会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SYSTEM FOR AND METHOD OF HEATING OBJECTS IN A PRODUCTION LINE
    • 在生产线上加热物体的系统和方法
    • US20100230863A1
    • 2010-09-16
    • US12518903
    • 2007-12-17
    • Holger MoenchJohannes BaierJaione Bengoechea ApezteguiaUlrich WeichmannSerge Monteix
    • Holger MoenchJohannes BaierJaione Bengoechea ApezteguiaUlrich WeichmannSerge Monteix
    • H05B6/00B29B13/02
    • B29B13/024B29C49/06B29C49/68B29C2035/0822B29C2035/0838B29K2067/00B29K2105/258H01S5/18388H01S5/426
    • A system and method (10) for heating objects (O) during a thermal treatment process in a production line (P) is described. The system (10) comprises a transport system (11), a minor arrangement (201, 202, 203, 204, 205, 206) comprising a first mirror surface (21, 21′, 21″) and a second minor surface (22, 22′, 22″) arranged at opposite sides, so that the objects (O) may be transported between the minor surfaces (21, 22, 21′, 22′, 21″, 22″) along the production line and a radiation device (30) comprising a number of lasers for generating light (L). The radiation device (30) and the mirror arrangement (201, 202, 203, 204, 205, 206) are constructed such that the main direction (R) of light (L) that enters the mirror arrangement (201, 202, 203, 204, 205, 206) is directed towards the first mirror surface (21, 21′, 21″) at an angle to the production line (P), and the light (L) subsequently undergoes multiple reflections between the mirror surfaces (21, 22, 21′, 22′, 21″, 22″) so that a series of multiple reflections of the light (L) travels in the transport direction (OT) along at least a section of the minor surface (21, 22, 21′, 22′, 21″, 22″) or travels against the transport direction (OT) along at least a section of the minor surface (21, 22, 21′, 22′, 21″, 22″) and heats the objects (O) being transported between the minor surfaces (21, 22, 21′, 22′, 21″, 22″).
    • 描述了用于在生产线(P)中的热处理过程期间加热物体(O)的系统和方法(10)。 所述系统(10)包括运输系统(11),包括第一镜面(21,21',21“)和第二次表面(22)的小布置(201,202,203,204,205,206) ,22',22“),使得物体(O)可沿着生产线在小表面(21,22,21',22',21”,22“)之间输送,并且辐射 装置(30)包括多个用于产生光(L)的激光器。 辐射装置(30)和反射镜装置(201,202,203,204,205,206)被构造为使得进入反射镜装置(201,202,205,206)的光(L)的主方向(R) 204,205,206)以与生产线(P)成一定角度指向第一镜面(21,21',21“),并且光(L)随后在镜面(21,21',21”)之间经历多次反射, 22,21',22“,21”,22“),使得光(L)的一系列多次反射沿着所述次表面(21,22,21)的至少一部分在输送方向(OT) ',22',21“,22”)或沿着所述小表面(21,22,21',22',21“,22”)的至少一部分沿着输送方向(OT)行进并加热物体 (21,22,21',22“,21”,22“)之间输送(O)。
    • 2. 发明申请
    • All-Solid State Uv Laser System
    • 全固态激光系统
    • US20080159339A1
    • 2008-07-03
    • US11816285
    • 2006-02-07
    • Ulrich WeichmannHolger Moench
    • Ulrich WeichmannHolger Moench
    • H01S5/06
    • H01S5/183B82Y20/00G03F7/7005H01S3/109H01S5/141H01S5/34333H01S5/423
    • The present invention relates to an all-solid state UV laser system comprising at least one semiconductor laser (10) in a VECSEL configuration. The gain structure (3) in this semiconductor laser (10) emits fundamental radiation in a wavelength range which can be frequency doubled to wavelengths in the UV region. The frequency doubling is achieved with a nonlinear optical crystal (6) for second harmonic generation arranged inside the extended cavity of the semiconductor laser (10). By electrically pumping of the semiconductor laser wavelengths below 200 nm can be efficiently generated with already known semiconductor materials like GaN. The proposed UV laser system is compact and can be fabricated and operated at low costs compared to UV excimer lasers.
    • 本发明涉及一种全固态UV激光系统,其包括VECSEL配置中的至少一个半导体激光器(10)。 该半导体激光器(10)中的增益结构(3)发射波长范围内的基本辐射,该波长范围可以被倍频到UV区域中的波长。 利用布置在半导体激光器(10)的扩展腔内部的用于二次谐波产生的非线性光学晶体(6)来实现倍频。 通过电泵浦半导体激光器,可以利用已知的诸如GaN的半导体材料有效地产生低于200nm的波长。 所提出的紫外激光系统是紧凑的,并且与UV准分子激光器相比可以以低成本制造和操作。
    • 5. 发明申请
    • SWITCHABLE DUAL WAVELENGTH SOLID STATE LASER
    • 可开关双波长固体激光器
    • US20120128023A1
    • 2012-05-24
    • US12672553
    • 2008-08-14
    • Ulrich WeichmannJaione Bengoechea ApezteguiaHolger Moench
    • Ulrich WeichmannJaione Bengoechea ApezteguiaHolger Moench
    • H01S3/08
    • H01S3/107H01S3/08054H01S3/0809H01S3/10061H01S3/1613H01S3/1638H01S3/1645H01S3/1653H04N9/3129H04N9/3161
    • The present invention relates to a switchable dual wavelength solid state laser with a solid state gain medium (1) which is selected to emit optical radiation at a first wavelength with a first polarization and of at least a second wavelength with a second polarization different from said first polarization when optically or electrically pumped. A polarizing device (7) is arranged within the laser cavity, said polarizing device (7) being adjustable at least between said first and said second polarization. The two end mirrors (2, 3) of the laser cavity are designed to allow lasing of the solid state laser at the first wavelength when the polarizing device (7) is adjusted to the first polarization, and to allow lasing of the solid state laser at the second wavelength when the polarizing device (7) is adjusted to the second polarization. The proposed solid state laser allows an easy switching between two emission wavelengths.
