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    模块化电脑
    • COM-HPC 计算模块
    • COM Express
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    • SMARC 计算模块
    • Qseven 计算模块
    • ETX
    GPU解决方案
    • MXM GPU 模块
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    加固级计算
    • CompactPCI & CompactPCI Serial
    • VPX
    • PC104
    • AVA Railway Rugged Computers
    • PIDS
    边缘计算平台
    • 工业电脑/主板/单板电脑
    • 嵌入式电脑 / IoT Gateway
    • 边缘 AI 计算平台
    • AI 智能相机
    • 机器人控制器
    • 工业级固态硬盘(SSD)
    工业级显示系统与平板电脑
    • 纯平工业级触控显示器
    • 开放式架构平板电脑
    • All-in-One 多合一屏控电脑
    • 坚固型面板电脑
    • 数字标牌播放器
    汽车解决方案
    • 自动驾驶解决方案
    • AI-ADAS 解決方案
    网络与服务器
    • AI GPU 服务器
    • 工业与电信服务器
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    自动化和控制
    • 机器视觉
    • 运动控制 I/O
    • EtherCAT 运动控制解決方案
    • HMI 屏控电脑
    • 数据采集卡
    • GPIB 与数字化仪
    • PXI 平台与模组
    • 自主移动机器人
    • 工业物联网网关
    设计与制造服务
    • DMS+(ODM/OEM 服务)
    医疗专用电脑和显示器
    • 医疗专用触控电脑
    • 医疗专用显示器
    • 医用 BOX PC
  • 行业
    车用解决方案 国防与军工 智能医疗 工业自动化 网络和通信 智能物流 半导体解决方案 智慧城市 测试测量 铁路 机器人技术

    车用解决方案

    车用解决方案

    凌华科技的自动驾驶运算平台採用尖端技术,致力提供更安全、更高效的驾驶运行。以强大的运算能力,满足自动驾驶和先进驾驶辅助系统(ADAS)技术,并提供适用于汽车的坚固设计。

    了解更多

    国防与军工

    Defence & Aviation

    在国防航空领域中,准确观察环境做出快速可靠的决策并及时采取行动至关重要。 凌华科技坚固的系统和Data Distribution Service(DDS)是大型数据基础架构的关键部分,该基础架构可收集、存储、分析信息并将信息从现场传递给决策者。

    了解更多

    智能医疗

    Healthcare

    凌华科技专注于医疗可视化设备和经过医疗认证的解决方案,从而满足智能医疗数字化的需求。 通过利用PENTA在医疗领域的设计和制造能力,凌华科技的智能医疗解决方案可加速各种医疗环境中的智能转型。

    了解更多

    工业自动化

    Industrial Automation

    工业自动化是全球制造业的重要方面。 凌华科技在系统、平台和产品的解决方案上提供了灵活的选择,从而克服了制造部署所面临的极端严苛环境问题,并在工厂车间提供了互联且无碍的性能。

    了解更多

    网络和通信

    概述
    5G & MEC 网络安全

    智能物流

    Retail Logistics

    在每天实时处理大量包裹时,要保持出色的客户服务和准时交付,同时减少零售库存和提高员工生产率可能非常困难。 凌华科技的解决方案使客户的包裹和托盘变得智能化,有效地连接整个供应链并改善仓库物流。

    了解更多

    半导体解决方案

    半导体解决方案

    你所能想象的一切,都因芯片而有所改变。为了满足不同场景应用的需求,完美的晶圆制造对于工艺要求以及效率和生产力的过程都无比讲究。

    了解更多

    智慧城市

    Smart City

    智慧城市泛指通过物联网收集各种数据,并利用从数据中获取的信息,对城市的资产、资源和服务等进行有效的管理与运用。 凌华科技的数据决策解决方案整合了图像分析,可靠的设计,提供稳定性和可靠性,是实现高效智慧城市的理想选择。

