Knowledge Hub

Your Gateway to Technical Knowledge Exchange for the Global Electronics Community

Explore our database of industry knowledge that fuels innovation, learning, and professional growth. Knowledge Hub is a collection of conference technical papers, webinars, presentations, on-demand video and more. You can search by author, title, keyword and type of content. You can also search for keywords and topics in the Tag field. Access to Knowledge Hub is reserved for members.

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Management and Mitigation of Tin Whiskers for Lead-Free Electronics

The lead-free directive from the EU has created a number of challenges for high reliability electronic applications. Key among those challenges is the need to address the issue of tin whiskers. .. read more

Filling in the Gaps in Lead-Free Reliability Modeling and Testing

This presentation discusses critical material properties and test data that are often overlooked in the introduction of new lead-free solder alloys,but are critical to alloy comparison and the .. read more

Nanotechnology for Lead-Free PWB Final Finishes with Organic Metal

The use of an Organic Metal finish only a few nano-meters deposited onto copper pads of printed circuit boards provides effective protection against oxidation and preserves solderability. The N .. read more

NASA-DoD Lead-Free Electronics Project: Mechanical Shock Test

Mechanical shock testing was conducted by Boeing Research and Technology (Seattle) for the NASA-DoD Lead-Free Electronics Solder Project. This project is follow-on to the Joint Council on Aging .. read more

Solder Paste Residue Corrosivity Assessment: Bono Test

Lead free soldering with no clean solder pastes represent nowadays the most common process in electronic assembly. A solder paste is usually considered as no-clean if it passes all IPC J-STD-00 .. read more

IPC/JEDEC J-STD-609AMarking and Labeling of Components,PCBs and PCBAs to Identify Lead (Pb),Lead-Free (Pb-Free) and Other Attributes

• The standard covers marking and labellingof both tin-lead and lead-free components,boards and solders used in 2ndlevel assembly. • Other areas covered include board base material type and sur .. read more

Thermal Cycling Reliability Screening of Multiple Pb-free Solder Ball Alloys

Thermal cycling tests were conducted using two different ceramic ball grid array (CBGA) test vehicles having balls comprised of nine different Pb free solder alloys. The experiment was designed .. read more

Achieving High Reliability Low Cost Lead-Free SAC Solder Joints Via Mn Or Ce Doping

In this study,the reliabilities of low Ag SAC alloys doped with Mn or Ce (SACM or SACC) were evaluated under JEDEC drop,dynamic bending,thermal cycling,and cyclic bending test conditions agains .. read more

Low-Silver BGA Assembly Phase II – Reliability Assessment Fifth Report: Preliminary Thermal Cycling Results

Some ball grid array suppliers are migrating their sphere alloys from SAC305 (3% Ag) or SAC405 (4% Ag) to alloys with lower silver contents. There are numerous perceived reliability benefits to .. read more

Drop Test Performance of A Medium Complexity Lead-Free Board After Assembly and Rework

The mechanical behavior of printed circuit assemblies (PCA) at high strain rates is very important for the reliability of products used in harsh environments. The transition to Pb-free material .. read more

Progress in Developing Industry Standard Test Requirements for Pb-Free Solder Alloys

Recently,the industry has seen the development of a wide range of new Pb-free alloys. A significant element of uncertainty within the industry regarding these new alloys is the lack of defined .. read more

Lead-Free Flux Technology and Influence on Cleaning

Lead-free flux technology for electronic industry is mainly driven by high soldering temperature,high alloy surface tension, miniaturization,air soldering due to low cost consideration,and envi .. read more

Characterizing the Lead-Free Impact on PCB Pad Craters

Pad cratering in Printed Circuit Boards (PCBs) is typically associated with lead-free products. This paper addresses laminate materials and the failures associated with the higher Pb-Free reflo .. read more

Solder Creep-Fatigue Model Parameters for SAC & Snag Lead-Free Solder Joint Reliability Estimation

