Abstract:
PROBLEM TO BE SOLVED: To provide an improved transmission method and a device for transmitting quickly and efficiently an information from two or more transmission source devices to a sending end device. SOLUTION: Two or more transmission source devices (110, 120, 130) can transmit an information to a sending end device (100) from the transmission source device. The information transmitted to the sending end device (100) from the transmission source device takes usually a form of an electronic product code ("EPC") of binary digit or an identity ("ID") information. The method utilizes a data scramble and a scramble analysis, a channel selection and a transmission, an effectiveness and an ineffectiveness setting of a group transmission, a correlation determination, and the technique of collision relaxation. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an enhanced communication method and device for speedily and efficiently transmitting information from a plurality of transmission source devices to a transmission destination device. SOLUTION: A communication method and device is disclosed for enabling a plurality of transmission source devices 110, 120, 130 to transmit information to a transmission destination device 100. The information to be transmitted from the transmission source devices to the transmission destination device 100 ordinarily takes a form of an electronic product code "EPC" or identification "ID" information of binary numbers. The method utilizes techniques of data scrambling/descrambling, channel selection/transmission, group transmission validity/invalidity setting, correlative relationship determination and collision mitigation. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
A portable data device employs an integrated circuit having a signal processor that receives a power signal from an external source via a power node. A decoupling device is placed between the power node and the signal processor. An energy reservoir is placed in parallel with the signal processor, which acts in concert with the decoupling device to isolate the effects of the signal processor from the rest of the integrated circuit.
Abstract:
A portable data device employs an integrated circuit having a signal process or (112) that receives a power signal from an external source (308) via a power node. A decoupling device (304) is placed between t he power node and the signal processor (112). An energy reservoir (307) is placed in parallel with the signal processor (112), which acts in concert with the decoupling device (304) to isolate the effects of the signal processor (112) from the rest of the integrated circui t.
Abstract:
A portable data device employs an integrated circuit having a signal processor that receives a power signal from an external source via a power node. A decoupling device is placed between the power node and the signal processor. An energy reservoir is placed in parallel with the signal processor, which acts in concert with the decoupling device to isolate the effects of the signal processor from the rest of the integrated circuit.
Abstract:
A device communicates with a radio frequency identification ("RFID") device (102) that is associated with an item (500). The device selects a promotional incentive for the item (500) and programs the promotional incentive into the RFID device (102) at one of the following events: point-of-decision to purchase the item, point-of-purchase of the item, or point-of-distribution of the item.
Abstract:
A device communicates with a radio frequency identification ("RFID") device (102) that is associated with an item (500). The device selects a promotional incentive for the item (500) and programs the promotional incentive into the RFID device (102) at one of the following events: point-of-decision to purchase the item, point-of-purchase of the item, or point-of-distribution of the item.