    了解更多

    测试测量

    Test & Measurement

    测试测量应用通过专用设备,用于分析、确认以及验证电子设备测量和最终产品。 凌华科技将继续通过创新产品扩展其测试测量产品,以满足高速和高带宽应用的特殊需求。

    了解更多

    铁路

    铁路

    我们的强固型CompactPCI,模块化电脑(COM),工业级系统和平板电脑等产品组合专为板载ATO / DMI和路旁CTC / RBC / TSR铁路解决方案应用设计。凌华科技在设计和制造方面的卓越的灵活性已被全球顶级铁路信号提供商所采用。

    了解更多

    机器人技术

    机器人技术

    自主移动机器人(AMR)无需或仅需极少的人工操作监督其执行任务。诸如学校、医院、大型购物中心和工厂之类的地方可以大量部署AMR以提高运营效率和生活品质。

    了解更多

    特色解决方案

    5G MEC

    自动驾驶

    GPU解决方案

    ROS2解决方案

    智能制造

  • 战略合作伙伴
    AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

    AMD-based Solutions

    AMD-based Solutions by ADLINK

    Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

    Learn More

    Ampere-based Solutions

    Ampere-based Solutions by ADLINK

    Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

    Learn More

    Arm-based Solutions

    Arm-based Solutions by ADLINK

    Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

    With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empowers developers to accelerate and realize their innovations.

    Learn More

    Intel-based Solutions

    Intel based Solutions by ADLINK

    ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

    Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

    Learn More

    MediaTek-based Solutions

    MediaTek-based Solutions by ADLINK

    ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

    Learn More

    NVIDIA-based Solutions

    NVIDIA-based Solutions by ADLINK

    To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

    Learn More

    NXP-based Solutions

    NXP-based Solutions by ADLINK

    Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

    Learn More

    Qualcomm-based Solutions

    Qualcomm-based Solutions by ADLINK

    Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

    Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

    Learn More
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    若您有任何价格、产品库存问题,或需要任何技术上的协助,欢迎随时与我们连系。

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    品质政策与资源联盟企业永续环保和责任CapabilitesProduct Security

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    公司新闻、产品资讯、近期活动或技术部落格,一手掌握ADLINK的最新资讯。

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    • 产品
      模块化电脑+ GPU解决方案+ 加固级计算+ 边缘计算平台+ 工业级显示系统与平板电脑+ 汽车解决方案+ 网络与服务器+ 自动化和控制+ 设计与制造服务+ 医疗专用电脑和显示器+
      COM-HPC 计算模块COM ExpressOSMSMARC 计算模块Qseven 计算模块ETX
      MXM GPU 模块PCIe 显卡
      CompactPCI & CompactPCI SerialVPXPC104AVA Railway Rugged ComputersPIDS
      工业电脑/主板/单板电脑嵌入式电脑 / IoT Gateway边缘 AI 计算平台AI 智能相机机器人控制器工业级固态硬盘(SSD)
      纯平工业级触控显示器开放式架构平板电脑All-in-One 多合一屏控电脑坚固型面板电脑数字标牌播放器
      自动驾驶解决方案AI-ADAS 解決方案
      AI GPU 服务器工业与电信服务器网络安全平台
      机器视觉运动控制 I/OEtherCAT 运动控制解決方案HMI 屏控电脑数据采集卡GPIB 与数字化仪PXI 平台与模组自主移动机器人工业物联网网关
      DMS+(ODM/OEM 服务)
      医疗专用触控电脑医疗专用显示器医用 BOX PC
      AdvancedTCA 交换刀片AdvancedTCA 平台 AdvancedTCA 处理器刀片
      固态硬盘
      COM-HPC Server Type COM-HPC Client Type
      COM Express Type 6 COM Express Type 7 COM Express Type 10 COM Express Type 2
      MXM 3.1 Type A MXM 3.1 Type B
      Pocket AI (便携式GPU)
      3U VPX 处理器刀片 6U VPX 处理器刀片 VPX 显卡和 XMC 模块
      Mini-ITX 工业母板 可扩展的无风扇嵌入式电脑 高集成度无风扇嵌入式电脑 ATX 工业母板 嵌入式板卡 工业电脑系统 PICMG 单板电脑 无源背板 工业电脑外围卡 工业电脑机箱
      搭载NVIDIA Jetson系列
      ROS2 解决方案 ADLINK ROS2 Github NeuronSDK
      2U 网络安全平台 4U 网络安全平台
      图像采集卡/视频采集卡 图像分析软件 智能相机 视觉系统 人工智能机器视觉系统
      集中式运动控制器 分布式运动控制器 编码器和触发器 运动控制软件和工具
      机器设备状态监测解决方案 数据采集卡 (DAQ) 数字化仪
      PXI 机箱 PXI 控制器 PXI/cPCI 模块 远程控制器
      AMR
    • 行业
      车用解决方案 国防与军工 智能医疗 工业自动化 网络和通信 智能物流 半导体解决方案 智慧城市 测试测量 铁路 机器人技术

