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High Frequency PCB
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OEM Electronics High Frequency PCB For Aerospace Telecommunications

OEM Electronics High Frequency PCB For Aerospace Telecommunications

Brand Name: Ben Qiang
Model Number: FR-4/Rogers
MOQ: 1PCS
Price: custom made
Payment Terms: Bank Transfer/Alipay/PayPal
Supply Ability: 200,000 square meters/year
Detail Information
Place of Origin:
Shenzhen, China
Certification:
ISO/TS16949/RoHS/TS16949
Impedance Value:
±10%
Minimum Hole Size:
0.2mm
Usage:
OEM Electronics
Application:
Communicate Automotive
Operating Temperature:
-55℃ To 125℃
Material:
Rogers/PTFE
Rohs Compliant:
Yes
Min Via:
0.1mm Laser Drill, 0.2mm Mechanic Drill
Packaging Details:
Air bead vacuum packaging
Supply Ability:
200,000 square meters/year
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OEM Electronics High Frequency PCB

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High Frequency PCB Aerospace

Product Description

OEM Electronics High-Frequency Printed Circuit Board with 1.0MM Board Thk

Product Description:

High Frequency PCB - Designed for High-Frequency Applications

High Frequency PCB (Printed Circuit Board) is a specialized type of PCB that is designed for high-frequency electronic applications. It is used in various industries such as aerospace, military, telecommunications, and medical equipment, where high-performance and reliability are crucial.

Key Features
  • 1 Oz Copper Thickness: High Frequency PCB uses 1 Oz (35 μm) copper thickness, which ensures high conductivity and excellent signal transmission.
  • Rogers/PTFE Material: The PCB is made from high-quality Rogers/PTFE (Polytetrafluoroethylene) material, which offers low dielectric loss, high thermal stability, and excellent mechanical properties.
  • ±10% Impedance Value: The PCB has a tight tolerance of ±10% impedance value, ensuring precise signal matching and minimal signal loss.
  • 0.2mm Minimum Hole Size: The minimum hole size for the PCB is 0.2mm, which allows for fine pitch components and high-density circuitry.
  • 0.1mm Laser Drill, 0.2mm Mechanical Drill: The PCB is drilled using a 0.1mm laser drill and 0.2mm mechanical drill, which ensures high accuracy and consistency.
Applications

High Frequency PCB is ideal for various high-frequency applications, including:

  • RF/Microwave Circuits
  • Wireless Communication Systems
  • Satellite Communication Systems
  • Radar Systems
  • Electronic Warfare Systems
  • Medical Imaging Equipment
Why Choose High Frequency PCB?

High Frequency PCB offers several advantages over traditional PCBs, making it the preferred choice for high-frequency applications:

  • High Performance: The use of high-quality materials and precise manufacturing processes ensures superior performance and reliability.
  • Low Loss: The low dielectric loss of Rogers/PTFE material minimizes signal loss and distortion, ensuring accurate signal transmission.
  • High Thermal Stability: The PCB can withstand high temperatures without losing its electrical properties, making it suitable for extreme environments.
  • High Density: The small hole size and precise drilling process allow for high-density circuitry, making it suitable for miniaturized electronic devices.

For all your high-frequency microwave PCB needs, choose High Frequency PCB - the perfect combination of performance, reliability, and precision. Contact us today to learn more!

 

Features:

  • Product Name: High Frequency PCB
  • Copper Thickness: 1 Oz
  • Final Foil: 1 Oz
  • Min Via: 0.1mm Laser Drill, 0.2mm Mechanic Drill
  • Usage: OEM Electronics
  • Surface Finished: Immersion Gold
  • High-Frequency Microstrip PCB
  • High-Frequency RF PCB
  • High-Frequency Microwave PCB
 

Technical Parameters:

 

Applications:

High Frequency PCB

High Frequency PCB (Printed Circuit Board) is a type of circuit board specifically designed to handle high-frequency signals. It is also known as High-Frequency Signal PCB, High-Frequency Microstrip PCB, or High-Speed Digital PCB. This type of PCB is widely used in various industries that require high-speed and high-frequency data transmission, such as communication, aerospace, medical, and automotive industries.

