• 제목/요약/키워드: Sn pad

검색결과 95건 처리시간 0.024초

자동차 전장부품을 위한 Sn-0.5Cu-(X)Al(Si) 중온 솔더의 접합특성 연구 (A study of joint properties of Sn-Cu-(X)Al(Si) middle-temperature solder for automotive electronics modules)

  • 유동열;고용호;방정환;이창우
    • Journal of Welding and Joining
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    • 제33권3호
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    • pp.19-24
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    • 2015
  • Joint properties of electric control unit (ECU) module using Sn-Cu-(X)Al(Si) lead-free solder alloy were investigated for automotive electronics module. In this study, Sn-0.5Cu-0.01Al(Si) and Sn-0.5Cu-0.03Al(Si) (wt.%) lead-free alloys were fabricated as bar type by doped various weight percentages (0.01 and 0.03 wt.%) of Al(Si) alloy to Sn-0.5Cu. After fabrications of lead-free alloys, the ball-type solder alloys with a diameter of 450 um were made by rolling and punching. The melting temperatures of 0.01Al(Si) and 0.03Al(Si) were 230.2 and $230.8^{\circ}C$, respectively. To evaluation of properties of solder joint, test printed circuit board (PCB) finished with organic solderability perseveration (OSP) on Cu pad. The ball-type solders were attached to test PCB with flux and reflowed for formation of solder joint. The maximum temperature of reflow was $260^{\circ}C$ for 50s above melting temperature. And then, we measured spreadability and shear strength of two Al(Si) solder materials compared to Sn-0.7Cu solder material used in industry. And also, microstructures in solder and intermetallic compounds (IMCs) were observed. Moreover, thickness and grain size of $Cu_6Sn_5$ IMC were measured and then compared with Sn-0.7Cu. With increasing the amounts of Al(Si), the $Cu_6Sn_5$ thickness was decreased. These results show the addition of Al(Si) could suppress IMC growth and improve the reliability of solder joint.

전단펀치-크리프 시험에 의한 리플로우 시간별 Pb-free 솔더 합금 접합부에 대한 고온 크리프 물성 평가 (Material Property Evaluation of High Temperature Creep on Pb-free Solder Alloy Joint to Reflow Time by Shear Punch-creep Test)

  • 함영필;허우진;유효선;양성모
    • 한국자동차공학회논문집
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    • 제21권1호
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    • pp.145-153
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    • 2013
  • In this study, shear punch-creep (SP-Creep) at Sn-4Ag/Cu pad the joint was tested by using environment-friendly Pb-free solder alloy Sn-4Ag of electronic components. Pb eutectic alloy (Sn-37Pb) joints limited to environmental issues with reflow time (10sec, 30sec, 100sec, 300sec) according to two types of solder alloy joints are compared and evaluated by creep strain rate, rupture time and IMC (Intermetallic Compound) behavior. As the results, reflow time increases with increasing thickness of IMC can be seen at overall 100sec later in case of two solder joints on the IMC thickness of Sn-4Ag solder joints thicker than Sn-37Pb solder joints. In addition, when considering creep evaluation factors, lead-free solder alloy Sn-4Ag has excellent creep resistance more than Pb eutectic alloy. For this reason, the two solder joints, such as in the IMC (Cu6Sn5) was formed. However, the creep resistance of Sn-4Ag solder joints was largely increased in the precipitation strengthening effect of dispersed Ag3Sn with interface more than Sn-37Pb solder joints.

In-l5Pb-5Ag 솔더와 Au/Ni Surface Finish와의 반응 특성 및 접합 신뢰성 평가 (Reaction Characteristics between In-l5Pb-5Ag Solder and Au/Ni Surface Finish and Reliability Evaluation of Solder Joint)

