Patent classifications
H04B5/22
Cryptographic key management via a computer server
Some embodiments include a computer server. The computer server can be configured to: add a security system associated with a user account; provision one or more communication devices associated with the security system; configure a cryptographic key to associate at least a communication device amongst the communication devices with the security system; configure an access control file that is cryptographically signed by the computer server and encrypted with the cryptographic key associated with the security system, wherein the access control file contains permissions of the communication devices to the security system; and provide a data payload including the access control file to a first communication device of the communication devices.
Near-field electromagnetic induction device
One example discloses a near-field electromagnetic induction (NFEMI) device, including: a near-field magnetic antenna having an inductive coil responsive to near-field magnetic signals; wherein the near-field magnetic antenna is configured to be coupled to a tuning circuit having a variable capacitance adjusting a resonance frequency of the NFEMI device and variable resistance adjusting a bandwidth of the NFEMI device; and a near-field electric antenna having a set of conductive surfaces; wherein the near-field electric antenna is configured to be directly connected to a receiver circuit.
METHODS AND APPARATUS FOR WIRELESS POWER DELIVERY AND REMOTE SENSING USING SELF-CAPACITANCES
A self-capacitance based remote power delivery device includes a modulating power source electrically coupled to a grounded substrate, an energy harvesting device coupled to the grounded substrate, and the substrate. The modulating power source is configured to be capacitively coupled to a self-capacitive body. The energy harvesting device configured to be capacitively coupled to the self-capacitive body, and the substrate is configured to be capacitively coupled to a portion of the self-capacitive body in direct contact with the substrate.
MEANS FOR TRANSMITTING DATA IN A UNIDIRECTIONAL OR BIDIRECTIONAL MANNER
In some embodiments, a system is provided for transmitting data between a device having a touch screen and a transmitting and/or receiving device. The touch screen may be a capacitive screen and the device may have at least one plate having at least one electrically conductive area, wherein the plate is operatively connected to the touch screen and at least one area is activated.
Communication system
A communication system performs wireless communication using electromagnetic field coupling between a transmission coupler and a reception coupler and moves at least one of the transmission coupler and the reception coupler so as to change the position in a predetermined direction of the reception coupler relative to the transmission coupler. In the communication system, the greater the distance between an overlap portion where the transmission coupler and the reception coupler overlap as viewed from a vertical direction to the predetermined direction and an input end of the transmission coupler is, the higher the degree of coupling between the transmission coupler and the reception coupler becomes.
Through glass integrated antenna
A system for radio frequency transmission through a window is provided. The system may include a first wireless coupler, a second wireless coupler, and one or more antennas. The first wireless coupler may be attached to a first side of the window and configured to transmit or receive radio frequency signals. The second wireless coupler attached to a second side of the window and aligned with the first wireless coupler. The first wireless coupler may be configured to transmit or receive the radio frequency signals from the first wireless coupler to the second wireless coupler through the window. The one or more antennas may be electrically connected to the second wireless coupler. One or more radios may transmit or receive the radio frequency signals to or from the one or more antennas.
Switched receiver for wireless power transfer
A receiver for wireless power transfer includes a plurality of passive elements including a coupling element configured to capture an incoming spread spectrum signal, an active switch coupled to the plurality of passive elements, and a controller to generate a control signal for the active switch. The control signal changes a state of the active switch to vary a resonance condition established by the plurality of passive elements.
PHONICS EXPLORATION TOY
A phonics learning system, comprising a letter identification board and letter manipulatives that may be placed on the letter identification board by a child, and a computing device connected to the letter identification board that identifies the letters placed on the board, generates a phonetic pronunciation for the combination of letters, and identifies any words or misspelled words.
METHOD OF MANAGING AN OUTPUT POWER DELIVERED BY AN ANTENNA OF A NFC APPARATUS AND NFC APPARATUS
In an embodiment, a method of managing an output power delivered by an antenna of a NFC apparatus includes: providing a matching circuit with a first tuning capacitive network coupled in series between a NFC controller and the antenna and with a second tuning capacitive network coupled to the NFC controller and the antenna and to a reference terminal, wherein the first or second tuning capacitive network has a variable capacitive value; determining tuning capacitive values of the first tuning capacitive networks to adjust a delivered output power at a desired level; and setting the tuning capacitive values of the first tuning capacitive network to the tuning capacitive values.
Device and Method for Transmitting Data Between Two Physical Interfaces
The invention is a device and a method for transmitting data between two physical interfaces which in motion in relation to one another along a trajectory. The device has a data transmission unit disposed between the physical interfaces, and a local oscillator is assigned to the physical interfaces to inject a local system time prevailing at the location of one of the physical interfaces. The local oscillator has at least one of the physical interfaces for receiving and generating at least one clock signal which is transmitted to the data transmitter and the local oscillator at least at the other physical interface which has a receiver for the at least one clock signal transmittable via the data transmission unit and a synchronizer of the local system times based on the received clock signal; and a buffer memory located at the physical interface which receives the data transmitted by the data transmitter to be temporarily stored.