PCB Material Search

Data compiled from pcbdirectory.com

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AGC Inc - N4350-13 RF

  • Type: High Temp
  • Dk: 3.5
  • Df: 0.009
  • Td: 350 ˚C
  • Tg: 240 ˚C
  • UL: Yes
  • Cte xy: 10-14 ppm/˚C
more info
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Arlon EMD - 86HP

  • Type: High Temp, Halogen-free
  • Dk: 3.5
  • Df: 0.005
  • Tg: 250 ˚C
  • Lead Free: Yes
  • Halogen Free: Yes
  • Arc resistance: 196 sec
more info
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Nan Ya Plastics Corp - NPG-182H

  • Type: Halogen-free, High Temp
  • Td: 430 ˚C
  • Tg: 220 ˚C
  • UL: Yes
  • Halogen Free: Yes
  • Arc resistance: 120 sec
  • Dielectric breakdown: 45 kV
more info
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GRACE ELECTRON - GA-LD

  • Type: Halogen-free
  • Td: 340 to 355 ˚C
  • Frequency: 0.1 to 15 GHz
  • UL: yes
  • Lead Free: yes
  • Halogen Free: yes
  • Arc resistance: 120 Sec
more info
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Elite Material Co.,Ltd - EM-S526B

  • Type: Halogen-free
  • Dk: 3.5 to 4.0
  • Df: 0.005 to 0.006
  • Td: 430 ˚C
  • Tg: 230 to 260 ˚C
  • Frequency: 1 to 10 GHz
  • UL: yes
more info
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Panasonic Corporation - R-5795(U)

  • Description: Multi-layer Circuit Board Material for ICT Infrastructure
  • Dk: 3.1
  • Df: 0.0012
  • Td: 370 ˚C
  • Tg: 220 ˚C
  • Frequency: 0.2 to 40 GHz
  • Cte z: 50 to 270 ppm/˚C
more info
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Rogers Corporation - PORON® 4790-92

  • Description: Extra Soft, Slow Rebound Polyurethane Foam
  • Dk: 0 to 1.48
  • Df: 0 to 0.04
  • Flamibility: 2.06 (0.081)
  • Material: Polyurethane
  • Surface resistivity: 10x10¹¹
  • Thermal coeffecient: 2.3 - 3.1 x 10-4 in/in/°C (1.3 - 1.7 x 10-4 in/in/°F)
more info
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Isola Group - FR402

  • Dk: 4.25
  • Df: 0.015
  • Td: 320 ˚C
  • Tg: 140 ˚C
  • UL: Yes
  • Arc resistance: 120 sec
  • Cte xy: 15 ppm/˚C
more info
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ITEQ Corporation - IT-170GRA1TC

  • Description: High Tg, Halogen-free Laminate with High Thermal Stability
  • Type: Halogen-free
  • Td: 380 ˚C
  • Tg: 180 ˚C
  • UL: Yes
  • Halogen Free: Yes
  • Applications: Server, Storage, Switch, Routers, Backplane
more info
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DuPont - Pyralux TK Bond Ply

  • Description: PCB Laminates for High-speed and High-frequency Flexible Circuits
  • Type: Copper-clad
  • Dk: 2.3 to 2.6
  • Df: 0 to 0.0015
  • Frequency: 0 to 10 GHz
  • UL: yes
  • Lead Free: No
more info

How to Build Your PCB Stackup

Many PCBs will not function properly without the right dielectric materials as these influence EMI, signal integrity, and power integrity. The other dimension to consider on many mass-produced products is cost, as material selection will be a major factor determining volume production expense. To start building your own PCB stackup, follow these steps:

  • Prioritize your specifications - All PCB laminate materials come with tradeoffs, requiring a balance among cost, dielectric properties, and thermal reliability. Start by determining the important specifications before selecting material sets and planning your PCB layer assignments.

  • Review materials datasheets - Once base materials are selected, review the material datasheets, consult a PCB design services firm, or consult a PCB manufacturer for more information on use cases and laminate thickessness for you selected material set.

  • Check with your fabricator - Before finalizing your stackup design, have the design reviewed by a competent fabrication house. Hyrid PCB stackups builds, HDI PCB materials, thin PTFE laminates, and metal-core or ceramics all require special processing during fabrication to ensure reliability.

The typical stackup arrangement shown below illustrates the stackup design approach and layer assigments in many commercial products. In between each of the signal/plane layer groups, additional signal layers may be present as needed, often being used to route important high-speed signals or large copper pours for power routing.

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