• 제목/요약/키워드: Industrial lasers

검색결과 47건 처리시간 0.026초

SHB을 고려한 λ/4-shifted 3전극 가변파장 DFB-LD의 dc 특성 모델링 (The modeling for dc of a λ/4-shifted tunable three section DFB-LD characteristics considering spatial hole burning)

  • 전우철;엄진섭
    • 산업기술연구
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    • 제16권
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    • pp.147-155
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    • 1996
  • There is a considerable interest in tunable DFB-LD for their use in OFDM and coherent optical communications. In this paper, A modeling of ${\lambda}/4$-shifted tunable wavelength three electrode DFB-LD was performed considering the spatial hole burning within a laser diode cavity. The modeling will show design paramenters' requirement for high-speed and broad bandwidth lasers. The simulations of modeling prove that the continuous tuning range is about 3nm and the SMSR is about several dB. We showed that the optical power and carrier density distribution along z for several dc current with SHB. It was shown that prove that optical power and carrier density along cavity are changed and thismeans that modeling is correct.

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IR 레이저 스크라이빙에 의한 HJT 셀 분할 시 출력 감소율 최소화에 대한 연구 (Research on Minimizing Output Degradation in HJT Cell Separation Using IR Laser Scribing)

  • 이은비;윤성민;김민섭;신진호;김유진;김정훈;박민준;정채환
    • Current Photovoltaic Research
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    • 제12권2호
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    • pp.37-40
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    • 2024
  • One of the current innovation trends in the solar industry is the increase in the size of silicon wafers. As the wafer size increases, the series resistance of the module rises, highlighting the need for research on methods for cutting and bonding solar cells. Among these, the Infrared (IR) laser scribing technique has been extensively researched. However, there is still insufficient optimization research regarding the thermal damage caused by lasers on the Transparent Conductive Oxide (TCO) layer of Heterojunction (HJT) solar cells. Therefore, in this study, we systematically varied conditions such as IR laser scribing speed, frequency, power, and the number of scribes to investigate their impact on the performance of cut cells under each condition. Additionally, we conducted a comparative analysis of thermal damage effects on the TCO layer based on varying scribing depths.

레이저 직접금속조형(DMM)기술에 의한 금형제작 및 보수 (Die Manufacturing and Repair Using Laser-Aided Direct Metal Manufacturing)

  • 지해성;서정훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.104-107
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    • 2002
  • Direct Metal Manufacturing (DMM) is a new additive process that aims to take die making and metalworking in an entirely new direction. It is the blending of five common technologies : lasers, computer-aided design (CAD), computer-aided manufacturing (CAM), sensors and powder metallurgy. The resulting process creates parts by focusing an industrial laser beam onto a tool-steel work piece or platform to create a molten pool of metal. A small stream of powdered tool-steel metal is then injected into the melt pool to increase the size of the molten pool. By moving the laser beam back and forth, under CNC control, and tracing out a pattern determined by a computerized CAD design, the solid metal part is built line-by-line, one layer at a time. DMM produces improved material properties in less time and at a lower cast than is possible with traditional fabrication.

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플륨 모니터링에 의한 SM45C 레이저 용접특성 평가 (Estimation of Laser Welding Behavior of SM45C Steels by Plume Monitoring)

  • 유영태;김재열;노경보;양동조;오용석;임기건;김지환
    • 한국공작기계학회논문집
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    • 제12권6호
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    • pp.14-21
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    • 2003
  • With the increased use of lasers in industrial welding applications, techniques for monitoring and controlling these processes become increasingly important. It is very important that we understand the dynamic behaviors of the laser induced Plume in welding, because the laser induced plume has considerable effects on welding efficiency and the quality of materials. As the plume fluctuation was associated with keyhole instability, unstable vapor plume indicated the process was unstable and would result in poor welds. An Infrared Thermal-vision Camera can be utilized compensate for incurracies encountered in real-time monitoring during laser welding. We have results that instabilities of plume are closely related with hot cracking and defect of laser welding.

