Home Companies Witgain Technology Ltd

OSP HDI PCB Board

Witgain Technology Ltd
Active Member

Contact Us

[China] country

Address: Block 11, International E-Commerce Logistic Center, PingHu Street, LongGang Distric, ShenZhen City

Contact name:Steven

Inquir Now

Witgain Technology Ltd

OSP HDI PCB Board

Country/Region china
City & Province shenzhen guangdong
Categories Video Game Player Cables
InquireNow

Product Details

6 Layer HDI PCB With Blind And Buried Holes

 

 

PCB Specifications:

 

PCB Type:  HDI PCB(High Density Innterconnector)

Layer Count: 6 Layer

Material Type: FR4 S1000-2 S1000-2 DATA SHEET.pdf

Solder Mask: Blue

BGA Size: 10Mil

Unit Size: 140.86MM*108.71MM/2UP

Buried Holes: L2-L5 0.2MM

Blind Holes: L1-L2 0.1MM, L5-L6 0.1MM

Via Holes: L1-L6 0.2MM

Surface Treatment: OSP

Min Line: 2.8/3.6Mil

 

 

Our Capability:

 

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

 

Question: What is the Coefficient of Thermal Expansion (CTE) in a PCB?

Answer:   The Coefficient of Thermal Expansion (CTE) specifies how much a printed circuit board will expand/contract when it is heated or cooled. The unit of CTE is PPM/°C i.e parts per million per Celsius degree. So lets assume a PCB is made out of FR4 which has a CTE of 17 (usually it is 14 to 17 ppm/°C). If the PCB is 1 Million inches long then it will expand by 17 inches for every 1 °C increase in temperature.

Every material has a different CTE. Copper has a CTE value of 18, on the other hand epoxy resin has a CTE value between 30-40. So, this CTE mismatch can create problems during the PCB manufacturing process as both materials will expand different amounts when subject to heat. During the assembly process and the whole PCB production cycle, a board goes through several thermal cycles and this difference in expansion rate can cause joint failures or delamination.

The difference in expansion rates between the substrate and copper can be cured by reinforcing woven glass cloth on the resin. It provides strength to the substrate material, and limits the expansion in the X-Y directions, resulting in the final CTE value around 17. This CTE value is nearly equal to the CTE value of copper. It is not acceptable for a material under thermal stress to expand in X or Y directions, but it must expand in the Z direction. In the Z direction, the CTE value changes to around 70 based on the material type and ratio of woven glass to the resin.

As the material heats up, it follows a linear expansion rate until it achieves the transition temperature (Tg). For temperatures higher than Tg, the material expands at a different rate, sometimes approaching a CTE value of 400. CTE is very important for parts where metal joins to the epoxy resin.

The difference in CTE values for two materials being used on a board should be as low as possible. A laminate which expands more with high temperature than copper can use the copper traces or vias to break. The difference in CTE value should be maintained to a minimum along the vertical axis of the board as it is that direction along which chances of expansion are higher.

CTE also comes in to play when using large silicon chip packages that are soldered on to a board. The chip packages usually have a CTE of about 6 ppm/°C which is lower than the CTE of the PCB. When the board is heated the package will expand less than the board and can result in a bad solder joint connection which will hamper the performance of the circuit. The difference in CTE will matter more when the chip package sizes are large.

The difference in CTE between the PCB board and the IC packages used on it can be lowered by using metal, Kevlar and Aramid cores along with FR-4. The metal cores used are copper-invar-copper (CIC) and copper-molybdenum-copper (CMC), which are typically 6 mils thick. The copper on the outside of the metal core allows for lamination onto the normal FR-4 prepregs and cores.

How to Avoid Higher CTE values:

  • Choose a material with a higher Tg, at least 160 degree Celsius
  • Choose a material that can withstand higher temperature without decomposing, say around 335 degree Celsius
  • Perform the delamination test for up to 35 minutes
  • Choose a material with a more controlled z-axis expansion
  • Plating thickness of the hole wall should be at least 1.2 mils
  • Limit positive and negative etchback since they increase stress on the PCB board
  • Perform shock and thermal testing

In addition to controlling CTE values, it is also advised to use metal core PCBs to suffice the requirement of high heat transfer. Carbon composite laminates (CCL) are also used for CTE control.

Hot Products

6 Layer HDI PCB With Blind And Buried Holes PCB Specifications: PCB Type: HDI PCB(High Density ...
10 Layer Printed Circuit Board With Blind And Buried Holes PCB Specifications: PCB Type: HDI PCB ( ...
8 Layer Printed Circuit Board With Blind And Buried Holes PCB Specifications: Layer Type: HDI PCB ...
6 Layer Printed Circuit Board With Blind And Buried Holes PCB Specifications: Layer Count: 6Layer ...
4 Layer Printed Circuit Board With Blind Holes PCB Specifications: Layer Count: 4Layer HDI PCB Board ...
4 Layer Printed Circuit Board With Blind And Buried Holes PCB Specifications: Layer Count: 4Layer ...