Abstract:
A shoe-based weight measuring system, comprising: a shoe; one or more weight sensitive detectors constructed and arranged with the shoe to sense weight of a person wearing the shoe and walking or standing; a processor for processing signals from the detectors to determine a weight of the person; a remote receiver; and a communications port for wirelessly communicating the weight to the remote receiver. An on demand weight system, comprising a weight detector coupled with a shoe for sensing weight of a person on the detector, a processor processing information from the detector for determining applied weight, a personal data display, and a communications port for wirelessly relaying the applied weight to the data display.
Abstract:
The invention provides a smart sensor (10) in the form of an adhesive bandage (32). The sensor (12) sticks to people and objects and wirelessly communicates with remote receivers (24). Internal detectors (12) sense conditions associated with movement or the environment of the sensor. Typically, sensors of the invention communicate by an RF transmitter or transceiver (16). Groups of sensors may be combined within a common canister that imparts date and time information and “power on” when dispensed.
Abstract:
A product integrity tracking shipping label includes a label body for attaching to a product to be shipped or to packaging containing the product. One or more movement monitoring configured with the label body detects a movement metric of the product. A microprocessor configured with the label body and in communication with the one or more movement monitoring devices time-tags the movement metric when the movement metric exceeds a pre-selected threshold. A product integrity tracking system includes a movement monitoring device with one or more sensors for attachment to a product or packaging containing the product. The movement monitoring device senses at least one movement event during handling of the product. A processor compares the movement event with a pre-selected event threshold, and time-tags and stores above-threshold movement events in a memory. Information in the memory is readable via an interrogation device during shipment or at product delivery.
Abstract:
A method for monitoring fractional weight supported by one foot of a person, comprising the steps of adhering a movement monitor device underneath the foot such that the device is compressed when weight is applied to the foot; generating wireless signals representative of a target fractional weight of a total weight of the person; remotely receiving the wireless signals as information of the fractional weight. A method of monitoring weight of a person, comprising the steps of arranging one or more weight sensitive detectors underneath a foot of the person; processing signals from the detectors to determine weight; and wirelessly communicating the weight to a remote receiver.
Abstract:
Methods are disclosed for determining speed or distance traveled of moving persons by utilizing sensors in shoes. Methods and systems are disclosed to determine and report weight of a person wearing a shoe via a sensor with the shoe. Shoe based systems employing sensors (e.g., accelerometers) are disclosed to determine and report (e.g., via a watch) speed and/or distance traveled.