For many of the Pb-free solders required under the European RoHS directive,there is now sufficient information,primarily in the form of the results of accelerated thermal cycling of various lev .. read more

Filling in the Gaps in Lead-Free Reliability Modeling and Testing

This presentation discusses critical material properties and test data that are often overlooked in the introduction of new lead-free solder alloys,but are critical to alloy comparison and the .. read more

The Impact of Converting Flex Circuits From HASL to a RoHS Compliant Surface Finishes

This paper will explore the most common alternatives to hot air-leveled solder (HASL) as a finish for flex circuits and some of the issues one may want to be aware of when converting. Whether t .. read more

Design Considerations for High Reliability PCB

- History & Importance of PCB - Environmental Initiatives - Reliability Consideration With High Temp Processing - Reliability Considerations for Materials to withstand Lead-Free Assembly .. read more

Proposed Standardizations of Lead Free Alloy Testing

Although lead free assembly is now widely adopted the industry is still exploring a variety of options for lead free alloys. Attempts to standardize on a single alloy for either reflow or wave .. read more

IPC Solder Products Value Council (SPVC) Lead-Free Technical Subcommittee Report: Take Action Limits (TAL) for SAC305 Lead Free Automated Soldering...

At present there are a large number of materials that have been proposed as replacements for lead containing solder for reflow and wave and selective soldering. Unlike solder paste in a reflow .. read more

Vibration and Mechanical Shock Testing

Little data has been generated on the performance of lead-free solders under vibration and mechanical shock. What data exists suggests that lead-free solders may be less reliable than eutectic .. read more

The Role of the Interfacial Intermetallic in Lead-Free Solder

The formation during the soldering process of the layer of intermetallic compound Cu6Sn5 at the solder substrate interface provides the essential evidence that a metallurgical bond that is the .. read more

Rework Process Window and Microstructural Analysis for Lead-Free Mirrored Bga Design Points

Hot gas rework of BGAs with a mirrored BGA design configuration using SnAgCu based lead-free alloys is more challenging as compared to conventional SnPb techniques. Rework of BGAs using a conve .. read more

A Study on Copper Dissolution in Liquid Lead Free Solders under Static and Dynamic Conditions

During lead-free wave soldering or rework operation for through hole components,high rate copper dissolution may occur to printed wiring boards. It is widely believed that Sn-Ag-Cu (SAC) lead-f .. read more

The Effect of Copper Plating Processes and Chemistries on Copper Dissolution

Implementation of lead-free assembly processes results in higher copper dissolution rate than traditional SnPb alloys. The rate at which copper is dissolved could be dependent on many factors,s .. read more

A Test Methodology for Copper Dissolution in Lead-Free Alloys

Lead-free selective soldering can result in extended times at high temperatures,which in turn can result in excessive dissolution of exposed copper,such as plated through holes. This phenomenon .. read more

Effect of Lead-free Soldering on Key Material Properties of FR-4 Printed Circuit Board Laminates

The high temperature exposures associated with lead-free soldering of printed circuit boards (PCBs) can alter the laminate material properties thereby creating a shift in the performance and re .. read more

Designers Guide to Lead-Free SMT: Components,PCB Materials,Plating and Surface Coatings

For decades the manufacturers of electronic components have furnished products that were most compatible with soldering processes that employed a eutectic alloy composition that contained tin a .. read more

Development of a Lead-Free Alloy for High-Reliability,High-Temperature Applications

Though the electronics industry is nearing the 3-year anniversary marking the ban of lead from electronics products,several challenges still remain with existing lead-free materials for certain .. read more

Reliability and Failure Mechanisms of Laminate Substrates in a Pb-free World

The plated thru hole has changed considerably in 50 years of electronic packaging,but in its many forms remains the most common interconnection in 1st and 2nd level electronic packaging,and is .. read more

Validated Test Method to Characterize and Quantify Pad Cratering Under Bga Pads on Printed Circuit Boards

