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2x8cm Double Sided Pcb Board Prototype Smd Breadboard Circuit Board 2.54mm Pitch

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Topmatch Electronics (Suzhou) Co., Limited.

2x8cm Double Sided Pcb Board Prototype Smd Breadboard Circuit Board 2.54mm Pitch

Country/Region china
City & Province suzhou jiangsu
Categories Electronics Production Machinery
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Product Details

2*8cm Double Side Prototype PCB Breadboard 2.54mm Pitch

 

PCBs are made out of different materials like fiberglass, polymer inks, and solder. The conductive layers are usually made of copper, gold, or silver. These materials can affect the way the board reacts to heat. PCBs need to have thermal reliability and temperature reliability. They also need to have other mechanical properties that affect the performance of the board and the device it powers. When PCBs need to have higher frequencies, the boards need to be made of higher-grade materials – like gold or silver – than the standard copper boards.

 

  • Fast PCB Fabrication for Samples and Mass Production
  • Electronic Components Sourcing Services
  • PCBA Assembly Services : SMT,DIP,BGA...
  • Flying Probe Test, X-ray Inspection, AOI Test,Function Test
  • Stencil, Cable and Enclosure Assembly
  • Reverse engineering service
 
PCB ItemManufacture Capacity
Layer Counts1--20L
Base MaterialFR4,High-TG FR4,CEM3,aluminum,High Frequency(Rogers,Taconic,Aron,PTFE,F4B)
Material Thickness(mm)0.40, 0.60, 0.80, 1.00, 1.20, 1.50, 1.60, 2.0, 2.4, 3.2
Max board size(mm)1200x400mm
Board Outline Tolerance±0.15mm
Board Thickness0.4mm--3.2mm
Thickness Tolerance±8%
Minimum line/space0.1mm
Min Annular Ring0.1mm
SMD Pitch0.3mm
Holes 
Min Hole Size(mechanical)0.2mm
Min Hole Size(laser hole)0.1mm
Hole Size Tol (+/-)PTH:±0.075mm;NPTH: ±0.05mm
Hole Position Tol±0.075mm
Plating 
HASL/LF HAL2.5um
Immersion GoldNickel 3-7um Au:1-5u''
Surface FinishHAL,ENIG,Plated Gold,Immersion Gold,OSP
Copper 
Copper Weight0.5--6oz
Color 
Solder maskGreen, Blue, Black, White, Yellow, Red, Matt Green, Matt Black, Matt Blue
Silk screenWhite, Black, Blue,Yellow
Acceptable File FormatGerber file,Powerpcb,CAD,AUTOCAD,ORCAD,P-CAD,CAM-350,CAM2000
CertificateROSH,ISO9001,UL

 

 

1. How to design a Hybrid multilayer PCB ?

Multilayer printedcircuit boards (PCBs) can provide many advantages to RF/microwave circuit designers in terms of achieving high functional density in a small size, while also improving reliability and cutting cost. As some designers have found, the multiple layers need not be the same dielectric materials: a growing number of RF/ microwave circuit designs are being implemented with hybrid multilayer PCBs, in which different materials are used among the layers. This allows the choice of materials to be tailored to the various functions on the different layers of the PCB. Of course, there are some areas of concern when adopting such a design approach, and this article will provide a simple overview of these hybrid multilayer PCBs in terms of fabrication, electrical performance, and the types of circuit materials that are suitable for hybrid multilayer PCBs.

 

One circuit material that is used quite often in high-frequency hybrid multilayer PCBs is FR-4, although it may not be the most ideal choice for some circuits. Low-cost FR-4 circuit materials have been in use for a wide range of circuits for decades. FR-4 is glass-reinforced epoxy laminate material. Its performance is predictable and reliable, and it can be processed with basic fabrication methods. However, FR-4 exhibits a very high dissipation factor, which translates into high dielectric losses for circuits at microwave frequencies. Because of its loss characteristics, FR-4 is typically not used for pure RF/microwave circuits, but has been used in some high-frequency hybrid multilayer PCBs for various reasons. FR-4 is available in standard grade and with high glass transition temperature (Tg), which is the temperature at which the modulus of the material will change dramatically. Such temperature changes can impact the reliability of plated through holes (PTHs) through the laminate, as used to interconnect different circuit layers in a multilayer PCB. Some high-Tg FR-4 materials provide good stability with the processing temperatures required for many circuit fabrication techniques, with relatively low coefficient of thermal expansion (CTE) in the z-axis for good PTH reliability.

 

Hybrid multilayer PCBs often make use of circuit materials with very different values of dielectric constant (Dk). For example, some multilayer antenna circuits may consist of a low-Dk circuit material as the outside layer for radiating elements, a moderate-Dk circuit material internally for a stripline antenna feed line, and a high-Dk material for an internal layer for filter circuitry. The different Dk materials are often based on different resin systems. The outer, low-Dk layer may be PTFE material while the inner, moderateDk circuit layer is formed on a ceramic-filled hydrocarbon-based laminate. The bonding materials could be based on either type of material, although hydrocarbonbased bonding materials are more often used for their ease of circuit fabrication.

 

2. Product application

 

Printed circuit boards (PCBs) with characteristic impedance control are widely used in high frequency circuit. PCB's that mixed high frequency material can reduce signal loss at high frequencies and meet the development needs of communication technology.

 

It is mainly used in the infrastructure field of transmission cores including WDM/OTN end-to-end intelligent optical transmission platform, MSTP/multi-service transmission platform, microwave fusion transmission radio frequency, data communication system platform, and other information communication industries.

 

 

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