PCB-Design, PCB -Herstellung, Leiterplatte, PECVD, und Komponentenauswahl mit One-Stop-Service

Herunterladen | Um | Kontakt | Sitemap

RO4350B Ceramic Hybrid High-Frequency PCB Manufacturer | 8-Schicht, 2.5mm, ZUSTIMMEN - UGPCB

Hybridplatine/

RO4350B Ceramic Hybrid High-Frequency PCB Manufacturer | 8-Schicht, 2.5mm, ZUSTIMMEN

Modell: RO4350B Keramik-Hybrid-Hochfrequenz-Leiterplatte

Material: Rogers Ro4350b+FR4 Mischpresse

Schicht: 8L

D k : 3.48

Fertige Dicke : 2.5Mm

Kupferdicke : 1OZ

Dielektrikumsdicke : 0.338mm

Wärmeleitfähigkeit : 0.69w/m.k

Entflammbarkeit : 94V-0

Oberflächenbehandlung: Immersionsgold

Anwendung: Kommunikationsinstrument

  • Produktdetails

Engineered for High-Frequency Communications: The RO4350B Ceramic Hybrid PCB Solution

In the world of high-frequency communications where signal speed and integrity are paramount, Standard PCB -Materialien fall short. UGPCB introduces its high-performance Hochfrequenz-PCB solution based on Rogers RO4350B ceramic hybrid material. Designed for critical applications like communication instruments, Radarsysteme, and satellite receivers, Das HF-Leiterplatte delivers reliable and stable performance.

1. Produktübersicht & Definition

Bei diesem Produkt handelt es sich um ein 8-layer high-frequency PCB manufactured using a Rogers RO4350B Laminates and FR4 Hybrid Lamination Verfahren. This innovative Hybrid Construction PCB strategically combines high-performance ceramic-filled PTFE material (RO4350B) with cost-effective FR4. The RO4350B material is used in critical signal layers to ensure exceptional high-frequency performance, while FR4 is used in inner power and ground layers for optimal cost-efficiency. This Mixed Dielectric PCB-Design represents an intelligent choice for balancing performance and budget.

UGPCB 8-Layer RO4350B Ceramic Hybrid High-Frequency PCB

2. Überlegungen zum kritischen Design

  1. Precise Impedance Control: Der RO4350B material offers a stable and low Dielektrizitätskonstante (Dk=3.48). Combined with precision manufacturing processes, it enables highly accurate impedance control (typically ±5% or better), ensuring signal integrity for high-speed transmission.

  2. Hybrid Stack-up Design: The design must clearly separate high-frequency signal layers (using RO4350B dielectric) from power/ground planes (which may use FR4). Rational stack-up planning is key to leveraging the benefits of hybrid material PCBs and controlling costs.

  3. Low-Loss Design: The inherently low dissipation factor (Df) of RO4350B is foundational. Designers should also employ appropriate trace width, copper weight, and smooth copper foil surfaces (like reversed foil) to further minimize insertion loss.

  4. Thermalmanagement: Although the Wärmeleitfähigkeit (0.69W/m.K) of RO4350B is superior to most standard FR4, high-power applications still require careful thermal management through proper layout, thermal vias, and potential additional heat sinking.

3. Wie es funktioniert & Schlüsselmerkmale

Arbeitsprinzip

At high frequencies (typically above 500MHz), skin effect is significant, and signal integrity is highly susceptible to the dielectric properties of the substrate. The RO4350B ceramic hybrid High Frequency Circuit Board minimizes signal energy loss (Einfügedämpfung) and phase distortion during transmission through its stable dielectric constant and very low loss tangent, ensuring low-noise, high-fidelity signal transmission.

Schlüsselmerkmale & Leistung

  • Superior High-Frequency Stability: Stable Dk value across frequency and temperature variations ensures consistent and reliable circuit performance.

  • Exceptionally Low Signal Loss: Optimized for high-frequency applications, it significantly reduces signal attenuation, improving system SNR and transmission range.

  • Excellent Mechanical & Thermische Zuverlässigkeit: Glass-reinforced for high rigidity; resistant to high temperatures with a CTE matched to copper, enhancing long-term reliability.