The conversion to lead free Ball Grid Array (BGA) packages has raised several new assembly and reliability issues. One reliability concern becoming more prevalent is the increased propensity fo .. read more

Management and Mitigation of Tin Whiskers for Lead-Free Electronics

The lead-free directive from the EU has created a number of challenges for high reliability electronic applications. Key among those challenges is the need to address the issue of tin whiskers. .. read more

Filling in the Gaps in Lead-Free Reliability Modeling and Testing

This presentation discusses critical material properties and test data that are often overlooked in the introduction of new lead-free solder alloys,but are critical to alloy comparison and the .. read more

Nanotechnology for Lead-Free PWB Final Finishes with Organic Metal

The use of an Organic Metal finish only a few nano-meters deposited onto copper pads of printed circuit boards provides effective protection against oxidation and preserves solderability. The N .. read more

NASA-DoD Lead-Free Electronics Project: Mechanical Shock Test

Mechanical shock testing was conducted by Boeing Research and Technology (Seattle) for the NASA-DoD Lead-Free Electronics Solder Project. This project is follow-on to the Joint Council on Aging .. read more

Solder Paste Residue Corrosivity Assessment: Bono Test

Lead free soldering with no clean solder pastes represent nowadays the most common process in electronic assembly. A solder paste is usually considered as no-clean if it passes all IPC J-STD-00 .. read more

IPC/JEDEC J-STD-609AMarking and Labeling of Components,PCBs and PCBAs to Identify Lead (Pb),Lead-Free (Pb-Free) and Other Attributes

• The standard covers marking and labellingof both tin-lead and lead-free components,boards and solders used in 2ndlevel assembly. • Other areas covered include board base material type and sur .. read more

Thermal Cycling Reliability Screening of Multiple Pb-free Solder Ball Alloys

Thermal cycling tests were conducted using two different ceramic ball grid array (CBGA) test vehicles having balls comprised of nine different Pb free solder alloys. The experiment was designed .. read more

Achieving High Reliability Low Cost Lead-Free SAC Solder Joints Via Mn Or Ce Doping

In this study,the reliabilities of low Ag SAC alloys doped with Mn or Ce (SACM or SACC) were evaluated under JEDEC drop,dynamic bending,thermal cycling,and cyclic bending test conditions agains .. read more

Low-Silver BGA Assembly Phase II – Reliability Assessment Fifth Report: Preliminary Thermal Cycling Results

Some ball grid array suppliers are migrating their sphere alloys from SAC305 (3% Ag) or SAC405 (4% Ag) to alloys with lower silver contents. There are numerous perceived reliability benefits to .. read more

Drop Test Performance of A Medium Complexity Lead-Free Board After Assembly and Rework

The mechanical behavior of printed circuit assemblies (PCA) at high strain rates is very important for the reliability of products used in harsh environments. The transition to Pb-free material .. read more

Progress in Developing Industry Standard Test Requirements for Pb-Free Solder Alloys

Recently,the industry has seen the development of a wide range of new Pb-free alloys. A significant element of uncertainty within the industry regarding these new alloys is the lack of defined .. read more

Lead-Free Flux Technology and Influence on Cleaning

Lead-free flux technology for electronic industry is mainly driven by high soldering temperature,high alloy surface tension, miniaturization,air soldering due to low cost consideration,and envi .. read more

Characterizing the Lead-Free Impact on PCB Pad Craters

Pad cratering in Printed Circuit Boards (PCBs) is typically associated with lead-free products. This paper addresses laminate materials and the failures associated with the higher Pb-Free reflo .. read more

Solder Creep-Fatigue Model Parameters for SAC & Snag Lead-Free Solder Joint Reliability Estimation

For many of the Pb-free solders required under the European RoHS directive,there is now sufficient information,primarily in the form of the results of accelerated thermal cycling of various lev .. read more

