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    • 1. 发明授权
    • Audio proof of delivery system and method
    • 音响系统和方法证明
    • US5661291A
    • 1997-08-26
    • US477875
    • 1995-06-07
    • Kevin John AhearnFrederick M. WeaverJames M. DeArrasVernon L. StantJames A. Trautwein
    • Kevin John AhearnFrederick M. WeaverJames M. DeArrasVernon L. StantJames A. Trautwein
    • G06Q10/08G06K7/10
    • G06Q10/08
    • A portable item tracking unit includes a bar code reader for capturing a bar code related to an item, a microphone for capturing an audio identification from a recipient of an item, and a memory. The memory associatively electronically stores a digital signal related to the audio identification along with a digital representation of bar code data to provide audio proof of delivery of the item. A display and a speaker may respectively display the stored bar code related to the item and audibly broadcast the electronically stored audio identification for the item. A user input is preferably included for verifying that the input of the bar code and the audio identification is satisfactory. A transferring circuit transfers the electronically stored bar code and the electronically stored audio identification to a host computer. The host computer includes its own memory for associatively storing a plurality of digital identification indicia having a respective plurality of digital audio identifications for a corresponding plurality of items. A consumer can then access the host computer via a telephone network. After the host computer accepts selection of an item, a reconstruction circuit converts the digital identification indicia and the digital audio identification for the selected item into first and second audible messages. A transmitter may then transmit the first and second audible messages to provide audio proof of delivery of the item.
    • 便携式物品跟踪单元包括用于捕获与物品相关的条形码的条形码读取器,用于从物品的接收者捕获音频标识的麦克风和存储器。 存储器以电子方式电子地存储与音频识别有关的数字信号以及条形码数据的数字表示,以提供音乐证明物品的传送。 显示器和扬声器可以分别显示与该项目相关的所存储的条形码并且可听地广播用于该项目的电子存储音频标识。 优选地包括用户输入以验证条形码和音频标识的输入是令人满意的。 转移电路将电子存储的条形码和电子存储的音频标识传送到主计算机。 主机包括其自己的存储器,用于相关联地存储具有相应多个数字音频标识的多个数字识别标记,用于相应的多个项目。 消费者然后可以经由电话网络访问主计算机。 在主计算机接受项目的选择之后,重建电路将所选项目的数字识别标记和数字音频标识转换为第一和第二可听消息。 然后,发射机可以发送第一和第二可听消息以提供对物品的传送的音频证明。
    • 2. 发明授权
    • Everyday wireless vehicle notification and vehicle location systems and methods related thereto
    • 日常无线车辆通知和车辆定位系统及方法相关
    • US07394403B2
    • 2008-07-01
    • US10509172
    • 2003-02-14
    • Josef K. WinklerVernon L. StantStephen G. Wilson
    • Josef K. WinklerVernon L. StantStephen G. Wilson
    • G08G1/123
    • G08G1/127
    • The present invention features a system and methods for notifying passengers of an approaching vehicle. Utilizing such a system and methods, passengers can remain in a safe, controlled environment, avoiding harsh environmental conditions and excessive waiting times, instead arriving at their pick-up point closer and prior to a vehicle's arrival. More specifically, the present invention relates to a bus notification system (100a) wherein passengers are able to know the location and estimated arrival time of the bus several minutes before its arrival at a specified location along the bus route. The present invention also features a system and methods for locating an in-transit vehicle and for providing real-time mapping and monitoring of such in-transit vehicles.
