- 3D Micromac
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- ES Laser
- eurolaser
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- Femtum
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- Finisar Corporation
- Fisba
- Fonon Corporation
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- Full Spectrum Laser
- Luna Innovations
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- Geola Digital Ltd.
- Global Laser Ltd
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- Hornet Manufacturing
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- IB Laser Consulting Inc.
- ID Photonics GmbH
- ID Quantique
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- Ingeneric
- Innovative Laser Technologies LLC
- IP Systems LLC
- IPG Photonics
- Iradion Laser, Inc.
- Irisiome Solutions
- JGM Associates Inc
- Kern Electronics & Lasers Inc
- L3Harris Technologies, Inc.
- Kryptronic Technologies
- Lambda Photometrics Ltd
- Lansdale Semiconductor Inc
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- MicroMaterials
- Midwest Laser Products LLC
- Millennium Lasers
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- MKS Instruments
- Modu-Laser
- Monocrom
- MPB Communications Inc.
- MPS Micro Precision Systems AG
- Mundt
- National Laser Company
- NETGATE Metric Solutions GmbH
- nLight
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- PhotoMachining
- Photon Energy GmbH
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- PicoQuant
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- PolarOnyx
- Power Technology Inc.
- PPI Systems
- Polaris Motion
- Precitec
- Prima Power Laserdyne LLC
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- RAM Photonics LLC
- Rayscience Optoelectronics Innovations Co Ltd
- ScannerMax
- Scitec Instruments Ltd.
- Shanghai HXF-LaiYi
- SI Engineering GmbH
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- SIOS Messtechnik GmbH
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- STC Catalysts Inc
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- Synrad - A Novanta Company
- Thinklaser
- TLC International
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- ULT AG
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- WL Photonics Inc.
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- Laserse Inc.
- Wisely Laser Machinery Limited
- Suzhou Yosoon Laser Equipment Co., Ltd
- Optizone Technology
- Suzhou Delphi Laser Co., Ltd
- Nanjing Metalaser Photonics Co.,Ltd.
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- ALPhANOV
- APE Angewandte Physik & Elektronik GmbH
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- Avesta Ltd.
- Azur Light Systems
- B&W Tek, Inc.
- Bright Solutions
- Cavitar Ltd
- Chromacity
- Clark-MXR, Inc
- 相干公司
- CorActive High-Tech
- CryLaS GmbH
- CrystaLaser
- Dausinger + Giesen
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- Edinburgh Instruments
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- IDIL Fibres Optiques
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- MKS | Newport
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- NUBURU
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- O.R. Lasertechnology
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- Photonics Industries
- PhotonTec Berlin
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- Powerlase Limited
- Precision Laser Scanning, LLC
- Precision Micro-Optics
- ProPhotonix
- Q-Peak
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- Quantifi Photonics
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- Quantum Light Instruments
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- Radiant Dyes Laser
- Radiantis
- RAM Photonics
- Ray Technologies
- Redfern Integrated Optics
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- The Optoelectronics Company Ltd
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- Wavelength Opto-Electronic
- Wavelength References
- WORKSHOP OF PHOTONICS
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- Cymer
