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    • 2. 发明申请
    • Loudspeaker having an interlocking magnet structure
    • 具有互锁磁体结构的扬声器
    • US20070223777A1
    • 2007-09-27
    • US11386359
    • 2006-03-22
    • Ryan MihelichJason SemmlerJohn Steere
    • Ryan MihelichJason SemmlerJohn Steere
    • H04R9/06
    • H04R9/025
    • A magnet structure for use with a loudspeaker may have an interlocking mechanism. The magnet structure may include a magnet, a shell pot and a core cap. The shell pot may contain the magnet in its hollow interior. The magnet may be a single magnet or double magnets. The core cap has two surfaces. For a single magnet, one surface of the core cap may face a magnet. For double magnets, the core cap may be vertically disposed between the two magnets. The magnet, the core cap and the shell pot may interlock with one another such that a position of the magnet relative to the core cap and the shell pot may be rigidly preserved. The magnet may be configured to be, for example, overlapped, inserted, staked and/or engaged with at least one of the shell pot or the core cap.
    • 用于扬声器的磁体结构可以具有互锁机构。 磁体结构可以包括磁体,壳体罐和芯盖。 壳罐可以在其中空的内部容纳磁体。 磁体可以是单个磁体或双磁体。 芯帽有两个表面。 对于单个磁体,芯帽的一个表面可面向磁体。 对于双磁体,芯帽可以垂直地设置在两个磁体之间。 磁体,芯帽和壳体罐可以彼此互锁,使得磁体相对于芯帽和壳体的位置可以被刚性地保持。 磁体可以被配置为例如与壳体罐或芯帽中的至少一个重叠,插入,固定和/或接合。
    • 3. 发明申请
    • Electro-dynamic planar loudspeaker
    • 电动平面扬声器
    • US20060233417A1
    • 2006-10-19
    • US11405856
    • 2006-04-18
    • John SteereHans-Juergen ReglSteven Hutt
    • John SteereHans-Juergen ReglSteven Hutt
    • H04R1/00
    • H04R31/006H04R1/06H04R1/345H04R7/04H04R9/047H04R31/003
    • A planar loudspeaker includes a shell pot, a magnet, a diaphragm, and a face plate. The magnet may be positioned in a cavity in the shell pot. The diaphragm may be coupled with the shell pot to cover an entrance to the cavity. The shell pot may include a conductive path having an inner contact proximate the central axis of the diaphragm, and an outer contact proximate to a perimeter of the diaphragm. The face plate may be coupled with the shell pot so that the diaphragm is positioned between the magnet and the faceplate. The face plate may include an inner terminal and an outer terminal that are aligned to be in direct contact with the respective inner contact and the outer contact of the diaphragm and form an electrical connection there between when the face plate is coupled with the shell pot. The inner and outer terminals may be coupled with a source of electrical signals, such as an audio amplifier. The face plate may also include a raised surface that deflects the diaphragm into a predetermined shape when the face plate is coupled with the shell pot.
    • 平面扬声器包括壳罐,磁铁,隔膜和面板。 磁体可以定位在壳罐中的空腔中。 隔膜可以与壳体罐连接以覆盖空腔的入口。 壳体罐可以包括导电路径,其具有靠近隔膜的中心轴线的内部接触件,以及靠近隔膜周边的外部接触件。 面板可以与壳体罐结合,使得隔膜位于磁体和面板之间。 面板可以包括内部端子和外部端子,其被定向成与隔膜的相应的内部接触件和外部接触件直接接触,并且当面板与壳体罐连接时在其间形成电连接。 内部和外部端子可以与诸如音频放大器的电信号源耦合。 面板还可以包括凸起表面,当面板与壳罐联接时,该表面使膜片偏转成预定形状。
    • 6. 发明申请
    • Loudspeaker plastic cone body
    • 扬声器塑料锥体
    • US20060147081A1
    • 2006-07-06
    • US11286872
    • 2005-11-22
    • Louis MangoJohn SteereSteven Hutt
    • Louis MangoJohn SteereSteven Hutt
    • H04R9/06H04R11/02
    • H04R31/003H04R7/125H04R9/06H04R2307/025H04R2307/029
    • A loudspeaker cone body made of plastic includes a base carrier material and a filler material. The base carrier material is selected to optimize overall flow, weight and stiffness. The filler material may be a nanomaterial that provides for adjustment of process and acoustic related characteristics in the loudspeaker cone body that become relevant when the loudspeaker cone body is operated in a loudspeaker. Acoustic related characteristics that may be adjusted include a stiffness to weight ratio and an acoustic damping of the loudspeaker cone body. A predetermined weight percent of the filler material may be combined with the base carrier material to obtain repeatable desired acoustic related characteristics. The acoustic related characteristics may be adjusted by changing the predetermined weight percent of the filler material.
    • 由塑料制成的扬声器锥体包括基底载体材料和填充材料。 选择基底载体材料以优化整体流动,重量和刚度。 填充材料可以是纳米材料,其提供在扬声器锥体在扬声器中操作时变得相关的扬声器锥体中的过程和声学相关特性的调节。 可以调节的声学相关特征包括扬声器锥体的刚度与重量比和声阻尼。 预定重量百分比的填充材料可以与基底载体材料组合以获得可重复的期望声学相关特性。 可以通过改变填充材料的预定重量百分比来调节声学相关特性。