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
    • Frequency locker
    • 频率储物柜
    • US20050225825A1
    • 2005-10-13
    • US10512702
    • 2003-04-25
    • James FraserStephen PopeColin EdgeSteven BorleyLisa DaykinKevin Mullaney
    • James FraserStephen PopeColin EdgeSteven BorleyLisa DaykinKevin Mullaney
    • H01S5/0687H01S3/131H01S5/12H01S5/125G02F1/01G02B26/00
    • H01S5/0687H01S5/0612H01S5/0617
    • A method and assembly for frequency stabilisation of an optical signal especially from a laser, the assembly (11) comprising beam splitter (15), a passive frequency discriminator (16), and a pair of photodiodes (17 & 18). The beam splitter (15) in use receives a collimated optical beam (B) and diverts a sample beam (B1) which is directed towards the discriminator (16) which transmits a portion (B2) of said sample beam to one of the photodiodes (17) and reflects a second portion (B3) of said sample beam to the other photodiode (18). A control signal (S3) is derived from the respective intensities of the transmitted and reflected portions of the sample beam, and utilised to operate the electronic control to adjust the frequency of the laser output signal, if required, to maintain a specified frequency.
    • 一种用于特别是来自激光器的光学信号的频率稳定的方法和组件,包括分束器(15)的组件(11),无源鉴频器(16)和一对光电二极管(17和18)。 使用的分束器(15)接收准直光束(B)并且转向被引导到鉴别器(16)的样本光束(B 1 SUB),该鉴别器(16)透射一部分(B < 将所述样品光束的2π(2π)放大到所述光电二极管(17)中的一个,并将所述样品光束的第二部分(B 3/3)反射到另一个光电二极管(18)。 根据样品光束的透射和反射部分的各自强度导出控制信号(S 3/3),并且如果需要,则利用该电子控制来调节激光输出信号的频率 ,保持指定的频率。
    • 2. 发明授权
    • Frequency locker
    • 频率储物柜
    • US07161725B2
    • 2007-01-09
    • US10512702
    • 2003-04-25
    • James FraserStephen PopeColin EdgeSteven BorleyLisa DaykinKevin Mullaney
    • James FraserStephen PopeColin EdgeSteven BorleyLisa DaykinKevin Mullaney
    • G02B26/00G02B27/10G02B27/30H01S3/10H04J14/02
    • H01S5/0687H01S5/0612H01S5/0617
    • A method and assembly for frequency stabilization of an optical signal especially from a laser, the assembly (11) comprising beam splitter (15), a passive frequency discriminator (16), and a pair of photodiodes (17 & 18). The beam splitter (15) in use receives a collimated optical beam (B) and diverts a sample beam (B1) which is directed towards the discriminator (16) which transmits a portion (B2) of said sample beam to one of the photodiodes (17) and reflects a second portion (B3) of said sample beam to the other photodiode (18). A control signal (S3) is derived from the respective intensities of the transmitted and reflected portions of the sample beam, and utilized to operate the electronic control to adjust the frequency of the laser output signal, if required, to maintain a specified frequency.
    • 一种用于特别是来自激光器的光学信号的频率稳定的方法和组件,包括分束器(15)的组件(11),无源鉴频器(16)和一对光电二极管(17和18)。 使用的分束器(15)接收准直光束(B)并且转向被引导到鉴别器(16)的样本光束(B 1 SUB),该鉴别器(16)透射一部分(B < 将所述样品光束的2π(2π)放大到所述光电二极管(17)中的一个,并将所述样品光束的第二部分(B 3/3)反射到另一个光电二极管(18)。 根据样品光束的透射和反射部分的各自强度导出控制信号(S 3/3),并且如果需要,则利用该电子控制来调节激光输出信号的频率 ,保持指定的频率。
    • 5. 发明授权
    • High emissivity article having multiple layers of a material of high
internal stress
    • 具有多层材料的高内应力的高发射制品
    • US4850660A
    • 1989-07-25
    • US79237
    • 1987-07-29
    • David P. JonesKevin Mullaney
    • David P. JonesKevin Mullaney
    • B64G1/44B64G1/58C03C17/34G02B1/10G02B1/11G02B5/28H01L31/04H01L31/042
    • G02B1/115
    • The article, typically for use in man-made satellites, has high emissivity and low reflectance in the thermal infra-red wavebands between 6 and 30 microns, and also in the visible wavebands. The article is employed either to cover individual solar-cells, thereby protecting the cells from ionizing radiation and micro-meteoroids, and to protect the adhesive bonding the article to the solar cell from u-v light, or as a thermal control mirror to prevent heat build-up. The article has good emissivity in the thermal waveband regions, so the cell can be maintained at a relatively low temperature. The article employs a high internal stress material and a preferred embodiment comprises a glass substrate having a high emissivity coating comprising a stack of multiple relatively thin alternate layers of dysprosium fluoride and silicon oxide disposed immediately adjacent the substrate, and on the other hand, disposed above these layers, remote from the substrate, an anti-reflection coating comprising alternate layers of erbium oxide and dysprosium fluoride and an upper layer of silicon oxide.
    • 通常用于人造卫星的文章在6至30微米之间的热红外波段以及可见波段中具有高发射率和低反射率。 该物品用于覆盖单个太阳能电池,从而保护细胞免受电离辐射和微流星体的影响,并保护粘合物件免受紫外光的太阳能电池的粘合剂,或作为热控制反射镜以防止发热 -向上。 该物品在热波段区域具有良好的发射率,因此电池可以保持在较低的温度。 该制品采用高内部应力材料,并且优选实施例包括具有高发射率涂层的玻璃基板,其包括与紧邻基板相邻设置的多个相对薄的氟化镝交替层和氧化硅的叠层,另一方面, 这些层远离衬底,包含氧化铒和氟化镝的交替层和氧化硅上层的防反射涂层。