The defense community in Maryland is an R&D powerhouse. Use this database to see the innovative patents that are poised for commercialization.Data is provided by DoD Naval labs in Southern Maryland. Database funding supported by the DoD Office of Economic Adjustment through a Defense Industry Adjustment grant program.
|Abstract||A system and method are provided for conditioning a received signal prior to transmission. The signal is separated into different signal components in respective contiguous frequency channels. Each signal component is routed through either time domain or frequency domain processing circuitry and simultaneously a sample of the signal component is routed through control signal generation circuitry. The time domain processing circuitry contains a delay such that if any portion of the signal component exceeds a reference voltage signal, a switch is opened using a control signal generated by the control signal generation circuitry to blank that portion of the signal for that particular frequency channel. The outputs of each frequency channel are then combined into an output signal for transmission. A processor may be used to automatically configure various components within the time domain and frequency domain processing circuitry to prevent excessive power signals from being transmitted.|
|Patent Number||8,879,583||Issue Date||2014-11-04||Link USPTO website|
This patent was granted in 1 year, 272 days, which is an average speed.
It has 20 claims, which is fewer than average for this category.
Its proximity to basic research is much less than others in this category, and it displays a much slower than average technology cycle time.
This patent received far fewer citations from other patents, and references far fewer other patents, as compared to other patents in this category.
This patent had an average grant time compared to others in this category.
Patent grant time can be influenced by many factors. Activities within the USPTO that are beyond the control of patent attornies can influence grant time, but short grant times can also indicate well-written patents and dedicated efforts to respond rapidly to USPTO office actions with strong arguments. Shorter grant times are preferable, and the scores for this section are inverse measures — higher scores are better.
This patent has fewer claims compared to others in this category.
The number of claims in a patent is correlated with its strength. Because greater claim counts increase the cost of a patent, more claims can indicate the importance an applicant assigns to a patent. Importantly, some may elect to file claims across multiple patents. A higher score in this metric indicates more claims, relative to others in this category.
This patent has received far fewer citations from other patents, than others in this category.
Citations from other patents are an important measure of the significance of a patent. More citations indicate that other technologies build on a patent. Higher scores in this metric are better, and indicate more citations from other patents.
This patent referenced many more citations to other patents, than others in this category.
A lower number of citations to other patents can be a sign of diminished patent strength. More citations indicate dependence on more other technologies. Higher scores in this category are better, and indicate fewer citations to other patents.
This patent has much less proximity to basic research compared to others in this category.
Proximity to basic research is measured by comparing the number of citations to non-patent literature among a cohort of patents. Because most non-patent citations are primary research papers, a higher count indicates greater proximity to basic research.