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1.6 MM Thickness 8 Layer PCB GPS Module Blue Solder Mask ENIG SMT Circuit Board

Witgain Technology Limited
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Address: Room 1520, Block 11, International E-Commerce Logistics Center, PingAn Road, PingHu Street, LongGang District, ShenZhen City, China 518111

Contact name:Steven YU

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Witgain Technology Limited

1.6 MM Thickness 8 Layer PCB GPS Module Blue Solder Mask ENIG SMT Circuit Board

Country/Region china
City & Province shenzhen
Categories Welding Helmets
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Product Details

8 Layer PCB Used In GPS Module Blue Solder Mask ENIG

 

 

 

Main Features:

 

1 8 Layer Printed Circuit Board with very high relability.

2 PCB drawing size is 118.8mm*115mm/12pcs

3 Copper thickness is 35 um on each layer

4 FR4 substrate material ,TG150 degree.

5 Surface treatment is immersion gold. 

6 Gold thickness is 1U'.

7 Finished board thickness is 1.6mm.

8 Gerber file or PCB file should be offered by customer before production.

 

 

Our Capabilities:

 

NOItemCapability
1Layer Count1-24 Layers
2Board Thickness0.1mm-6.0mm
3Finished Board Max Size700mm*800mm
4Finished Board Thickness Tolerance+/-10% +/-0.1(<1.0mm)
5Warp<0.7%
6Major CCL BrandKB/NanYa/ITEQ/ShengYi/Rogers Etc
7Material TypeFR4,CEM-1,CEM-3,Aluminum,Copper, Ceramic, PI, PET
8Drill Hole Diameter0.1mm-6.5mm
9Out Layer Copper Thickness1/2OZ-8OZ
10Inner Layer Copper Thickness1/3OZ-6OZ
11Aspect Ratio10:1
12PTH Hole Tolerance+/-3mil
13NPTH Hole Tolerance+/-1mil
14Copper Thickness of PTH Wall>10mil(25um)
15Line Width And Space2/2mil
16Min Solder Mask Bridge2.5mil
17Solder Mask Alignment Tolerance+/-2mil
18Dimension Tolerance+/-4mil
19Max Gold Thickness200u'(0.2mil)
20Thermal Shock288℃, 10s, 3 times
21Impedance Control+/-10%
22Test CapabilityPAD Size min 0.1mm
23Min BGA7mil
24Surface TreatmentOSP, ENIG,HASL, Plating Gold, Carbon Oil,Peelable Mask etc

 

 

FAQ:

 

Q1:What is PCB Grid Testing or Bed of Nails Testing?

A1: Grid testing or Bed of Nails testing is a process used to check the performance of components mounted on a PCB board. This test uses a frame/fixture that contains various pins inserted into an epoxy phenolic glass cloth laminated sheet (G-10) in order to access all the PCB test points. These pins act as sensors which are aligned to make contact with the test points on the PCB board and are also connected with a measuring unit through wires. The position of the pins is designed and customized for each PCB based on the components or points on the board that need to be tested.

A grid testing machine has three building blocks - a fixture, a bed of nails and software, to control the overall functionality of the machine. It usually has two cameras which are placed on the top and bottom of the machine in order to scan the whole board.

Advantages of PCB Grid Testing:

  • Very Reliable method of PCB testing as all the points on the PCB board can be tested simultaneously.
  • Offers very good accuracy since it uses two cameras
  • Can easily detect manufacturing defects
  • An in-circuit tester is easy to program
  • Interpretation of test results is quite easy
  • It checks for Open, shorts, mission components, Wrong polarity, defective components, and current leakages in the circuit
  • Most of the parameters can be checked without applying power to the PCB under test

Limitations of PCB Grid Testing:

  • Fixtures used in bed of nails testing are expensive since they are mechanical and require a different wiring assembly for a different PCB board
  • Fixtures are mechanical so any change in the number of pins or their position require extra cost
  • This test doesn’t test continuity through connectors so there are the chances that the connectors’ faults may remain unnoticed.
  • Faults related to solder joints, excess solder, solder quality, and solder void also remain unidentified

This type of testing is called In-Circuit Testing. Another test process used for In-Circuit testing is Flying Probe Testing.

 

 

 

 

 

 

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