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    • 2. 发明申请
    • Door with structural components configured to radiate acoustic energy
    • 具有构造成辐射声能的结构部件的门
    • US20070110264A1
    • 2007-05-17
    • US11500157
    • 2006-08-07
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • H04R25/00H04R1/02
    • H04R5/023
    • A door leaf includes a stiff, light structural part that maintains fed-in vibrational energy and, by flexural waves, propagates this energy in at least one active surface perpendicular to its thickness to distribute resonance mode vibration components over at least one surface, which has specified, preferred locations or sites within it for transducer devices, which are affixed on the structural part at one of the locations or sites to set the structural part into vibration and to allow it to resonate, thus creating an acoustic radiator that delivers an acoustic output signal when it vibrates in resonance, the front and/or the rear cover panel of the door leaf being part of the stiff, light structural component. The transducer(s) is/are situated between the cover panels. This arrangement provides a door with a loudspeaker function, which needs no extra volume compared to an ordinary door, and which is able to provide sound reliably and comprehensively to one or more rooms, which adjoin this door acting as a loudspeaker. Advantageously, additional loudspeakers or loudspeaker boxes are not required in a room that receives sound by this door with loudspeakers.
    • 门扇包括一个刚性的,轻的结构部件,其保持馈入的振动能量,并且通过弯曲波将该能量传播到垂直于其厚度的至少一个有效表面中,以在至少一个表面上分布共振模式振动分量, 指定的优选位置或位于其内的用于换能器装置的位置,其被固定在结构部件上的位置或位置之一处,以将结构部件设置成振动并允许其谐振,从而产生声辐射器,其传送声输出 当其共鸣振动时信号,门扇的前盖和/或后盖板是刚性轻的结构部件的一部分。 传感器位于盖板之间。 这种布置提供了具有扬声器功能的门,其与普通门相比不需要额外的体积,并且能够可靠地和全面地向邻近这个门作为扬声器的房间提供声音。 有利的是,在通过该扬声器接收声音的房间中不需要额外的扬声器或扬声器盒。
    • 3. 发明授权
    • Door with structural components configured to radiate acoustic Energy
    • 具有构造成辐射声能的结构部件的门
    • US07088836B1
    • 2006-08-08
    • US09665894
    • 2000-09-20
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • H04R25/00
    • H04R7/045H04R1/028H04R5/023
    • A door leaf includes a stiff, light structural part that maintains fed-in vibrational energy and, by flexural waves, propagates this energy in at least one active surface perpendicular to its thickness to distribute resonance mode vibration components over at least one surface, which has specified, preferred locations or sites within it for transducer devices, which are affixed on the structural part at one of the locations or sites to set the structural part into vibration and to allow it to resonate, thus creating an acoustic radiator that delivers an acoustic output signal when it vibrates in resonance, the front and/or the rear cover panel of the door leaf being part of the stiff, light structural component. The transducer(s) is/are situated between the cover panels. This arrangement provides a door with a loudspeaker function, which needs no extra volume compared to an ordinary door, and which is able to provide sound reliably and comprehensively to one or more rooms, which adjoin this door acting as a loudspeaker. Advantageously, additional loudspeakers or loudspeaker boxes are not required in a room that receives sound by this door with loudspeakers.
