Patents by Inventor Archana SINGH

Archana SINGH has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240077929
    Abstract: The present disclosure describes systems and methods associated with selective powering of an electronic display in response to sensed data indicating that the electronic display is not visible. By selectively enabling the electronic display between power states based on whether the electronic display is visible, a perceivably always-on electronic display may be provided without the electronic display being always-on, thereby balancing consumer interests with technical requirements of a relatively long battery life and correspondingly low power consumption.
    Type: Application
    Filed: September 6, 2022
    Publication date: March 7, 2024
    Inventors: Joseph F. Alverson, Brad W. Simeral, Daniel J. Drusch, Daniel P. Kumar, Derek J. DiCarlo, Ricky Wai Kit Yuen, Roberto G. Yepez, Shashi K. Dua, Ardra Singh, Gabrielle Andrea Badie Belzberg, Kartik Venkatraman, Gierad Laput, Archana Venkatesh, Jingran Zhou
  • Publication number: 20240077930
    Abstract: The present disclosure describes systems and methods associated with selective powering of an electronic display in response to operating conditions, additional data, and/or predicting that the electronic display is not going to be viewed or visible. By selectively enabling the electronic display between power states based on a prediction of when a viewer is expected to view the electronic display, a perceivably always-on electronic display may be provided without the electronic display being always-on, thereby balancing consumer interests with technical requirements of a relatively long battery life and correspondingly low power consumption.
    Type: Application
    Filed: September 6, 2022
    Publication date: March 7, 2024
    Inventors: Joseph F Alverson, Brad W. Simeral, Daniel J. Drusch, Daniel P. Kumar, Derek J. DiCarlo, Ricky Wai Kit Yuen, Roberto G. Yepez, Shashi K. Dua, Ardra Singh, Gabrielle Andrea Badie Belzberg, Kartik Venkatraman, Gierad Laput, Archana Venkatesh, Jingran Zhou
  • Patent number: 11766641
    Abstract: A nanoadsorbent based filter is used for purification of fluoride and arsenic contaminated water. 140-150 g low cost (˜10 USD/kg) nanoparticles of gamma alumina of 20-25 mg/g fluoride and 25-30 mg/g arsenic adsorption capacity is incorporated in propylene filter without susceptibility of leaching incorporated nanoparticles in water. The cost of domestic defluoridation device containing low cost nanoalumina incorporated filters/cartridges along with housing, overhead tank, tubing and treated water storage container etc. is of very low cost of around 25 USD/device. The fluoride treatment cost would be <0.5 USD/100 lit for 4-5 mg/l fluoride water after 2-3 regenerations while, the arsenic treatment cost using domestic filtration device would be <0.25 USD/100 lit for 90-100 ?g/l arsenic (III) water.
    Type: Grant
    Filed: May 23, 2019
    Date of Patent: September 26, 2023
    Assignee: COUNCIL OF SCIENTIFIC AND INDUSTRIAL RESEARCH
    Inventors: Indra Bhushan Singh, Archana Singh, Swati Dubey, Akshay Singh Tomar, Priyanka Arya, Avanish Kumar Srivastava
  • Publication number: 20230123341
    Abstract: Computer-implemented methods, systems, and products for scoring the suitability of a recipe or food to an end-user having one or more medical conditions are provided. The methods and systems can include: the nutrient content of the food or a food created following the steps of the recipe; the chronic or health or medical conditions or general health that the target user may be interested in; the extent of the end-user's medical conditions and the relative rank order of concern of each such condition to the end-user; the end-user's biological and medical profile data such as their biological and physical characteristics comprising height, weight, age, sex, daily or weekly activity levels, etc.; and any of the end-user's nutrition preferences.
