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    • 1. 发明授权
    • Messaging system having roaming capability
    • 具有漫游能力的消息系统
    • US5625351A
    • 1997-04-29
    • US378136
    • 1995-01-24
    • David F. WillardBarbara D. LaflinWilliam J. KuznickiMark AronsonEric T. Eaton
    • David F. WillardBarbara D. LaflinWilliam J. KuznickiMark AronsonEric T. Eaton
    • H04W84/02H04B7/26
    • H04W84/022
    • A messaging system capable of transmitting messages to receivers which roam between coverage areas. In one configuration, a coverage area (100) is divided into a plurality of zones (110). A single simulcast system identification (SSID) number is assigned which consists of a local identification number which identifies the coverage area (100), a zone identifier which identifies a zone (110) within the coverage area, traffic splitting flags and a frequency. For larger roaming areas, a network (200) is defined as consisting of a plurality of service areas (210) and is identified by network roaming identification information (NRI). NRI information and/or SSID information is stored in a receiver according to desired coverage and like information is transmitted in the corresponding zone or service area.
    • 一种能够向覆盖区域之间漫游的接收机发送消息的消息系统。 在一个配置中,覆盖区域(100)被划分为多个区域(110)。 分配单个联播系统识别(SSID)号码,其由标识覆盖区域(100)的本地标识号码,标识覆盖区域内的区域(110)的区域标识符,业务分割标志和频率。 对于较大的漫游区域,网络(200)被定义为由多个服务区域(210)组成,并且由网络漫游识别信息(NRI)识别。 NRI信息和/或SSID信息根据期望的覆盖存储在接收机中,并且类似的信息在相应的区域或服务区域中传输。
    • 2. 发明授权
    • Messaging system providing flexible roaming and method therefor
    • 提供灵活漫游的消息系统及其方法
    • US5956640A
    • 1999-09-21
    • US603966
    • 1996-02-20
    • Eric T. EatonDavid F. WillardWilliam J. Kuznicki
    • Eric T. EatonDavid F. WillardWilliam J. Kuznicki
    • H04W84/02H04Q7/20
    • H04W84/022
    • A message transmission system (100) and method for providing flexible roaming to a receiving device (126) which includes a code memory (422) which stores addresses of a first type (1202) to enable reception of messages within a local geographic area, and an address of a second type (1214) to enable reception of the messages within a different geographic area. The message transmission system (100) includes a transmitter (SSID1) which transmits the addresses of the first type with the messages associated therewith within the local geographic area, and a controller (204) which controls conversion of the addresses of the first type to the address of the second type, and transfer of the address of the second type with the messages associated with the addresses of the first type to a transmitter (SSID2-SSID5) which transmits the address of the second type with the messages associated therewith to the receiving device when operating within the different geographic area.
    • 一种用于向接收设备(126)提供灵活漫游的消息传输系统(100)和方法,包括存储第一类型(1202)的地址的代码存储器(422),以使得能够接收本地地理区域内的消息;以及 第二类型(1214)的地址,以使得能够在不同的地理区域内接收消息。 消息传输系统(100)包括:发送器(SSID1),其在本地地理区域内发送与其相关的消息的第一类型的地址;以及控制器(204),其控制第一类型的地址到 第二类型的地址和将与第一类型的地址相关联的消息的第二类型的地址传送到发送器(SSID2-SSID5),发送器(SSID2-SSID5)将具有与其相关联的消息的第二类型的地址发送到接收 设备在不同地理区域内运行时。
    • 5. 发明授权
    • Paging system using message fragmentation to redistribute traffic
    • 分页系统使用消息分段来重新分配流量
    • US5311516A
    • 1994-05-10
    • US980084
    • 1992-11-23
    • William J. KuznickiDavid F. Willard
    • William J. KuznickiDavid F. Willard
    • H04W8/18H04L7/033H04L7/04H04L25/06H04W88/02H04W88/18H04J3/24H04Q7/00
    • H04W88/187H04L25/062H04L7/0331H04L7/041H04W88/026H04L7/04H04L7/046
    • A selective call receiver (106) receives one or more message packets of a transmitted fragmented message, where each of the one or more message packets includes an address (1605) and message data (1610), and the message data (1610) includes an indication (1702) of whether more message packets are to be received for the fragmented message. The selective call receiver (106) receives an address of each message packet, and then correlates (2908) the address to one or more predetermined addresses. After a successful correlation (2908), the selective call receiver (106) decodes the message data (1610) of each message packet, and then successively stores (2928, 2936, 2942) the decoded message data (1610) to reconstruct the fragmented message. The selective call receiver (106) determines that the fragmented message is completely reconstructed after detection (2918) in the decoded message data (1610) an indication (1702) that no more message packets are to be received for the fragmented message.
