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Thermally Managed - Heat Dissipating Printed Circuit Board Technology

New Equipment |  

Thermally Managed � Heat Dissipating PCB�s (Printed Circuit Boards) By STABLCOR Corporation STABLCOR TM Printed Circuit Board Material Product Information STABLCOR Corporation has developed a new printed circuit board technology that has the followin

ThermalWorks

Conductive Foil Tapes

Conductive Foil Tapes

New Equipment | Materials

Conductive Foil Tapes Our range of conductive foil tape offers a cost-effective solution to EMC shielding. Tapes are available in both copper and aluminium with a conductive adhesive. The tapes can be used to seal joints on enclosures and for ground

P&P Technology Ltd

DUPONT™ - High Performance PCB Laminates (HPL)

DUPONT™ - High Performance PCB Laminates (HPL)

New Equipment | Materials

Pyralux® LF Copper-clad Laminate DuPont™ Pyralux® LF has been an industry standard in high reliability applications in the avionics industry for over 30 years and has a proven record of consistency and dependability and is ideal for aerospace and m

INSULECTRO

Indium

Indium

New Equipment | Solder Materials

5N Plus produces indium in pure metal, chemical and low melting point alloy forms for use in electronics, solar cells and optics. Indium is essential in forming transparent electrodes from indium tin oxide (ITO) in liquid crystal displays (LCD) and t

5N Plus inc

RO4000® Series High Frequency Circuit Materials

RO4000® Series High Frequency Circuit Materials

New Equipment | Materials

280°C). Unlike PTFE based microwave materials, no special through-hole treatments or handling procedures are required. RO4003C was designed with a dielectric constant of 3.38. The RO4350B has a dielectric constant of 3.48 and is UL94V-0 rated. RO445

Rogers Corporation

A Study on Effects of Copper Wrap Specifications on Printed Circuit Board Reliability

Technical Library | 2021-07-20 20:02:29.0

During the manufacturing of printed circuit boards (PCBs) for a Flight Project, it was found that a European manufacturer was building its boards to a European standard that had no requirement for copper wrap on the vias. The amount of copper wrap that was measured on coupons from the panel containing the boards of interest was less than the amount specified in IPC-6012 Rev B, Class 3. To help determine the reliability and usability of the boards, three sets of tests and a simulation were run. The test results, along with results of simulation and destructive physical analysis, are presented in this paper. The first experiment involved subjecting coupons from the panels supplied by the European manufacturer to thermal cycling. After 17 000 cycles, the test was stopped with no failures. A second set of accelerated tests involved comparing the thermal fatigue life of test samples made from FR4 and polyimide with varying amounts of copper wrap. Again, the testing did not reveal any failures. The third test involved using interconnect stress test coupons with through-hole vias and blind vias that were subjected to elevated temperatures to accelerate fatigue failures. While there were failures, as expected, the failures were at barrel cracks. In addition to the experiments, this paper also discusses the results of finite-element analysis using simulation software that was used to model plated-through holes under thermal stress using a steady-state analysis, also showing the main failure mode was barrel cracking. The tests show that although copper wrap was sought as a better alternative to butt joints between barrel plating and copper foil layers, manufacturability remains challenging and attempts to meet the requirements often result in features that reduce the reliability of the boards. Experimental and simulation work discussed in this paper indicate that the standard requirements for copper wrap are not contributing to the overall board reliability, although it should be added that a design with a butt joint is going to be a higher risk than a reduced copper wrap design. The study further shows that procurement requirements for wrap plating thickness from Class 3 to Class 2 would pose little risk to reliability (minimum 5 μm/0.197 mil for all via types).Experimental results corroborated by modeling indicate that the stress maxima are internal to the barrels rather than at the wrap location. In fact, the existence of Cu wrap was determined to have no appreciable effect on reliability.

NASA Office Of Safety And Mission Assurance

Immersion gold VS Plating gold

Videos

There are several surface treatment for PCB board: bare board (no treatment on the surface), rosin board, OSP (Organic Solderability Preservatives), HASL (lead tin, lead-free tin), plating gold, immersion gold, etc., these are relatively conscious tr

Headpcb

Tachyon®-100G Low-loss Laminate Material For High-speed Digital Applications

Tachyon®-100G Low-loss Laminate Material For High-speed Digital Applications

New Equipment | Materials

Tachyon-100G laminate materials are designed for very high-speed digital applications up to and beyond speeds of 100 Gb/s. Tachyon 100-G materials exhibit exceptional electrical properties that are very stable over a broad frequency and temperature

Isola Group

PNC - Manufacturer of Printed Circuit Board from PCB Design, Layout, PCB fabrication & PCB Assembly.

PNC - Manufacturer of Printed Circuit Board from PCB Design, Layout, PCB fabrication & PCB Assembly.

Videos

Manufacturer of Printed Circuit Board from PCB Design, Layout, PCB fabrication & PCB Assembly.

PNC Inc.

John Yim Appointed to Vice President Sales, Asia by Enthone Inc.

Industry News | 2003-04-24 08:53:53.0

Mr. Yim is a committee member of the Hong Kong Printed Circuit Association (HKPCA).

Enthone


copper foil searches for Companies, Equipment, Machines, Suppliers & Information

Thermal Interface Material Dispensing

High Resolution Fast Speed Industrial Cameras.
Selective Soldering Nozzles

Nozzles, Feeders, Spare Parts - Siemens, Fuji, Juki, Yamaha, etc...
Voidless Reflow Soldering

High Throughput Reflow Oven
PCB Handling with CE

World's Best Reflow Oven Customizable for Unique Applications


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