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EKT AOI inspection system on SMT assembly line

EKT AOI inspection system on SMT assembly line

Videos

EKT AOI machine application: inspection after stencil printing, pre/post reflow oven, pre/post wave soldering?FPC etc. Stencil printing: Solder unavailability, insufficient or excessive solder, solder misalignment, bridging, stain, scratch etc. Compo

EKTION (SHENZHEN) TECHNOLOGY LIMITED

Kyzen Wins Six Awards on Two Continents

Industry News | 2009-04-23 20:39:41.0

NASHVILLE � April 2009 � Kyzen, a world leading provider of environmentally responsible precision cleaning products for electronics and high-technology manufacturing operations, announces that it has won a remarkable six awards on two continents during the last year.

KYZEN Corporation

Design and Construction Affects on PWB Reliability

Technical Library | 2012-04-26 18:52:37.0

First presented at IPC Apex Expo 2012. The reliability, as tested by thermal cycling, of printed wire boards (PWB) are established by three variables; copper quality, material robustness and design. The copper quality was most influential and could be eva

PWB Interconnect Solutions Inc.

BTU’s Custom Belt Furnace Capabilities on Display at Heat Treat

Industry News | 2017-09-26 19:24:28.0

BTU International today announced that it will exhibit at Heat Treat, ASM’s Heat Treating Society Conference & Exhibition, scheduled to take place October 24-26, 2017 in Columbus, Ohio. BTU will highlight its controlled atmosphere furnaces in Booth #2524.

BTU International

Viasystems Collaborates with Faraday Technology on Advanced Plating Technology

Industry News | 2010-10-20 23:29:54.0

Viasystems Group, Inc. and Faraday Technology, Inc. are collaborating on demonstration of the FARADAYIC(R) ElectroCell technology for the manufacture of printed circuit boards (PCBs) with high-density interconnect features and at high plating rates for improved productivity.

Viasystems Group, Inc.

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

Nihon Superior Paper on Lead-free Solder Properties at APEX 2008

Industry News | 2008-03-20 17:19:34.0

OSAKA, JAPAN � March 2008 � Nihon Superior Co. Ltd., a supplier of advanced lead-free soldering materials to the global electronics industry announces that it is contributing a paper, �Properties that are Important in a Lead-free Solder,� to the Technical Conference that is part of the Printed Circuit Expo, APEX and the Designers� Summit scheduled to take place April 1-3, 2008 at the Mandalay Bay Resort & Convention Center, Las Vegas.

Nihon Superior Co., Ltd.

BTU to Present on Advanced Flux Management Technology at SMTAI

Industry News | 2020-10-03 08:51:07.0

BTU International, Inc. is pleased to announce that Fred Dimock, manager of process technology, and Paul Richter, Solar Applications Specialist, will present during SMTA International. The On-Demand Conference & Expo will take place September 28-October 23, 2020. The BTU team will present two papers during the On-Demand Conference.

BTU International

Approaches to Overcome Nodules and Scratches on Wire Bondable Plating on PCBs

Technical Library | 2020-08-27 01:22:45.0

Initially adopted internal specifications for acceptance of printed circuit boards (PCBs) used for wire bonding was that there were no nodules or scratches allowed on the wirebond pads when inspected under 20X magnification. The nodules and scratches were not defined by measurable dimensions and were considered to be unacceptable if there was any sign of a visual blemish on wire-bondable features. Analysis of the yield at a PCB manufacturer monitored monthly for over two years indicated that the target yield could not be achieved, and the main reasons for yield loss were due to nodules and scratches on the wirebonding pads. The PCB manufacturer attempted to eliminate nodules and scratches. First, a light-scrubbing step was added after electroless copper plating to remove any co-deposited fine particles that acted as a seed for nodules at the time of copper plating. Then, the electrolytic copper plating tank was emptied, fully cleaned, and filtered to eliminate the possibility of co-deposited particles in the electroplating process. Both actions greatly reduced the density of the nodules but did not fully eliminate them. Even though there was only one nodule on any wire-bonding pad, the board was still considered a reject. To reduce scratches on wirebonding pads, the PCB manufacturer utilized foam trays after routing the boards so that they did not make direct contact with other boards. This action significantly reduced the scratches on wire-bonding pads, even though some isolated scratches still appeared from time to time, which caused the boards to be rejected. Even with these significant improvements, the target yield remained unachievable. Another approach was then taken to consider if wire bonding could be successfully performed over nodules and scratches and if there was a dimensional threshold where wire bonding could be successful. A gold ball bonding process called either stand-off-stitch bonding (SSB) or ball-stitch-on-ball bonding (BSOB) was used to determine the effects of nodules and scratches on wire bonds. The dimension of nodules, including height, and the size of scratches, including width, were measured before wire bonding. Wire bonding was then performed directly on various sizes of nodules and scratches on the bonding pad, and the evaluation of wire bonds was conducted using wire pull tests before and after reliability testing. Based on the results of the wire-bonding evaluation, the internal specification for nodules and scratches for wirebondable PCBs was modified to allow nodules and scratches with a certain height and a width limitation compared to initially adopted internal specifications of no nodules and no scratches. Such an approach resulted in improved yield at the PCB manufacturer.

Teledyne DALSA

Factors Affecting the Adhesion of Thin Film Copper on Polyimide

Technical Library | 2017-11-22 12:38:51.0

The use of copper foils laminated to polyimide (PI) as flexible printed circuit board precursor is a standard practice in the PCB industry. We have previously described[1] an approach to very thin copper laminates of coating uniform layers of nano copper inks and converting them into conductive foils via photonic sintering with a multibulb conveyor system, which is consistent with roll-to-roll manufacturing. The copper thickness of these foils can be augmented by electroplating. Very thin copper layers enable etching fine lines in the flexible circuit. These films must adhere tenaciously to the polyimide substrate.In this paper, we investigate the factors which improve and inhibit adhesion. It was found that the ink composition, photonic sintering conditions, substrate pretreatment, and the inclusion of layers (metal and organic) intermediate between the copper and the polyimide are important.

Intrinsiq Materials Inc.


copper on soic searches for Companies, Equipment, Machines, Suppliers & Information

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