UGPCB

PCB en cuivre intégré haute fréquence: Ultimate Solution for 5G Communication

As 5G communication, radar à ondes de millimètres, and high-speed data transmission sweep the globe, standard circuit boards can no longer meet the demands of high-frequency signal transmission. When signal frequencies enter the GHz range, un PCB‘s material and structure directly determine the device’s performance ceiling.

Aujourd'hui, UGPCB presents a flagship product designed for complex communication environments: le PCB en cuivre intégré haute fréquence. This is not merely a circuit imprimé. It represents an industrial artwork that resolves the conflict between heat dissipation and signal integrity.

PCB en cuivre intégré haute fréquence

1. Définition du produit

UN PCB en cuivre intégré haute fréquence combines high-frequency materials like Rogers RO4003C with copper base materials using specific prepregs such as 4450f. The copper section embeds into the PCB‘s specific layers through hybrid lamination.

This technology perfectly merges the metal base’s excellent heat dissipation with the low-loss characteristics of high-frequency materials through an embedded structure. It specifically addresses thermal management challenges in high-power, high-frequency scenarios.

2. Core Parameters and Design Considerations

A superior circuit imprimé haute fréquence requires precise design and material selection. Consider UGPCB’s typical 4-layer board:

Paramètre Valeur Description
Nombre de couches 4 Calques Standard multilayer configuration
Matériau diélectrique RogersRO4003C + 4450f High-frequency laminate + bonding prepreg
Constante diélectrique (Ne sait pas) 3.38 Stable Dk at 10GHz ensures signal speed consistency
Épaisseur du panneau fini 1.6mm Total board thickness after fabrication
Épaisseur diélectrique 0.508mm Precision impedance control layer
Base Copper Foil ½ (18µm) HH / HH RTF copper foil for better signal transmission
Épaisseur du cuivre fini 1/0.5/0.5/1 (once) Top 1oz for current, inner 0.5oz for fine lines, bottom 1oz for heat sinking
Traitement de surface Immersion Or (ACCEPTER) Excellent flatness and oxidation resistance
Processus spécial High Frequency Embedded Copper Core thermal management technology
Application Communication Equipment PCB Primary market focus

Considérations critiques de conception

When designing such high-frequency PCB multicouches, précis contrôle d'impédance is essential. You must maintain continuous characteristic impedance, généralement 50 Ω asymétrique ou 100 Ω différentiel. De plus, managing gap filling between the embedded copper block and dielectric layers using 4450f’s resin flow prevents delamination.

3. Working Principle and Performance Advantages

Principe de fonctionnement

The device operates through electromagnetic and thermal dynamics coordination. High-frequency signals travel through RO4003C (Dk=3.38) with minimal loss. Entre-temps, heat from power amplifiers conducts rapidly through vias or direct contact to the embedded copper base. This copper acts as a thermal “highway” with its high thermal conductivity of approximately 398 W / m · k, spreading heat quickly to external sinks.

Core Performance Features

  1. Intégrité supérieure du signal: Rogers RO4003C maintains stable dielectric constant up to 10GHz and beyond. Par rapport à la norme FR-4, signal loss reduces significantly.

  2. Revolutionary Heat Dissipation: The embedded copper structure positions cooling directly inside the PCB. Thermal paths become shorter than traditional metal-base boards, improving cooling efficiency by over 50% and eliminating local hotspots in dense layouts.

  3. Excellent Thermal-Mechanical Stability: RO4003C and copper base show optimized CTE matching. Combined with 4450f’s adhesive toughness, this ensures reliability through -40°C to +125°C thermal cycling.

4. Scientific Classification

Within UGPCB’s product system, this item falls under these specialized categories:

5. Material and Structure Analysis

6. Manufacturing Process Revealed

Creating this embedded copper PCB requires mastering three critical processes:

  1. Cavity Creation: Use controlled-depth routing to mill precise cavities in the multilayer board after initial lamination.

  2. Copper Block Embedding: Place treated copper blocks into cavities. Allow 4450f resin to fill gaps during pressing.

  3. Secondary Lamination: Apply high temperature and pressure. Ensure void-free bonding between copper, dielectric, and circuit layers without delamination.

7. Applications typiques

8. Pourquoi choisir UGPCB?

With demanding communication equipment PCBs, UGPCB provides more than standard parameters. Nous offrons one-stop custom services from engineering design and impedance simulation to volume production. In the high-speed world, a 0.1dB loss difference or a 1°C temperature variation can determine project success or failure.

[Appel à l'action]
Is your next communication device searching for higher-performance PCB solutions?
Contact the UGPCB technical team today!
Send your design files or requirements. We will provide professional PCB en cuivre intégré haute fréquence DFM analysis and quotation.

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