Abstract:
NFC-capable systems and devices, and related methods, for controlling operation of an NFC-capable mobile device are disclosed. Through NFC communication, the NFC-capable mobile device detects a load associated with a surface proximate the NFC-capable mobile device. Based at least partly on a determined sustained intensity of the load, the NFC-capable mobile device triggers operation of a camera of the NFC-capable mobile device to capture an image of the surface proximate the NFC-capable mobile device. Based at least partly on a determined correspondence of the captured image with stored image data, the NFC-capable mobile device executes a device control command, such as to control some aspect of the NFC-capable mobile device based on the detected surface, which may be part of a holster for holstering the NFC-capable mobile device.
Abstract:
Methods and apparatus to obtain transaction confirmation are described. One example method includes emulating a payment method using a close-proximity communication device of a mobile device, establishing a close-proximity communication link with a close-proximity communications-equipped device using the close-proximity communication device of the mobile device, transferring payment information from the mobile device to the close-proximity communications-equipped device using the close-proximity communication device, subsequent to transferring the payment information, switching the close-proximity communication device of the mobile device to an information receiving communication mode, determining whether the close-proximity communication device is within proximity of the close-proximity communications-equipped device, and receiving a transaction confirmation at the close-proximity communication device of the mobile device from the close-proximity communications-equipped device when the close-proximity communication device is within proximity of the close-proximity communications-equipped device.
Abstract:
A mobile wireless communications device may include a near field communication (NFC) transceiver and a controller coupled with the NFC transceiver. The controller may be configured to receive tag data from at least one NFC tag when in close proximity thereto via the NFC transceiver, verify the tag data, and when the tag data is successfully verified, perform at least one device unlock operation. The controller may be further configured to determine whether the tag data should be changed based on a predetermined schedule, and if it is determined that the tag data should be changed, communicate with the at least one NFC tag to change the tag data.
Abstract:
A mobile wireless communications device includes a housing and a circuit board carried by the housing and including Radio Frequency (RF) circuitry and a processor carried by the housing and operative with each other. A Near Field Communications (NFC) circuit is positioned on the circuit board and operative with the processor for communicating in accordance with the NFC communication protocol. A touch activated sensor is supported by the housing and operative for enabling operation of the NFC circuit when touched to establish NFC communications from the communications device.