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    • 2. 发明申请
    • MOBILE PHONE SAFETY DISTANCE MECHANISM
    • 移动电话安全距离机制
    • WO2014203084A3
    • 2015-08-06
    • PCT/IB2014002185
    • 2014-10-20
    • ALSHDAIFAT WASFIALMUHAIRBI EIDAKASSAB FARAH AFIF
    • ALSHDAIFAT WASFIALMUHAIRBI EIDAKASSAB FARAH AFIF
    • H04B1/3827H04B5/02H04B5/06H04M1/02
    • H04M1/21H04M1/0202H04M1/05
    • To provide a mobile safety distance mechanism (20), for keeping a distance in- between the user ear and the phone, consisting of: An electromagnetic switch (22); rack gear (23); 2nd gear; rotatable shaft; two-brackets (26). The (ES) (22) is connected to the rack gear (23), engaged to the 2nd gear that is installed around the rotatable shaft which is extending out of the phone sides to two rotatable brackets (26) that are kept in parallel with the device sides. Once the (ES) (22) is actuated, it pulls back to inside it the rack gear (23), which rotates the 2nd gear (24) to rotate the shaft (25), to rotate both brackets (26) to move toward the vertical configuration, wherein once the user puts the phone near to his ear, the brackets (26) become in touch with his head around his ear, keeping a space in- between his ear and the phone.
    • 为了提供移动安全距离机构(20),用于保持用户耳朵和电话之间的距离,包括:电磁开关(22); 齿条(23); 二档 旋转轴; 双括号(26)。 (ES)(22)连接到齿条(23),与安装在可旋转轴周围的第二齿轮啮合,该第二齿轮从电话侧延伸到两个可旋转的支架(26),该支架保持与 设备侧。 一旦(ES)(22)被致动,它就将第二齿轮(24)旋转以使轴(25)旋转的齿条(23)回拉到内部,从而使两个支架(26)转动 垂直配置,其中一旦用户将手机放置在他的耳朵附近,支架(26)变得与他的头部围绕他的耳朵接触,保持在他的耳朵和电话之间的空间。
    • 3. 发明申请
    • SHORT RANGE MAGNETIC INDUCTIVE COMMUNICATION
    • 低磁感应通信
    • WO99038272A2
    • 1999-07-29
    • PCT/US1999/001285
    • 1999-01-21
    • H04B5/00H04B5/06
    • H04B5/06H04B5/0006H04B5/02
    • Audio communication using magnetic inductive (MI) fields for a full duplex cordless communication link is disclosed. A single communication system can include a base unit and a remote unit with a headset which are linked cordlessly by MI signals. The base unit receives audio signals from a host system, frequency modulates a carrier frequency signal, and transmits this to the remote unit as an MI signal. The remote unit receives the MI signal and demodulates it to produce the base audio signal which is passed to the headset. Similarly, the remote unit receives audio signals from the headset (typically the user's voice), frequency modulates a carrier frequency signal, and transmits this to the base unit as an MI signal, whereupon the base unit receives and demodulates the MI signal to produce the remote audio signal for passage to the host system. Frequency modulation allows for a plurality of cordless communication channels across a usable spectrum of frequencies. The provision of a plurality of channels and full duplex MI links allows implementation in high user density applications, wherein a plurality of cordless communication channels are used to allow independent cordless links between unit pairs. Channel allocation including channel slots with a bandwidth that exceeds the occupied bandwidth for signals transmitted between the units facilitates the avoidance of interfering signals without requiring channel slot redefinition. Security codes are provided to prevent unpaired units from communicating with each other. A supervisory remote unit is able to receive signals from any base unit without verification of the security code. Under various circumstances, an agent not available signal is transmitted to a telephone system to indicate the availability or unavailability of a telephone line.
    • 为了建立全双工无线通信链路,使用磁感应场(MI)的音频通信。 单个通信系统可以包括基座单元和配备有耳机的远程单元,其通过MI信号无线连接。 基本单元从中央系统接收音频信号,对载波频率信号进行频率调制,并将载波频率作为MI信号发送到远程单元。 远端单元接收MI信号并对其解调以产生传送到耳机的基本音频信号。 类似地,远程单元从头戴式耳机接收音频信号(通常是用户的语音),频率调制载波频率信号并将其作为 信号MI,该基本单元接收并解调MI信号以远程产生音频信号并将其发送到中央系统。 频率调制允许多个无线通信信道穿过有用频谱。 多个信道和磁感应(MI)链路的存在允许实现更大密度的用户,多个无线通信信道被用于允许独立的无线链路 对单位。 包括通道时隙在内的通道分配的带宽超过了单元之间传输信号的占用带宽,使得更容易避免寄生信号而无需重新定义 频道插槽。 安全码用于防止不成对的单位彼此通信。 远程监控单元能够在不检查安全代码的情况下接收来自任何基地单元的信号。 在不同情况下,代理不可用信号被发送到电话系统以指示电话线路的可用性或不可用性。