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    • 3. 发明申请
    • Adjustable cut-off voltage for mobile device battery
    • 移动设备电池的可调节截止电压
    • US20090045779A1
    • 2009-02-19
    • US11891777
    • 2007-08-13
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • H02J7/00
    • H02J9/002H02J7/0031Y02D70/122
    • A power management system for a mobile electronic device, including a microprocessor for continually monitoring a voltage of a battery within a mobile electronic device, wherein the device can operate in either a standalone mode powered by the battery, or in an externally powered mode, and wherein the battery is charged when the device is in external power mode, and a power manager coupled with said voltage meter, for controlling operation of the device according to the following logic: if the monitored voltage falls below an upper turn-on threshold, UTOT, during operation of the device in standalone mode, but is above a lower turn-on threshold, LTOT, then automatically turning the device off, and enabling the device to be turned on in an emergency mode, wherein at least one emergency action is enabled, and if the monitored voltage falls below LTOT during operation of the device in standalone mode, then automatically turning the device off, and preventing the device from being turned on. A method is also described and claimed.
    • 一种用于移动电子设备的电源管理系统,包括用于连续监视移动电子设备内的电池电压的微处理器,其中所述设备可以以由电池供电的独立模式或以外部供电模式操作,以及 其中当所述设备处于外部电源模式时,所述电池被充电,以及与所述电压计耦合的电源管理器,用于根据以下逻辑控制所述设备的操作:如果所监视的电压低于上限导通阈值,则UTOT 在独立模式下的设备操作期间,但是高于较低的导通阈值LTOT,则自动关闭设备,并且在紧急模式下启用该设备,其中启用至少一个紧急动作 ,并且如果在独立模式下设备运行期间监视的电压低于LTOT,则自动关闭设备,并防止设备转动 n。 还描述并要求保护的方法。
    • 4. 发明授权
    • Bi-directional power control
    • 双向功率控制
    • US08994230B2
    • 2015-03-31
    • US13233618
    • 2011-09-15
    • Itay ShermanEran Miller
    • Itay ShermanEran Miller
    • H01H47/00H01H35/00H01H83/18H02H3/02H02H3/42H04M15/00G06Q30/06
    • H04M15/00G06Q30/06Y02D70/122Y10T307/469Y10T307/615Y10T307/625Y10T307/707Y10T307/826Y10T307/832Y10T307/944
    • An electrical circuit for bi-directional power control between two devices, including a mobile communication card, an electronic device that connects to the communication card, the electronic device being either (i) a host device that operates independently of the communication card and also interoperates with the communication card, or (ii) a jacket for the communication card, wherein the jacket is a passive device that does not operate independently of the communication card, and circuitry connecting the mobile communication card with the electronic device, including a device on/off button operative to power the electronic device on and off, and a switch, wherein the circuitry uses a single connection line connecting the communication card, the electronic device, the device on/off button, and the switch, to enable the electronic device to automatically power the communication card on and off using the switch, in response to the electronic device being respectively powered on and off.
    • 一种用于在两个设备之间进行双向功率控制的电路,包括移动通信卡,连接到通信卡的电子设备,电子设备是(i)独立于通信卡操作的主机设备,以及互操作 通信卡,或者(ii)用于通信卡的外套,其中护套是不独立于通信卡操作的无源设备,以及连接移动通信卡与电子设备的电路,包括设备开/ 关闭按钮,用于对电子设备开启和关闭进行供电,以及开关,其中电路使用连接通信卡,电子设备,设备开/关按钮和开关的单个连接线,以使得电子设备能够 响应于电子设备分别通电和关闭,使用开关自动为通信卡打开和关闭电源。
    • 5. 发明授权
    • Bi-directional power control
    • 双向功率控制
    • US08032259B2
    • 2011-10-04
    • US12263560
    • 2008-11-03
    • Itay ShermanEran Miller
    • Itay ShermanEran Miller
    • G06F19/00
    • H04M15/00G06Q30/06Y02D70/122Y10T307/469Y10T307/615Y10T307/625Y10T307/707Y10T307/826Y10T307/832Y10T307/944
    • An electrical circuit for bi-directional power control between two devices, including a first battery-operated device, including a first battery for providing a source of power to the first battery-operated device, a first power management subsystem connected to the first battery, to power on and power off components of the first battery-operated device in response to a first wakeup event, WE1, and a first on/off button for generating WE1, a second battery-operated device, including a second battery for providing a source of power to the second battery-operated device, a second power management subsystem connected to the second battery, to power on and power off components of the second battery-operated device in response to a second wakeup event WE2, a second on/off button for generating WE2, and a switch for generating WE1 simultaneously when the second on/off button generates WE2, and circuitry including a single connection inter-connecting the first power management subsystem, the first on/off button, the second power management subsystem, the second on/off button, and the switch for generating WE1.
