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    • 5. 发明申请
    • ULTRASOUND TRANSDUCER FEATURING A PITCH INDEPENDENT INTERPOSER AND METHOD OF MAKING THE SAME
    • 超声波传感器及其独立的间接器及其制造方法
    • US20100156243A1
    • 2010-06-24
    • US12446036
    • 2007-07-20
    • Johannes W. WeekampSamuel R. PetersRichard E. DavidsenWojtek Sudol
    • Johannes W. WeekampSamuel R. PetersRichard E. DavidsenWojtek Sudol
    • B06B1/06H01L41/053H01L41/22H04R31/00
    • H01L25/16H01L2924/0002H04R1/06H04R2217/03Y10T29/42Y10T29/49005H01L2924/00
    • An ultrasound transducer 10 comprises an application specific integrated circuit (ASIC) 14, an array of acoustic elements 20, and a pitch independent interposer 12. The ASIC 14 includes a plurality of contact pads 16 on a surface of the ASIC that are separated from adjacent ones thereof by a first pitch. The acoustic elements 22 of the array 20 are separated from adjacent ones thereof by a second pitch. In addition, the pitch independent interposer 12 features a plurality of conductive elements 26 separated from adjacent ones thereof by a third pitch different from both the first pitch and the second pitch. The pitch independent interposer 26 is electrically coupled (i) on a first side to the ASIC via a first subset of the plurality of conductive elements and (ii) on a second side to the array of acoustic elements via a second subset of the plurality of conductive elements, wherein one or more of the plurality of conductive elements 26 electrically couples a contact pad 16 of the ASIC 14 with a corresponding acoustic element 22 of the array 20 of acoustic elements.
    • 超声波换能器10包括专用集成电路(ASIC)14,声学元件20阵列和音调独立插入器12. ASIC 14包括在ASIC的表面上的多个接触垫16,该接触垫16与相邻的 其中一个是第一个音调。 阵列20的声学元件22与其相邻的第二音调分离。 此外,音高独立插入器12具有多个导电元件26,其中多个导电元件26与其相邻的导电元件26分开与第一音调和第二音调不同的第三音高。 音调独立插入器26经由多个导电元件的第一子集在第一侧电耦合到ASIC,并且(ii)经由多个导电元件的第二子集在第二侧到声学元件阵列 导电元件,其中所述多个导电元件26中的一个或多个将ASIC 14的接触焊盘16与声学元件阵列20的对应声学元件22电耦合。
    • 6. 发明授权
    • Method of constructing segmented connections for multiple elevation transducers
    • 构建多高度传感器分段连接的方法
    • US06449821B1
    • 2002-09-17
    • US09373083
    • 1999-08-12
    • Wojtek SudolFrancis E. Gurrie
    • Wojtek SudolFrancis E. Gurrie
    • H04R1700
    • B06B1/0629Y10T29/42Y10T29/49126Y10T29/49165
    • A method for constructing a connection assembly for use in a multiple aperture ultrasonic tranducer including an array of elements for transmitting or receiving signals, wherein each element is comprised of a plurality of segments, and the connection assembly for interconnecting the segments of each elements and for connecting the segments to transmit/receive circuitsto form the aperatures of the array. An isolating layer is superimposed on the segments of the array and a plurality of via openings are formed through the isolating layer. At least one via opening being assocated with each segment of the array and each via opening exposing an area of an assocated segment. A conductive layer is superimposed on the isolating layer, the conductive layer having conduxtive paths interconnecting the segments and connecting the segments to the transmit/receive circuits to form the apertures of the array.
    • 一种用于构造用于多孔径超声波传感器的连接组件的方法,包括用于发送或接收信号的元件阵列,其中每个元件由多个段组成,并且所述连接组件用于互连每个元件的段并且用于 将段连接到发射/接收电路以形成阵列的温度。 隔离层叠加在阵列的段上,并且通过隔离层形成多个通路孔。 至少一个通孔开口与阵列的每个段相配合,并且每个通孔开口暴露出相关段的区域。 导电层叠加在隔离层上,导电层具有互连该段的导向路径,并将该段连接到发射/接收电路以形成该阵列的孔。
    • 7. 发明授权
    • Multiconductor shielded transducer cable
    • 多芯屏蔽传感器电缆
    • US5552565A
    • 1996-09-03
    • US414392
    • 1995-03-31
    • Paul CartierWojtek SudolGregory G. Vogel
    • Paul CartierWojtek SudolGregory G. Vogel
    • G01B17/00A61B8/00G01B17/06G01N29/24H01B7/08
    • H01B7/0861H01B7/0892
    • A low cost shielded transducer cable provides electrical connection between an ultrasound transducer and a display processor. A wound transducer cable is constructed in a first embodiment using two layers of stripline assemblies helically wound in opposite directions around a flexible core. The layers of stripline assemblies are covered with a single metal braid and then coated with insulation. In a second embodiment a stripline transducer cable is formed from a stack of parallel stripline assemblies that may be coextruded with an insulating jacket. In a third embodiment a ribbon transducer cable is formed from a stacked arrangement of parallel ribbon cables and conducting shields that may be extruded in an insulating material.
