental performance, we offer:
We support the complete manufacturing process from prototype development and sample approval to high-volume production, helping customers verify spring force, dimensions, electrical contact performance, and assembly compatibility.
The Conductive Contact Spring is a precision-engineered electrical contact component designed to provide reliable electrical conductivity, stable contact pressure, and long-term mechanical performance. Manufactured from high-quality conductive materials including copper alloys, phosphor bronze, and beryllium copper, this spring combines excellent electrical conductivity with outstanding elasticity and contact reliability.
Designed for applications requiring both electrical connection and spring force, conductive contact springs maintain consistent contact between mating components while compensating for dimensional variations, vibration, thermal expansion, and assembly tolerances. Their spring-loaded structure ensures stable contact pressure and reduces the risk of intermittent electrical connections.
| Parameter | Specification |
|---|---|
| Product Name | Conductive Contact Spring |
| Product Type | Electrical Contact Spring / Conductive Spring |
| Main Materials | Copper, Copper Alloy, Phosphor Bronze, Beryllium Copper |
| Common Material Grades | C11000, C17200, C5210, C5191, Custom Grades |
| Wire / Sheet Thickness | 0.1-3.0 mm, Custom |
| Spring Diameter | Custom According to Drawing |
| Manufacturing Processes | Stamping, Bending, Wire Forming, CNC Forming |
| Surface Treatment | Tin Plating, Nickel Plating, Silver Plating, Gold Plating |
| Tolerance | ±0.02-±0.10 mm, Depending on Design |
| Application | Connectors, Switches, Circuit Breakers, Batteries, Electronics |
| Customization | OEM / ODM Supported |
Technical parameters can be adjusted according to the product drawing, electrical requirements, contact force, operating environment, and production process.
We provide OEM and ODM conductive contact spring manufacturing according to customer drawings, samples, specifications, or application requirements.
Our engineering team can customize:
Different materials can be selected according to conductivity, spring force, fatigue resistance, corrosion resistance, and operating temperature requirements.
To optimize electrical and environmental performance, we offer:
We support the complete manufacturing process from prototype development and sample approval to high-volume production, helping customers verify spring force, dimensions, electrical contact performance, and assembly compatibility.