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    • 2. 发明授权
    • Ablation enhancement layer
    • 消融增强层
    • US06689544B2
    • 2004-02-10
    • US10170843
    • 2002-06-13
    • Pradnya V. NagarkarJames T. RichardLinda S. HeathRadha SenJyothsna Ram
    • Pradnya V. NagarkarJames T. RichardLinda S. HeathRadha SenJyothsna Ram
    • C23C1434
    • G02F1/13439B41M5/24Y10T428/31692
    • An ablatable laminar imaging medium useful in the manufacture of a substantially transparent electrode assembly is disclosed. The laminar imaging medium comprises a substrate, a high-index metal oxide layer, an ablatable metallic conductive layer, a high-index conductive metal oxide layer, and an ablation enhancement layer. The ablation enhancement layer has an IR-absorption greater than the IR-absorption of said high-index conductive metal oxide layer and an IR-reflectivity less than the IR-reflectivity of said high-index conductive metal oxide layer. Presence in the laminar imaging medium of the ablation enhancement layer lowers the exposure threshold of the medium and improves ablation accuracy, both—when occasioned in the manufacture of LCD electrode patterns—resulting collectively and ultimately in a more reliably formed electrical architecture, less susceptible to unwanted “shorting”.
    • 公开了一种可用于制造基本上透明的电极组件的可消融层状成像介质。 层状成像介质包括基板,高折射率金属氧化物层,可烧蚀金属导电层,高折射率导电金属氧化物层和消融增强层。 消融增强层具有大于所述高折射率导电金属氧化物层的IR吸收的IR吸收和小于所述高折射率导电金属氧化物层的IR反射率的IR反射率。 消融增强层的层状成像介质中的存在降低了介质的曝光阈值,并且提高了消融精度,这两者在制造LCD电极图案时共同产生并且最终形成在更可靠的形成的电气结构中,不太易于 不需要的“短路”。