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    • 1. 发明申请
    • ULTRAVIOLET EMITTER FOR USE IN A FLAME DETECTOR AND A METHOD OF MAKING THE SAME
    • 用于火焰探测器的超紫外线发射器及其制造方法
    • WO2016111886A1
    • 2016-07-14
    • PCT/US2015/067871
    • 2015-12-29
    • CARRIER CORPORATION
    • FOLLETT, Gary, J.
    • G08B29/14G08B17/12H01J61/76H01J61/16H01J61/30H01J9/38H01J9/24H01J47/08
    • G08B17/12F23N5/082F23N2027/14G08B17/00G08B29/145H01J9/24H01J9/38H01J47/08H01J61/16H01J61/302H01J61/76
    • A flame detector including an ultraviolet emitter configured to emit ultraviolet light at a strike voltage less than or equal to approximately 230 volts. A method of manufacturing an ultraviolet emitter for use in a flame detector, the ultraviolet emitter including a hermetically sealed, alkali rich, ultraviolet transmissive glass envelope, the method including: (a) wrapping an envelope exterior surface with a conductive material; (b) performing a first injection of at least one non-radioactive gas into the glass envelope at a first pressure; (c) applying a voltage bias to the glass envelope; (d) baking the hermetically sealed, alkali rich, ultraviolet transmissive glass envelope at a baking temperature for a baking duration of time; (e) cooling the hermetically sealed, alkali rich, ultraviolet transmissive glass envelope to a desired temperature; and (f) performing a second injection of at least one non-radioactive gas into the glass envelope at a second pressure.
    • 一种火焰检测器,包括配置成以小于或等于约230伏的冲击电压发射紫外光的紫外线发射器。 一种制造用于火焰检测器的紫外线发射器的方法,所述紫外线发射器包括密封的,富碱的,紫外线透射的玻璃外壳,所述方法包括:(a)用导电材料包封外壳表面; (b)在第一压力下将至少一种非放射性气体首先注入玻璃封套; (c)向玻璃封套施加电压偏置; (d)在烘烤温度下烘烤密封的,富碱的紫外线透明玻璃罩,烘烤持续时间; (e)将密封的,富碱的,紫外线透射的玻璃外壳冷却至期望的温度; 和(f)在第二压力下进行至少一种非放射性气体的第二次注入到玻璃封套中。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR EVACUATING A CHAMBER PRIOR TO ITS FILLING WITH A NOBLE GAS
    • 用于在将气囊填充到气囊前排出室的方法和装置
    • WO2006100428A1
    • 2006-09-28
    • PCT/GB2006/000809
    • 2006-03-07
    • THE BOC GROUP PLCGRANT, Robert, Bruce
    • GRANT, Robert, Bruce
    • H01J9/38H01J9/39H01J61/76
    • H01J9/38H01J9/395
    • A method is described for suppressing the contamination of a noble gas used in the processing of a device within a process chamber. The method comprises the steps of supplying a purge gas to a process chamber, the purge gas being substantially free from noble gas; suppressing the ingress of air into the chamber as a device is inserted into the purge gas-filled chamber; and, prior to supplying noble gas to the evacuated chamber for device processing, at least partially evacuating the chamber by drawing the purge gas therefrom. By suppressing the contamination of the noble gas with other noble gases in this manner, the subsequent recovery of the noble gas from the gas stream can be facilitated, and the lifetime of the noble gas can be increased before it requires replacement.
    • 描述了一种用于抑制在处理室内的装置的处理中使用的惰性气体的污染的方法。 该方法包括以下步骤:向处理室供应吹扫气体,吹扫气体基本上不含惰性气体; 当装置插入吹扫充气室中时,抑制空气进入室内; 并且在将惰性气体供应到用于装置加工的真空室之前,通过从其抽出吹扫气体至少部分地抽空该室。 通过以这种方式抑制惰性气体与其它惰性气体的污染,可以促进随后从气流中回收稀有气体,并且可以在需要更换之前增加惰性气体的寿命。
    • 5. 发明申请
    • 放電光源
    • 放电光源
    • WO2007136033A1
    • 2007-11-29
    • PCT/JP2007/060370
    • 2007-05-21
    • NUエコ・エンジニアリング株式会社堀 勝加納 浩之
    • 堀 勝加納 浩之
    • H01J61/16H01J61/067H01J61/76H05B31/26
    • H01J61/86H01J61/0732H01J61/16H01J61/28
    • The present invention aims to provide a light-emitting device as a point light source having a broad emission spectrum by a safe and simple process. Specifically disclosed is a discharge light source comprising an insulated pipe (30) and electrodes (31a, 31b) as shown in Fig. 1. Projections (32a, 32b) respectively protrude from the electrodes (31a, 31b). By applying a voltage to the electrodes (31a, 31b) while flowing an argon gas between the projection (32a) and the projection (32b) through the insulated pipe (30), a glow discharge is produced between the projection (32a) and the projection (32b), thereby emitting light. Since the distance between the projection (32a) and the projection (32b) is very narrow, the emission area is small, thereby forming a point light source. By increasing the flow rate of the gas, luminous intensity is increased and thus there can be obtained a wide continuous emission spectrum from ultraviolet to visible region.
