COMPUTING HARDWARE SOFTWARE USED

Brand Owner (click to sort) Address Description
FIELDPAL Octoscope, Inc. 305 Foster Street Littleton MA 01460 Computing hardware and software used for radio frequency (RF) communication test equipment testing, namely, to capture data using its network interfaces and radios, to participate in test traffic generation, and to collect Key Performance Indicators during these activities; Computing hardware and software used for radio frequency (RF) communication test equipment testing in a portable form factor;FIELD PAL;
PRESCRIPTOR CARDIAC PACEMAKERS, INC. 4100 Hamline Avenue No. St. Paul MN 55112 computing hardware and software used to non-invasively check the condition of a patient's heart and the operation of an implanted device (such as a programmable cardiac pacer, cardioverter or defibrillator), and to non-invasively program such an implanted device;
TRIATHLON Octoscope Inc. 305 Foster Street Littleton MA 01460 Computing hardware and software used for radio frequency (RF) communication test equipment testing, namely, to correlate data among multiple layers of the open systems interconnection (OSI) model, namely, to determine a physical (PHY) layer corresponding to communication data packets from a respective media access control (MAC) domain, thereby the computing hardware and software acting as above to enable root cause analysis and solution development in the testing of RF communication equipment functionality and performance;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. An intermittent computing system state and intermittent computing module is described for a power-constrained personal computer. In the intermittent computing system state, the power-constrained personal computer may transition between sub-states of the intermittent computing system state according to an intermittent computing schedule. Each intermittent computing sub-state may be associated with hardware power sets and software power sets. Altering power supply to hardware components referenced by hardware power sets may alter power consumed in associated intermittent computing sub-states. A caching mechanism may be configured to make it likely that software components referenced by software power sets are loaded into powered storage types during associated intermittent computing sub-states. In the intermittent computing system state, periods of high functionality may be available over extended periods without the high power consumption associated with a continuous working system state. Average power consumption may be adjusted by varying the intermittent computing schedule.