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    • 22. 发明申请
    • POWER TOOL COMMUNICATION SYSTEM
    • 电动工具通讯系统
    • WO2016203315A2
    • 2016-12-22
    • PCT/IB2016000987
    • 2016-06-15
    • MILWAUKEE ELECTRIC TOOL CORP
    • MATSON STEPHENCOULIS CHRISTIAN
    • G06Q10/087G06F3/0482G06F3/04842
    • A mobile device and method for determining power tool attendance. The mobile device and method are able to generate a list of power tools that are missing based on being outside of communication range with the mobile device. For example, the mobile device includes a short-range transceiver, a memory, and a processor coupled to the memory and the short-range transceiver. The processor is configured to receive a list of a first plurality of power tools and receive, via a user interface, a selection to detect nearby tools. The processor is also configured to receive, via the short-range transceiver, identification signals from a second plurality of power tools and determine that a subset of the first plurality of power tools is missing based on the identification signals. The processor is further configured to generate an indication that the subset of the first plurality of power tools is missing.
    • 一种用于确定电动工具出勤的移动设备和方法。 移动设备和方法能够基于与移动设备的通信范围之外的方式生成缺少的电动工具列表。 例如,移动设备包括短距离收发器,存储器和耦合到存储器和短距离收发器的处理器。 处理器被配置为接收第一多个电动工具的列表,并且经由用户界面接收检测附近工具的选择。 处理器还被配置为经由短距离收发器接收来自第二多个电动工具的识别信号,并且基于识别信号确定第一多个电动工具的子集丢失。 处理器还被配置为产生第一多个电动工具的子集丢失的指示。
    • 28. 发明申请
    • METHOD AND SYSTEM FOR BATTERY CHARGING
    • 电池充电方法与系统
    • WO2005117231A8
    • 2008-05-02
    • PCT/US2005018534
    • 2005-05-24
    • MILWAUKEE ELECTRIC TOOL CORPJOHNSON TODD WROSENBECKER JAY JMEYER GARY DZEILER JEFFREY MGLASGOW KEVIN LZICK JONATHAN ABROZEK JEFFREY MSCHEUCHER KARL F
    • JOHNSON TODD WROSENBECKER JAY JMEYER GARY DZEILER JEFFREY MGLASGOW KEVIN LZICK JONATHAN ABROZEK JEFFREY MSCHEUCHER KARL F
    • H02J7/00H01M2/10H01M6/50H01M10/42H01M10/46H02J7/02
    • H01M2/1038H01M6/50H01M10/4207
    • A combination including a battery pack and a battery charger operable to supply a charging current to the battery pack. The battery pack includes a first battery terminal, a second battery terminal, and a battery cell having a present state of charge. The battery cell is coupled to at least one of the first battery terminal and the second battery terminal. The battery pack also includes a battery microcontroller coupled to at least one of the first battery terminal and the second battery terminal. The microcontroller is operable to measure the present state of charge of the battery cell to produce battery cell present state of charge measurements. The battery charger includes a first charger terminal configured to couple to at least one of the first battery terminal and the second battery terminal and a second charger terminal configured to couple to at least one of the first battery terminal and the second battery terminal. The first charger terminal is configured to supply charging current to the battery pack. The battery charger also includes a charger microcontroller coupled to the second charger terminal and operable to receive the battery cell present state of charge measurements from the battery microcontroller. The charger microcontroller is also operable to supply the charging current to the battery pack in pulses, wherein each pulse includes a first time interval where charging current is being supplied to the battery and a second time interval where charging current is being suspended from the battery. The microcontroller is further operable to modify the first time interval of a pulse based at least in part on the battery cell present state of charge measurements received from the battery microcontroller.
    • 包括电池组和电池充电器的组合,其可操作以向电池组提供充电电流。 电池组包括第一电池端子,第二电池端子和具有当前充电状态的电池单元。 电池单元耦合到第一电池端子和第二电池端子中的至少一个。 电池组还包括耦合到第一电池端子和第二电池端子中的至少一个的电池微控制器。 微控制器可操作地测量电池单元的当前充电状态,以产生电池单元当前的充电测量状态。 电池充电器包括被配置为耦合到第一电池端子和第二电池端子中的至少一个的第一充电器端子和被配置为耦合到第一电池端子和第二电池端子中的至少一个的第二充电器端子。 第一充电器端子被配置为向电池组提供充电电流。 电池充电器还包括耦合到第二充电器端子的充电器微控制器,并且可操作以从电池微控制器接收电池单元当前的充电测量状态。 充电器微控制器还可操作以脉冲向电池组提供充电电流,其中每个脉冲包括第一时间间隔,其中充电电流被提供给电池以及第二时间间隔,其中充电电流正在从电池暂停。 微控制器还可操作以至少部分地基于从电池微控制器接收的电池单元现在的电荷测量状态来修改脉冲的第一时间间隔。