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    • 3. 发明授权
    • Quantum dot transistor
    • 量子点晶体管
    • US08278647B2
    • 2012-10-02
    • US12657225
    • 2010-01-15
    • Timothy P. HolmeFriedrich B. PrinzXu Tian
    • Timothy P. HolmeFriedrich B. PrinzXu Tian
    • H01L29/06
    • H01L29/7613B82Y10/00H01L29/107H01L29/127H01L29/7888H01L49/006
    • One or more quantum dots are used to control current flow in a transistor. Instead of being disposed in a channel between source and drain, the quantum dot (or dots) are vertically separated from the source and drain by an insulating layer. Current can tunnel between the source/drain electrodes and the quantum dot (or dots) by tunneling through the insulating layer. Quantum dot energy levels can be controlled with one or more gate electrodes capacitively coupled to some or all of the quantum dot(s). Current can flow between source and drain if a quantum dot energy level is aligned with the energy of incident tunneling electrons. Current flow between source and drain is inhibited if no quantum dot energy level is aligned with the energy of incident tunneling electrons. Here energy level alignment is understood to have a margin of about the thermal energy (e.g., 26 meV at room temperature).
    • 一个或多个量子点用于控制晶体管中的电流。 代替设置在源极和漏极之间的沟道中,量子点(或点)通过绝缘层与源极和漏极垂直分离。 通过穿过绝缘层,电流可以在源/漏电极和量子点(或点)之间隧穿。 可以通过电容耦合到一些或全部量子点的一个或多个栅电极来控制量子点能级。 如果量子点能级与入射隧道电子的能量对准,电流可以在源极和漏极之间流动。 如果没有量子点能级与入射隧道电子的能量对准,则源极和漏极之间的电流将被抑制。 这里,能级对准被理解为具有大约热能的余量(例如,在室温下为26meV)。
    • 4. 发明申请
    • Quantum dot transistor
    • 量子点晶体管
    • US20100181551A1
    • 2010-07-22
    • US12657225
    • 2010-01-15
    • Timothy P. HolmeFriedrich B. PrinzXu Tian
    • Timothy P. HolmeFriedrich B. PrinzXu Tian
    • H01L29/772
    • H01L29/7613B82Y10/00H01L29/107H01L29/127H01L29/7888H01L49/006
    • One or more quantum dots are used to control current flow in a transistor. Instead of being disposed in a channel between source and drain, the quantum dot (or dots) are vertically separated from the source and drain by an insulating layer. Current can tunnel between the source/drain electrodes and the quantum dot (or dots) by tunneling through the insulating layer. Quantum dot energy levels can be controlled with one or more gate electrodes capacitively coupled to some or all of the quantum dot(s). Current can flow between source and drain if a quantum dot energy level is aligned with the energy of incident tunneling electrons. Current flow between source and drain is inhibited if no quantum dot energy level is aligned with the energy of incident tunneling electrons. Here energy level alignment is understood to have a margin of about the thermal energy (e.g., 26 meV at room temperature).
    • 一个或多个量子点用于控制晶体管中的电流。 代替设置在源极和漏极之间的沟道中,量子点(或点)通过绝缘层与源极和漏极垂直分离。 通过穿过绝缘层,电流可以在源/漏电极和量子点(或点)之间隧穿。 可以通过电容耦合到一些或全部量子点的一个或多个栅电极来控制量子点能级。 如果量子点能级与入射隧道电子的能量对准,电流可以在源极和漏极之间流动。 如果没有量子点能级与入射隧道电子的能量对准,则源极和漏极之间的电流将被抑制。 这里,能级对准被理解为具有大约热能的余量(例如,在室温下为26meV)。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING USER EQUIPMENTS
    • 用于控制用户设备的方法和装置
    • US20120208518A1
    • 2012-08-16
    • US13457028
    • 2012-04-26
    • Mingyi DengXu TianQiongtao Ren
    • Mingyi DengXu TianQiongtao Ren
    • H04W52/00
    • H04W48/10H04W16/32H04W48/12H04W52/0225H04W68/02H04W84/045
    • An apparatus for controlling User Equipments (UEs) in a communication system including a source cell and a destination cell is provided. A frequency and the scrambling codes of signals transmitted by a base station of the destination cell are the same as a frequency and scrambling codes of signals transmitted by a base station of the source cell. After the UE receives the signals, the signals are regarded as being transmitted by the source cell, and the UE is woken up by information over a Paging Indication Channel (PICH) and a Paging Channel (PCH), and then the UE reads information configured by the destination cell and carried over the common channel of the signals, and performs corresponding operations according to the information. The information over the PICH and the PCH wakes up the specified UE.
    • 提供了一种用于在包括源单元和目的地单元的通信系统中控制用户设备(UE)的设备。 由目的地小区的基站发送的信号的频率和扰码与源小区的基站发送的信号的频率和扰码相同。 在UE收到信号后,该信号被认为是由源小区发送的,UE通过寻呼指示信道(PICH)和寻呼信道(PCH)通过信息唤醒,然后UE读取配置的信息 由目的地小区携带,并通过信号的公共信道进行传送,根据该信息进行相应的动作。 通过PICH和PCH的信息唤醒指定的UE。
    • 7. 发明授权
    • Method and apparatus for controlling user equipments
    • 控制用户设备的方法和装置
    • US08509794B2
    • 2013-08-13
    • US13457028
    • 2012-04-26
    • Mingyi DengXu TianQiongtao Ren
    • Mingyi DengXu TianQiongtao Ren
    • H04W72/00
    • H04W48/10H04W16/32H04W48/12H04W52/0225H04W68/02H04W84/045
    • An apparatus for controlling User Equipments (UEs) in a communication system including a source cell and a destination cell is provided. A frequency and the scrambling codes of signals transmitted by a base station of the destination cell are the same as a frequency and scrambling codes of signals transmitted by a base station of the source cell. After the UE receives the signals, the signals are regarded as being transmitted by the source cell, and the UE is woken up by information over a Paging Indication Channel (PICH) and a Paging Channel (PCH), and then the UE reads information configured by the destination cell and carried over the common channel of the signals, and performs corresponding operations according to the information. The information over the PICH and the PCH wakes up the specified UE.
    • 提供了一种用于在包括源单元和目的地单元的通信系统中控制用户设备(UE)的设备。 由目的地小区的基站发送的信号的频率和扰码与源小区的基站发送的信号的频率和扰码相同。 在UE收到信号后,该信号被认为是由源小区发送的,UE通过寻呼指示信道(PICH)和寻呼信道(PCH)通过信息唤醒,然后UE读取配置的信息 由目的地小区携带,并通过信号的公共信道进行传送,根据该信息进行相应的动作。 通过PICH和PCH的信息唤醒指定的UE。