pcb material

Multi-layer pcb

ROGERS 4003C and ROGERS 4350B have excellent low dielectric loss characteristics. As a result, they provide a more cost-effective and processable high-frequency material selection than PTFE materials.
Panasonic MEGTRON 4 R-5725 laminate is a High speed and low loss Multi-layer materials, this material features excellent thermal performance.Panasonic MEGTRON 4 R-5725 laminate is a high Tg material.
Arlon 85NT is a pure polyimide with a high glass transition temperature of 250⁰C laminate and prepreg system, reinforced with a non-woven aramid substrate.Decomposition temperature of 426°C, compared with 407°C
The VT-464G laminate features a very low Dk value, minimizing signal delay and crosstalk, which is critical for high speed data transmission. With a high Tg exceeding 170°C, VT-464G maintains
The high glass transition temperature (Tg) of VT-447C, typically above 170°C, provides exceptional thermal stability.VT-447C is formulated as a halogen-free material, offering significant environmental and safety advantages over traditional brominated
VT-90H is a high glass transition temperature (Tg) of 250°C pcb material, It provides exceptional thermal stability.With a Td of 408°C, VT-90H exhibits exceptional thermal stability, minimizing material degradation during
VT-462S features that have a high Tg exceeding 170°C, ensuring excellent dimensional stability and mechanical strength under elevated temperatures.With a very low Dk value, VT-462S minimizes signal delay and crosstalk,
ThunderClad 2 Sp (TU-883 Sp) is a low-loss material based on a high-performance resin system. This material offers a dielectric constant (Dk) of 3.15 at 10GHz, a dissipation factor (Df)
RO4360G2™ laminates, characterized by a dielectric constant (Dk) of 6.15, exhibit low loss and are reinforced with glass fibers. Alongside a Dissipation Factor (Df) of just 0.0038 at 10 GHz,
The WL-CT series(WL-CT300、WL-CT330、WL-CT330Z、WL-CT338、WL-CT350、WL-CT440、WL-CT615) of organic polymer ceramic fiberglass cloth copper-clad laminates is a high frequency material based on a thermosetting resin system.
The high Tg of 180 °C (DSC) TU-752 PCB material which is known for its elevated glass transition temperature (Tg). TU-752/ TU-75P laminate / prepreg are made of high quality
EZ-IO-F is a thermally stable composite that leverages nanotechnology, spread weave fabric, and PTFE to deliver superior performance. Designed to challenge even the best FR4 materials in complex, multi-layered digital
Panasonic MEGTRON2 R-1577 is a high thermal conductivity glass composite PCB material that exhibits excellent electrical and mechanical properties. A consistently low Dk value (typically 4.14 at 1 GHz) ensures
Panasonic Ecool R-1787 PCB material offers a Tg value of 140 degrees Celsius, the glass transition temperature describes how a PCB material transforms from a solid state to a molten
The R-1755V boasts a high Tg value of ≥165°C, ensuring dimensional stability and mechanical integrity even under elevated temperatures. Panasonic R-1755V has a low Df of 0.016 at 1 GHz,
Shengyi AEROWAVE 300 laminate is a high-performance, low-loss PCB material specifically engineered for advanced RF and microwave applications. With a dielectric constant (3.0 @10GHz), AeroWave 300 laminate maintains excellent dielectric
Shengyi SCGA-500 GF255 is a low-loss PTFE woven glass PCB material, specifically engineered for high-frequency applications. With a dielectric constant of 2.55(±0.04) at 10GHz, the laminate maintains outstanding dielectric stability
This is a halogen-free build-up material for printed wiring boards. MGC's halogen-free material achieves the UL94 V-0 flame retardancy level not only without using brominated flame retardants or antimony compounds
The DS-7409HG laminate demonstrates a dielectric constant of 4.6 at 1 GHz. The frequency significantly influences this value, with the dielectric constant decreasing as the frequency increases. A dissipation factor
The DS-7409HG(IQ) laminate demonstrates a dielectric constant of 4.3 at 1 GHz. The frequency significantly influences this value, with the dielectric constant decreasing as the frequency increases. A dissipation factor
At a frequency of 1 GHz, the material has a dielectric constant (Dk) of 5.7, which measures its ability to store electrical energy in a capacitor-like manner. One of the
The DS-7402HD laminate demonstrates a dielectric constant of 3.5 at 1 GHz. The frequency significantly influences this value, with the dielectric constant decreasing as the frequency increases. A dissipation factor
The Shengyi SI13U laminate demonstrates a dielectric constant of 4.8 at 1 GHz. A dissipation factor of 0.013 at 1 GHz implies reduced dielectric loss, ensuring minimal heat generation during
The LNB33C laminate is characterized by a high glass transition temperature (Tg) exceeding 280°C.The dielectric constant (Dk) of LNB33C laminate is approximately 3.30 ± 0.05 at 10 GHz (as per

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