    • 本发明涉及具有固态增益介质(1)的可切换双波长固态激光器,其被选择为发射具有第一偏振的第一波长的光辐射和具有不同于所述第一偏振的第二偏振的至少第二波长 光学或电泵浦时的第一极化。 偏振装置(7)布置在激光腔内,所述偏振装置(7)至少在所述第一和所述第二极化之间是可调节的。 激光腔的两端镜(2,3)被设计成当偏振装置(7)被调节到第一偏振时允许固态激光器以第一波长的激光,并且允许固态激光器的激光 当偏振装置(7)被调节到第二偏振时,在第二波长处。 所提出的固态激光器允许在两个发射波长之间容易切换​​。
    • 7. 发明授权
    • Switchable dual wavelength solid state laser
    • 可切换双波长固态激光器
    • US08416832B2
    • 2013-04-09
    • US12672553
    • 2008-08-12
    • Ulrich WeichmannJaione Bengoechea ApezteguiaHolger Moench
    • Ulrich WeichmannJaione Bengoechea ApezteguiaHolger Moench
    • H01S3/08
    • H01S3/107H01S3/08054H01S3/0809H01S3/10061H01S3/1613H01S3/1638H01S3/1645H01S3/1653H04N9/3129H04N9/3161
    • The present invention relates to a switchable dual wavelength solid state laser with a solid state gain medium (1) which is selected to emit optical radiation at a first wavelength with a first polarization and of at least a second wavelength with a second polarization different from said first polarization when optically or electrically pumped. A polarizing device (7) is arranged within the laser cavity, said polarizing device (7) being adjustable at least between said first and said second polarization. The two end mirrors (2, 3) of the laser cavity are designed to allow lasing of the solid state laser at the first wavelength when the polarizing device (7) is adjusted to the first polarization, and to allow lasing of the solid state laser at the second wavelength when the polarizing device (7) is adjusted to the second polarization. The proposed solid state laser allows an easy switching between two emission wavelengths.
    • 本发明涉及具有固态增益介质(1)的可切换双波长固态激光器,其被选择为发射具有第一偏振的第一波长的光辐射和具有不同于所述第一偏振的第二偏振的至少第二波长 光学或电泵浦时的第一极化。 偏振装置(7)布置在激光腔内,所述偏振装置(7)至少在所述第一和所述第二极化之间是可调节的。 激光腔的两端镜(2,3)被设计成当偏振装置(7)被调节到第一偏振时允许固态激光器以第一波长的激光,并且允许固体激光器的激光 当偏振装置(7)被调节到第二偏振时,在第二波长处。 所提出的固态激光器允许在两个发射波长之间容易切换​​。
    • 8. 发明申请
    • VECSEL-PUMPED SOLID-STATE LASER
    • VECSEL泵浦固体激光器
    • US20100272145A1
    • 2010-10-28
    • US12747524
    • 2008-12-16
    • Ulrich WeichmannHolger Moench
    • Ulrich WeichmannHolger Moench
    • H01S3/0941
    • H01S5/14H01S3/0627H01S3/08072H01S3/09415H01S3/1022H01S5/026H01S5/183
    • The present invention relates to a solid-state laser system constituted bya solid-state laser whichis optically pumped by a vertical extended cavity surface emitting laser (VECSEL). The solid-state laser comprises a solid-state laser medium (11) arranged in a laser cavity which consists oftwo resonator cavitymirrors (10, 12), a first of saidcavity mirrors (12) being designed as an outcoupling mirror of saidsolid-state 5 laser and a second of saidcavity mirrors (10) being formed to allow optical pumping of saidsolid-state laser medium (11) through saidsecond cavity mirror (10). In the proposed solid-state laser system, the extended cavity mirror (7) of the VECSEL is constituted byone of the resonator cavity mirrors (10, 12) of the solid-state-laser. The proposed laser system provides an improved conversion efficiency and a highly 10 integrated design.
    • 本发明涉及一种由通过垂直扩展腔表面发射激光(VECSEL)光泵浦的固态激光器构成的固态激光器系统。 固体激光器包括布置在由两个谐振器腔镜(10,12)组成的激光腔中的固体激光介质(11),所述腔镜(12)中的第一个被设计为所述固体状态5的外耦合反射镜 激光器和所述腔镜(10)中的第二个被形成为允许所述固体激光介质(11)通过所述第二腔镜(10)进行光泵浦。 在所提出的固态激光系统中,VECSEL的扩展腔镜(7)由固态激光器的谐振器腔镜(10,12)构成。 所提出的激光系统提供了改进的转换效率和高度10集成的设计。