  • Effective Heat Dissipation: A thermal conductivity of 0.69W/m.K aids in dissipating heat from high-power components, ensuring system stability.

  • Compliance with Safety Standards: The laminate meets the stringent UL 94V-0 Entflammbarkeitsbewertung.

  • Zuverlässige Oberflächenbeschaffenheit: Immersionsgold (ZUSTIMMEN) treatment provides a flat soldering surface, ausgezeichnete Oxidationsbeständigkeit, and good contact conductivity, suitable for high-frequency signal connections and fine-pitch component soldering.

4. Materialien & Struktur

  • Primary Materials: Rogers RO4350B (ceramic-filled PTFE composite) and FR-4 epoxy glass laminate.

  • Leitfähige Schichten: 1OZ (35μm) Electrolytic Copper Foil.

  • Oberflächenbeschaffung: Elektrololes Nickel -Eintauchgold (ZUSTIMMEN).

  • Finished Board Thickness: 2.5mm (± 10%).

  • Dielektrikumsdicke: 0.338mm (typisch, varies based on specific lamination structure).

  • Board Structure: 8-layer board. A typical stack-up involves a symmetrical or asymmetrical combination like [FR4-PP-RO4350B Core-RO4350B Core-PP-FR4], determined by electrical design requirements.

5. Wissenschaftliche Klassifikation

  1. Nach Materialtyp: Ceramic-Filled PTFE Hybrid Dielectric High-Frequency PCB / Composite Dielectric Substrate PCB.

  2. By Application Frequency: RF Microwave PCB / High-Frequency High-Speed PCB.

  3. Durch Struktur & Verfahren: Multilayer Hybrid Laminate PCB / 8-Layer Precision Controlled Impedance Board.

6. Key Control Points in Production Flow

UGPCB possesses mature manufacturing processes for High Frequency Printed Circuit Boards. Critical control points include:

  1. Präzisionslaminierung: Strict control of lamination parameters (Druck, Temperatur, Zeit) for RO4350B and FR4 to prevent delamination/voids and maintain consistent dielectric thickness.

  2. Fine-Line Etching: Utilization of high-precision imaging transfer technology to ensure trace edge smoothness and dimensional accuracy.

  3. Stringent Impedance Control: End-to-end monitoring from design simulation to production, using advanced testing equipment (z.B., Tdr) für 100% sampling or full inspection.

  4. Low-Loss Surface Treatment: Optimized ENIG process to ensure uniform plating, controlled thickness, and avoidance of issues likeblack nickelthat degrade high-frequency performance.

7. Primäranwendungen & Anwendungsfälle

This product is designed for fields with stringent requirements for signal frequency and integrity, serving as a core component in High-Frequency Communication Equipment.

  • Communication Base Stations: 5G/4G Base Station RF power amplifiers, Antennen, Filter, Duplexer.

  • Satellite Communication & Radarsysteme: Satellite receivers, radar transceiver modules, navigation systems.

  • Prüfen & Messgeräte: Network analyzers, Spektrumanalysatoren, high-frequency signal sources.

  • Kfz -Elektronik: 77GHz millimeter-wave radar, Fortgeschrittene Fahrerhilfesysteme (Adas).

  • Drahtlose Infrastruktur: Point-to-point microwave links, wireless access equipment.

UGPCB 8-Layer RO4350B Hybrid PCB in 5G Base Station Applications

Get Your High-Frequency PCB Solution Now

Your next-generation high-performance communication instrument deserves a more reliable core. UGPCB’s RO4350B Ceramic Hybrid Hochfrequenzplatine is ready to power your lead in the signal age.

Click to contact our High-Frequency PCB experts for a free design consultation and an instant quote!
(This section should integrate a call-to-action button or contact form.)

Vorher:

Nächste:

Hinterlassen Sie eine Antwort

Ein Kommentar

  1. trading platform

    Hi! I could have sworn I’ve been to this blog before but after checking through some
    of the post I realized it’s new to me. Anyhow, I’m definitely delighted I found it and I’ll
    be book-marking and checking back often!

Eine Nachricht hinterlassen