    • 本发明具有用于通知乘客接近车辆的系统和方法。 使用这种系统和方法,乘客可以保持在安全,受控的环境中,避免恶劣的环境条件和过多的等待时间,而不是在车辆抵达之前到达他们的接送点。 更具体地,本发明涉及一种总线通知系统(100a),其中乘客能够在其到达公共汽车路线的指定位置之前几分钟知道公共汽车的位置和估计到达时间。 本发明还具有用于定位中转车辆的系统和方法,并且用于提供对这种在行车辆的实时映射和监视。
    • 7. 发明授权
    • Data recognition apparatus and portable data reader having power
management system
    • 具有电源管理系统的数据识别装置和便携式数据读取器
    • US5659761A
    • 1997-08-19
    • US324980
    • 1994-10-18
    • James M. DeArrasVernon L. StantLawrence R. OberBengt E. SalmonssonJoseph W. LoweWalter C. SimciakDavid P. Gibbon
    • James M. DeArrasVernon L. StantLawrence R. OberBengt E. SalmonssonJoseph W. LoweWalter C. SimciakDavid P. Gibbon
    • G06Q10/10G06F13/00
    • G06Q10/10
    • A data recognition apparatus of the invention preferably has a data communication apparatus and a portable data reader adapted to communicate therewith. The portable data reader is particularly adapted to substantially extend the time period required before replacing or recharging a portable power source connected thereto. The portable data reader preferably includes a data sensor, a central processor, a display, a user interface, a transceiver, a timer, a portable power source, and a power manager. The power manager is connected in electrical communication with the portable power source, the data sensor, the central processor, the display, the user interface, and the transceiver and the central processor is connected in electrical communication with the timer. The power manager manages the amount of and timing of power supplied to the data sensor, the central processor, the display, and the transmitter and receiver responsive to command signals received from the central processor and interaction of a user with the user interface. The power manager also preferably provides at least four modes of predetermined power operation of the central processor, the display, and the user interface. A method of managing power for such a portable data reader are also included.
    • 本发明的数据识别装置优选地具有适于与其通信的数据通信装置和便携式数据读取器。 便携式数据读取器特别适用于在连接到其上的便携式电源更换或再充电之前基本上延长所需的时间。 便携式数据读取器优选地包括数据传感器,中央处理器,显示器,用户接口,收发器,定时器,便携式电源和功率管理器。 电源管理器与便携式电源,数据传感器,中央处理器,显示器,用户接口和收发器电连接,中央处理器与定时器电连接。 功率管理器响应于从中央处理器接收的命令信号和用户与用户界面的交互来管理提供给数据传感器,中央处理器,显示器,发射器和接收器的电力的数量和时间。 功率管理器还优选地提供中央处理器,显示器和用户接口的至少四种预定功率操作模式。 还包括管理这种便携式数据读取器的电源的方法。
    • 8. 发明授权
    • Power conservation in microprocessor controlled devices
    • 微处理器控制器件中的功率保存
    • US5142684A
    • 1992-08-25
    • US370648
    • 1989-06-23
    • Richard A. PerryVernon L. Stant
    • Richard A. PerryVernon L. Stant
    • G06F1/08G06F1/32
    • G06F1/3293G06F1/08G06F1/3203Y02B60/121
    • Power may be conserved and battery life may be extended in a microprocessor controlled device by providing two microprocessors, one of which is a low power, low performance low speed processor for performing background tasks, the other of which is a high power, high performance, high speed processor for performing computationally intensive foreground tasks. The low speed processor activates the high speed processor when a high performance task is to be performed. When activating the high performance processor, the low performance processor also controls the device's power supply to provide high voltage to the high speed processor. The high speed processor may run at variable clock speeds, with power consumption of the processor increasing with increasing speed. The high speed processor selects its own clock speed based upon the task to be performed, by including a clock speed in each software subroutine which controls a task. The software subroutine associated with a task is thereby executed at its associated clock speed, which may be chosen to be the lowest possible clock speed consistent with the task to be performed.
    • 通过提供两个微处理器,其中之一是用于执行后台任务的低功率,低性能低速处理器,另一个是高功率,高性能的,可以节省电力并且在微处理器控制的设备中延长电池寿命, 用于执行计算密集型前台任务的高速处理器。 当执行高性能任务时,低速处理器激活高速处理器。 当激活高性能处理器时,低性能处理器还控制器件的电源,为高速处理器提供高电压。 高速处理器可以以可变的时钟速度运行,处理器的功耗随着速度的增加而增加。 高速处理器通过在控制任务的每个软件子程序中包括时钟速度,基于要执行的任务来选择其自己的时钟速度。 与任务相关联的软件子程序因此以其相关联的时钟速度执行,其可以被选择为与要执行的任务一致的最低可能时钟速度。