Abstract:
An apparatus may comprise a code output device and a processor configured to detect a first apparatus condition indication, generate a first dynamic identifier code representative of a first apparatus condition in response to detecting the first apparatus condition indication, output the first dynamic identifier code to the code output device, detect a second apparatus condition indication, generate a second dynamic identifier code representative of a second apparatus condition in response to detecting the second apparatus condition indication, wherein the second dynamic identifier code is different than the first dynamic identifier code, and output the second dynamic identifier code to the code output device. Associated methods, computer program products, and systems are also provided.
Abstract:
A method, apparatus, system, and computer program product are disclosed to manage access to device information. The system may include a plurality of devices configured to provide device information to a device management server. The system may also include a remote server including the device management server. The device management server may be configured to receive the device information, to determine a receiver for the device information based on one or more permission settings for the plurality of devices, to provide the device information to the determined receiver, and to provide a device management interface, the device management interface comprises an interface for modifying the permission settings for one or more particular devices associated with a user account accessing the device management interface.
Abstract:
Systems, methods, apparatuses, and computer program products are disclosed for providing analytics including participant statistical data or game status data. In one embodiment, a method is provided for transmitting participant data relating to one or more participants that are available in a fantasy game, the fantasy game is at least partially related to a players performance in a sporting event; receiving a selected participant data indication from at least one user, the selected participant data indication provides selection of at least one participant from the participant data; generating a participant data update for one or more participants based on the selected participant data indication; the participant data is defined by a time period comprising an event and is calculated based on blink data transmitted from a location tag mounted to the participant; and transmitting the participant data update, the participant data update is viewable via a user interface.
Abstract:
Provided is a direct thermal media containing a regular repeating pattern of color-forming thermally-imageable stripes printed parallel to the print head element line and a system for using such direct thermal media in color direct thermal printers including an optical registration system optimized for use with this media and an image processing unit that monitors the position of the stripe pattern relative to the print head and synchronizes the start of the printing process. This direct thermal media together with the optical registration system and image processing unit comprise an operative system in that the design of the thermal media, the optical registration system and image processing unit used to control printing are optimized for use with each other. This system may be utilized, for example, in color thermal printers for documents, receipts, tags, tickets or labels.
Abstract:
A device for processing media may include a printhead pressure adjustment assembly including a barrel and a biasing element configured to apply a biasing force to the printhead, where the biasing force may be adjustable in response to the barrel being rotated about its axis. The printhead pressure adjustment assembly may further include a threaded insert received within the barrel and configured to move axially within the barrel in response to the barrel being rotated. The printhead pressure adjustment assembly may further include a cup received within the barrel and attached to the biasing element. The adjustment assembly may include a spring disposed between the threaded insert and the cup, where the spring is compressed in response to the barrel being rotated in a first direction and the spring is decompressed in response to the spring being rotated in a second direction.
Abstract:
Provided herein are devices, systems, methods and various means, including those related to translating command and other types of computer instructions being transmitted to a destination processor from a language that is non-native to the destination processor to a language that is native to the destination processor. Some embodiments discussed herein can include a processing filter that is configured to identify whether incoming instructions are formatted in a translatable non-native language of the destination processor and, if so, process the non-native commands into native commands. The processed, native commands can then be relayed to the destination processor by some embodiments discussed herein. The processing filter can be implemented in a manner that is portable and independent of any specific framework and/or programming language. For example, the processing functionality (including the identification and translation features discussed herein) can be implemented in the same device as the destination processor and/or at a system remote from the destination device (e.g., at a remote host system).
Abstract:
Provided are architectures, systems, methods, and computer program products for real-time object locating and position determination using frequency channel diversity for transmitting and receiving position determination signals including bursts of location signals. Channelized frequency diversity of a short burst of small location signals that “hop” across multiple frequency channels is used to collectively produce a quasi-wideband position determination signal. Object tags operating with frequency channel diversity for transmitting location signals of position determination signals require low power consumption, but can still efficiently provide adequate position determination signals for reliable position determination.
Abstract:
Systems, methods, apparatuses, and computer readable media are disclosed for associating a radio frequency identification tag with a participant. In one embodiment, a method is provided for associating an unassociated RF location tag with a participant. The method may include determining an unassociated RF location tag to be associated with the participant, receiving sensor derived data from one or more sensors, determining an identity of the particular participant using the sensor derived data, and associating the identity of the particular participant with the unassociated RF location tag.
Abstract:
Systems, methods, apparatuses, and computer readable media are disclosed for providing analytics using real time data on movement and proximity of tagged objects for determining play models and outputting events. In one embodiment, a method is provided for determining play data that at least includes correlating at least one tag to a participant; receiving blink data transmitted by the at least one tag; and determining tag location data based on the blink data. The method further includes receiving participant role data; comparing the tag location data to participant dynamics/kinetics models based at least in part on the participant role data; determining participant location data based on the comparing the tag location data to the participant dynamics/kinetics models. The method further includes receiving field data; comparing the participant location data to formation models based at least in part on the participant role data and the field data; and determining formation data based on the comparing the participant location data to the formation models. The method further includes comparing the formation data and participant location data to play models; and determining play data based on the comparing the formation data and participant location data to the play models.
Abstract:
Provided herein are systems, methods and computer readable media for monitoring the health and fitness of an individual. An example method comprises correlating a tag and a sensor to the individual, receiving tag derived data indicative of a location for the individual, and receiving sensor derived data indicative of at least one of a health, a fitness, an operation level, or a performance level for the individual. The method further comprises comparing the tag location data of the tag derived data to individual dynamics/kinetics models and comparing the sensor derived data to at least one of health models, fitness models, operation level models, or performance level models. A HFOP status is then determined for the individual based on the comparing the tag location data to individual dynamics/kinetics models and on the comparing the sensor derived data to at least one of health models, fitness models, operation level models, or performance level models.