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Method employing UV laser pulses of varied energy density to form depthwise self-limiting blind vias in multilayered targets

机译:利用变化能量密度的紫外激光脉冲在多层靶中形成深度自限盲孔的方法

摘要

The output of a continuously pumped, Q-switched, Nd:YAG laser (10) is frequency converted to provide ultraviolet light (62) for forming vias (72, 74) in targets (40) having metallic layers (64,68) and a dielectric layer (66). The invention employs a first laser output of high power density to ablate the metallic layer and a second laser output of a lower power density to ablate the dielectric layer. The parameters of the output pulses (62) are selected to facilitate substantially clean, sequential drilling or via formation. These parameters typically include at least two of the following criteria: power density first above and then below the ablation threshold of the conductor, wavelength less than 400 nm, a temporal pulse width shorter than about 100 nanoseconds, and a repetition rate of greater than about one kilohertz. The ability to generate ultraviolet light output pulses at two power densities facilitates the formation of depthwise self- limiting blind vias in multilayer targets, such as a target composed of a layer dielectric material covered on either surface by a layer of metal.
机译:连续泵浦,调Q开关的Nd:YAG激光器(10)的输出经过频率转换以提供紫外线(62),以在具有金属层(64,68)和80(64)和80介电层(66)。本发明采用高功率密度的第一激光输出来烧蚀金属层,而采用较低功率密度的第二激光输出来烧蚀介电层。选择输出脉冲(62)的参数以促进基本清洁,顺序钻孔或通孔形成。这些参数通常包括以下至少两个标准:功率密度先高于并低于导体的烧蚀阈值,波长小于400 nm,时间脉冲宽度小于约100纳秒,重复率大于约一千赫兹产生两种功率密度的紫外光输出脉冲的能力有助于在多层靶材中形成深度自限盲孔,所述靶材例如是由一层介电材料组成的靶材,该介电材料在任一表面上都被一层金属覆盖。

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