    • 门扇包括一个刚性的,轻的结构部件,其保持馈入的振动能量,并且通过弯曲波将该能量传播到垂直于其厚度的至少一个有效表面中,以在至少一个表面上分布共振模式振动分量, 指定的优选位置或位于其内的用于换能器装置的位置,其被固定在结构部件上的位置或位置之一处,以将结构部件设置成振动并允许其谐振,从而产生声辐射器,其传送声输出 当其共鸣振动时信号,门扇的前盖和/或后盖板是刚性轻的结构部件的一部分。 传感器位于盖板之间。 这种布置提供了具有扬声器功能的门,其与普通门相比不需要额外的体积,并且能够可靠地和全面地向邻近这个门作为扬声器的房间提供声音。 有利的是,在通过该扬声器接收声音的房间中不需要额外的扬声器或扬声器盒。
    • 4. 发明授权
    • Acoustic wall
    • 隔音墙
    • US06170603B2
    • 2001-01-09
    • US09390058
    • 1999-09-03
    • Wolfgang BachmannGerhard KrumpHans-Juergen Regl
    • Wolfgang BachmannGerhard KrumpHans-Juergen Regl
    • H05K500
    • H04R7/06H04R1/24H04R7/045H04R7/10H04R2201/021H04R2440/01
    • The invention relates to acoustic walls for large public events. Traditionally, sound is reproduced by using a plurality of large and heavy loudspeaker boxes which requires a complicated and expensive support system. The present invention provides a segmented acoustic wall which has an essentially flat shape and is also extremely lightweight. Several of these segments can be integrated to form an acoustic wall by coupling the different segments with one another, whereby the entire surface area of the acoustic wall can be used to radiate sound without requiring additional sound sources in the audience space. The various segments can be optimized for certain frequency ranges by tuning the surface area and depth of the respective segments to the respective transmitted frequencies. Several acoustic walls can be placed side-by-side to flexibly conform to different requirements in the audience space. In addition, the reproduction planes of the acoustic walls facing the audience space can be used, for example, to support advertisements in printed form.
    • 本发明涉及用于大型公共事件的声学墙。 传统上,通过使用需要复杂和昂贵的支持系统的多个大而重的扬声器盒来再现声音。 本发明提供了一种具有基本平坦形状并且也非常轻巧的分段声壁。 这些段中的几个可以通过将不同的段彼此联接而被整合以形成声壁,由此声壁的整个表面区域可以用于辐射声音,而不需要在观众空间中的附加声源。 可以通过将各个段的表面积和深度调谐到相应的发射频率来对各个段进行优化。 多个隔音墙可以并排放置,以灵活地符合观众空间的不同要求。 此外,面向观众空间的声学墙的再现平面可以用于例如以印刷形式支持广告。
    • 5. 发明授权
    • Multi-mode radiator panels
    • 多模散热器面板
    • US06748090B1
    • 2004-06-08
    • US09395575
    • 1999-09-14
    • Wolfgang BachmannGerhard KrumpHans-Juergen Regl
    • Wolfgang BachmannGerhard KrumpHans-Juergen Regl
    • H04R2500
    • H04R7/045H04R2440/01
    • The invention relates to a system with multi-mode radiator panels used to reproduce sound. The multi-mode radiator panels include at least one driver, a core layer and two cover layers connected to the core layer. The panels are typically mounted in a frame with attachments providing a connection between the frame and the unit formed of the core layer and the cover layers. To protect the system against overload and damage, the entire driver electronics is housed in a hermetically sealed air space located between the frame, the core layer and the attachments. The driver electronics includes a power amplifier powered by low-voltage power supply. The voltage supply may be buffered by a battery to keep the average power supplied to the electronics small, while still being able to reproduce infrequently occurring peak power events. Buffering of the battery has the additional advantage that if the power supply is completely interrupted, the battery enables the sound reproduction to continue for a certain time in the event of a power failure, which is important for transmitting emergency announcements. The multi-mode radiator panels can also be connected via a bus, so that a single cable strand may be used to supply the acoustic signal and the electric power.
