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    • 1. 发明申请
    • TRI-LAYERED POWER SCHEME FOR ARCHITECTURES WHICH CONTAIN A MICRO-CONTROLLER
    • 用于包含微控制器的架构的三层电源方案
    • US20090164819A1
    • 2009-06-25
    • US11963215
    • 2007-12-21
    • Michael BergerMichael N. DerrJoshua ReschMukesh KatariaMazen GedeonEli KupermannJeffrey John Vick
    • Michael BergerMichael N. DerrJoshua ReschMukesh KatariaMazen GedeonEli KupermannJeffrey John Vick
    • G06F1/32
    • G06F1/3203G06F1/3243Y02D10/152
    • Various embodiments are directed to a tri-layered power scheme for architectures which contain a microcontroller. In one embodiment, a power management system may comprise a microcontroller in a chipset, a low consumption power well to control a power supply to the microcontroller, and a power controller to control a power supply to the low consumption power well. The power management system may be arranged to switch among multiple power consumption states. In a maximum power consumption state, the microcontroller is on, the power controller is on, and the low consumption power well is on. In an intermediate power consumption state, the microcontroller is off, the power controller is on, and the low consumption power well is required to be on. In a minimum power consumption state, the microcontroller is off, the power controller is on, and the low consumption power well is optionally on or off at the discretion of the power controller. Other embodiments are described and claimed.
    • 各种实施例针对包含微控制器的架构的三层电力方案。 在一个实施例中,电源管理系统可以包括芯片组中的微控制器,以及用于控制对微控制器的电源的低功耗电力,以及功率控制器以便很好地控制对低功耗电力的供电。 电源管理系统可以被布置成在多个功耗状态之间切换。 在最大功耗状态下,微控制器打开,电源控制器打开,低功耗电源正常。 在中间功耗状态下,微控制器关闭,电源控制器处于打开状态,低功耗电源需要打开。 在最小功耗状态下,微控制器处于关闭状态,功率控制器处于开启状态,低功耗状态可以根据电源控制器选择开启或关闭。 描述和要求保护其他实施例。
    • 2. 发明授权
    • Tri-layered power scheme for architectures which contain a micro-controller
    • 包含微控制器的架构的三层电源方案
    • US07900072B2
    • 2011-03-01
    • US11963215
    • 2007-12-21
    • Michael BergerMichael DerrJoshua ReschMukesh KatariaMazen GedeonEli KupermannJeffrey John Vick
    • Michael BergerMichael DerrJoshua ReschMukesh KatariaMazen GedeonEli KupermannJeffrey John Vick
    • G06F1/00G06F1/26H04M1/00G11C5/14
    • G06F1/3203G06F1/3243Y02D10/152
    • Various embodiments are directed to a tri-layered power scheme for architectures which contain a microcontroller. In one embodiment, a power management system may comprise a microcontroller in a chipset, a low consumption power well to control a power supply to the microcontroller, and a power controller to control a power supply to the low consumption power well. The power management system may be arranged to switch among multiple power consumption states. In a maximum power consumption state, the microcontroller is on, the power controller is on, and the low consumption power well is on. In an intermediate power consumption state, the microcontroller is off, the power controller is on, and the low consumption power well is required to be on. In a minimum power consumption state, the microcontroller is off, the power controller is on, and the low consumption power well is optionally on or off at the discretion of the power controller. Other embodiments are described and claimed.