    Type: Application
    Filed: October 16, 2022
    Publication date: April 20, 2023
    Inventors: Vivek Singh, Archana Singh
  • Publication number: 20220315490
    Abstract: A geo-polymeric concrete and a process for preparing the geo-polymeric concrete is disclosed. The geo-polymeric concrete includes class F fly ash in a range from 10-20 wt %, of the design mix river sand in a range from 25-40 wt % of the design mix, a natural aggregate in a range from 15 to 40 wt % of the design mix, silica fume in a range from 1 to 2 wt % of class F fly ash, an alkaline activator solution and a superplasticizer in a range from 0.5 to 3 wt %. The materials used for preparing the superplasticizer are easily available in the market in abundance at a reasonable cost. The superplasticizer is economically viable and improves the workability of the geo-polymeric concrete. The presence of the superplasticizer does not affect the compressive strength of the geo-polymeric concrete.
    Type: Application
    Filed: March 30, 2022
    Publication date: October 6, 2022
    Inventors: Manish MUDGAL, Anil KUMAR, Ramesh Kumar CHOUHAN, Archana SINGH, Avanish Kumar SRIVASTAVA
  • Publication number: 20190358592
    Abstract: A nanoadsorbent based filter is used for purification of fluoride and arsenic contaminated water. 140-150 g low cost (˜10 USD/kg) nanoparticles of gamma alumina of 20-25 mg/g fluoride and 25-30 mg/g arsenic adsorption capacity is incorporated in propylene filter without susceptibility of leaching incorporated nanoparticles in water. The cost of domestic defluoridation device containing low cost nanoalumina incorporated filters/cartridges along with housing, overhead tank, tubing and treated water storage container etc. is of very low cost of around 25 USD/device. The fluoride treatment cost would be <0.5 USD/100 lit for 4-5 mg/l fluoride water after 2-3 regenerations while, the arsenic treatment cost using domestic filtration device would be <0.25 USD/100 lit for 90-100 ?g/l arsenic (III) water.
    Type: Application
    Filed: May 23, 2019
    Publication date: November 28, 2019
    Inventors: Indra Bhushan Singh, Archana Singh, Swati Dubey, Akshay Singh Tomar, Priyanka Arya, Avanish Kumar Srivastava
  • Patent number: 9938414
    Abstract: The present invention provides a nano phosphatic hybrid geopolymeric corrosion resistant coating material. The tailored precursor of corrosion resistant coating material is obtained by a process involving, together dry grinding of raw materials fly ash, sodium hydroxide, rice husk, tri calcium phosphate and cetyl trimethyl ammonium bromide optionally with sodium silicate, in solid powder form. The developed coating material obtained by adding water to tailored precursor contains nano sized phosphatic compounds of Cancrisilite (sodium aluminum carbonate silicate hydrate), quartz, mullite, heamatite, sodium aluminum silicate, Herschelite (sodium aluminum silicate hydrate), Sucrose, ? D-Glucose, Native cellulose, and phenol, responsible for providing improved corrosion resistant properties and adhesion to the mild steel substrates. The geo-polymeric coating material is used as an anti-corrosive, heat resistant coating material on various materials e.g. mild steel substrates.
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: April 10, 2018
    Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCH
    Inventors: Sudhir Sitaram Amritphale, Deepti Mishra, Archana Singh, Avneesh Anshul, Satyabrata Das
  • Publication number: 20170267870
    Abstract: The present invention provides a nano phosphatic hybrid geopolymeric corrosion resistant coating material. The tailored precursor of corrosion resistant coating material is obtained by a process involving, together dry grinding of raw materials fly ash, sodium hydroxide, rice husk, tri calcium phosphate and cetyl trimethyl ammonium bromide optionally with sodium silicate, in solid powder form. The developed coating material obtained by adding water to tailored precursor contains nano sized phosphatic compounds of Cancrisilite (sodium aluminium carbonate silicate hydrate), quartz, mullite, heamatite, sodium aluminium silicate, Herschelite (sodium aluminium silicate hydrate), Sucrose, ? D-Glucose, Native cellulose, and phenol, responsible for providing improved corrosion resistant properties and adhesion to the mild steel substrates. The geo-polymeric coating material is used as an anti-corrosive, heat resistant coating material on various materials e.g. mild steel substrates.
    Type: Application
    Filed: March 17, 2017
    Publication date: September 21, 2017
    Inventors: Sudhir Sitaram AMRITPHALE, Deepti MISHRA, Archana SINGH, Avneesh ANSHUL, Satyabrata DAS