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Taconic 2 Layer PCB High Frequency Circuit Boards Prototype

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Taconic 2 Layer PCB High Frequency Circuit Boards Prototype

Place of Origin : Shenzhen,China

Brand Name : ONESEINE

Certification : ISO9001,ISO14001

Model Number : ONE-102

MOQ : 1pcs

Price : USD0.1-1000

Packaging Details : Vacuun bag

Delivery Time : 5-8 working days

Payment Terms : T/T, Western Union

Supply Ability : 1000000000pcs/mon

Product : Taconic PCB

Country : China

Layer : 2

Color : Grey

Special : edge-plating

Test : 100% Electrical Test Prior Shipment

Application Area : Communication

Silkscreen Color : White, Black, Yellow

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Taconic 2 Layer PCB High Frequency Circuit Boards Prototype

PCB details:

Number of layers: 2
Material: Taconic
Board thickness: 2.0mm
Surface treatment: Immersion gold
Minimum aperture: 0.20mm
Outer line width/line spacing: 5/5mil
Inner line width/line spacing: 4/4mil
Features: high frequency circuit board

High frequency PCB description:

High-frequency PCB (Printed Circuit Board) refers to a type of PCB that is designed to handle high-frequency signals, typically in the radio frequency (RF) and microwave ranges. These PCBs are engineered to minimize signal loss, maintain signal integrity, and control impedance at high frequencies.
Here are some key considerations and features of high-frequency PCBs:
Material Selection: High-frequency PCBs often use specialized materials with low dielectric constant (Dk) and low dissipation factor (Df). Common materials include PTFE (Polytetrafluoroethylene), FR-4 with enhanced properties, and specialized laminates like Rogers or Taconic.
Controlled Impedance: Maintaining consistent impedance is crucial for high-frequency signals. High-frequency PCBs employ controlled impedance routing, which involves precise trace widths, spacing, and dielectric thickness to achieve the desired characteristic impedance.
Signal Integrity: High-frequency signals are susceptible to noise, reflections, and losses. PCB design techniques such as proper ground plane placement, signal return paths, and controlled crosstalk are employed to minimize signal degradation and maintain signal integrity.
Transmission Lines: High-frequency PCBs often incorporate transmission lines, such as microstrip or stripline, to carry the high-frequency signals. These transmission lines have specific geometries to control impedance and minimize signal loss.
Via Design: Vias can impact signal integrity at high frequencies. High-frequency PCBs may use techniques like back drilling or buried vias to minimize signal reflections and maintain signal integrity across layers.
Component Placement: Careful consideration is given to component placement to minimize signal path lengths, reduce parasitic capacitance and inductance, and optimize signal flow.
Shielding: To minimize electromagnetic interference (EMI) and RF leakage, high-frequency PCBs may employ shielding techniques such as copper pours, ground planes, or metal shielding cans.
High-frequency PCBs find applications in various industries, including wireless communication systems, aerospace, radar systems, satellite communication, medical devices, and high-speed data transmission.
Designing and manufacturing high-frequency PCBs require specialized skills, knowledge, and simulation tools to ensure the desired performance at high frequencies. It is often recommended to work with experienced PCB designers and manufacturers who specialize in high-frequency applications.
Taconic 2 Layer PCB High Frequency Circuit Boards Prototype

Product Tags:

2 layer high frequency circuit

      

communication 2 layer pcb

      

communication high frequency circuit

      
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