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LG Innotek Collaborates With World-leading Partner to Drive Its Digital Twin Technology

LG Innotek Collaborates With World-leading Partner to Drive Its Digital Twin Technology

LG 英诺特与世界领先的合作伙伴合作推动其数字孪生技术
PR Newswire ·  08/22 03:00
  • Preliminary verification of designs using virtual simulation, reducing development time by 99%
  • Increasing deployment of 'Digital Twin' technology to FC-BGA and electronic component production processes, maximizing manufacturing competitiveness
  • "LG Innotek to become a 'meta-manufacturing' company by advancing Digital Twin technology"
  • 通过虚拟仿真进行初步设计验证,将开发时间减少99%
  • 在FC-BGA和电子元器件生产过程中增加"数字孪生"技术的应用,最大化制造竞争力
  • "LG英诺特将通过推进数字孪生技术成为一家'元制造'公司"

SEOUL, South Korea, Aug. 22, 2024 /PRNewswire/ -- LG Innotek is accelerating its digital transformation to enhance business competitiveness.

韩国首尔,2024年8月22日 / PRNewswire / - LG英诺特正加快数字转型,增强业务竞争力。

On the August 22, LG Innotek (CEO Moon, Hyuksoo) announced that it will partner with Ansys, the world's top engineering simulation company, to expand the application of 'Digital Twin' technology to all its processes.

8月22日,LG英诺特(首席执行官Moon, Hyuksoo)宣布将与全球顶级工程模拟公司安斯科技合作,将"数字孪生"技术应用扩展到其所有流程。

'Digital Twin' is a technology that replicates objects in a virtual space to predict the outcomes of possible real-life situations through computer simulations. It is heralded as a technology capable of solving various industrial and social problems. In particular, it is being rapidly deployed in the manufacturing industry as it can reduce product development time and costs.

“数字孪生”是一种通过计算机模拟,在虚拟空间中复制物体以预测可能的现实情况结果的技术。它被誉为能够解决各种行业和社会问题的技术。特别是在制造业中,它因能够减少产品开发时间和成本而得到快速推广。

Ansys is known to possess world-leading technology and deployment experience in the field of simulation using 3D modeling, Artificial Intelligence (AI), and Machine Learning (ML). By collaborating with Ansys, LG Innotek will be able to leverage its latest 'Digital Twin' solutions and simulation software to build a state-of-the-art 'Digital Twin' environment.

安斯科技以在三维建模、人工智能(AI)和机器学习(ML)等领域拥有世界领先的技术和部署经验而闻名。通过与安斯科技合作,LG英诺特将能够利用其最新的"数字孪生"解决方案和仿真软件来构建先进的"数字孪生"环境。

In collaboration with Ansys, LG Innotek conducted a trial application of its 'Digital Twin' technology to some development and production processes and has achieved tangible results. In the future, the company plans to expand the application of 'Digital Twin' to the development and production processes of its entire product range, including autonomous driving components such as vehicle connectivity and sensing devices.

在与安斯科技合作的过程中,LG英诺特对其"数字孪生"技术已在一些开发和生产过程中进行了试验应用,并取得了实质性的结果。未来,该公司计划将"数字孪生"技术应用扩展到其全部产品范围的开发和生产过程中,包括车辆连接和感测设备等自动驾驶组件。

  • Preliminary verification of designs using virtual simulation, reducing development time by 99%
  • 通过虚拟模拟进行设计的初步验证,将开发时间缩短了99%。

LG Innotek is reaping the benefits of its 'Digital Twin' in R&D. After verifying designs in a virtual environment, the company uses the data to minimize the number of tests that need to be conducted and the time it takes to conduct them.

LG Innotek正在从其“数字孪生”中获益。在虚拟环境中验证设计后,该公司利用数据来最小化需要进行的测试数量以及进行测试所需的时间。

It applied 'Digital Twin' technology to the development of package substrate (PS) products for semiconductors, managing to reduce the development time by 99%.

将“数字孪生”技术应用于半导体套装基板(PS)产品的开发,成功将开发时间缩短了99%。

Substrates require the minimization of 'Warpage' due to the heat and pressure to which they are exposed during manufacturing. This is achieved through a simulation process that optimizes the combination of the circuit design structure and materials composition ratio. Using virtual simulation through 3D modeling, LG Innotek has reduced the time required to predict the degree of 'Warpage' of a single substrate from 11 days to 3.6 hours.

由于在制造过程中暴露在热量和压力下,基板需要减小由于“翘曲”而产生的影响。这通过一个模拟过程来实现,该过程优化了线路设计结构和材料组成比例的组合。利用3D建模进行虚拟模拟,LG Innotek将预测单个基板的“翘曲”程度所需的时间从11天缩短至3.6小时。

  • Increasing deployment of 'Digital Twin' to FC-BGA and electronic component production processes, maximizing manufacturing competitiveness
  • 越来越多地将“数字孪生”应用于FC-BGA和电子元件生产过程中,最大化制造竞争力。

LG Innotek has expanded the application of 'Digital Twin' technology to not only product development but also the FC-BGA (Flip-Chip Ball-Grid Array) production process. Using this technology, the company has succeeded in halving the ramp-up period (increase in production capacity by enhancing yield in the early phases of mass production) by establishing optimal conditions for the FC-BGA production equipment.