    • 低成本屏蔽传感器电缆提供超声换能器和显示处理器之间的电连接。 缠绕式传感器电缆在第一实施例中使用两层带状线组件来构造,所述两条带状线组件围绕柔性芯螺旋缠绕在相反的方向上。 带状线组件的层被单个金属编织物覆盖,然后用绝缘层涂覆。 在第二实施例中,带状线传感器电缆由可以与绝缘护套共挤出的平行带状线组件的堆叠形成。 在第三实施例中,带状换能器电缆由可以挤压成绝缘材料的平行带状电缆和导电屏蔽层的堆叠布置形成。
    • 8. 发明授权
    • Transesophageal ultrasound probe
    • 经食道超声探头
    • US5320104A
    • 1994-06-14
    • US979553
    • 1992-11-18
    • James FearnsideWojtek Sudol
    • James FearnsideWojtek Sudol
    • A61B8/12A61B8/14H01R13/52H02G11/02
    • A61B8/12A61B8/445A61B8/4461H01R13/5224H02G11/02
    • An endoscopic ultrasound probe for use in transesophageal echo cardiography comprises a rotatable ultrasound transducer array for obtaining two-dimensional cross-sectional images along a variety of scan planes. The array is formed of a plurality of transducer elements and rotates about an axis perpendicular to the plane of the transducer elements. The rotating array defines a circular region of rotation and has a surface area which substantially matches the area of the circular region of rotation within the probe. More specifically, the elements of the array have varying mechanical lengths such that the rotatable array may have a circular shape, a substantially circular shaped or an N-sided polygonal shape where N is an integer greater than four.
    • 用于经食道超声心动图的内窥镜超声探头包括用于获得沿着各种扫描平面的二维横截面图像的可旋转的超声换能器阵列。 阵列由多个换能器元件形成,并且绕垂直于换能器元件的平面的轴线旋转。 旋转阵列限定圆形的旋转区域,并且具有与探针内的圆形旋转区域的面积大致一致的表面积。 更具体地,阵列的元件具有变化的机械长度,使得可旋转阵列可以具有圆形形状,大致圆形或N形多边形形状,其中N是大于4的整数。
    • 10. 发明申请
    • ACOUSTIC IMAGING APPARATUS WITH HANDS-FREE CONTROL
    • 声控成像装置与无障碍控制
    • US20110125021A1
    • 2011-05-26
    • US13056157
    • 2009-08-10
    • Wojtek Sudol
    • Wojtek Sudol
    • A61B8/14
    • G06F3/011A61B8/00A61B8/461A61B8/467G06F3/012G06F3/0334
    • An acoustic imaging apparatus (100, 200, 300, 400) includes an acoustic probe (110) adapted to receive an acoustic signal, an acoustic signal processor (120) adapted to receive and process the acoustic signal from the acoustic probe, a display (130) for displaying images in response to the processed acoustic signal, and a non-manual control device (160, 160a, 160b, 160c). The acoustic imaging apparatus (100, 200, 300, 400) is adapted to control at least one of the acoustic probe (110), the acoustic signal processor (120) and the display 9130) in response to at least one signal from the non-manual control device (160, 160a, 160b, 160c). The non-manual control device (160, 160a, 160b, 160c) is either operated by a human foot, or mounted on a human head and operated by movement of the human head.
    • 声学成像设备(100,200,300,400)包括适于接收声学信号的声学探针(110),适于从声学探针接收和处理声学信号的声学信号处理器(120),显示器 130),用于响应于所处理的声信号显示图像,以及非手动控制装置(160,160a,160b,160c)。 声学成像设备(100,200,300,400)适于响应于来自非声学成像设备的至少一个信号来控制声学探针(110),声学信号处理器(120)和显示器9130中的至少一个) - 手动控制装置(160,160a,160b,160c)。 非手动控制装置(160,160a,160b,160c)由人脚操作,或者安装在人的头部上,并通过人头部的移动进行操作。