    • 选择呼叫接收机(106)接收传送的分段消息的一个或多个消息分组,其中所述一个或多个消息分组中的每一个包括地址(1605)和消息数据(1610),并且所述消息数据(1610)包括 指示(1702)是否要为分段消息接收更多消息分组。 选呼接收机(106)接收每个消息分组的地址,然后将(2908)地址与一个或多个预定地址相关联。 在成功的相关(2908)之后,选呼接收机(106)对每个消息分组的消息数据(1610)进行解码,然后连续地存储(2928,2936,2942)解码的消息数据(1610)以重构分段消息 。 选择呼叫接收机(106)在解码的消息数据(1610)中的检测(2918)之后确定分段消息被完全重构了对分片消息不再接收消息分组的指示(1702)。
    • 6. 发明授权
    • Communication system capable of reassigning radio receivers
    • US5371899A
    • 1994-12-06
    • US890981
    • 1992-05-29
    • William J. KuznickiRobert J. Schwendeman
    • William J. KuznickiRobert J. Schwendeman
    • H04W88/18H04Q7/00
    • H04W88/185
    • A radio communication system (100) has radio receivers (106) assigned to a predetermined one of a plurality of time periods (FRAME 0-127). The radio communication system (100) comprises a transmitter (104) that transmits information during the predetermined time period (FRAME 0-127) assigned to at least one radio receiver (106). A receiver (202, 206) receives information directed to said at least one radio receivers (106), the radio receivers (106) being individually assigned to receive information during at least one of a plurality of predetermined time periods (FRAME 0-127). A monitoring device (1702) monitors a level of traffic associated with each of the predetermined time periods (FRAME 0-127) and a measuring device (1704) measures a level of traffic associated with the at least one radio receiver (106) over the assigned predetermined time period (FRAME 0-127). An identifying device (1708) which is coupled to the measuring device (1704) identifies if the level of traffic associated with the at least one radio receiver (106) exceeds a predetermined threshold value during the assigned predetermined time period (FRAME 0-127). A generator (1732) which is coupled to the measuring device (1706) and to the identifying device (1708) generates a control signal, and the transmitter (1736) transmits the control signal to the at least one radio receiver (106) for reassigning the at least one radio receiver (106). The at least one radio receiver (106) comprises a receiver (804) which receives the control signal and a decoder (810) which is coupled to the receiver (804) which decodes the control signal. A reassigning device (1812) which is coupled to the decoder (810) reassigns the radio receiver (106) from the assigned predetermined time period (FRAME 0-127) to another of the plurality of predetermined time periods (FRAME 0-127) having a lower level of traffic value associated therewith for reducing the level of traffic in the assigned predetermined time period (FRAME 0-127).
    • 7. 发明授权
    • Paging message encryption
    • 寻呼消息加密
    • US5283832A
    • 1994-02-01
    • US781546
    • 1991-10-22
    • Robert K. Lockhart, Jr.William J. Kuznicki
    • Robert K. Lockhart, Jr.William J. Kuznicki
    • G08B3/10H04L9/00
    • G08B3/1066H04L9/0863
    • A paging receiver (15) for receiving secure radio frequency (RF) communications comprises a receiver circuit (102) for receiving and demodulating a signal to obtain information. A memory device (108) is coupled to the receiver circuit (102) for storing the information. A de-encrypter (110) is coupled to the memory device (108) for de-encrypting the information and a decoder (112) is coupled to the de-encrypter (110) for decoding the de-encrypted information to derive a message. User input controls (120) selectably generate a user input signal. A controller (114) is coupled to the memory device (108) and the user input controls (120) for causing the memory device (108) to provide the information stored therein to the de-encrypter (110) in response to the user input signal being equivalent to a predetermined de-encryption signal.
    • 用于接收安全射频(RF)通信的寻呼机(15)包括用于接收和解调信号以获取信息的接收机电路(102)。 存储器件(108)耦合到接收器电路(102)以存储信息。 解密器(110)耦合到存储器装置(108),用于对信息进行解密,并且解码器(112)耦合到去加密器(110),用于解码去加密的信息以导出消息。 用户输入控制(120)可选地生成用户输入信号。 控制器(114)耦合到存储器设备(108)和用户输入控制(120),用于使存储器设备(108)响应于用户输入将存储在其中的信息提供给解密器(110) 信号等同于预定的去加密信号。
    • 8. 发明授权
    • Battery capacity indicator
    • 电池容量指示灯
    • US5032825A
    • 1991-07-16
    • US487311
    • 1990-03-02
    • William J. Kuznicki
    • William J. Kuznicki
    • G01R31/36G08B21/20
    • G08B21/185G01R19/16542Y10S320/21
    • A battery capacity indicator is described which measures the battery terminal voltage at two discharge rates, monitoring the resultant differential battery voltage at predetermined time intervals, and comparing the resultant differential battery voltage to a set of predetermined differential battery voltages which are stored within a memory within the battery powered device. Each of the predetermined differential battery voltages corresponds to one of a set of predetermined battery capacities for each type of battery used in the device. The battery capacity indicator provides to the user a continuous display of the available battery capacity.