      车用解决方案

      车用解决方案

      凌华科技的自动驾驶运算平台採用尖端技术,致力提供更安全、更高效的驾驶运行。以强大的运算能力,满足自动驾驶和先进驾驶辅助系统(ADAS)技术,并提供适用于汽车的坚固设计。

      了解更多

      国防与军工

      Defence & Aviation

      在国防航空领域中,准确观察环境做出快速可靠的决策并及时采取行动至关重要。 凌华科技坚固的系统和Data Distribution Service(DDS)是大型数据基础架构的关键部分,该基础架构可收集、存储、分析信息并将信息从现场传递给决策者。

      了解更多

      智能医疗

      Healthcare

      凌华科技专注于医疗可视化设备和经过医疗认证的解决方案,从而满足智能医疗数字化的需求。 通过利用PENTA在医疗领域的设计和制造能力,凌华科技的智能医疗解决方案可加速各种医疗环境中的智能转型。

      了解更多

      工业自动化

      Industrial Automation

      工业自动化是全球制造业的重要方面。 凌华科技在系统、平台和产品的解决方案上提供了灵活的选择,从而克服了制造部署所面临的极端严苛环境问题,并在工厂车间提供了互联且无碍的性能。

      了解更多

      网络和通信

      概述
      5G & MEC 网络安全

      智能物流

      Retail Logistics

      在每天实时处理大量包裹时,要保持出色的客户服务和准时交付,同时减少零售库存和提高员工生产率可能非常困难。 凌华科技的解决方案使客户的包裹和托盘变得智能化,有效地连接整个供应链并改善仓库物流。

      了解更多

      半导体解决方案

      半导体解决方案

      你所能想象的一切,都因芯片而有所改变。为了满足不同场景应用的需求,完美的晶圆制造对于工艺要求以及效率和生产力的过程都无比讲究。

      了解更多

      智慧城市

      Smart City

      智慧城市泛指通过物联网收集各种数据,并利用从数据中获取的信息,对城市的资产、资源和服务等进行有效的管理与运用。 凌华科技的数据决策解决方案整合了图像分析,可靠的设计,提供稳定性和可靠性,是实现高效智慧城市的理想选择。

      了解更多

      测试测量

      Test & Measurement

      测试测量应用通过专用设备,用于分析、确认以及验证电子设备测量和最终产品。 凌华科技将继续通过创新产品扩展其测试测量产品,以满足高速和高带宽应用的特殊需求。

      了解更多

      铁路

      铁路

      我们的强固型CompactPCI,模块化电脑(COM),工业级系统和平板电脑等产品组合专为板载ATO / DMI和路旁CTC / RBC / TSR铁路解决方案应用设计。凌华科技在设计和制造方面的卓越的灵活性已被全球顶级铁路信号提供商所采用。