    • 各种实施例针对包含微控制器的架构的三层电力方案。 在一个实施例中,电源管理系统可以包括芯片组中的微控制器,以及用于控制对微控制器的电源的低功耗电力,以及功率控制器以便很好地控制对低功耗电力的供电。 电源管理系统可以被布置成在多个功耗状态之间切换。 在最大功耗状态下,微控制器打开,电源控制器打开,低功耗电源正常。 在中间功耗状态下,微控制器关闭,电源控制器处于打开状态,低功耗电源需要打开。 在最小功耗状态下,微控制器处于关闭状态,功率控制器处于开启状态,低功耗状态可以根据电源控制器选择开启或关闭。 描述和要求保护其他实施例。
    • 8. 发明申请
    • ACTIVITY MONITORING AND POLYMERIZATION PROCESS CONTROL
    • 活动监测和聚合过程控制
    • US20140058050A1
    • 2014-02-27
    • US13878255
    • 2011-09-23
    • Ursula TrachtRicarda LeiberichMichael BergerHanns-Ingolf PaulUdo Wiesner
    • Ursula TrachtRicarda LeiberichMichael BergerHanns-Ingolf PaulUdo Wiesner
    • C08F236/08
    • C08F236/08B01J19/0033B01J19/18B01J2219/00164B01J2219/00186B01J2219/00198B01J2219/00209B01J2219/00231C08F210/12C08F2400/02C08F2/00
    • The present invention relates to a method to control a liquid feed stream carried out by measuring at least one spectrum of the liquid feed stream comprising an initiator or catalyst, determining its activity using a predictive model on the basis of said spectrum and adjusting the feed streams and/or the preparation conditions of the feed stream comprising the initiators or catalysts in order to attain or maintain a desired level of total activity. In a further aspect the invention relates to a controlled process for the preparation of polymers in a polymerization reactor by contacting liquid feed streams comprising monomers and initiators or catalysts, whereby the control of the feed streams entering the polymerization reactor and/or the initiator or catalyst preparation is carried out by measuring at least one spectrum of the liquid feed stream comprising an initiator or catalyst, determining its activity using a predictive model on the basis of said spectrum and adjusting the feed streams and/or the preparation conditions of the feed stream comprising the initiators or catalysts in order to attain or maintain a desired level of total activity within the polymerization reactor. More particularly, the invention relates to a method for controlling the activity of aluminium containing initiators in a process for the co-polymerisation of isolefins and multiolefins, in particular isobutylene and isoprene. The present invention further to device and a chemical plant suitable to operate said process.
    • 本发明涉及一种控制液体进料流的方法,所述方法是通过测量包含引发剂或催化剂的至少一个光谱的液体进料物流,使用基于所述光谱的预测模型确定其活性并调节进料流 和/或包含引发剂或催化剂的进料流的制备条件以获得或保持期望的总活性水平。 在另一方面,本发明涉及通过使包含单体和引发剂或催化剂的液体进料流接触而在聚合反应器中制备聚合物的受控方法,由此控制进入聚合反应器和/或引发剂或催化剂的进料流 通过测量包含引发剂或催化剂的液体进料流的至少一个谱线,基于所述光谱使用预测模型确定其活性并调节进料流和/或进料流的制备条件来进行制备,所述进料流和/ 引发剂或催化剂,以获得或保持聚合反应器内所需的总活性水平。 更具体地说,本发明涉及在异烯烃和多烯烃,特别是异丁烯和异戊二烯的共聚合方法中控制含铝引发剂的活性的方法。 本发明还涉及适用于操作所述方法的装置和化学设备。
    • 10. 发明申请
    • ALWAYS-AVAILABLE EMBEDDED THEFT REACTION SUBSYSTEM
    • 总是可用的嵌入式反应子系统
    • US20140020122A1
    • 2014-01-16
    • US13991888
    • 2011-12-22
    • Michael Berger
    • Michael Berger
    • G06F21/88
    • G06F21/88H04W12/12
    • A platform including an always-available theft protection system is described. In one embodiment, the system comprises an arming logic to arm the platform, when an arming command is received, a risk behavior logic to detect a potential problem when the platform is armed, and a core logic component to provide logic to analyze the potential problem, and to move the platform to a suspecting mode, when the potential problem indicates a theft suspicion. The system, in one embodiment, further comprises configuration logic to configure settings for the system when the platform is in an unarmed mode, the configuration logic including a user logic enabling an authorized user to alter settings and an administrator logic enabling an administrator to alter the settings using an authenticated set request.
    • 描述了包括始终可用的盗窃保护系统的平台。 在一个实施例中,当接收到布防命令时,该系统包括用于布置平台的布防逻辑,用于在平台布防时检测潜在问题的风险行为逻辑,以及提供用于分析潜在问题的逻辑的核心逻辑组件 ,并将平台移动到怀疑模式,当潜在问题显示盗窃嫌疑。 在一个实施例中,该系统还包括配置逻辑,用于在平台处于非武装模式时配置系统的设置,该配置逻辑包括允许授权用户改变设置的用户逻辑,以及管理员逻辑,使得管理员能够改变 使用验证的设置请求进行设置。