Rogers PCB

LEADHUI PCB provides custom Rogers PCB manufacturing for RF, microwave, high-speed digital, communication, automotive radar, aerospace, and other electronic applications that require stable dielectric performance, low signal loss, and reliable high-frequency transmission.Thermal Conductivity Options: 1.0–3.0 W/m.KGet A Quote
rogers pcb

Rogers PCB Types We Support

We manufacture four distinct types of aluminum-backed PCBs to match your specific thermal, layering, and spatial layout requirements.

Single-Sided Rogers PCB

Single-sided Rogers boards are suitable for simpler RF and microwave structures where controlled electrical performance is needed.

  • Layer Count:1 Layer (SMT Only)
  • Best For:Standard LED Strips, Bulbs, Basic Power Modules
  • Cost Level:Low (High Volume Budget Friendly)
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Double-Sided Rogers PCB

Double-sided Rogers boards support more complex routing and are commonly used in wireless communication and RF module applications.

  • Layer Count:2 - 8 Layers
  • Best For:Automotive ECUs, High-End Inverters, Medical Controls
  • Cost Level:Medium-High (Complex Drilling Process)
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Hybrid Rogers PCB

Hybrid Rogers PCBs combine Rogers materials with FR4 in the same stackup to balance electrical performance and cost. These are often used when only selected layers require high-frequency laminate.

  • Board Type:Long strip / bar-shaped aluminum PCB
  • Best For:LED strips, linear lights, tube lights, cabinet lights, signage, lighting modules
  • Cost Level:Low-Medium (depending on length, copper thickness, and quantity)
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Controlled Impedance Rogers PCB

Controlled-impedance Rogers boards are designed for circuits that require accurate and repeatable impedance performance for RF or high-speed signals.

  • Board Type:Long strip / bar-shaped aluminum PCB
  • Best For:LED strips, linear lights, tube lights, cabinet lights, signage, lighting modules
  • Cost Level:Low-Medium (depending on length, copper thickness, and quantity)
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What Is a Rogers PCB?

A Rogers PCB is a printed circuit board manufactured using Rogers high-frequency laminate materials instead of standard FR4. These materials are designed for applications where electrical performance at high frequencies is especially important.

Rogers PCB materials are commonly used because they provide:

  • Low dielectric loss
  • Stable dielectric constant
  • Better impedance consistency
  • Improved signal integrity
  • Good thermal stability
  • Reliable performance in RF and microwave circuits

Rogers boards are often used in products where standard FR4 cannot provide the required electrical performance.

Why Choose Rogers PCB?

Better High-Frequency Performance
Rogers materials are designed for RF and microwave circuits that require lower signal loss and stable transmission performance.

More Stable Dielectric Properties
A more consistent dielectric constant helps improve impedance control and signal predictability.

Lower Insertion Loss
Rogers PCB materials help reduce signal attenuation in high-frequency applications.

Improved Signal Integrity
These materials are suitable for designs where signal quality, low noise, and controlled impedance are critical.

Better Thermal Stability
Rogers laminates provide more stable performance across varying temperature conditions compared with many standard PCB materials.

Rogers PCB Capabilities

From rapid prototyping to high-volume mass production, LEADHUI supports a wide range of custom specifications to match your exact project needs:

Capability Item Specification
Rogers PCB Type Single-Sided Rogers PCB, Double-Sided Rogers PCB, Multilayer Rogers PCB, Hybrid Rogers PCB, Controlled Impedance Rogers PCB
Material Options Rogers high-frequency laminates and hybrid material stackups according to project requirements
Layer Count Single-sided, double-sided, and multilayer Rogers PCB structures available upon engineering review
Board Structure Pure Rogers stackups and Rogers + FR4 hybrid stackups available depending on design requirements
Copper Thickness Standard and custom copper thickness options available according to signal, current, and thermal requirements
Surface Finish ENIG, HASL, Lead-Free HASL, OSP and other finishes upon review
Impedance Control Controlled impedance support available according to stackup and fabrication requirements
Profile Processing CNC Routing, slots, cutouts, custom board outline, panelized production
Testing Electrical Test, Impedance-related review, Final Quality Inspection
Applications RF, Microwave, Radar, Communication, High-Speed Digital, Aerospace, Automotive, Medical Electronics

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