    • 一种用于两个设备之间的双向功率控制的电路,包括第一电池供电设备,包括用于向第一电池供电设备提供电源的第一电池,连接到第一电池的第一电源管理子系统, 响应于第一唤醒事件WE1和用于产生WE1的第一开/关按钮来接通和关闭第一电池供电装置的部件的电源,第二电池供电装置,包括用于提供源的第二电池 连接到第二电池的第二电源管理子系统响应于第二电池供电装置的第二电池供电装置的电源接通和关闭第二电池供电装置的组件的电源,第二开/关按钮 用于产生WE2,以及用于当第二开/关按钮产生WE2时同时产生WE1的开关,以及包括连接第一电源管理子系统的单个连接的电路, 第一开/关按钮,第二电源管理子系统,第二开/关按钮和用于生成WE1的开关。
    • 8. 发明申请
    • BI-DIRECTIONAL POWER CONTROL
    • 双向功率控制
    • US20090199025A1
    • 2009-08-06
    • US12263560
    • 2008-11-03
    • Itay ShermanEran Miller
    • Itay ShermanEran Miller
    • G06F1/26H03L5/00
    • H04M15/00G06Q30/06Y02D70/122Y10T307/469Y10T307/615Y10T307/625Y10T307/707Y10T307/826Y10T307/832Y10T307/944
    • An electrical circuit for bi-directional power control between two devices, including a first battery-operated device, including a first battery for providing a source of power to the first battery-operated device, a first power management subsystem connected to the first battery, to power on and power off components of the first battery-operated device in response to a first wakeup event, WE1, and a first on/off button for generating WE1, a second battery-operated device, including a second battery for providing a source of power to the second battery-operated device, a second power management subsystem connected to the second battery, to power on and power off components of the second battery-operated device in response to a second wakeup event WE2, a second on/off button for generating WE2, and a switch for generating WE1 simultaneously when the second on/off button generates WE2, and circuitry including a single connection inter-connecting the first power management subsystem, the first on/off button, the second power management subsystem, the second on/off button, and the switch for generating WE1.
    • 一种用于两个设备之间的双向功率控制的电路,包括第一电池供电设备,包括用于向第一电池供电设备提供电源的第一电池,连接到第一电池的第一电源管理子系统, 响应于第一唤醒事件WE1和用于产生WE1的第一开/关按钮来接通和关闭第一电池供电装置的部件的电源,第二电池供电装置,包括用于提供源的第二电池 连接到第二电池的第二电源管理子系统响应于第二电池供电装置的第二电池供电装置的电源接通和关闭第二电池供电装置的组件的电源,第二开/关按钮 用于产生WE2,以及用于当第二开/关按钮产生WE2时同时产生WE1的开关,以及包括连接第一电源管理子系统的单个连接的电路, 第一开/关按钮,第二电源管理子系统,第二开/关按钮和用于生成WE1的开关。
    • 10. 发明授权
    • Adjustable cut-off voltage for mobile device battery
    • 移动设备电池的可调节截止电压
    • US07795842B2
    • 2010-09-14
    • US11891777
    • 2007-08-13
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • Itay ShermanEyal BychkovEran MillerUri Ron
    • H02J7/00
    • H02J9/002H02J7/0031Y02D70/122
    • A power management system for a mobile electronic device, including a microprocessor for continually monitoring a voltage of a battery within a mobile electronic device, wherein the device can operate in either a standalone mode powered by the battery, or in an externally powered mode, and wherein the battery is charged when the device is in external power mode, and a power manager coupled with said voltage meter, for controlling operation of the device according to the following logic: if the monitored voltage falls below an upper turn-on threshold, UTOT, during operation of the device in standalone mode, but is above a lower turn-on threshold, LTOT, then automatically turning the device off, and enabling the device to be turned on in an emergency mode, wherein at least one emergency action is enabled, and if the monitored voltage falls below LTOT during operation of the device in standalone mode, then automatically turning the device off, and preventing the device from being turned on. A method is also described and claimed.
    • 一种用于移动电子设备的电源管理系统,包括用于连续监视移动电子设备内的电池电压的微处理器,其中所述设备可以以由电池供电的独立模式或以外部供电模式操作,以及 其中当所述设备处于外部电源模式时,所述电池被充电,以及与所述电压计耦合的电源管理器,用于根据以下逻辑控制所述设备的操作:如果所监视的电压低于上限导通阈值,则UTOT 在独立模式下的设备操作期间,但是高于较低的导通阈值LTOT,则自动关闭设备,并且在紧急模式下启用该设备,其中启用至少一个紧急动作 ,并且如果在独立模式下设备运行期间监视的电压低于LTOT,则自动关闭设备,并防止设备转动 n。 还描述并要求保护的方法。