  • 이종현;엄용성;최광성;최병석;윤호경;박흥우;문종태
    • 마이크로전자및패키징학회지
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    • 제9권4호
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    • pp.1-9
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    • 2002
  • Ball grid array (BGA) substrate 상의 0.5 $\mu\textrm{m}$Au/5 $\mu\textrm{m}$Ni/Cu 층으로 구성된 접촉 패드(pad)와 In-15(wt.%)Pb-5Ag 솔더 볼 사이에서 리플로우 및 고상 시효동안 일어나는 금속학적 반응 특성이 조사되었다. 1-5 분의 리플로우 시간에 따라 솔더/패드 계면에서 $AuIn_2$ 또는 Ni-In 금속간 화합물층이 형성됨이 관찰되었다. 리플로우 동안 용융 In-l5Pb-5Ag 솔더 내로의 Au 층의 용해 속도는 $2\times 10^{-3}$ $\mu\textrm{m}$/sec 정도로 측정되어 공정 Sn-37Pb와 비교하여 매우 느린 것으로 관찰되었다. $130^{\circ}C$에서 500시간의 고상 시효 후에는 초기 리플로우 시간에 관계없이 $Ni_{28}In_{72}$ 금속간 화합물층이 약 3 $\mu\textrm{m}$까지 성장하였다. 이를 통하여 솔더 합금에서의 In 원자들은 아래의 Ni 층과 반응하기 위하여 리플로우 동안 형성된 $AuIn_2$상을 통하여 확산하는 것으로 관찰되었다. 미세구조 관찰과 전단 시험을 통하여 In-l5Pb-5Ag합금의 경우는 Sn-37Pb 조성과는 달리 Au/Ni surface finish 상에 사용시에도 솔더 접합부에서의 Au-embrittlement를 야기 시키지 않는 것으로 분석되었다.

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무연솔더 접합부의 미세조직 특성 (Microstructural Charicteristics of Pb-free Solder Joints)

  • 유아미;장재원;김목순;이종현;김준기
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2010년도 춘계학술발표대회 초록집
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    • pp.82-82
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    • 2010
  • 표면실장 공법을 통해 CSP 패키지를 보드에 실장 하는데 있어 무연솔더 접합부의 신뢰성에 영향을 미치는 인자 중 가장 중요한 것은 접합부에 형성되는 IMC (Intermetallic compound, 금속간화합물)인 것으로 알려져 있다. 접합부의 칩 부분에는 솔더와 칩의 UBM (Under bump metalization)이 접합하여 IMC가 형성되나, 보드 부분에는 솔더와 보드의 UBM 뿐만 아니라 그 사이에 솔더 페이스트가 함께 접합되어 IMC가 형성된다. 본 연구에서는 패키지의 신뢰성 연구를 위해 솔더 페이스트의 유무 및 두께에 따른 무연 솔더 접합부의 미세조직의 변화를 분석하였다. 본 실험에서는 Sn-3.0(Wt.%)Ag-0.5Cu 조성과 본 연구진에 의해 개발된 Sn-Ag-Cu-In 조성의 직경 $450{\mu}m$ 솔더 볼을 사용하였으며, 솔더 페이스트는 상용 Sn-3.0Ag-0.5Cu (ALPHA OM-325)를 사용하였다. 칩은 ENIG (Electroless nickel immersion gold) finish pad가 형성된 CSP (Chip scale package)를, 보드는 OSP (Organic solderability preservative)/Cu finish pad가 형성된 것을 사용하였다. 실험 방법은 보드를 솔더 페이스트 없이 플라즈마 처리 한 것, 솔더 페이스트를 $30{\mu}m$ 두께로 인쇄한 것, $120{\mu}m$의 두께로 인쇄한 것, 이렇게 3가지 조건으로 준비한 후, 솔더 볼이 bumping된 칩을 mounting하여, $242^{\circ}C$의 peak 온도 조건의 oven(1809UL, Heller)에서 reflow를 실시하여 패키지를 형성하였다. 이후 시편은 정밀 연마한 후, OM(Optical Microscopic)과 SEM(scanning electron microscope) 및 EDS(energy dispersive spectroscope)를 사용하여 솔더 접합부 IMC의 미세조직을 관찰, 분석하였다.

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트위터와 유튜브를 통해 확산된 생리대 발암물질 이슈에 대한 네트워크 분석 (Network analysis of issue diffusion on the sanitary pad cancer-causing agent via Twitter and Youtube)