    • 描述了一种电池容量指示器,其以两个放电速率测量电池端子电压,以预定时间间隔监测所得到的差分电池电压,并将所得到的差分电池电压与存储在存储器内的一组预定的差分电池电压进行比较 电池供电设备。 每个预定的差分电池电压对应于在装置中使用的每种类型的电池的一组预定电池容量之一。 电池容量指示器向用户提供可用电池容量的连续显示。
    • 9. 发明授权
    • Self-locating, self-fixturing hard crystal blank mounting system
    • 自定位,自固定硬质水晶坯料安装系统
    • US4706350A
    • 1987-11-17
    • US877035
    • 1986-06-23
    • Charles W. MooneyRobert E. PhippsWilliam J. Kuznicki
    • Charles W. MooneyRobert E. PhippsWilliam J. Kuznicki
    • H03H3/02H03H9/05H04R17/00
    • H03H9/0528Y10T29/42Y10T29/49799
    • A system for assembling a hard crystal blank onto a base which includes connecting pins, using an apparatus providing self-locating and self-fixturing features, is described. The apparatus comprises a hard crystal blank supporting structure which provides vertical, horizontal and transverse locating features. The vertical, horizontal and transverse locating features are contiguous to the crystal supporting structure and locate the hard crystal blank to the crystal supporting structure. The hard crystal blank once located may be secured to the crystal supporting structure with a suitable adhesive. Connecting features for securing the crystal supporting structure to the base are provided. Once the crystal supporting structure has been secured to the base, the vertical, horizontal and transverse locating features are separated from the crystal supporting structure. The hard crystal blank and crystal supporting structure so assembled are precisely aligned to the base.
    • 描述了使用提供自定位和自固定特征的设备将硬质结晶坯料组装到包括连接销的基座上的系统。 该装置包括提供垂直,水平和横向定位特征的硬水晶坯料支撑结构。 垂直,水平和横向定位特征与晶体支撑结构邻接,并将硬晶体坯料定位到晶体支撑结构。 一旦定位的硬晶体坯料可以用合适的粘合剂固定到晶体支撑结构。 提供了将晶体支撑结构固定到底座上的连接特征。 一旦晶体支撑结构已经固定到基座上,垂直,水平和横向定位特征与晶体支撑结构分离。 如此组装的硬晶体坯料和晶体支撑结构精确地对准基底。
    • 10. 发明授权
    • Method and apparatus for correcting an angle of an optical image for
improving the efficiency of facsimile encoding of the image
    • 用于校正光学图像的角度以提高图像的传真编码效率的方法和装置
    • US5410417A
    • 1995-04-25
    • US194602
    • 1994-02-10
    • William J. KuznickiRobert J. Schwendeman
    • William J. KuznickiRobert J. Schwendeman
    • H04N1/04G06T3/60H04N1/21H04N1/387H04N1/41H04Q7/00
    • G06T3/608H04N1/3878
    • A system controller (102) is for generating a compressed facsimile message in a radio communications system (100). The system controller (102) includes an image memory (203) for storing an optical image, means for image analysis (205), means for best scan angle identification (204), an image rotator (220), and a facsimile encoder (225). The means for image analysis (205) generates a long line analysis of a portion of the stored optical image using a scan angle. The means for best scan angle identification (204) identifies a best scan angle from one or more image analyses generated by the image analysis means (205). The image rotator (220) generates an aligned optical image by using the stored optical image and the best scan angle. The facsimile encoder (225) generates the compressed facsimile message from the aligned optical image.
    • 系统控制器(102)用于在无线电通信系统(100)中生成压缩传真消息。 系统控制器(102)包括用于存储光学图像的图像存储器(203),用于图像分析的装置(205),用于最佳扫描角度识别的装置(204),图像旋转器(220)和传真编码器(225) )。 用于图像分析的装置(205)使用扫描角度生成存储的光学图像的一部分的长线分析。 用于最佳扫描角度识别的装置(204)从由图像分析装置(205)产生的一个或多个图像分析识别出最佳扫描角度。 图像旋转器(220)通过使用存储的光学图像和最佳扫描角度产生对准的光学图像。 传真编码器(225)从对准的光学图像生成压缩的传真消息。