    • 本发明涉及一种用于再现声音的多模式散热器面板的系统。 多模式散热器面板包括至少一个驱动器,芯层和连接到芯层的两个覆盖层。 这些面板通常安装在具有附接件的框架中,附接件提供框架和由芯层和覆盖层形成的单元之间的连接。 为了保护系统免受过载和损坏,整个驱动器电子器件容纳在位于框架,芯层和附件之间的气密密封的空气空间中。 驱动器电子器件包括由低压电源供电的功率放大器。 电压可以由电池缓冲,以保持提供给电子装置的平均功率较小,同时仍然能够再现不经常发生的峰值功率事件。 电池的缓冲还具有额外的优点,如果电源完全中断,则电池能够在电源故障的情况下使声音再现持续一段时间,这对于发送紧急通知很重要。 多模式散热器面板也可以通过总线连接,从而可以使用单根电缆线来提供声信号和电力。
    • 6. 发明授权
    • Door with structural components configured to radiate acoustic energy
    • 具有构造成辐射声能的结构部件的门
    • US08103024B2
    • 2012-01-24
    • US11500157
    • 2006-08-07
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • Wolfgang BachmannGerhard KrumpHans-Juergen ReglAndreas Ziganki
    • H04R25/00
    • H04R5/023
    • A door leaf includes a stiff, light structural part that maintains fed-in vibrational energy and, by flexural waves, propagates this energy in at least one active surface perpendicular to its thickness to distribute resonance mode vibration components over at least one surface, which has specified, preferred locations or sites within it for transducer devices, which are affixed on the structural part at one of the locations or sites to set the structural part into vibration and to allow it to resonate, thus creating an acoustic radiator that delivers an acoustic output signal when it vibrates in resonance, the front and/or the rear cover panel of the door leaf being part of the stiff, light structural component. The transducer(s) is/are situated between the cover panels. This arrangement provides a door with a loudspeaker function, which needs no extra volume compared to an ordinary door, and which is able to provide sound reliably and comprehensively to one or more rooms, which adjoin this door acting as a loudspeaker. Advantageously, additional loudspeakers or loudspeaker boxes are not required in a room that receives sound by this door with loudspeakers.
    • 门扇包括一个刚性的,轻的结构部件,其保持馈入的振动能量,并且通过弯曲波将该能量传播到垂直于其厚度的至少一个有效表面中,以在至少一个表面上分布共振模式振动分量, 指定的优选位置或位于其内的用于换能器装置的位置,其被固定在结构部件上的位置或位置之一处,以将结构部件设置成振动并允许其谐振,从而产生声辐射器,其传送声输出 当其共鸣振动时信号,门扇的前盖和/或后盖板是刚性轻的结构部件的一部分。 传感器位于盖板之间。 这种布置提供了具有扬声器功能的门,与普通门相比,其不需要额外的体积,并且能够可靠地和全面地向一个或多个房间提供声音,该房间毗邻该门作为扬声器。 有利的是,在通过该扬声器接收声音的房间中不需要额外的扬声器或扬声器盒。
    • 10. 发明申请
    • MAGNETIC MEMBRANE SUSPENSION
    • 磁性膜悬浮液
    • US20080025550A1
    • 2008-01-31
    • US11766184
    • 2007-06-21
    • Hans-Juergen ReglGerhard Pfaffinger
    • Hans-Juergen ReglGerhard Pfaffinger
    • H04R11/02
    • H04R7/24H04R1/36H04R13/00
    • An electro-acoustic transducer has a membrane comprises a folded or curved sheet of film material. A frame supports the membrane in at least an upper end thereof. A resilient suspension connects the upper ends of the membrane to the frame. A driver system is attached to the frame and the membrane for moving the membrane dependent on an electrical input signal. At least one ferromagnetic element is arranged in the membrane or on one of the surfaces of the membrane at its lower end. At least one magnet provides a magnetic field, the magnet being attached to the frame in a position adjacent the lower end of the membrane. The ferromagnetic element is pulled down by a magnetic force between the element and the magnet establishing a gap therebetween such that tensioning of the membrane is achieved by the magnetic force.
    • 电声换能器具有膜,其包括折叠或弯曲的薄膜材料片。 框架至少在其上端支撑膜。 弹性悬挂将膜的上端连接到框架。 驱动器系统附接到框架和膜,用于根据电输入信号移动膜。 至少一个铁磁元件布置在隔膜中或其下端的一个表面上。 至少一个磁体提供磁场,磁体在邻近膜的下端的位置附接到框架。 铁磁元件被元件和磁体之间的磁力拉下,在它们之间形成间隙,从而通过磁力实现膜的张紧。