  • 홍주현
    • 인터넷정보학회논문지
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    • 제19권4호
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    • pp.15-26
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    • 2018
  • 이 연구의 목적은 이슈가 SNS를 통해 확산되는데 매체적 특성과 관계가 있는지 네트워크 분석을 통해 규명하는 것이다. 이를 위해 소셜 미디어를 매체 상호작용성과 이용자 상호작용성을 기준으로 유형화하고, 트위터와 유튜브를 통해 확산되는 이슈의 확산성을 비교했다. 노드엑셀 프로그램을 통해 자료를 수집할 수 있는 트위터와 유튜브를 분석 대상으로 했는데 트위터는 매체 상호작용성과 이용자 상호작용성이 낮은 트위터는 '제한형'으로, 유튜브는 매체 상호작용성과 이용자 상호작용성이 높은 '소통 확산형'으로 분류했다. 제한형에서는 이슈 확산 네트워크가 방사형으로 나타났고, 소통 확산형에서는 거미줄형으로 나타났다. 유튜브에서 의견의 다양성이 높았고, 트위터에서 보다 이슈가 더 활발하게 공유되면서 확산된 것으로 나타났다. 결론적으로 상호작용성을 기준으로 소셜 미디어의 구조적인 특성에 따라 이슈의 확산 양상에 차이가 있다는 것을 규명했다는 점에서 연구의 의의가 있다고 하겠다. 이용자들이 얼마나 쉽게 메시지를 공유하고, 댓글을 달면서 상호작용할 수 있는지가 플랫폼으로서 SNS의 활성화에 영향을 미친 것을 밝혔다. 정부와 기업, 소비자들은 이와 같은 트위터와 유튜브의 특성을 파악하고, 커뮤니케이션 채널로서 SNS를 어떻게 활용해야 할지 고려해야 할 것이다.

고온 시효 시험에 따른 Epoxy 솔더 접합부의 접합 특성 평가 (Evaluation of Bonding Properties of Epoxy Solder Joints by High Temperature Aging Test)

  • 강민수;김도석;신영의
    • 한국전기전자재료학회논문지
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    • 제32권1호
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    • pp.6-12
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    • 2019
  • Bonding properties of epoxy-containing solder joints were investigated by a high temperature aging test. Specimens were prepared by bonding an R3216 standard chip resistor to an OSP-finished PCB by a reflow process with two basic types of solder (SAC305 & Sn58Bi) pastes and two epoxy-solder (SAC305+epoxy & Sn58Bi+epoxy) pastes. In all epoxy solder joints, an epoxy fillet was formed in the hardened epoxy, lying around the outer edge of the solder joint, between the chip and the Cu pad. In order to analyze the bonding characteristics of solder joints at high temperatures, a high-temperature aging test at $150^{\circ}C$ was carried out for 14 days (336 h). After aging, the intermetallic compound $Cu_6Sn_5$ was found to have formed in the solder joint on the Cu pad, and the shear stress on the conventional solder joint was reduced by a significant amount. The reason that the shear force did not decrease much, even though in epoxy solder, was thatbecause epoxy hardened at the outer edge of the supported solder joints. Using epoxy solder, strong bonding behavior can be ensured due to this resistance to shear force, even in metallurgical changes such as those where intermetallic compounds form at solder joints.

Effect of Cu-contained solders on shear strength of BGA solder joints

  • Shin, Chang-Keun;Huh, Joo-Youl
    • 한국마이크로전자및패키징학회:학술대회논문집
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    • 한국마이크로전자및패키징학회 2000년도 Proceedings of 5th International Joint Symposium on Microeletronics and Packaging
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    • pp.73-73
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    • 2000
  • Shear strength of BGA solder joints on Cu pad was studied for Cu-contained Sn n.5 a and 2.5wt.% Cu) and Sn-Pb (o.5wt.% Cu) solders, with emphasis on the roles of the C Cu-Sn intermetallic layer thickness and the roughness of the interface between the i intermetallic layer and solder. The shear strength test was performed both for a as-soldered s이der joints with soldering reaction times of 1, 2, 4 min and for aged s이der j joints at 170 C up to 16 days. The Cu addition to both pure Sn and eutectic Sn-Pb s solders increased the intermetallic layer thickness at both soldering and aging t temperatures. The Cu addition also resulted in changes in the roughness of the interface b between the intermetallic layer and solder at as-soldered states. With increasing Cu c content. the interface roughened for Sn-Cu solders whereas it flattened for Sn-Pb-Cu s solders. The shear fractures in all solder joints investigated were confined in the bulk s solder rather than through the intermetallic layer. Therefore, the effect of Cu content in s solders on the shear strength of the solder joints was primarily attributed to its i influence on the micros$\sigma$ucture of bulk solder, such as the size and spatial distributions of CU6Sn5 precipitates. In addition, the critical intermetallic layer thickness for a m maximum shear strength seemed to depend on the Cu content in bulk solder.older.

