OEM Rogers Ceramic PCB Circuit Board 6035HTC Motherboard 0.5oz-6oz Copper
Product Specifications
Attribute |
Value |
Board Thickness |
0.2-6.0mm |
Features |
Stack Up, Calculator |
Base Material |
Rogers |
Lead Time |
3-5 days |
Copper Thickness |
0.5oz-6oz |
Model |
ONESEINE |
Copper Weight |
Inner 1/2 oz-4oz; Outer 1oz-5oz |
Board Size |
9*6cm |
Line Width |
3mil |
Board Edge Plating |
NO |
PCB Parameters
Boards size: 12*3CM
Surface finish: ENIG
Boards thickness: 0.7mm
Layer: 2
Solder mask: Blue
Silkscreen: White
Brand: ONESEINE
Key Advantages of Rogers PCBs
- Electrical Performance: PTFE-based and ceramic-filled laminates with low dielectric constant (εr 3.55-3.66) and loss tangent (tan δ 0.0037 at 10 GHz) for low signal loss and high-frequency performance
- Thermal Management: High thermal conductivity (0.5-2.1 W/m-K) and operation up to 250°C for efficient heat dissipation
- Mechanical Reliability: Superior flexural strength, tensile strength, and peel strength for structural integrity
- Design Flexibility: Wide range of materials including PTFE-based, ceramic-filled, and LCP laminates
- Specialty Applications: Ideal for 5G infrastructure, radar, satellite communications, and automotive radar
- Sustainability: Environmentally friendly manufacturing with lead-free, halogen-free, and RoHS-compliant solutions
About Rogers PCBs
Rogers Corporation manufactures high-performance circuit materials for wireless infrastructure, automotive, aerospace, and defense applications. Their product lines include RO4000 Series, RO3000 Series, and RT/duroid Series, optimized for different frequencies and thermal requirements.
Rogers PCBs are known for their low loss tangent, controlled impedance, and thermal management capabilities, making them ideal for high-speed, high-frequency applications in 5G, radar, and satellite communications.
Thermal Properties for High-Power Applications
Thermal Conductivity: 0.5-2.1 W/m-K (significantly higher than standard FR-4)
CTE: Low z-axis coefficient of thermal expansion for reduced warpage
Temperature Range: Continuous operation up to 150-250°C
These properties enable effective heat dissipation and reliable performance in high-power applications with thermal cycling and mechanical stresses.