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    • 1. 发明授权
    • High through-put Cu CMP with significantly reduced erosion and dishing
    • 高通量Cu CMP具有显着减少的侵蚀和凹陷
    • US07041599B1
    • 2006-05-09
    • US09469709
    • 1999-12-21
    • Shijian LiFred C. RedekerJohn WhiteRamin Emami
    • Shijian LiFred C. RedekerJohn WhiteRamin Emami
    • H01L21/302
    • B24B37/04B24B57/02H01L21/3212
    • High through-put Cu CMP is achieved with reduced erosion and dishing by a multi-step polishing technique. Deposited Cu is polished with fixed abrasive polishing pads initially at a high removal rate and subsequently at a reduced removal rate and high Cu:barrier layer (Ta) selectivity. Embodiments of the present invention include reducing dishing by: controlling platen rotating speeds; increasing the concentration of active chemicals; and cleaning the polishing pads between wafers. Embodiments also include removing particulate material during CMP by increasing the flow rate of the chemical agent or controlling the static etching rate between about 100 Å and about 150 Å per minute, and recycling the chemical agent. Embodiments further include flowing an inhibitor across the wafer surface after each CMP step to reduce the static etching rate.
    • 通过多步抛光技术,可以减少腐蚀和凹陷,实现高通量Cu CMP。 沉积的Cu以固定的研磨抛光垫抛光,最初以高的去除速率和随后的降低的去除速率和高的Cu:阻挡层(Ta)选择性。 本发明的实施例包括:通过以下步骤减少凹陷:控制压板转速; 增加活性化学品的浓度; 并在晶片之间清洁抛光垫。 实施方案还包括通过增加化学试剂的流速或控制每分钟约100埃至约150埃的静态蚀刻速率和循环该化学试剂来在CMP期间除去颗粒物质。 实施例还包括在每个CMP步骤之后使抑制剂流过晶片表面以降低静态蚀刻速率。