Over 10 years we help companies reach their financial and branding goals. Engitech is a values-driven technology agency dedicated.

Gallery

Contacts

411 University St, Seattle, USA

engitech@oceanthemes.net

+1 -800-456-478-23

PCB Material Specification Sheet
ROGERS

Fabrication Guidelines RO4360G2 High Frequency Laminates

RO4360G2™ laminates from Rogers Corporation are high-frequency materials with a dielectric constant (Dk) of 6.15 ± 0.15, designed for advanced RF and microwave applications. These laminates are compatible with FR-4 processing methods, making them a cost-effective solution for high-performance circuits. The following guidelines help optimize fabrication processes to ensure reliability and performance.

PCB Material Specification Sheet
ROGERS

SP200501 – RO4350B Starting Point Compensation Factors

The SP200501 document provides detailed starting point compensation factors for Rogers RO4350B™ laminates. These factors are essential for optimizing PCB fabrication processes and ensuring precise dimensional control during etching, drilling, and lamination. By accounting for the material’s inherent properties and processing behavior, manufacturers can achieve high precision in RF and microwave circuit designs.

PCB Material Specification Sheet
ROGERS

Device Attachment Methods and Wirebonding Notes for RTduroid and RO4000 Series High Frequency Lamina

Rogers RT/duroid® and RO4000® series laminates are widely used in high-frequency applications such as RF and microwave circuits. Reliable device attachment and wirebonding are essential for achieving optimal performance and long-term reliability. This guide outlines best practices for attaching devices and performing wirebonding on these high-frequency laminates.

PCB Material Specification Sheet
ROGERS

Temperature Rise Estimations in Rogers High Frequency Circuit Boards Carrying Direct or RF Current

In high-frequency circuit designs, managing temperature rise is crucial for ensuring optimal performance and reliability. Rogers’ high-frequency circuit boards, such as those made with RO4000, RO3000, or RT-duroid laminates, exhibit excellent thermal and electrical properties. However, the combination of DC or RF currents and environmental conditions can lead to localized temperature increases that need to be estimated and mitigated.