    • 本发明的目的在于提供一种通过安全且简单的方法具有宽发射光谱的点光源的发光装置。 具体公开的是包括绝缘管(30)和如图1所示的电极(31a,31b)的放电光源。 突起(32a,32b)分别从电极(31a,31b)突出。 通过在通过绝缘管(30)在突起(32a)和突起(32b)之间流动氩气的同时向电极(31a,31b)施加电压,在突起(32a)和 突起(32b),从而发光。 由于突起(32a)和突起(32b)之间的距离非常窄,所以发射面积小,从而形成点光源。 通过增加气体的流量,增加发光强度,从而可以获得从紫外到可见光区域的宽的连续发射光谱。
    • 6. 发明申请
    • METHOD FOR THE EXCITATION OF A PLASMA AND A USE OF THE METHOD
    • 用于激发等离子体的方法和方法的使用
    • WO00044207A1
    • 2000-07-27
    • PCT/DK2000/000018
    • 2000-01-18
    • H05H1/46B01J19/08C08F2/52C23C14/34H01J37/32H01J61/76H05H1/24H05H1/34
    • H01J37/32009C08F2/52H05H1/46H05H2001/466H05H2001/4682Y10T428/31547
    • A method for the excitation of a plasma in which a gas is subjected to an electric field by means of a plurality of electrode systems. According to the invention at least two separate electrode systems (1,2) are used which are power supplied from separate generators with the same frequency, the voltage variations of the generators being shifted in phase relative to each other such that a voltage zero never occurs at the same time in two of the electrode systems, a kind of rest period also occurring, in which there is no significant potential difference between the phases. As a result a pulsating plasma is obtained, as the plasma is generated by the potential difference between the phases. When there is no significant potential difference between the phases, an added substance may interact with its own functionality.
    • 用于激发等离子体的方法,其中通过多个电极系统对气体进行电场。 根据本发明,使用至少两个单独的电极系统(1,2),其是从具有相同频率的分离发电机供电的,发电机的电压变化相对于彼此相位偏移,使得不会发生电压零 同时在两个电极系统中,也发生一种休眠期,其中相之间没有显着的电位差。 结果,等离子体由于相间的电位差而产生脉冲等离子体。 当相之间没有显着的电位差时,添加的物质可能与其自身的功能相互作用。
    • 7. 发明申请
    • FLAT LIGHT EMITTER
    • 平点
    • WO98043279A1
    • 1998-10-01
    • PCT/DE1998/000829
    • 1998-03-20
    • H01J61/76H01J61/067H01J61/30H01J61/92H01J65/00H01J65/04
    • H01J61/0672H01J61/305H01J61/92H01J65/046
    • The invention relates to a flat light emitter (4) which is suitable for dielectrically impeded discharge. The inventive device comprises a discharge vessel (5) made of electrically non-conductive material fitted with strip-like electrodes (6, 7) which are arranged on the wall of said vessel (5). The cathodes (6) and the anodes (7a) are alternatively disposed next to each other. At least the anodes are separated from the inside of the discharge vessel (5) by means of a dielectric material (10). An additional anode (7b) is located between each adjacent cathode (6), i.e. a pair of anodes (7a, 7b) is respectively arranged between said cathodes (6). Such a design enables a homogenous discharge structure in addition to optimal usage of the discharge vessel.
    • 扁平散热器(4),适合于介电阻挡放电,具有放电管(5)的非导电材料的有,在放电容器(5),其布置带状电极的壁(6,7),其特征在于,阴极((6)和阳极 图7a)交替相邻排列的彼此,并且其中至少所述阳极(通过从放电管(5)的内部中的介电材料10)被分离。 相邻的阴极(6)之间是在每种情况下一个附加阳极(7B)被布置,即 相邻的阴极(6)之间是在每种情况下一个阳极对(7A,7B)设置。 这个均匀的放电结构进行放电室的最佳利用来实现的。