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Fabrication of 20 MHz convex array transducers for high frequency ophthalmic imaging

机译:用于高频眼科成像的20 MHz凸阵列换能器的制造

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20 MHz 192-element convex array transducers have been designed, fabricated and tested. Major design parameters are 111 ¿m pitch, 24 mm radius of curvature, 52° maximum view angle, 7 mm elevation width, and 30 mm geometric focus. A 1-3 composite was fabricated with a ceramic post width of 28 ¿m and a polymer kerf width of 9 ¿m. The ceramic volume fraction was approximately 57%. Three ceramic posts formed one element in the azimuth direction. A custom designed flexible circuit was aligned and attached to a scratch-diced composite and 75 ¿ micro-coaxial cables. A single epoxy matching layer and a backing block were used for acoustic matching. The pulse-echo response for a typical element acquired at the axial peak, 28.0 mm, matched with a designed geometrical focusing at 30 mm, had a center frequency of 24.4 MHz and 64% of -6 dB fractional bandwidth. The estimated insertion loss at 24 MHz after compensating for attenuation and reflection was 35 dB and the maximum crosstalk was -17 dB and -22 dB for the nearest and for the next-nearest element respectively.
机译:已经设计,制造和测试了20 MHz 192个元素的凸阵列换能器。主要设计参数是111米的节距,24 mm的曲率半径,52°的最大视角,7 mm的仰角宽度和30 mm的几何焦点。 1-3复合材料的陶瓷立柱宽度为28°m,聚合物切缝宽度为9°m。陶瓷体积分数约为57%。三个陶瓷柱沿方位角方向形成一个元素。定制设计的柔性电路被对齐并附加到划痕的复合材料和75°C微型同轴电缆上。单个环氧树脂匹配层和衬块用于声学匹配。在轴向峰值28.0 mm处获得的典型元件的脉冲回波响应与在30 mm处设计的几何聚焦相匹配,其中心频率为24.4 MHz,分数带宽为-6 dB的64%。补偿衰减和反射后,估计在24 MHz时的插入损耗为35 dB,最近的和下一个最近的元件的最大串扰分别为-17 dB和-22 dB。

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