      了解更多

      机器人技术

      机器人技术

      自主移动机器人(AMR)无需或仅需极少的人工操作监督其执行任务。诸如学校、医院、大型购物中心和工厂之类的地方可以大量部署AMR以提高运营效率和生活品质。

      了解更多

      特色解决方案

      5G MEC

      自动驾驶

      GPU解决方案

      ROS2解决方案

      智能制造

    • 战略合作伙伴
      AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

      AMD-based Solutions

      AMD-based Solutions by ADLINK

      Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

      Learn More

      Ampere-based Solutions

      Ampere-based Solutions by ADLINK

      Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

      Learn More

      Arm-based Solutions

      Arm-based Solutions by ADLINK

      Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

      With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empowers developers to accelerate and realize their innovations.

      Learn More

      Intel-based Solutions

      Intel based Solutions by ADLINK

      ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

      Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

      Learn More

      MediaTek-based Solutions

      MediaTek-based Solutions by ADLINK

      ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

      Learn More

      NVIDIA-based Solutions

      NVIDIA-based Solutions by ADLINK

      To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

      Learn More

      NXP-based Solutions

      NXP-based Solutions by ADLINK

      Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

      Learn More

      Qualcomm-based Solutions

      Qualcomm-based Solutions by ADLINK

      Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

      Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

      Learn More
    • 支持

      支持

      合作伙伴中心eRMA服务ADLINK DDS支持

      下载专区

      软件与驱动程序ADLINK DDS下载PublicationsContent HubADLINK GitHub

      联系我们

      销售咨询中国区合作伙伴咨询技术专家全球经销商线上商城

      若您有任何价格、产品库存问题,或需要任何技术上的协助,欢迎随时与我们连系。

      了解更多
    • 关于我们

      价值

      品质政策与资源联盟企业永续环保和责任CapabilitesProduct Security

      公司

      关于凌华全球办事处投资者关系企业logo与品牌规范加入凌华

      新闻

      新闻和活动Podcast博客
      Support

      公司新闻、产品资讯、近期活动或技术部落格,一手掌握ADLINK的最新资讯。

      了解更多
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Challenges in Motion Control for Precision Laser Processing

Laser manufacturing, combining optics, electro-mechanics and computer sciences, is widely applied in many technology manufacturing applications. According to industry reviews and forecasts from Laser Focus World and Industrial Laser Solutions magazines in early 2013, global laser sales have returned to the pre-Recession levels of 2008 with an upward tendency, with metal processing taking the majority of global laser material processing output in recent years. In specific applications, surface treatment (such as laser marking and engraving) represents 42% of all material processing and takes the first place, leading laser cutting and laser welding—which take second and third places respectively, comprising 34% of overall material processing applications. Laser material processing is applied in manufacturing areas including automotive, aviation, electronics, machining, and steelworks. Additionally, "Global and China Laser Equipment and Processing Industry Report, 2012-2014" released by Global Information (GI), points out that global laser sales in 2011 increased by 14% from USD7.46 billion in 2010, and were expected to grow moderately by around 2% in 2012.

Figure1: Global laser material processing distribution by application, 2009 (Source: Indus. Laser Solution, Y09)
Figure2: China's laser equipment market distribution, 2011 (Source: Global Information, Y11)

China's laser equipment market growth in 2011 exceeded the global rate. As a result of the macroeconomy, as demand from China's industrial sectors for high-power laser equipment declined, small and medium-power segments maintained growth. China's potential demand for laser equipment is considerable, with emphasis on automotive, semiconductor, and electronics sectors. China's laser processing services are heavily concentrated on precision metal machinery and laser drilling applications, with the two accounting for more than 60% of the nation's laser processing market.

 

Precision laser processing and cutting are popularly used in silicon wafer slicing for solar cells, cell phone screen cutting, semiconductor wafer slicing, and CNC machines, among others. High-end motion control products for laser equipment must accommodate micro-scale precision in contour cutting and adjusting released energy to cope with different materials while yielding the best possible results.

