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Rogers 4350 High Frequency PCB for Signal Model
  • Rogers 4350 High Frequency PCB for Signal Model
  • Rogers 4350 High Frequency PCB for Signal Model
  • Rogers 4350 High Frequency PCB for Signal Model
  • Rogers 4350 High Frequency PCB for Signal Model
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Rogers 4350 High Frequency PCB for Signal Model

  • $0.2
    ≥1
    Piece/Pieces
1 Piece/Pieces (Min. Order)
Quantity:

0 Piece,Product Price: US $ 0

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  • Product Description
Overview
Product Attributes
Model No.:
HDI board PCB
Copper Thickness:
1oz
Board Thickness:
1.6mm
Min. Hole Size:
0.20mm
Min. Line Spacing:
4mil(0.1mm)
Base Material:
Rogers 4003
FOB Reference Price:
0.2
Get Latest Price:
Message Communication
Min.drilled hole size:
0.25mm(10mil)
Min line width/space:
0.13mm(5mil)
Packaging & Delivery
Selling Units:
Piece/Pieces
Single package size:
12cm*9cm*0.3cm
Single gross weight:
0.2kg
Package Type:
Vacuum packing
Lead Time :
Quantity(Piece/Pieces) 1>1
Est. Time(days) 7To be negotiated

If you finish the payment today, your order will ship out within the delivery date.

 What is a multilayer circuit board?

A multilayer or multilayer printed circuit board is a circuit board composed of two or more conductive layers (copper layers) superimposed on each other. The copper layer is bonded together by the resin layer (prepreg). Multi-substrate is the most complicated type of printed circuit board. Due to the complexity of the manufacturing process, low production volume and difficulty in rework, their prices are relatively high. Due to the increase in the packaging density of origin electronics IC, it has led to a high concentration of interconnection lines, which necessitated the use of multiple substrates. In the layout of the printed circuit, unforeseen design problems such as noise, stray capacitance, and crosstalk have appeared. Therefore, the printed circuit board design must focus on minimizing the length of the signal line and avoiding parallel routes. Obviously, in PCB single-sided boards, or even double-sided boards, these requirements cannot be satisfactorily answered due to the limited number of crossovers that can be achieved. In the case of a large number of interconnection and crossover requirements, the PCB circuit board must be expanded to more than two layers in order to achieve a satisfactory performance, thus a multi-layer circuit board has appeared. Therefore, the original intention of manufacturing multi-layer circuit boards is to provide more freedom for selecting appropriate wiring paths for complex and/or noise-sensitive electronic circuits.
Multilayer circuit boards have at least three conductive layers, two of which are on the outer surface, and the remaining layer is integrated into the insulating board. The electrical connection between them is usually achieved through plated through holes on the cross section of the circuit board. Unless otherwise specified, multi-layer printed circuit boards, like double-sided boards, are generally plated through-hole boards.
Multi-substrates are manufactured by stacking two or more circuits on top of each other, and they have reliable pre-set interconnections. Since the drilling and plating have been completed before all the layers are rolled together, this technique violates the traditional manufacturing process from the beginning. The two innermost layers are composed of traditional double panels, while the outer layers are different, they are composed of independent single panels. Before rolling, the inner substrate will be drilled, through-hole plating, pattern transfer, development and etching. The outer layer to be drilled is the signal layer, which is plated through in such a way as to form a balanced copper ring on the inner edge of the through hole. The layers are then rolled together to form a multi-substrate, which can be connected to each other (between components) using wave soldering.
Rolling may be done in a hydraulic press or in an overpressure chamber (autoclave). In the hydraulic press, the prepared material (for pressure stacking) is placed under cold or preheated pressure (high glass transition temperature material is placed at a temperature of 170-180°C). The glass transition temperature is the temperature at which an amorphous polymer (resin) or part of the amorphous region of a crystalline polymer changes from a hard, rather brittle state to a viscous, rubbery state.
Multi-substrates are put into use in professional electronic equipment (computers, military equipment), especially when weight and volume are overloaded. However, this can only be achieved by increasing the cost of multiple substrates in exchange for space.
Increase and weight reduction. In high-speed circuits, multi-substrates are also very useful. They can provide designers of printed circuit boards with more than two layers of board surfaces to lay wires and provide large grounding and power supply areas.

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Wholesale Rogers 4350 High Frequency Pcb For Signal Model
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