Rogers RO3010 is a high-frequency printed circuit board (PCB) material that is widely used in advanced electronic applications requiring high-speed performance and low loss. The RO3010 board features a dielectric constant of 10.2 and a remarkably low loss factor of 0.0022, making it ideal for applications where signal integrity and high-frequency performance are critical. This 2-layer PCB has a dielectric thickness of 1.28mm and is typically processed with immersion gold for superior surface finish and reliable connectivity. The Rogers RO3010 is a preferred choice for designers working with high-frequency circuits, ensuring reliable performance in communications, radar, and aerospace systems.
Specification
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Material | : Rogers RO3010 |
Dielectric Constant (Dk) | :10.2 |
Loss Factor (Df) | :0.0022 |
Number of Layers: | 2 Layers |
Dielectric Thickness | :1.28mm |
Surface Finish | :Immersion Gold |
The Rogers RO3010 high-frequency PCB board is engineered to meet the demanding requirements of high-speed signal transmission. Below are some of the key features that set it apart from other PCB materials:
Dielectric Constant: 10.2 – This characteristic is crucial for controlling the signal propagation speed on the board. A higher dielectric constant means that the signal will travel slower, which can be advantageous for certain high-frequency designs.
Loss Factor: 0.0022 – The low loss factor indicates minimal signal attenuation, making the RO3010 ideal for high-frequency applications where preserving signal strength is paramount.
The RO3010 board consists of 2 layers, allowing for a balanced combination of signal integrity and compact design. With a dielectric thickness of 1.28mm, the board maintains excellent electrical performance while remaining thin enough for various high-frequency applications.
To ensure robust connections and long-term reliability, the Rogers RO3010 is typically processed with immersion gold, a widely-used surface finish that enhances solderability and prevents oxidation, ensuring the integrity of the high-frequency signals over time.
When compared to traditional PCB materials, Rogers RO3010 offers distinct advantages, particularly for designs involving high-frequency signals. These advantages include:
With its low loss factor, the RO3010 ensures that high-frequency signals are transmitted with minimal attenuation, thus maintaining signal integrity across the board. This is particularly beneficial for applications such as RF communication systems.
Rogers RO3010 performs exceptionally well under varying temperatures, making it ideal for applications where thermal fluctuations are a concern, such as in automotive or aerospace systems.
The dielectric constant of 10.2 is highly stable across a broad frequency range, providing designers with consistent and predictable performance.
The Rogers RO3010 high-frequency PCB is most commonly used in the following applications:
Telecommunications Equipment: Used in high-speed communication systems, RF transceivers, and antennas where low signal loss and high-frequency performance are essential.
Radar Systems: In radar systems, especially in defense and aerospace sectors, the material's excellent signal integrity ensures accurate detection and communication.
Aerospace and Defense: High-frequency PCBs like the RO3010 are used in critical aerospace and defense applications, where reliability and performance under extreme conditions are crucial.
In conclusion, the Rogers RO3010 high-frequency PCB board provides outstanding performance for a wide range of high-speed and high-frequency applications. With its superior dielectric constant, low loss factor, and reliable surface finish, it is an ideal choice for telecommunications, radar systems, and defense applications where signal integrity is critical. By taking into account design factors such as trace width, impedance control, and thermal management, engineers can harness the full potential of the RO3010 material, ensuring optimal performance in even the most demanding environments.
By integrating Rogers RO3010 into your design, you ensure that your high-frequency circuit boards perform reliably, efficiently, and with minimal signal degradation, offering a clear advantage in today's fast-paced technological landscape.
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