 

These issues and current solutions are discussed here with presentations of demonstration testing.

Low Laser Cutting Precision

 

Laser power is usually controlled by pulse frequency and mark/space ratio adjustments, requiring instant and precise positioning control as well as rapid shifts between velocities and power required. However, if, when cutting a non-linear signature, velocity is destabilized, especially during changes in direction and stops, and if laser power output fails to adjust synchronously, scorching occurs, as shown.

Figure 1: Scorching resulting from inferior laser power adjustment

Laser power is generally adjusted by Pulse Width Modulation (PWM), controlled through changes in mark/space ratio and usually performs better at stable speeds. If cutting motion accelerates and laser frequency is not adjusted consistently, the laser beam fails to deliver in time, resulting in non-uniform burning and scorching, as shown.

Figure 2: Non-uniform burning

Difficulties in Precision Trajectory Acquisition

 

Laser cutting requires superior motor control to maintain trajectory accuracy and prevent contour distortion, as shown. As an open-loop controller is unable to correct errors and perform compensation during operation, a closed-loop system can ensure more precise and accurate outcomes. The closed-loop controller, however, requires considerably more precise PID tuning for tracing effect, which can be time-consuming.

Figure 3: Curved lines are distorted in the absence of adequate PID compensation
Figure 4: Non-precise path-tracing (left) compared with precise tracing (right)

Difficulties in Laser Power Adjustment

 

Frequently, workpieces to be cut, such as solar power panels or cell phone touch screens, comprise multiple layers of different materials, each of which requires a different laser power level for cutting. Most laser controllers currently available, however, provide only a single lookup table by which correlation can be set between velocity and laser power, the table requiring a reset when switching materials, meaning the same trajectory must be processed several times. This negatively affects throughput.

Velocity Planning is Time-Consuming

 

When using lasers to cut more complex shapes, simple speed planning is insufficient to produce desired outcomes. For example, when cutting touch screens for cell phones, splines or longer geometric or curved lines are frequently encountered, and non-precise velocity control can lead to mechanical vibrations in acceleration and deceleration or serious distorted contours, such as overcuts or dithering, as shown. Because product designers normally provide only positions for the required contours without supplementary speed planning data, material processing manufacturers must plan speed by themselves, with repeated revisions impeding both accuracy and throughput.

Figure 5: Dithering laser trajectories resulting from inaccurate velocity planning

New Generation Motion Control Cards Overcome the Challenges of Laser Processing

 

Improving Transient Response of PWM Control

 

Current motion control cards employ software-enabled duty-cycle-PWM controllers which may fail to instantly and stably control PWM time sequencing. To differentiate between velocities and contours, the new generation of motion control cards uses hardware-based PWM, which combines multiple control methods including frequency modulation, duty modulation, and blend modulation, to allow laser machines to release different levels of energy corresponding to changes in cutting velocity. A lookup table dictating different velocities and corresponding duty-cycle percentages is used to prevent over-melting. ADLINK refers to this energy correlation as VAO (Velocity Amplitude Output), as shown.

Figure 6: Multi-PWM control modes
Figure 7: VAO table

Using multi-VAO for dynamic modulations

 

PWM using multiple VAO lookup tables can manage multi-layered materials without repeatedly cutting the same trajectories, helping to reduce production time and improve production efficiency and capacity, as shown.

Figure 8: Multi-VAO

Precise trajectory tracing and easy PID tuning

 

To increase contouring precision, new generation motion control cards use full closed-loop control to minimize errors and improve legacy control card efficiency, as indicated in Figure 9.

 

For high-precision trajectory-tracing, a PID controller is needed, with some new generation motion control cards providing easy tuning programs to facilitate quick PID parameter setting, as indicated in Figure 10:

Figure 9: Optimal trajectory tracing; the purple waves indicate errors
Figure 10: Easy tuning tools

Automatic velocity and trajectory planning

 

New generation motion control cards use algorithms generated by the SoftMotion module algorithm to compute out and automatically generate optimal contouring capacity.

