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- Innovations in Optics
- Innovative Laser Technologies LLC
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- Insight Photonic Solutions Inc
- IP Systems LLC
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- L3Harris Technologies, Inc.
- Lansdale Semiconductor Inc
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- Laser Americas
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- Power Technology Inc.
- Prima Power Laserdyne LLC
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- Radian Laser Systems
- RAM Photonics LLC
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- Selex Galileo Inc.
- SPDLasers
- Spectralus Corp
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- Synrad - A Novanta Company
- TLC International
- UC Instruments Corp
- Visotek Inc
- Vytek
- White Bear Photonics LLC
- Pranalytica, Inc
- Laserse Inc.
- Del Mar Photonics
- FLT INC
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- Ametek Programmable Power
- 大通激光
- AdValue Photonics
- 美国光波公司AOC
- Advanced Photonic Sciences
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- Analog Devices
- Analog Module Inc.
- Areté Associates
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- B&W Tek, Inc.
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- Broadcom
- CEL
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- Compound Photonics
- Cree LED
- Crystal IS, Inc.
- CrystaLaser
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- MKS | Newport
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- Nuphoton Technologies, Inc.
- Ocean Insight
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- Photonics Industries
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- Q-Peak
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- RAM Photonics
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- Research Electro-Optics, Inc.
- RMI Laser, LLC
- RPMC Lasers Inc.
- Samsung Semiconductors
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- SemiNex Corporation
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- Skyworks
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- Sparkle Optics Corporation
- MKS | Spectra-Physics
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- Wavelength References
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- Altos Photonics, Inc.
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- 海洋光学
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光电查为您提供8712个产品。下载资料,获取报价,实现功能、价格及供应的优化选择。
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波长: 354.7nm 平均值功率: 2W 重复频率: 30 - 30 kHz 空间模式: 1.2 脉宽: 30ns
3500系列DPSS激光器(美国专利#6,002,695)是市面上较高效的高功率准连续波DPSS紫外激光器。仅使用单个20W二极管棒,3500系列在355 nm下的功率超过3.0瓦。这种高效转换意味着激光器可以在正常规格下工作,对光学元件的应力较小,并且二极管电流降低,从而延长工作寿命。将激光器产生355nm三次谐波输出所需的二极管功率降至较低,也将增益介质(Nd:YV04)中的热效应降至较低,从而使光束的失真尽可能低。二次和三次谐波都是在腔内产生的,因此减少了对紧密聚焦到非线性晶体中的需要。其结果是稳定的高功率紫外激光器,M²规格为1.2,接近完美的TEMOO模式。
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波长: 354.7nm 平均值功率: 3W 重复频率: 30 - 30 kHz 空间模式: 1.2 脉宽: 30ns
3500系列DPSS激光器(美国专利#6,002,695)是市面上较高效的高功率准连续波DPSS紫外激光器。仅使用单个20W二极管棒,3500系列在355 nm下的功率超过3.0瓦。这种高效转换意味着激光器可以在正常规格下工作,对光学元件的应力较小,并且二极管电流降低,从而延长工作寿命。将激光器产生355nm三次谐波输出所需的二极管功率降至较低,也将增益介质(Nd:YV04)中的热效应降至较低,从而使光束的失真尽可能低。二次和三次谐波都是在腔内产生的,因此减少了对紧密聚焦到非线性晶体中的需要。其结果是稳定的高功率紫外激光器,M²规格为1.2,接近完美的TEMOO模式。
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FARO®3D-Contour是一种扫描解决方案,在紧凑的封装中提供3轴功能,适用于小到中等的视场尺寸。集成设计采用了FARO'的先进检流计技术,提供卓越的带宽、精度和灵活性,并集成了高带宽Z轴机构,用于在高轮廓表面上进行标记。FARO'的3轴扫描头设计为与我们的WinLase®激光扫描控制软件和过程控制器无缝操作,可轻松集成到工作站和装配线中。XY振镜对的自然焦面是一个浅球体。在平面样品上操作的一种解决方案是f-theta透镜,但是这些限制了视场大小、膨胀的激光点,并且是昂贵的。FARO的Blink高速调焦器是一个更好的解决方案。当用作物镜后扫描系统的聚焦元件时,Blink将聚焦校正动态映射到激光束上,作为其XY位置的函数,允许高速处理具有非常小的光斑尺寸的大平面样品,并支持3D样品的处理。Blink将精密地面导轨与直接音圈驱动相结合,使Avery紧凑型高性能调焦器能够以50G峰值正弦波连续运行。其超低的移动质量较大限度地减少了反作用力。由于只有一个移动部件,与传统的张紧带致动器相比,Blink提供了卓越的可靠性和使用寿命。当与3D-Contour结合使用时,它在425 mm的视场上提供了令人印象深刻的180 mm聚焦深度@96μm光斑尺寸!D-YAG)
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FARO®3D-XB扫描头设计用于提供大视野尺寸(从150 mm到2,000 mm),无需使用F-Thetalenses、XY工作台或台架。这种3轴技术提供了比标准f-θ扫描透镜更好的视场尺寸/光斑尺寸比。使用3D-XB扫描头,可以实现小至20μm的光斑尺寸和大至2 m X 2 m的扫描场。3D-XB能够改变磁场和光斑大小,提供了应用灵活性,这使得3D-XB非常适合工艺开发和工作车间设置。动态镜头平移器不断调整焦距,以产生平坦或轮廓场。只需转动旋钮调整工作距离,即可选择各种视场和光斑大小组合。精确、高性能的3D-XB用于各种激光波长的XY和XYZ应用中的光学扫描,是大多数激光应用的理想灵活工具。