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Rogers RO3010 High frequency PCB : ceramic-filled PTFE composite circuit material

Shenzhen Bicheng Electronics Technology Co., Ltd
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Address: 6-11C Shidai Jingyuan Fuyong Town, Baoan District, Shenzhen City, Guangdong Province, China

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Shenzhen Bicheng Electronics Technology Co., Ltd

Rogers RO3010 High frequency PCB : ceramic-filled PTFE composite circuit material

Country/Region china
City & Province shenzhen guangdong
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Product Details

Engineered Performance for Broadband Circuit Design

 

Rogers RO3010 was developed to push the limits of circuit complexity through its tightly controlled electrical properties. Crafted from a proprietary ceramic-filled PTFE composite, it enables a density of features not possible with typical materials.

 

Central to its capabilities is a precisely maintained dielectric constant of 10.2 ±0.30. This narrow tolerance allows complication routing topologies without worrying resonant frequencies may shift unexpectedly. Even as temperature fluctuates from -55°C to 288°C, RO3010 stays consistent.

 

Its low dissipation factor of just 0.0022 further ensures clean signal transmission up to 10GHz and beyond. Power amplifiers, antennas and other high-frequency assemblies benefit from minimal insertion losses.

 

RO3010 also excels mechanically through class-leading dimensional stability. Coefficients of thermal expansion as low as 11ppm minimize warping stresses. Delamination risk is negligible, saving development time and costs.

 

Our ISO-certified plant produces RO3010-based boards to IPC Class 2 standards. Standard sizes reach 80x57mm, allowing intricate multi-layer designs with 65mil trace spacing. Its thermal conductivity diverts heat away from sensitive areas.

 

Whether developing satellites, 5G radios or automotive radar, engineers rely on RO3010 for miniaturizing feature-rich circuitry in the harshest environments. Its tailored properties consistently surpass expectations from prototypes to production. Contact us to see how it can optimize your next project's performance.

 

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