METHOD FOR THE FORMATION OF FIN STRUCTURES FOR FINFET DEVICES
    11.
    发明申请
    METHOD FOR THE FORMATION OF FIN STRUCTURES FOR FINFET DEVICES 审中-公开
    用于形成FINFET器件的FIN结构的方法

    公开(公告)号:US20140353767A1

    公开(公告)日:2014-12-04

    申请号:US13906505

    申请日:2013-05-31

    Abstract: On a first semiconductor material substrate, an overlying sacrificial layer formed of a second semiconductor material is deposited. In a first region, a first semiconductor material region is formed over the sacrificial layer. In a second region, a second semiconductor material region is formed over the sacrificial layer. The first semiconductor material region is patterned to define a first FinFET fin. The second semiconductor material region is patterned to define a second FinFET fin. The fins are each covered with a cap and sidewall spacer. The sacrificial layer formed of the second semiconductor material is then selectively removed to form an opening below each of the first and second FinFET fins (with those fins being supported by the sidewall spacers). The openings below each of the fins are then filled with a dielectric material that serves to isolate the semiconductive materials of the fins from the substrate.

    Abstract translation: 在第一半导体材料基板上沉积由第二半导体材料形成的上覆牺牲层。 在第一区域中,在牺牲层上形成第一半导体材料区域。 在第二区域中,在牺牲层上形成第二半导体材料区域。 图案化第一半导体材料区域以限定第一FinFET鳍片。 图案化第二半导体材料区域以限定第二FinFET鳍片。 翅片各自被盖和侧壁间隔物覆盖。 然后选择性地去除由第二半导体材料形成的牺牲层,以在第一和第二FinFET鳍片下面形成开口(这些鳍片由侧壁间隔件支撑)。 然后每个翅片下面的开口填充有用于将鳍片的半导体材料与衬底隔离的介电材料。

    METHOD TO CO-INTEGRATE SiGe AND Si CHANNELS FOR FINFET DEVICES
    12.
    发明申请
    METHOD TO CO-INTEGRATE SiGe AND Si CHANNELS FOR FINFET DEVICES 有权
    用于融合FINFET器件的SiGe和Si沟道的方法

    公开(公告)号:US20140353760A1

    公开(公告)日:2014-12-04

    申请号:US13907613

    申请日:2013-05-31

    Abstract: A method for co-integrating finFETs of two semiconductor material types, e.g., Si and SiGe, on a bulk substrate is described. Fins for finFETs may be formed in an epitaxial layer of a first semiconductor type, and covered with an insulator. A portion of the fins may be removed to form voids in the insulator, and the voids may be filled by epitaxially growing a semiconductor material of a second type in the voids. The co-integrated finFETs may be formed at a same device level.

    Abstract translation: 描述了用于在体基板上将诸如Si和SiGe的两种半导体材料类型的finFET共集成的方法。 用于finFET的鳍可以形成在第一半导体类型的外延层中,并被绝缘体覆盖。 可以去除一部分翅片以在绝缘体中形成空隙,并且可以通过在空隙中外延生长第二类型的半导体材料来填充空隙。 共同集成的finFET可以形成在相同的器件级。

    Memory device having multiple dielectric gate stacks with first and second dielectric layers and related methods
    13.
    发明授权
    Memory device having multiple dielectric gate stacks with first and second dielectric layers and related methods 有权
    具有具有第一和第二介电层的多个介电栅极堆叠的存储器件和相关方法

    公开(公告)号:US08860123B1

    公开(公告)日:2014-10-14

    申请号:US13852720

    申请日:2013-03-28

    Abstract: A memory device may include a semiconductor substrate, and a memory transistor in the semiconductor substrate. The memory transistor may include source and drain regions in the semiconductor substrate and a channel region therebetween, and a gate stack having a first dielectric layer over the channel region, a second dielectric layer over the first dielectric layer, a first diffusion barrier layer over the second dielectric layer, a first electrically conductive layer over the first diffusion barrier layer, a second diffusion barrier layer over the first electrically conductive layer, and a second electrically conductive layer over the second diffusion barrier layer. The first and second dielectric layers may include different dielectric materials, and the first diffusion barrier layer may be thinner than the second diffusion barrier layer.