LG Innotek已经将“数字孪生”技术的应用扩展到不仅仅是产品开发,还包括FC-BGA(翻转芯片球栅阵列)生产过程。利用这项技术,公司成功地将FC-BGA生产设备的最佳条件确立,通过提高早期阶段产量,将增产期减半。

In the past, the company had to conduct hundreds of tests to identify the optimal FC-BGA process conditions, which relied heavily on time and money. Using 3D modeling, it has replicated the FC-BGA production process in a virtual space.

过去,公司必须进行数百次测试来确定最佳的FC-BGA工艺条件,这在很大程度上依赖于时间和资金。通过3D建模,公司在虚拟空间中复制了FC-BGA生产过程。

Running the process in a virtual space enables the computer to visualize and identify problems that could occur with various process equipment. This makes it possible to meticulously optimize conditions, such as the flow of liquids, heat, and air that cannot be measured inside such equipment.

在虚拟空间中运行该过程使计算机能够可视化并确定可能发生的各种工艺设备问题。这可以细致地优化条件,例如不能在这种设备内部测量的液体流动、热量和空气。

In addition, LG Innotek has managed to increase productivity by actively using 'Digital Twin' in the production process of electronic vehicle components. Since electronic vehicle components have a long product lifespan and are highly vulnerable to the weather, ensuring quality and reliability is crucial.

另外,LG英诺特积极利用“数字孪生”技术在电子车辆元器件的生产过程中提高了生产力。由于电子车辆元器件具有较长的产品寿命,且对天气非常敏感,确保质量和可靠性至关重要。

LG Innotek applied 'Digital Twin' technology to the soldering process, which is a key process for ensuring the reliability of electronic vehicle components. The soldering process was simulated in a virtual space to predict the time it takes for the solder to crack. By optimizing process conditions such as the amount of solder applied and nozzle design to delay cracking as much as possible, the company plans to increase productivity by 40% compared to the previous process.

LG英诺特将“数字孪生”技术应用到焊接过程中,焊接过程是确保电子车辆元器件可靠性的关键过程。将焊接过程在虚拟空间中进行模拟,预测焊料开裂所需的时间。通过优化过程条件,如焊料数量和喷嘴设计,尽量延迟开裂,公司计划将生产力提高40%,与之前的过程相比。

  • "LG Innotek to become a 'meta-manufacturing' company by advancing Digital Twin technology"
  • “LG英诺特通过推进数字孪生技术,成为‘元制造’公司”

Through its partnership with Ansys, LG Innotek plans to rapidly expand the use of 'Digital Twin' technology to all product lines and processes, including new growth businesses such as vehicle communication modules and LiDAR (light detection and ranging) devices.

通过与Ansys的合作,LG英诺特计划快速扩大“数字孪生”技术在所有产品线和流程中的应用,包括车辆通信模块和激光雷达(LiDAR)设备等新的增长业务。”

In the future, the company plans to expand the use of 'Digital Twin' technology to customers and partners across the entire value chain, from development to production. As a result, partners and customers will be able to collaborate on product design and simulate the efficiency of production processes on the virtual 'Digital Twin' platform built by LG Innotek.

未来,该公司计划将“数字孪生”技术应用于整个价值链的客户和合作伙伴,从开发到生产的所有环节。因此,合作伙伴和客户将能够在LG英诺特构建的虚拟“数字孪生”平台上共同设计产品,并模拟生产过程的效率。

All of the data generated in the virtual space will be collected in real time and used to improve product design and customer processes. All data from LG Innotek, its partners, and customers will be organically connected and shared in real time, enabling systematic quality control and efficient development.

在虚拟空间中生成的所有数据将实时收集,并用于改善产品设计和客户流程。来自LG英诺特、其合作伙伴和客户的所有数据将有机地连接和实时共享,实现系统化的质量控制和高效的开发。

Furthermore, AI will be applied to the virtual design and quality process verification to increase simulation speed and accuracy. AI will learn from the data collected through simulation to derive optimal solutions and support decision-making by engineers. LG Innotek believes the productivity gains will be multiplied by combining the strengths of virtualization and AI technology.

此外,将在虚拟设计和质量过程验证中应用人工智能,以提高模拟速度和准确性。人工智能将通过从模拟中收集的数据进行学习,推导出最优解,并支持工程师的决策。LG英诺特相信,通过结合虚拟化和人工智能技术的优势,生产效率将得到倍增。

LG Innotek Chief Technology Officer S.David Roh said, "The future we envision at LG Innotek is meta-manufacturing, where simulation results from a virtual space are linked to physical production facilities and automatically lead to actual production." He added, "To this end, we will rapidly apply advanced 'Digital Twin' technology to the entire value chain, including R&D, production, and quality control, to create differentiated customer value."

英诺特首席技术官S.David Roh表示:“在英诺特,我们展望的未来是元制造,即将虚拟空间的模拟结果与实际生产设施相连接,自动导向实际生产。”他补充道:“为了实现这一目标,我们将迅速应用先进的‘数字孪生’技术到整个价值链,包括研发、生产和质量控制,为客户创造差异化的价值。”

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