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자동차 전장모듈용 Sn-Cu-Cr(Ca) 중온 솔더의 접합특성 연구 (Joint Property of Sn-Cu-Cr(Ca) Middle Temperature Solder for Automotive Electronic Module)

  • 방정환;유동열;고용호;김정한;이창우
    • Journal of Welding and Joining
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    • 제31권5호
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    • pp.54-58
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    • 2013
  • Joint properties of vehicle ECU (Electric Control Unit) module which was manufactured by using Sn-Cu-Cr-Ca alloy were investigated. A new solder which has a middle melting temperature about $231^{\circ}C$ was fabricated as the type of 300um solder ball and paste type. The prototype modules were made by reflow process and measured spreadability, wettability shear strength and estimated interface reaction. The spreadability of the alloy was about 84% from the measurement of contact angle of the solder ball and the wetting force was measured 2mN. The average shear strength of the module which was manufactured by using the solder paste, was 1.9 $kg/mm^2$. Also, the thickness of IMC(intermetallic compound) was evaluated with various aging temperature and time in order to understand Cr effect on Sn-0.7Cu solder. $Cu_6Sn_5$ IMC was formed between Cu pad and the solder alloy and the average thickness of the $Cu_6Sn_5$ IMC was measured about 4um and it was about 50% of thickness of $Cu_6Sn_5$ IMC in Sn-0.7Cu. It is expected to have a positive effect on reliability of the solder joint.

Ni/Au 및 OSP로 Finish 처리한 PCB 위에 스크린 프린트 방법으로 형성한 Sn-37Pb, Sn-3.5Ag 및 Sn-3.8Ag-0.7Cu 솔더 범프 계면 반응에 관한 연구 (Studies on the Interfacial Reaction of Screen-Printed Sn-37Pb, Sn-3.5Ag and Sn-3.8Ag-0.7Cu Solder Bumps on Ni/Au and OSP finished PCB)

  • 나재웅;손호영;백경욱;김원회;허기록
    • 한국재료학회지
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    • 제12권9호
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    • pp.750-760
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    • 2002
  • In this study, three solders, Sn-37Pb, Sn-3.5Ag, and Sn-3.8Ag-0.7Cu were screen printed on both electroless Ni/Au and OSP metal finished micro-via PCBs (Printed Circuit Boards). The interfacial reaction between PCB metal pad finish materials and solder materials, and its effects on the solder bump joint mechanical reliability were investigated. The lead free solders formed a large amount of intermetallic compounds (IMC) than Sn-37Pb on both electroless Ni/Au and OSP (Organic Solderabilty Preservatives) finished PCBs during solder reflows because of the higher Sn content and higher reflow temperature. For OSP finish, scallop-like $Cu_{6}$ /$Sn_{5}$ and planar $Cu_3$Sn intermetallic compounds (IMC) were formed, and fracture occurred 100% within the solder regardless of reflow numbers and solder materials. Bump shear strength of lead free solders showed higher value than that of Sn-37Pb solder, because lead free solders are usually harder than eutectic Sn-37Pb solder. For Ni/Au finish, polygonal shaped $Ni_3$$Sn_4$ IMC and P-rich Ni layer were formed, and a brittle fracture at the Ni-Sn IMC layer or the interface between Ni-Sn intermetallic and P-rich Ni layer was observed after several reflows. Therefore, bump shear strength values of the Ni/Au finish are relatively lower than those of OSP finish. Especially, spalled IMCs at Sn-3.5Ag interface was observed after several reflow times. And, for the Sn-3.8Ag-0.7Cu solder case, the ternary Sn-Ni-Cu IMCs were observed. As a result, it was found that OSP finished PCB was a better choice for solders on PCB in terms of flip chip mechanical reliability.

Pb-free 솔더 조인트의 인공시효 처리시간과 실험온도에 따른 강도평가 (Strength Evaluation of Pb-free Solder Joints with Artificial Aging Time and Test Temperature)

  • 박소영;양성모;유효선
    • 한국자동차공학회논문집
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    • 제22권3호
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    • pp.90-96
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    • 2014
  • The conventional SnPb solders were widely used for several decades in the electronic packing system due to the superior mechanical properties such as low melting point, better wettavility and good mechanical fatigue. However, in recent years, owing to adverse effect on the human health and environment, conventional SnPb solders have been replaced by Lead-free solders. In this research, the shear punch(SP) test of Sn-4Ag-(Cu)/Ni pad was performed. Pb-free solder alloys which are the environmentally friendly of the electronic components were performed at $150^{\circ}C$ for 100hr~1000hr to artificial aging processing. In order to evaluate the mechanical properties of solder joints, the SP test was conducted at $30^{\circ}C$ and $50^{\circ}C$. As a result, the maximum shear strength of almost the whole specimens was decreased with the increase in aging time and temperature of SP test. The mechanical properties of Sn-4Ag-0.5Cu solder were most excellent in all Pb-free solder which were produced by the SP test at $30^{\circ}C$.