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    • 1. 发明授权
    • Apparatus and method for non-destructive, low stress removal of soldered electronic components
    • 用于焊接电子部件的非破坏性,低应力消除的装置和方法
    • US06320163B2
    • 2001-11-20
    • US09736589
    • 2000-12-13
    • Christian BergeronRaymond LordMario Racicot
    • Christian BergeronRaymond LordMario Racicot
    • B23K300
    • B23K1/018B23K2101/40G06F11/26
    • Circuit chips, such as known good die (KGD) chips, are removed from an assembly including a plurality of circuit chips attached to at least one chip carrier, or substrate. The substrate is held within a top plate with the circuit chips positioned within successive chip cavities within a bottom plate. Each chip cavity includes a load surface separated by a cascade effect pitch with respect to adjacent chip cavities. A cascade effect shear force is sequentially applied to the circuit chips to remove them from the substrate. The chips may be heated to a temperature facilitating shear within a temperature range at which solder connections are solid, and the chips further heated following disassembly to a temperature at which the solder is liquid to facilitate reforming the solder for subsequent attachment of the chip into an electronic device.
    • 诸如已知的良好裸片(KGD)芯片的电路芯片从包括连接到至少一个芯片载体或衬底的多个电路芯片的组件中移除。 基板被保持在顶板内,其中电路芯片位于底板内的相继的芯片空腔内。 每个芯片腔包括相对于相邻的芯片腔由级联效应间距分开的负载表面。 将级联效应剪切力依次施加到电路芯片以将其从衬底移除。 芯片可以被加热到在焊料连接是固体的温度范围内有助于剪切的温度,并且芯片在拆卸之后进一步加热到焊料是液体的温度,以便于重新形成焊料以便随后将芯片连接到 电子设备。
    • 2. 发明授权
    • Cordless soldering iron and electrical continuity testing device
    • 无绳烙铁和电气连续性测试装置
    • US06797924B1
    • 2004-09-28
    • US09726546
    • 2000-08-18
    • Dragos AxinteGrigore Axinte
    • Dragos AxinteGrigore Axinte
    • B23K300
    • B23K3/0307B23K3/0323
    • The present invention provides a soldering iron with a graphite tip having two separate halves that are electrically isolated from one another. The tip halves are each electrically connected to the opposite sides of an electrical power source. When both halves of the tip are applied to an electrically conductive material, such as the material to be soldered, an electrical circuit between the tip halves and electrical power source is completed. The halves are of the tip are constructed from material semi-conductive electrically and having high thermal conductivity. Therefore, the tip can reach operating temperatures quickly. When the tip is removed from the joint, the electrical circuit is broken and the tip material may quickly cool to a temperature safe for human contact. Because electricity is only able to flow when the two pieces of the tip are electrically connected, no separate switch is required. The tip material permits higher power outputs than other battery operated portable soldering irons and permits over 300 joints for each full charge. The soldering iron also includes a light disposed on the case to illuminate the tip and joint. However, the light is controlled by a separate switch and permits the tool to be used to illuminate the operator's surroundings without the risk of damage to persons or property from a heated tip. The tool also includes an electrical lead connected in series with the lamp, the power source, and a continuity testing probe. This aspect of the invention permits the tool to function as a continuity tester.
    • 本发明提供一种具有石墨端头的烙铁,其具有彼此电隔离的两个分离的半部。 末端半部电连接到电源的相对侧。 当尖端的两半被施加到诸如要焊接的材料之类的导电材料上时,末端半部和电源之间的电路完成。 尖端的一半由电导率为半导体的材料构成,具有高导热性。 因此,尖端可以快速达到工作温度。 当尖端从接头移除时,电路断开,并且尖端材料可能会快速冷却至人体接触的安全温度。 因为只有当两片尖端电连接时才能够流动,所以不需要单独的开关。 尖端材料允许比其他电池操作的便携式烙铁更高的功率输出,并允许每次充满电超过300个接头。 烙铁还包括设置在壳体上以照亮尖端和接头的光。 然而,灯由单独的开关控制,并且允许该工具用于照亮操作者的周围环境,而不会由加热的尖端造成人身伤害或财产损失。 该工具还包括与灯串联电源,电源和连续性测试探头。 本发明的该方面允许该工具用作连续性测试仪。
    • 3. 发明授权
    • Iron tip and electric soldering iron
    • 铁尖和电烙铁
    • US06818862B2
    • 2004-11-16
    • US10264718
    • 2002-10-04
    • Takashi UetaniMitsuhiko Miyazaki
    • Takashi UetaniMitsuhiko Miyazaki
    • B23K300
    • B23K3/0369B23K3/025C23C26/02C23C30/00
    • In an iron tip for a soldering iron, composed of Fe plated copper or copper alloy, an outer surface excluding a solder coating portion in a leading end portion of the iron tip is plated with Cu in a film thickness range of approximately 10 to 50 &mgr;m, the surface is coated with a mixture of Al particles and flux, only the Al particles are melted in an inert gas atmosphere, and the surface is modified into a surface with a Cu—Al alloy coated layer having a high Al concentration. As a result, without using Cr plating, it is possible to provide an electric soldering iron having an excellent resistance to oxidation under high temperature environment and a high heat conductivity.
