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
    • 3. 发明授权
    • Method for manufacturing resonant cavity for laser
    • 激光谐振腔的制造方法
    • US5312472A
    • 1994-05-17
    • US950415
    • 1992-09-23
    • William A. Shull
    • William A. Shull
    • H01S3/034C03B27/02C03C25/02
    • H01S3/034
    • A method for affixing the optics of a laser to the laser tube, comprising: providing a substrate seat, coupling a substrate to the seat, coating the substrate with a multilayer thin film coating, and securing the substrate seat to the laser tube. In a further aspect, a method for manufacturing a resonant cavity is disclosed, the method comprising: providing a laser tube having first and second ends, securing a substrate mount, having a coated output coupler secured thereto, into one end of the laser tube, securing a substrate mount, having a coated reflecting mirror secured thereto, into the other end of the laser tube, and sealing the laser tube.
    • 一种用于将激光器的光学器件固定到激光管的方法,包括:提供衬底座,将衬底连接到座上,用多层薄膜涂层涂覆衬底,以及将衬底座固定到激光管。 在另一方面,公开了一种用于制造谐振腔的方法,所述方法包括:提供具有第一和第二端的激光管,将固定有涂覆输出耦合器的衬底安装件固定到激光管的一端, 将具有固定到其上的涂覆反射镜的基板安装件固定到激光管的另一端并密封激光管。
    • 4. 发明授权
    • Hybrid cooled ion laser
    • 混合冷却离子激光器
    • US5353293A
    • 1994-10-04
    • US54313
    • 1993-04-27
    • William A. Shull
    • William A. Shull
    • H01S3/032H01S3/041H01S3/04
    • H01S3/041H01S3/032
    • A high output, compact laser having a multi-line spectral output and an internal mirror, integral resonator design is disclosed. The laser structure comprises a laser tube containing a resonant cavity, an output coupler and an active medium. A power supply and coolant assembly are coupled to the laser tube. The coolant assembly is a hybrid coolant scheme wherein one portion of the tube is cooled by circulating water coolant, while another portion or portions are cooled by circulating air. In one aspect, the laser tube includes a ceramic bore surrounded by a sheath sealed at a first end and a second end of the ceramic bore, and coolant is provided between the sheath and the bore. In a further aspect, forced air is directed over a reservoir portion of the tube. The reservoir portion may be manufactured from a metallic alloy comprised of nickel iron cobalt with copper cooling fins brazed to the reservoir to increase thermal cooling efficiency and isothermal distribution of heat.
    • 公开了具有多线谱输出的高输出紧凑型激光器和内部反射镜。 激光器结构包括含有谐振腔的激光管,输出耦合器和活动介质。 电源和冷却剂组件耦合到激光管。 冷却剂组件是混合冷却剂方案,其中管的一部分通过循环水冷却剂而被冷却,而另一部分被循环空气冷却。 在一个方面,激光管包括由在第一端密封的护套和陶瓷孔的第二端围绕的陶瓷孔,并且在护套和孔之间提供冷却剂。 在另一方面,强制空气被引导到管的储存器部分上。 储存部分可以由包含镍铁钴和铜冷却翅片的金属合金制成,钎焊到储存器以增加热冷却效率和等温热分布。
    • 5. 发明授权
    • Laser mirror mounting device
    • 激光镜安装装置
    • US3953113A
    • 1976-04-27
    • US522093
    • 1974-11-08
    • William A. Shull
    • William A. Shull
    • G02B7/182H01S3/086G02B5/08
    • H01S3/086G02B7/1825
    • A laser mirror mounting device adapted to provide for the exchangeability of sets of mirrors associated with various wavelengths of operation of a multi-wavelength laser without requiring realignment of the laser after each set of mirrors is changed. A housing, attachable to a laser support apparatus, is provided and includes an adjustable internal reference surface. The mirror mounting device is adapted for positioning within the housing and includes an external reference surface for adjustment relative to the internal reference surface of the housing. The device further includes support means for supporting a mirror relative to the laser and an adjustment means for adjusting the angular relationship of the mirror relative to the external reference surface. A housing cover engages the device for maintaining the external reference surface of the device in firm contact with the internal reference surface of the housing. Accordingly, after initial adjustment of each set of mirror mounting devices the previously aligned sets may be exchanged without requiring further adjustment. Therefore, in changing the wavelength of operation of the laser, the mirror mounting devices may be interchanged at will without requiring realignment of the laser.