CW Nd:YAG 레이저에 의한 SCP1의 용접특성 (Welding Characteristics of SCP1 on CW Nd:Yag Laser)

  • 신병헌;유영태;신호준;윤철중
    • 한국정밀공학회지
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    • 제24권5호
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    • pp.35-43
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    • 2007
  • Laser welding of metals has been widely used to improve a wear resistance and a corrosion resistance of the industrial parts. The objective of this research works is to investigate the influence of the process parameters, such as the welding for metals with CW Nd:YAG lasers. The bead-on-plate welding tests are carried out for several combinations of the experimental conditions. In order to quantitatively examine the characteristics of the butt welding, the welding quality of the cut section, stain-stress behavior and the hardness of the welded part are investigated. From the results of the investigation, it has been shown that the optimal welding condition without defects in the vicinity of the welded area and with a good welding quality is 1325W of the laser power, and 1.4m/min of laser welding speed.

판상형 산화아연의 합성 및 응용에 관한 연구 동향

  • 장의순
    • 세라미스트
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    • 제20권4호
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    • pp.55-73
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    • 2017
  • As one of the most versatile semiconductors, zinc oxide (ZnO) with one-dimensional (1-D) nanostructures has been significantly developed for the application of ultraviolet (UV) lasers, photochemical sensors, photocatalysts, and so on. Such 1-D nanowires could be easily achieved due to the anisotropic growth rate along the [0001] direction. However, such typical growth habit leads to decrease the surface area of the (0001) plane, which plays a central role in not only UV lasing action but also photocatalytic reaction. This fact lead us to develop ZnO crystal with enhanced polar surface area through crystal growth control. The purpose of this review is to provide readers a simple route to plate-type ZnO crystal with highly enhanced polar surfaces and their applications for UV-laser, photocatalyst, and antibacterial agents. In addition, we will highlight the recent study on pilot-scale synthesis of plate-type ZnO crystal for industrial applications.

레이저를 이용한 직접금속조형(DMD) 기술 (Laser-Aided Direct Metal Deposition (DMD) Technology)

  • 지해성;서정훈
    • 한국CDE학회논문집
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    • 제8권3호
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    • pp.150-156
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    • 2003
  • Direct Metal Deposition (DMD) is a new additive process producing three-dimensional metal components or tools directly from CAD data, which aims to take mold making and metalworking in an entirely new direction. It is the blending of five common technologies: lasers, CAD, CAM, sensors and materials. In the resulting process, alternatively called laser cladding, an industrial laser is used to locally heat a spot on a tool-steel work piece or platform, forming a molten pool of metal. A small stream of powdered tool-steel metal is then injected into the metal pool to increase the size of the molten pool. By moving the laser beam back and forth, under CNC control, and tracing out a pattern determined by a computerized CAD design, the solid metal part is eventually built line-by-line, one layer at a time. DMD produces improved material properties in less time and at a lower cost than is possible with traditional fabrication technologies.

펨토초 레이저 버스트 모드를 활용한 비아홀 내벽의 레이저 유도 주기적 표면 구조 제어 (Control of Laser-induced Periodic Surface Structures on the Sidewalls of Through Silicon Via Using Femtosecond Laser Burst Mode)

