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Printed circuit board production

Printed circuit board production

New Equipment | Assembly Services

Benefit from our versatility and experience. We manufacture rigid printed circuit boards, rigid-flex and flexible printed circuit boards [including crimp technology]. You`ll find us flexible as far as dimensions are concerned: in addition to standard

ZOLLNER ELECTRONICS, INC.

Strength of Lead-free BGA Spheres in High Speed Loading

Technical Library | 2008-04-08 17:42:27.0

Concern about the failure of lead-free BGA packages when portable devices such as cell phones are accidentally dropped and a general concern about the resistance of these packages under shock loading has prompted an interest in the impact strength of the soldered BGA connection. This paper reports the results of the measurement of the impact strength of lead-free 0.5±0.01mm diameter BGA spheres on 0.42mm solder mask defined pads on copper/OSP and ENIG substrates using recently developed equipment that can load individual BGA spheres at high strain rates in shear and tension.

Nihon Superior Co., Ltd.

Nihon Superior to Present at SMTA International 2011

Industry News | 2011-10-16 00:20:48.0

Nihon Superior announces that Keith Sweatman will present a paper titled “The Effect of Microalloy Additions on the Morphology and Growth of Interfacial Intermetallic in Low-Ag and No-Ag Pb-Free Solders” at the upcoming SMTA International 2011.

Nihon Superior Co., Ltd.

KappAloy15 - Tin Zinc Solder for Aluminum to Aluminum and Aluminum to Copper

KappAloy15 - Tin Zinc Solder for Aluminum to Aluminum and Aluminum to Copper

New Equipment | Solder Materials

KappAloy15™ - 85%Sn - 15%Zn – has a wider plastic range of 390°F - 500°F (199°C - 260°C). This makes it ideal for hand soldering Aluminum plates and parts, allowing manipulation of the parts as the solder cools. KappAloy™ Tin-Zinc solder is designe

Kapp Alloy & Wire, Inc

HAODA ELECTRONIC CO.,LIMITED

Industry Directory | Manufacturer

HAODA ELECTRONIC CO.,LIMITED specializes in high-speed turn-key PCB services:PCB design, PCB Fabrication, PCBA and Components Sourcing, we provide services for about 4000 customers around the world.

Shenzhen Dihe Electronic Co., Ltd.

Industry Directory | Manufacturer

1-20 layers PCB manufacturer, focusing on metal core pcb, multi-layer PCB, fast PCB and middle-small batch PCB. Min. circuit width & spacing: 3mil. UL, ISO9001, ROHS,ISO14001 certified.

Stamped Circuit Boards (SCB)

Stamped Circuit Boards (SCB)

New Equipment | Materials

As requirements are increasing, so are electronic systems becoming smaller and smaller and more complex. In its role as innovative forerunner Heraeus, the precious metals and technology company, has reacted to precisely this continuing trend towards

Heraeus

KappAloy9 - Tin Zinc Solder for Aluminum to Aluminum and Aluminum to Copper

KappAloy9 - Tin Zinc Solder for Aluminum to Aluminum and Aluminum to Copper

New Equipment | Solder Materials

KappAloy9™ - 91%Sn - 9%Zn - 390°F (199°C) eutectic alloy is the best solder for soldering Aluminum wire to Copper busses or soldering Copper wire to Aluminum busses or contacts. Its low eutectic melting point minimizes heating of critical electrical/

Kapp Alloy & Wire, Inc

Fabrication Of Solderable Intense Pulsed Light Sintered Hybrid Copper For Flexible Conductive Electrodes

Technical Library | 2021-11-03 17:05:39.0

Additively printed circuits provide advantages in reduced waste, rapid prototyping, and versatile flexible substrate choices relative to conventional circuit printing. Copper (Cu) based inks along with intense pulsed light (IPL) sintering can be used in additive circuit printing. However, IPL sintered Cu typically suffer from poor solderability due to high roughness and porosity. To address this, hybrid Cu ink which consists of Cu precursor/nanoparticle was formulated to seed Cu species and fill voids in the sintered structure. Nickel (Ni) electroplating was utilized to further improve surface solderability. Simulations were performed at various electroplating conditions and Cu cathode surface roughness using the multi-physics finite element method. By utilizing a mask during IPL sintering, conductivity was induced in exposed regions; this was utilized to achieve selective Ni-electroplating. Surface morphology and cross section analysis of the electrodes were observed through scanning electron microscopy and a 3D optical profilometer. Energy dispersive X-ray spectroscopy analysis was conducted to investigate changes in surface compositions. ASTM D3359 adhesion testing was performed to examine the adhesion between the electrode and substrate. Solder-electrode shear tests were investigated with a tensile tester to observe the shear strength between solder and electrodes. By utilizing Cu precursors and novel multifaceted approach of IPL sintering, a robust and solderable Ni electroplated conductive Cu printed electrode was achieved.

Hanyang University


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