Product: FPGA
Material: High-Tg FR4, Rogers RO4003C, ceramic (AlN)
Quality standard: IPC-6012 Class 3, MIL-STD-883, RoHS 3.0
Dielectric constant: 3.4–10.0 @1–50GHz
Layers: 8–14 layers
Thickness: 0.8–2.5mm
Copper thickness: 1–3 oz
Surface technology: ENIG (Ni 2.2–4.5μm / Au 0.02–0.05μm)
Special requirements: 850K–2.4M LEs, 14.2–27 Gbps transceivers, -40℃~85℃ (industrial)
Application: 5G/6G base stations, aerospace radar, industrial automation
FPGA (Field-Programmable Gate Array) stands as a cornerstone of flexible, high-performance computing—adapting on demand to power 5G base stations, decode aerospace radar signals, and streamline industrial automation. Unlike fixed hardware, its reconfigurable logic lets engineers tailor performance to evolving needs, making it indispensable in fast-moving tech landscapes.
Built for Versatility Across Industries
Every component is engineered to balance adaptability and precision:
Material Intelligence: High-Tg FR4 forms the backbone for industrial-grade FPGAs, handling 1–50GHz signals with a dielectric constant of 4.2–4.6. Rogers RO4003C (Dk 3.4) steps in for 5G/6G base stations, minimizing loss in 27 Gbps transceiver paths. Ceramic AlN (Dk 10.0) ensures aerospace FPGAs thrive in -40℃ to 85℃ extremes.
Design Precision: 8–14 layered architectures with 1–3 oz copper traces and ENIG plating (Ni 2.2–4.5μm / Au 0.02–0.05μm) deliver stable connectivity, critical for 850K–2.4M logic elements (LEs) to process data without bottlenecks.
FPGA
Where Flexibility Meets Performance
FPGA’s strength lies in its ability to evolve with tasks:
5G/6G Networks: Powers base stations with 14.2–27 Gbps transceivers, processing massive data streams to keep cities connected.
Aerospace Radar: Decodes complex signals in real time, turning raw radar data into actionable insights for navigation and surveillance.
Industrial Automation: Adapts to factory IoT needs, from sensor data acquisition to machine learning-driven predictive maintenance.
Certified for Critical Environments
Compliant with IPC-6012 Class 3 (precision), MIL-STD-883 (aerospace ruggedness), and RoHS 3.0, FPGA meets the strictest standards—whether it’s optimizing a 5G network or supporting a mission-critical aerospace system.
Product: FPGA
Material: High-Tg FR4, Rogers RO4003C, ceramic (AlN)
Quality standard: IPC-6012 Class 3, MIL-STD-883, RoHS 3.0
Dielectric constant: 3.4–10.0 @1–50GHz
Layers: 8–14 layers
Thickness: 0.8–2.5mm
Copper thickness: 1–3 oz
Surface technology: ENIG (Ni 2.2–4.5μm / Au 0.02–0.05μm)
Special requirements: 850K–2.4M LEs, 14.2–27 Gbps transceivers, -40℃~85℃ (industrial)
Application: 5G/6G base stations, aerospace radar, industrial automation
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