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    • 1. 发明申请
    • METHODS AND APPARATUS FOR USE IN FORWARDING SHORT MESSAGES FOR MOBILE COMMUNICATION DEVICES
    • 用于移动通信设备短消息的方法和装置
    • WO2008052334A1
    • 2008-05-08
    • PCT/CA2007/001946
    • 2007-10-31
    • RESEARCH IN MOTION LIMITEDHARRIS, Ian
    • HARRIS, Ian
    • H04L12/54H04L12/16H04Q7/20H04Q7/22
    • H04W4/14H04L12/66H04W8/26H04W88/184
    • In one illustrative example, when a message forwarding function is enabled for a mobile communication device which operates in a wireless communication network, an address (e.g. an MSISDN) of the mobile device is assigned to “virtual mobile equipment” in the wireless network. The equipment registers with the wireless network with respect to the address, and stores an association in memory between the address and an alternate address of an alternate communication device. Subsequently, the equipment receives a short message having a destination address that matches the address. In response, the equipment forwards the short message to the alternate address for delivery to the alternate device (e.g. a mobile or server) based on the stored association. When the message forwarding function is disabled for and/or by the mobile device, the address of the mobile device is deassigned from the equipment, so that the mobile device is again able to receive short messages having destination addresses that match the address.
    • 在一个说明性示例中,当为在无线通信网络中操作的移动通信设备启用消息转发功能时,移动设备的地址(例如,MSISDN)被分配给无线网络中的“虚拟移动设备”。 设备相对于地址向无线网络注册,并且在地址和替代通信设备的备用地址之间的存储器中存储关联。 随后,设备接收到具有与该地址匹配的目的地地址的短消息。 作为响应,设备将短消息转发到备用地址,以便基于所存储的关联来传送到替代设备(例如移动台或服务器)。 当为移动设备和/或由移动设备禁用消息转发功能时,移动设备的地址从设备中被分配,使得移动设备再次能够接收具有与该地址匹配的目的地地址的短消息。
    • 7. 发明申请
    • PRESSURE SENSOR AND METHOD
    • 压力传感器和方法
    • WO1993018381A1
    • 1993-09-16
    • PCT/NZ1993000016
    • 1993-03-12
    • INDUSTRIAL RESEARCH LIMITEDANDREWS, Michael, KennethTURNER, Gary, ChandlerMOORE, Murray, BruceHARRIS, Paul, DavidHARRIS, Ian, Murray
    • INDUSTRIAL RESEARCH LIMITED
    • G01L09/00
    • G01L9/0019G01N11/04
    • A micro-mechanic gas pressure and/or viscosity sensor using the squeeze film effect comprises a mechanically fixed member (5), an oscillatory member (1) capable of oscillation relative to the fixed member (5), and a thin planar cavity (4) defined between the fixed plate (5) and the oscillatory plate (1) into which gas may pass and be restrained by the squeeze film effect. Electronic means determines either a) gas pressure by reference to the frequency of resulting oscillation of the oscillatory member which is initiated by a voltage pulse applied across the fixed member and the oscillatory member, or b) gas viscosity by reference to the phase difference between a driving voltage applied across the fixed member and the oscillatory member and resulting oscillation of the oscillatory member. The fixed member may form one capacitor plate, and the oscillatory member another capacitor plate. The frequency and/or phase of motion of the oscillatory member can be determined by reference to capacitance across the fixed and oscillatory members. The sensor structure can be produced by etching a substrate (2) to form the fixed member and oscillatory member.
    • 使用挤压膜效应的微机械气体压力和/或粘度传感器包括机械固定构件(5),能够相对于固定构件(5)摆动的摆动构件(1)和薄平面空腔(4) )限定在固定板(5)和振动板(1)之间,气体可能通过该振动板(1)并受到挤压膜效应的限制。 电子装置根据施加在固定构件和振荡构件上的电压脉冲启动的振荡构件的振荡频率来确定a)气体压力,或b)气体粘度参考a 施加在固定构件和摆动构件上的驱动电压以及振荡构件的振荡。 固定构件可以形成一个电容器板,并且振荡构件形成另一个电容器板。 振荡元件的运动频率和/或相位可通过参考固定和振荡元件的电容来确定。 传感器结构可以通过蚀刻衬底(2)以形成固定构件和摆动构件来制造。