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- VI Systems GmbH
- Optowell
- Pure Photonics
- BluGlass Limited
- 朗研光电
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- Purex International Ltd
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- ALTER
- Leonardo DRS
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RSS拉曼散射抑制器
厂家:TeraXion
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Med-2系列HPR高功率反射器
厂家:TeraXion
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PWS-TPSR-X 1.1 激光器
厂家:TeraXion
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Skylark 780 NX CW C-DPSS激光器
厂家:Skylark Lasers
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Skylark 640 NX C-DPSS激光器
厂家:Skylark Lasers
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Skylark 532 NX C-DPSS激光器
厂家:Skylark Lasers
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类型: Laser System 工作模式: CW Laser 可调谐: Yes 激光颜色: Visible, Infrared 功率: up to 250 mW
MOGLABS的可调谐猫眼激光器(CEL)是外腔二极管激光器,工作波长为450-530 nm和630-1620 nm.它提供高达250 W的输出功率,并具有猫眼反射器和Ultranarrow滤波器,可以取代传统Littman-Metcalf和Littrow设计的对准敏感衍射光栅。该激光器具有小于20kHz的线宽,并且是鲁棒的、稳定的和声学惰性的。它采用经济型紧凑型机箱,尺寸为108 X 70 X 83 mm,非常适合激光冷却和捕获、玻色-爱因斯坦凝聚、捕获离子量子计算、量子光学、电磁透明和慢光、时间和频率标准以及激光光谱学应用。
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波长: 450 – 530nm; 630 – 1620nm 光束直径: Typically 0.6 x 0.3mm; diode-dependent 冷却方式: Water cooling connections optional (usually not required) 调制频率: 20MHz bandwidth, AC or DC coupled, <20ns phase delay RF bias tee option: >2.5GHz bandwidth
MOGLabs 的猫眼二极管激光器为外腔二极管激光器带来了新的变化。猫眼反射器和超窄滤光片取代了传统 Littrow 和 Littman-Metcalf 设计中对准敏感的衍射光栅。
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波长: 368-1612 nm 光束直径: Typically 1mm x 2mm to 1.5mm x 4mm; diode-dependent 冷却方式: Water cooling connections optional (usually not required) 调制频率: 20MHz bandwidth, AC or DC coupled, 20ns latency RF bias tee option: >2.5GHz bandwidth
我们的增强型 Littrow 配置扩展腔二极管激光器采用单体式底盘。没有螺旋弹簧振动。该激光器由一整块铝合金加工而成,结构紧凑、坚固、稳定。精确、可重复的垂直对准和光栅旋转是解耦的,这样就可以通过二极管增益曲线调整几十纳米的波长,而无需重新对准。较长波长的线宽低于 100kHz,蓝色波长的线宽通常为 200kHz。LDL 激光器专为波长为 370nm 至 500nm 的波长而设计,密封性好,可减少外部气压变化的影响。
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波长: 630-1064 nm 光束直径: Typically 1.8 x 3.0 mm, wavelength dependent 功率: 250mW, 500mW, 1W, 2W, 3W and 4W options, wavelength dependent 激光头尺寸: 300 x155 x93mm (LxWxH) 冷却方式: Quick-fit water cooling, φ 6mm
MOGLabs 的 MSA 系列放大激光器是一种紧凑、坚固、稳定的系统,集成了种子激光器和锥形放大二极管,可提供高达 4W 的光输出。 输入和输出耦合透镜采用线切割挠性安装设计,具有出色的无源稳定性,并便于用户在 TA 芯片达到使用寿命后进行更换。 可使用多种隔离器,包括孔径为 4 毫米的紧凑型隔离器和孔径为 5 毫米的双级隔离器。 MSA 种子放大器使用 MOGLabs 独特的固有自对准猫眼激光器,具有极低的频率漂移和优秀的无源线宽。
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波长: 630-1064 nm 光束直径: Typically 1.8 x 3.0 mm, wavelength dependent 功率: 250mW, 500mW, 1W, 2W, 3W and 4W options, wavelength dependent 激光头尺寸: 300 x155 x93mm (LxWxH) 冷却方式: Quick-fit water cooling, φ 6mm
有三种型号可供选择。全尺寸 MOA 具有 MSA 的所有功能,包括在输入和输出端提供单级或双级隔离器,以及自由空间或光纤耦合输入和输出。MOA-L 是一种精简机箱,适用于输入端不需要隔离器的情况。MOA-C 非常紧凑,适合自己动手的研究人员,不提供内部隔离器。 所有三个版本都采用了与 MSA 系统相同的线切割挠性安装,用于输入和输出耦合透镜,以提供出色的被动稳定性,并在必要时方便用户更换 TA 二极管。通过使用精心设计的光学器件,MOGLabs 实现了极高的耦合效率,根据波长和输出功率的不同,种子输入功率可能只有几毫瓦。 对于 MOA 和 MOA-L,输出可分为两束,一束为自由空间光,另一束为自由空间光或光纤耦合光。
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波长: 370-530 nm 光束直径: Typically 1.8 x 3.0 mm, wavelength dependent 功率: 100mW to 1W, wavelength dependent 激光头尺寸: 300 x155 x93mm (LxWxH) 冷却方式: Quick-fit water cooling, φ 6mm
MOGLabs 已开发出用于稳定法布里-珀罗 (FP) 激光二极管注入锁定的新技术。注入锁定历来受到环境漂移极端敏感性的困扰:温度、对准或电流的微小变化都可能导致放大器二极管偏离锁定。我们开发了一种自动跟踪系统,可持续监控激光器并对放大器二极管进行微小调整,以保持锁定。
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电源稳定性: 2% RMS 波长: 1060 – 1090nm, 6 W 1550 – 1570nm, 18 W 775 – 785nm, > 4 W (via SHG) 工作温度: 20 ± 10 °C 功率: 500 mW to 20 W (wavelength dependent) 激光头尺寸: 422 x 88.5 x 400 (WxHxD), 7kg
MOGLabs MFE 是基于掺铒和掺镱有源光纤的模块化高功率光纤放大器系统。 它使用内部或外部种子激光器和多达三个放大级,输出功率从 500 mW 到 20 W。 掺镱有源光纤的工作波长范围为 1000 至 1100 nm,掺铒有源光纤的工作波长范围为 1530 至 1610 nm。 外部二次谐波发生(SHG)模块可通过标准 USB-C 电缆直接连接到放大器。 目前可用的波长和峰值功率 1060 - 1090nm, 6 W 1550 - 1570 纳米,18 W 775 - 785 纳米,4.3 W(通过 SHG)