 

The LookAhead function provided by SoftMotion can compute out and predict an upcoming angle in the trajectory, allowing the machine axes to slow and smoothly complete the required trajectory.

 

SoftMotion requires only three simple parameters to carry out operations, "max. velocity", "max. acceleration" and "error tolerance"( as shown in Figure 12). With these, the SoftMotion algorithm can compute and map out optimal kinematic trajectories for complex contours.

Figure 11: LookAhead function
Figure 12: MotionCreatorPro 2 velocity planning and setting

Demonstration

 

New generation motion control cards developed by ADLINK incorporate the new functions and technologies described to improve laser cutting quality and efficiency with optimal path tracing and minimized processing errors.

 

Table 1 shows specifications of the test machine, which uses servo motor and ball screw with maximum velocity at 800 mm/s. Optimal closed-loop PID parameters are acquired with ADLINK Easy-Tuning programs, which reduce errors to ±2 measuring units (±5µm in this case).

 

In this demonstration, a contour is processed (as Figure 13 shows) comprising 4,500 short lines, with errors at four round angles and four long straight lines presented in Table 2. The overall laser processing errors at round angles are less than 2.2µm and errors at long straight sides are less than 0.5µm.

 

From the enlarged images shown, it can be seen that laser energy was released within a range and distributed uniformly whereby the processed trajectory is smooth and without dithers. This demonstrates that ADLINK's new generation motion control card can realize not only ordinary multi-axis interpolation motion but also complex contouring processing with laser cutting. The test demonstrates the real time laser delivery strength and feedback tracing speed that can conserve CPU resources and guarantee processing efficiency.

Table 1: Test Equipment Specification
Figure 13: Easy tuning tools
Table 2: Trajectory Tolerance

ADLINK's advanced motion control card PCI-8254/8258 provides highly efficient motion control performance, using state-of-the-art DSP and FPGA technologies to offer high-speed and high-efficient hybrid analog and pulse command types. It also provides servo update rate up to 20 kHz through hardware-based PID-FF closed-loop control. With downloaded programs the ADLINK motion control cards can execute up to eight individual tasks simultaneously. ADLINK also provides a variety of easy-to-use tools including rich motion control functions and diagnosis and operational interfaces for users to realize faster and more precise motion control. SoftMotion technology enables significant reduction of development periods and provides superior synchronous motion control performance, saving up to 25% to 50% in costs for system integrators.

Conclusion

 

The laser processing industry will become increasingly prevalent in the future, with application in fields ranging from automobile body, smart phone, TV display panel, and device housing to medical areas such as dental fabrication and laser therapy. Highly efficient laser processing is also a positive response to carbon-reduction agendas, with many countries having invested heavily in laser processing technology to lead technological accomplishment. In the Greater China region, over 200 laser equipment manufacturers are competing for market share. However, faced with high-end products imported from Europe and the USA, these local manufacturers have to enhance their software capacities and product quality to gain a foothold in the market and increase revenue.

 

ADLINK Technology, Inc., with over 10 years of experience in developing and providing motion control technologies and long-term partnership with system integrators, has successfully incorporated complex velocity planning and laser power calculation into a single motion control card to allow users to focus on CAM trajectory planning without worrying about complex mathematic calculations. This creates market add-value and makes ADLINK products different. Looking into the future, the advance in use of 3D processing equipment will play the role of currently popular 2D CNC machine tools but with the added demand for more complex surface treatment capabilities.

PCI-8254/8258:
DSP-based 4/8-axis Advanced Motion Controllers


Related ADLINK Links:

  • More about ADLINK's advanced motion control card PCI-8254/8258
  • More about ADLINK Motion Control
Overcoming QA challenges in smart multimedia device manufacturing with state-of-the-art video testing 返回列表 Distributed Real-Time Motion & I/O Control System for Factory Automation
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