    • 在由Fe镀铜或铜合金构成的烙铁的铁尖中,铁尖的前端部除了焊料涂敷部的外表面镀有大约10〜50μm的膜厚范围的Cu 表面被Al颗粒和焊剂的混合物涂覆,只有Al颗粒在惰性气体气氛中熔化,并且用具有高Al浓度的Cu-Al合金涂层将表面改性为表面。 结果,在不使用镀Cr的情况下,可以提供在高温环境下具有优异的抗氧化性和高导热性的电烙铁。
    • 6. 发明授权
    • Soldering iron with heated gas flow
    • 烙铁加热气流
    • US06633021B2
    • 2003-10-14
    • US10000797
    • 2001-12-04
    • Kensei Matubara
    • Kensei Matubara
    • B23K300
    • B23K3/02B23K1/012B23K3/0376B23K3/0471
    • It is an object to provide a solder iron such that in the solder iron for blowing out a heating gas flow to a periphery of a forward end tip, the heating gas flow having stable temperature is generated. A nozzle section is provided to a forward end tip heated by heating means of a solder iron main body, an orifice section is formed between a heating gas flow generating chamber and the nozzle section, and a back pressure of thermally expanded heating gas and a pressure of gas successively supplied are balanced in the heating gas flow generating chamber.
    • 本发明的目的是提供一种焊铁,使得在用于吹出向前端尖端的周边的加热气流的焊铁中,产生具有稳定温度的加热气流。 喷嘴部分设置在由焊铁主体的加热装置加热的前端尖端上,在加热气体流产生室和喷嘴部之间形成有孔部分,并且热膨胀加热气体的背压和压力 连续供应的气体在加热气体发生室中平衡
    • 8. 发明授权
    • Centrifuge tile
    • 离心瓦
    • US06230960B1
    • 2001-05-15
    • US09433192
    • 1999-10-25
    • John Alexander Deschamps
    • John Alexander Deschamps
    • B23K300
    • B04B1/2008
    • A method of installing tiles via interposed tile carriers on a scroll of a centrifuge comprises mounting each tile carrier (11) prior to a welding step in the required position on a centrifuge flight by means of an individual tile clamp (32), with mechanical inter-engagement between each carrier (11) and its clamp (32), thus positioning each carrier (11) in the same position relative to its clamp (32) on each application, the tile clamps (32) being of a set width, so that when mounted side by side they pitch the carriers (11) so that when the tiles (10) are inserted there are no gaps between the tiles, thus giving a smooth surface without having to dress the tiles. Mounting is followed by welding the carriers (11), whilst held in position by the tile clamps to the centrifuge flight. The tile clamps; are then removed and once the tile carriers have cooled down to ambient temperature the tiles (10) are inserted and secured to their respective carriers (11). The invention also includes a method of inserting a dovetail ribbed tile (10) into a dovetail grooved carrier (11), and also a certrifuge flight (31) or scroll incorporating such tiles and carriers, and also a centrifuge incorporating such a scroll.
    • 一种通过插入的瓦片承载件将瓦片安装在离心机的涡卷上的方法包括:在通过单独瓦片夹(32)在离心机飞行之间的焊接步骤之前将每个瓦片托架(11)安装到所需位置, (11)和其夹具(32)之间的接合,从而将每个载体(11)相对于每个应用上的夹具(32)定位在相同的位置,瓦片夹具(32)具有设定的宽度,因此 当并排安装时,它们对载体(11)进行调节,使得当瓷砖(10)插入时,瓷砖之间没有间隙,从而给出光滑的表面而不必对瓷砖进行打包。 安装后,通过焊接载体(11),同时通过瓦片夹固定到离心机飞行。 瓷砖夹 然后被去除,并且一旦瓦片承载件已经冷却到环境温度,瓦片(10)被插入并固定到它们各自的托架(11)上。 本发明还包括将燕尾肋瓦片(10)插入到燕尾槽槽托架(11)中的方法,以及将这种瓦片和载体以及包含这种涡旋件的离心机结合在一起的离心机(31)或滚动体的方法。
    • 9. 发明授权
    • Temperature adjusting device for a soldering iron
    • 烙铁温度调节装置
    • US06833531B1
    • 2004-12-21
    • US10635802
    • 2003-08-05
    • Hiroyuki Masaki
    • Hiroyuki Masaki
    • B23K300
    • B23K3/033
    • Disclosed is a temperature adjusting device for adjusting or setting temperature of a soldering iron, with the adjustment or setting being allowed to a particular authorized operator. The device comprises a temperature control section having a moveable member which is moveable to change an electric parameter, such as a resistance, as a function of the movement of the moveable member, the temperature control section controlling the temperature of the soldering iron in accordance with the electric parameter; a manipulation member detachably coupled to the moveable member to move the moveable member to change the electric parameter; and an indicator interrelated with the moveable member to indicate an adjusted temperature, the indicator being capable of making the indication even when the manipulation member has been detached from moveable member.
    • 公开了一种用于调节或设置烙铁温度的温度调节装置,其特征在于允许特定的授权操作者进行调节或设定。该装置包括温度控制部分,其具有可移动的部件,可移动以改变电参数, 作为电阻,作为可移动部件的移动的函数,温度控制部分根据电参数控制烙铁的温度; 操作构件,其可拆卸地联接到所述可移动构件以移动所述可移动构件以改变所述电参数; 以及与可移动构件相关联的指示调节温度的指示器,即使当操作构件已经从可移动构件分离时,该指示器也能够进行指示。