    • 一种激光镜安装装置,其适于提供与多波长激光器的各种波长的操作相关联的反射镜的可交换性,而不需要在每组反射镜之后重新对准激光器。 提供可附接到激光支撑装置的壳体,并且包括可调节的内部参考表面。 镜子安装装置适于在壳体内定位并且包括用于相对于壳体的内部参考表面进行调节的外部参考表面。 该装置还包括用于支撑相对于激光器的反射镜的支撑装置和用于调节反射镜相对于外部参考表面的角度关系的调节装置。 壳体盖与装置接合,用于将装置的外部参考表面与壳体的内部参考表面牢固接触。 因此,在对每组镜子安装装置进行初始调整之后,可以更换先前对准的组,而不需要进一步调整。 因此,在改变激光器的工作波长时,反射镜安装装置可以随意互换,而不需要激光的重新对准。
    • 7. 发明授权
    • Helium- Neon laser light source generating two harmonically related, single- frequency wavelengths for use in displacement and dispersion measuring interferometry
    • 氦 - 氖激光光源产生两个谐波相关的单频波长用于位移和色散测量干涉测量
    • US06724486B1
    • 2004-04-20
    • US09305808
    • 1999-04-28
    • William A. ShullCarl A. Zanoni
    • William A. ShullCarl A. Zanoni
    • G01B902
    • G01B9/02007G01B9/02002G01B2290/70G02F1/37G03F7/70775H01S3/109
    • The invention features a displacement and dispersion measuring interferometry system having a Helium-Neon laser light source. The light source can be a Helium-Neon laser that includes an intracavity doubling crystal and an intracavity etalon to generate two harmonically related, single-frequency wavelengths at sufficient powers for interferometric dispersion measurements. Alternatively, the light source can be a single-mode Helium-Neon laser that directs a single-frequency input beam into a resonant external cavity enclosing a doubling crystal to generate two harmonically related, single-frequency wavelengths at sufficient powers for interferometric dispersion measurements. In addition to dispersion measurements, the inherent wavelength stability of the Helium-Neon source permits high-accuracy displacement measurements. Thus, the Helium-Neon laser light source is sufficient for the interferometry system to simultaneously measure displacement and dispersion, and correct the displacement measurement for air-turbulence using the dispersion measurement.
    • 本发明的特征在于具有氦 - 氖激光光源的位移和色散测量干涉测量系统。 光源可以是氦氖激光器,其包括腔内倍增晶体和腔内标准具,以产生两个谐波相关的单频波长,具有足够的功率用于干涉色散测量。 或者,光源可以是单模式氦 - 氖激光器,其将单频输入光束引导到包围双晶体的谐振外腔中,以产生两个谐波相关的单频波长,具有足够的功率用于干涉色散测量。 除了色散测量之外,氦氖源的固有波长稳定性允许高精度位移测量。 因此,氦氖激光光源足以使干涉测量系统同时测量位移和色散,并使用色散测量校正空气湍流的位移测量。
    • 8. 发明授权
    • Bore support assembly and a method of laser construction
    • 孔支撑组件和激光施工方法
    • US4866726A
    • 1989-09-12
    • US206819
    • 1988-06-15
    • Mark V. OrtizWilliam A. Shull
    • Mark V. OrtizWilliam A. Shull
    • H01S3/032
    • H01S3/0323
    • A bore support assembly is used in construction of an outer envelope of a laser and for supporting an inner bore tube of the laser near its free end. The bore support assembly includes a generally planar joiner ring having radially spaced outer and inner peripheries. At its outer periphery, it becomes rigidly attached to the interior of the envelope during formation of the latter from separate bore assembly tube and reservoir tube sections. Its inner periphery has a central opening receiving the bore tube. The bore support assembly also includes a spider structure and a preform element for attaching it to the exterior of bore tube. The spider structure has an outer peripheral portion attached to the inner periphery of the joiner ring so as to position the spider structure on one side of the joiner ring and along the central opening thereof. The spider structure also has an inner peripheral portion spaced radially inwardly from the outer peripheral portion and defining a second smaller central opening receiving the bore tube therethrough. A plurality of resiliently flexible spokes extend radially between and integrally interconnect the outer and inner peripheral portions. The joiner ring has a plurality of heat transmission limiting apertures defined through it between its inner and outer peripheries.
    • 孔支撑组件用于激光器的外包层的构造,并用于在其自由端附近支撑激光器的内孔管。 孔支撑组件包括具有径向隔开的外周和外周的大体平面的接合环。 在其外周边,由单独的孔组件管和储存器管段形成时,其刚性地附接到信封的内部。 其内周边具有接收钻孔管的中心开口。 孔支撑组件还包括一个蜘蛛结构和用于将其附接到孔管外部的预成型件元件。 该蜘蛛结构具有附接到接合环的内周的外周部,以将该蜘蛛结构定位在该接合环的一侧并且沿其中心开口。 所述蜘蛛结构还具有从所述外周部分径向向内隔开的内周边部分,并限定通过其接收所述孔管的第二较小中心开口。 多个弹性柔性轮辐径向延伸并且使外围和内周部分整体互连。 接合环具有通过其在其外周和外周之间限定的多个传热限制孔。