Filling in the Gaps in Lead-Free Reliability Modeling and Testing

This presentation discusses critical material properties and test data that are often overlooked in the introduction of new lead-free solder alloys,but are critical to alloy comparison and the .. read more

The Impact of Converting Flex Circuits From HASL to a RoHS Compliant Surface Finishes

This paper will explore the most common alternatives to hot air-leveled solder (HASL) as a finish for flex circuits and some of the issues one may want to be aware of when converting. Whether t .. read more

Design Considerations for High Reliability PCB

- History & Importance of PCB - Environmental Initiatives - Reliability Consideration With High Temp Processing - Reliability Considerations for Materials to withstand Lead-Free Assembly .. read more

Proposed Standardizations of Lead Free Alloy Testing

Although lead free assembly is now widely adopted the industry is still exploring a variety of options for lead free alloys. Attempts to standardize on a single alloy for either reflow or wave .. read more

IPC Solder Products Value Council (SPVC) Lead-Free Technical Subcommittee Report: Take Action Limits (TAL) for SAC305 Lead Free Automated Soldering...

At present there are a large number of materials that have been proposed as replacements for lead containing solder for reflow and wave and selective soldering. Unlike solder paste in a reflow .. read more

Vibration and Mechanical Shock Testing

Little data has been generated on the performance of lead-free solders under vibration and mechanical shock. What data exists suggests that lead-free solders may be less reliable than eutectic .. read more

The Role of the Interfacial Intermetallic in Lead-Free Solder

The formation during the soldering process of the layer of intermetallic compound Cu6Sn5 at the solder substrate interface provides the essential evidence that a metallurgical bond that is the .. read more

Rework Process Window and Microstructural Analysis for Lead-Free Mirrored Bga Design Points

Hot gas rework of BGAs with a mirrored BGA design configuration using SnAgCu based lead-free alloys is more challenging as compared to conventional SnPb techniques. Rework of BGAs using a conve .. read more

A Study on Copper Dissolution in Liquid Lead Free Solders under Static and Dynamic Conditions

During lead-free wave soldering or rework operation for through hole components,high rate copper dissolution may occur to printed wiring boards. It is widely believed that Sn-Ag-Cu (SAC) lead-f .. read more

The Effect of Copper Plating Processes and Chemistries on Copper Dissolution

Implementation of lead-free assembly processes results in higher copper dissolution rate than traditional SnPb alloys. The rate at which copper is dissolved could be dependent on many factors,s .. read more

A Test Methodology for Copper Dissolution in Lead-Free Alloys

Lead-free selective soldering can result in extended times at high temperatures,which in turn can result in excessive dissolution of exposed copper,such as plated through holes. This phenomenon .. read more

Effect of Lead-free Soldering on Key Material Properties of FR-4 Printed Circuit Board Laminates

The high temperature exposures associated with lead-free soldering of printed circuit boards (PCBs) can alter the laminate material properties thereby creating a shift in the performance and re .. read more

Designers Guide to Lead-Free SMT: Components,PCB Materials,Plating and Surface Coatings

For decades the manufacturers of electronic components have furnished products that were most compatible with soldering processes that employed a eutectic alloy composition that contained tin a .. read more

Development of a Lead-Free Alloy for High-Reliability,High-Temperature Applications

Though the electronics industry is nearing the 3-year anniversary marking the ban of lead from electronics products,several challenges still remain with existing lead-free materials for certain .. read more

Reliability and Failure Mechanisms of Laminate Substrates in a Pb-free World

The plated thru hole has changed considerably in 50 years of electronic packaging,but in its many forms remains the most common interconnection in 1st and 2nd level electronic packaging,and is .. read more

Validated Test Method to Characterize and Quantify Pad Cratering Under Bga Pads on Printed Circuit Boards

The conversion to lead free Ball Grid Array (BGA) packages has raised several new assembly and reliability issues. One reliability concern becoming more prevalent is the increased propensity fo .. read more