    Abstract translation: 存储器件可以包括半导体衬底和半导体衬底中的存储晶体管。 存储晶体管可以包括半导体衬底中的源极和漏极区域以及它们之间的沟道区域,以及栅极堆叠,其在沟道区域上具有第一介电层,在第一介电层上方具有第二介电层,第一扩散阻挡层 第一介电层,第一扩散阻挡层上的第一导电层,第一导电层上的第二扩散阻挡层,以及第二扩散阻挡层上的第二导电层。 第一和第二电介质层可以包括不同的电介质材料,并且第一扩散阻挡层可以比第二扩散阻挡层薄。

    Facet-free strained silicon transistor

    公开(公告)号:US10134895B2

    公开(公告)日:2018-11-20

    申请号:US13692632

    申请日:2012-12-03

    Abstract: The presence of a facet or a void in an epitaxially grown crystal indicates that crystal growth has been interrupted by defects or by certain material boundaries. Faceting can be suppressed during epitaxial growth of silicon compounds that form source and drain regions of strained silicon transistors. It has been observed that faceting can occur when epitaxial layers of certain silicon compounds are grown adjacent to an oxide boundary, but faceting does not occur when the epitaxial layer is grown adjacent to a silicon boundary or adjacent to a nitride boundary. Because epitaxial growth of silicon compounds is often necessary in the vicinity of isolation trenches that are filled with oxide, techniques for suppression of faceting in these areas are of particular interest. One such technique, presented herein, is to line the isolation trenches with SiN to provide a barrier between the oxide and the region in which epitaxial growth is intended.

    Transistor having a stressed body
    19.
    发明授权
    Transistor having a stressed body 有权
    具有受压体的晶体管

    公开(公告)号:US09123809B2

    公开(公告)日:2015-09-01

    申请号:US14494979

    申请日:2014-09-24

    Abstract: A transistor includes a body and a semiconductor region configured to stress a portion of the body. For example, stressing a channel of the transistor may increase the mobility of carriers in the channel, and thus may reduce the “on” resistance of the transistor. For example, the substrate, source/drain regions, or both the substrate and source/drain regions of a PFET may be doped to compressively stress the channel so as to increase the mobility of holes in the channel. Or, the substrate, source/drain regions, or both the substrate and source/drain regions of an NFET may be doped to tensile stress the channel so as to increase the mobility of electrons in the channel.

    Abstract translation: 晶体管包括主体和构造成对身体的一部分施加应力的半导体区域。 例如,施加晶体管的沟道可以增加沟道中载流子的迁移率,从而可以降低晶体管的“导通”电阻。 例如,可以掺杂PFET的衬底,源极/漏极区域或者衬底和源/漏极区域,以对沟道进行压缩应力,从而增加沟道中空穴的迁移率。 或者,可以掺杂NFET的衬底,源极/漏极区域或衬底和源极/漏极区域两者以使通道拉伸应力,以增加沟道中电子的迁移率。

    Method of making a semiconductor device including an all around gate
    20.
    发明授权
    Method of making a semiconductor device including an all around gate 有权
    制造包括全周围栅极的半导体器件的方法

    公开(公告)号:US09082788B2

    公开(公告)日:2015-07-14

    申请号:US13906702

    申请日:2013-05-31

    Abstract: A method of making a semiconductor device includes forming an intermediate structure including second semiconductor fin portions above a first semiconductor layer, and top first semiconductor fin portions extending from respective ones of the second semiconductor fin portions. The second semiconductor fin portions are selectively etchable with respect to the top first semiconductor fin portions. A dummy gate is on the intermediate structure. The second semiconductor fin portions are selectively etched to define bottom openings under respective ones of the top first semiconductor fin portions. The bottom openings are filled with a dielectric material.

    Abstract translation: 制造半导体器件的方法包括在第一半导体层之上形成包括第二半导体鳍部的中间结构以及从第二半导体鳍部中的相应半导体鳍部延伸的顶部第一半导体鳍部。 第二半导体鳍片部分相对于顶部第一半导体鳍片部分可选择性地蚀刻。 虚拟门在中间结构上。 选择性地蚀刻第二半导体鳍片部分以在顶部第一半导体鳍片部分的相应一个下限定底部开口。 底部开口填充有电介质材料。

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