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Additive manufacturing of 96 MHz surface acoustic wave devices by means of superfine inkjet printing

机译:通过超细喷墨印刷的96MHz表面声波器件的添加剂制造

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The additive manufacturing of electronic devices via inkjet printing presents a versatile alternative to the time and material consuming traditional lithographic techniques. Superfine inkjet (SIJ) printing is applied for the rapid prototyping of surface acoustic wave (SAW) devices. Using a commercial platinum ink, narrow conducting lines with about 3 times the bulk resistivity are created. We are the first to directly pattern interdigital transducers (IDTs) of about 10 mu m width onto piezoelectric 128 degrees YX LiNbO3 substrates at room temperature. Reflection and transmission curves are recorded. The observed resonance frequency of 95.6 MHz matches to the theoretical value of about 100 MHz for the device. We propose that the SIJ technology can produce IDTs of down to 1 mu m width, venturing into the production of up to 1 GHz SAW devices.
机译:通过喷墨印刷的电子器件的添加剂制造具有多功能的替代传统光刻技术的时间和材料。 超细喷墨(SIJ)打印用于表面声波(SAW)器件的快速原型设计。 使用商业铂墨水,产生大约3倍的窄导电线,散装电阻率约为3倍。 我们是第一个在室温下直接在压电128 yx LiNbO3基板上直接模式的渐变换能器(IDTS)约10μm宽度。 记录反射和传输曲线。 观察到的谐振频率为95.6 MHz的匹配与装置约100 MHz的理论值。 我们建议SIJ技术可以生产宽度下达1亩的宽度,冒险进入高达1 GHz SAW器件的生产。

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