Backplane connectors - contacts are critical components in electronic systems that establish electrical connections between circuit boards and backplanes. They enable signal transmission and power distribution in complex equipment. With the development of high-speed data communication and modular system architectures, these contacts must meet stringent requirements for reliability, density, and performance. Modern applications demand miniaturization, high mating cycles, and compatibility with advanced PCB technologies.
| Type | Functional Characteristics | Application Examples |
|---|---|---|
| Wire Spring Contacts | High contact force with low insertion force, self-cleaning surface | Telecom switches, industrial control systems |
| Double-Curved Contacts | Redundant contact points, vibration resistance | Aerospace equipment, medical imaging devices |
| Elastomeric Contacts | Compliant interconnects for high-density PCBs | Consumer electronics, wearable devices |
| Controlled Impedance Contacts | Optimized for high-frequency signal integrity | 5G base stations, data center servers |
Typical backplane contacts feature:
| Parameter | Typical Range | Importance |
|---|---|---|
| Contact Resistance | 5-20 m | Affects power loss and signal integrity |
| Current Rating | 1-10 A per contact | Determines power handling capability |
| Voltage Rating | 50-600 V | Insulation requirement specification |
| Mating Cycles | 500-10,000 cycles | System maintenance interval planning |
| Temperature Range | -55 C to +125 C | Environmental reliability indicator |
Major application areas include:
| Manufacturer | Representative Product | Key Features |
|---|---|---|
| TE Connectivity | MATRIX series | Modular design, up to 3200V isolation |
| Amphenol | Rack & Panel contacts | High vibration resistance, IP67 rated |
| Molex | SL Series contacts | 0.8mm pitch, 12 Gbps data rate |
| ITT Cannon | Millennium contacts | 10,000+ mating cycles, aerospace qualified |
Key selection factors:
Example: For 10Gbps data center switches, select contacts with 100 in gold plating and controlled impedance geometry.
Current development trends include:
Market drivers include 5G infrastructure deployment and AI server growth, with projected CAGR of 6.8% (2023-2030).