Product Attributes

The High Frequency PCB has the following key attributes:

  • Board Thickness: 0.2mm-6.35mm
  • Copper Thickness: 1 Oz
  • RoHS Compliant: Yes
  • Impedance Value: ±10%
  • Operating Temperature: -55℃ to 125℃
Applications and Scenarios

The High Frequency PCB can be used in various applications and scenarios, some of which are listed below:

  • Wireless Communication: The High Frequency PCB is widely used in the production of wireless communication devices, such as smartphones, routers, and satellite communication systems. The high-frequency signals can be transmitted seamlessly and efficiently through the PCB, ensuring reliable and fast communication.
  • Radar Systems: In the aerospace and defense industry, radar systems require high-frequency signals to detect and track objects. The High Frequency PCB is an essential component in these systems, allowing for accurate and precise data transmission.
  • Medical Devices: High-frequency signals are crucial in medical devices, such as MRI machines, ultrasound equipment, and patient monitoring systems. The High Frequency PCB is used in these devices to ensure the transmission of accurate and high-quality data for diagnosis and treatment purposes.
  • High-Speed Data Processing: In today's digital world, high-speed data processing is essential for various industries, such as finance, gaming, and transportation. The High Frequency PCB is used in high-speed digital devices, such as servers, routers, and switches, to ensure fast and efficient data processing.

The High Frequency PCB is also used in other scenarios where high-frequency signals and data transmission are critical, such as automotive collision avoidance systems, satellite navigation systems, and industrial automation equipment.

Conclusion

The High Frequency PCB is a vital component in various industries that require high-speed and high-frequency data transmission. With its ability to handle high-frequency signals efficiently and reliably, the High Frequency PCB plays a crucial role in the advancement of technology and the improvement of our daily lives.

 

Customization:

High-Frequency Customized PCB Services for High-Frequency Stripline, Microwave, and Signal Applications

Our High-Frequency PCB is designed to meet the specific needs of high-frequency applications in industries such as communication and automotive. With our advanced technology and expertise, we offer customized services to ensure the highest quality and performance for your project.

  • Min Via: 0.1mm Laser Drill, 0.2mm Mechanic Drill
  • Application: Communicate, Automotive
  • Surface Finishing: ENIG (Electroless Nickel Immersion Gold)
  • Surface Finished: Immersion Gold
  • Operating Temperature: -55℃ to 125℃

Our High-Frequency PCB is specifically designed for high-frequency stripline, microwave, and signal applications. With a minimum via size of 0.1mm for laser drill and 0.2mm for mechanic drill, our PCBs ensure precise signal transmission and minimal noise interference. The ENIG surface finish provides excellent conductivity and corrosion resistance, while the immersion gold finish ensures a smooth and flat surface for optimal signal performance. Our PCBs can operate in a wide temperature range of -55℃ to 125℃, making them suitable for various environments and applications.

Trust us to provide you with high-quality and reliable High-Frequency PCBs for your custom needs. Contact us today to learn more about our services and how we can help you with your project.

 

Packing and Shipping:

Packaging and Shipping of High Frequency PCB

At High Frequency PCB, we understand the importance of safe and secure packaging for our products. Therefore, we take great care in packaging and shipping our High Frequency PCBs to our customers.

Packaging

Our High Frequency PCBs are first wrapped in anti-static material to prevent any damage from static electricity during transportation. They are then placed in a thick, durable cardboard box to provide maximum protection during shipping.

To prevent movement and ensure the PCBs stay in place, we use foam inserts and bubble wrap inside the box. This also helps to absorb any shocks or impacts that may occur during transit.

We also offer customized packaging options for our customers, depending on their specific requirements.

Shipping

We ship our High Frequency PCBs worldwide using reliable and trusted carriers such as DHL, UPS, FedEx, and TNT. These carriers offer fast and secure delivery options, with the ability to track the shipment throughout its journey.

For international shipments, we provide all necessary documentation and comply with all customs regulations to ensure a smooth and timely delivery.

In addition, we offer expedited shipping options for urgent orders, with the aim of delivering our High Frequency PCBs to our customers as quickly as possible.

Once the shipment is ready, we carefully load and secure the boxes onto the carrier's vehicle to prevent any damage during transportation.

Conclusion

At High Frequency PCB, we take great pride in our packaging and shipping methods to ensure that our High Frequency PCBs reach our customers in perfect condition. We are committed to providing high-quality products and services to meet our customers' needs and expectations.

 

FAQ:

  • Q: What is High Frequency PCB?
  • A: High Frequency PCB is a type of circuit board designed to transmit signals at high frequencies.
  • Q: What are some typical applications of High Frequency PCB?
  • A: High Frequency PCB is often used in electronic devices such as radars, satellite communication systems, and mobile phones.
  • Q: What are the advantages of High Frequency PCB?
  • A: High Frequency PCB offers higher signal speed, lower loss, and better performance in high frequency applications compared to traditional PCBs.
  • Q: What materials are commonly used in High Frequency PCBs?
  • A: Commonly used materials in High Frequency PCBs include PTFE, FR-4, and ceramic materials.
  • Q: Can High Frequency PCBs be manufactured with multiple layers?
  • A: Yes, High Frequency PCBs can be manufactured with multiple layers, allowing for more complex circuit designs and improved performance.