  • 김태식;박지용
    • 마이크로전자및패키징학회지
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    • 제31권4호
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    • pp.47-56
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    • 2024
  • AI 알고리즘의 복잡성 증가로 고대역폭 메모리에서 실리콘 관통전극(through silicon via, TSV) 공정의 중요성이 부각되고 있다. 대표적인 TSV 형성 공정은 습식 식각과 건식 식각으로 나뉘며, 건식 식각 중 DRIE(deep reactive ion etching) 공정은 포토리소그래피(photolithography) 공정이 필요하고 스캘럽(scallop)모양 형성으로 인한 표면 거칠기 문제가 발생하는 단점이 있다. 반면, 레이저 드릴링(laser drilling)은 포토리소그래피 공정 없이 고종횡비 구현이 가능하다. 특히, 펨토초 레이저는 나노초 레이저에 비해 비열적 가공이 가능해 정밀한 가공에 유리하다. 그러나 펨토초 레이저의 단일 펄스 모드(single pulse mode)를 사용하여 비아홀(via hole)을 형성할 경우, 홀 내벽에 재응고층(recast layer), 잔여물(debris), 레이저 유도 주기적 표면 구조(laser induced periodic surface structures, LIPSS)가 형성되어 표면 거칠기가 증가한다. 이러한 거칠기는 도금 공정에서 도금성을 저하시키며, 전기 신호 전달 시 노이즈 증가와 성능 저하를 초래하게 된다. 본 연구는 펨토초 레이저의 버스트 모드(burst mode)를 활용하여 재응고층, 잔여물, LIPSS 생성을 제어함으로써 비아홀 가공의 최적 공정 조건을 제시하고자 한다.

Injection 온도 및 합성시간에 따른 CdSe 양자점 합성 및 특성 (Synthesis and Characterization of CdSe Quantum Dot with Injection Temperature and Reaction Time)

  • 엄누시아;김택수;좌용호;김범성
    • 한국재료학회지
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    • 제22권3호
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    • pp.140-144
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    • 2012
  • Compared with bulk material, quantum dots have received increasing attention due to their fascinating physical properties, including optical and electronic properties, which are due to the quantum confinement effect. Especially, Luminescent CdSe quantum dots have been highly investigated due to their tunable size-dependent photoluminescence across the visible spectrum. They are of great interest for technical applications such as light-emitting devices, lasers, and fluorescent labels. In particular, quantum dot-based light-emitting diodes emit high luminance. Quantum dots have very high luminescence properties because of their absorption coefficient and quantum efficiency, which are higher than those of typical dyes. CdSe quantum dots were synthesized as a function of the synthesis time and synthesis temperature. The photoluminescence properties were found strongly to depend on the reaction time and the temperature due to the core size changing. It was also observed that the photoluminescence intensity is decreased with the synthesis time due to the temperature dependence of the band gap. The wavelength of the synthesized quantum dots was about 550-700 nm and the intensity of the photoluminescence increased about 22~70%. After the CdSe quantum dots were synthesized, the particles were found to have grown until reaching a saturated concentration as time increased. Red shift occurred because of the particle growth. The microstructure and phase developments were measured by transmission electron microscopy (TEM) and X-ray diffractometry (XRD), respectively.

순티타늄판의 Nd:YAG 레이저 용접성에 관한 연구(I) - 실드 조건에 따른 용접특성 - (A Study of Weldability for Pure Titanium by Nd:YAG Laser(I) - Weld Properties with Shield Conditions -)

  • 김종도;곽명섭;김창수
    • Journal of Welding and Joining
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    • 제27권5호
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    • pp.55-61
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    • 2009
  • Pure titanium and its alloys have good formability, excellent corrosion resistance and high strength to weight ratios. Therefore, it has been using to heat exchangers, offshore plants, sports equipments, and etc. As broad as its application fields, it also increases welding locations. Conventional GTAW and GMAW are very popular welding methods of titanium, but it has a high heat input and wide HAZ. It has a possibility of inducing Stress Corrosion Cracking. So, laser welding method has been using to get reliable welds by reducing heat input. Weld beads change its color to silver, gold, brown, blue, and gray by shied conditions. And the closer to gray, the more oxidize, nitride and embrittlement. The most effective atom to embrittlement was nitrogen. And shield gas flow was not so effective over the constant flow rates. In this study, weld properties of the pure titanium were investigated by pulsed & CW Nd:YAG lasers and evaluated by various shield conditions. And It is observed that nitrogen is more effective to oxidation and embrittlement of titanium compared with oxygen by oxygen and nitrogen quantitative analysis.