Patents Assigned to Banpil Photonics
  • Patent number: 9905714
    Abstract: Novel structures of photovoltaic cells (also called as solar cells) are provided. The cells are based on nanoparticles or nanometer-scaled wires, tubes, and/or rods, which are made of electrical materials covering semiconductors, insulators, and also metallic in structure. These photovoltaic cells have large power generation capability per unit physical area over the conventional cells. These cells will have enormous applications such as in space, commercial, residential and industrial applications.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: February 27, 2018
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Patent number: 9851353
    Abstract: This invention relates to a system and methods including their manufacturing technologies for enhanced sensing capability of one or more bioagents covering from HIV, Pathogens, virus, to cells detection. More particularly, this invention is related to HIV and pathogen diagnosis system and methods which may increase its sensitivity and may reduce the diagnosis time. Furthermore, the diagnosis system and method may be applicable to all early stage patients with various age groups, where early and accuracy in diagnosis, are required.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: December 26, 2017
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Dutta
  • Patent number: 9835797
    Abstract: An optoelectronics chip-to-chip interconnects system is provided, including at least one packaged chip to be connected on the printed-circuit-board with at least one other packaged chip, optical-electrical (O-E) conversion mean, waveguide-board, and (PCB). Single to multiple chips interconnects can be interconnected provided using the technique disclosed in this invention. The packaged chip includes semiconductor die and its package based on the ball-grid array or chip-scale-package. The O-E board includes the optoelectronics components and multiple electrical contacts on both sides of the O-E substrate. The waveguide board includes the electrical conductor transferring the signal from O-E board to PCB and the flex optical waveguide easily stackable onto the PCB to guide optical signal from one chip-to-other chip. Alternatively, the electrode can be directly connected to the PCB instead of including in the waveguide board. The chip-to-chip interconnections system is pin-free and compatible with the PCB.
    Type: Grant
    Filed: December 12, 2016
    Date of Patent: December 5, 2017
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Patent number: 9806527
    Abstract: An apparatus for perpetually harvesting ambient near ultraviolet to far infrared radiation to provide continual power regardless of the environment, incorporating a system for the harvesting electronics governing power management, storage control, and output regulation. The harvesting electronics address issues of efficiently matching the voltage and current characteristics of the different harvested energy levels, low power consumption, and matching the power output demand. The device seeks to harvest the largely overlooked blackbody radiation through use of a thermal harvester, providing a continuous source of power, coupled with a solar harvester to provide increased power output.
    Type: Grant
    Filed: June 24, 2016
    Date of Patent: October 31, 2017
    Assignee: Banpil Photonics, Inc.
    Inventors: Robert Olah, Achyut Kumar Dutta
  • Publication number: 20170301810
    Abstract: This invention relates to a novel structure of photovoltaic devices (e.g. photovoltaic cells also called as solar cells) are provided. The cells are based on the micro or nano scaled structures which could not only increase the surface area but also have the capability of reducing the reflection and increasing the absorption of incident light. More specifically, the structures are based on 3D structure which are made of electric materials covering semiconductors, insulators, dielectric, polymer, and metallic type materials. By using such structures reflection loss of the light from the cell is significantly reduced, increasing the absorption, which results in increasing the conversion efficiency of the solar cell, and reducing the usage of material while increasing the flexibility of the solar cell. The structures can be also used in other optical devices wherein the reflection loss and absorption are required to enhance significantly improve the device performances.
    Type: Application
    Filed: May 5, 2017
    Publication date: October 19, 2017
    Applicant: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20170242008
    Abstract: This invention relates to a system and methods including their manufacturing technologies for enhanced sensing capability of one or more bioagents covering from HIV, Pathogens, virus, to cells detection. More particularly, this invention is related to HIV and pathogen diagnosis system and methods which may increase its sensitivity and may reduce the diagnosis time. Furthermore, the diagnosis system and method may be applicable to all early stage patients with various age groups, where early and accuracy in diagnosis, are required.
    Type: Application
    Filed: March 15, 2013
    Publication date: August 24, 2017
    Applicant: BANPIL PHOTONICS, INC.
    Inventor: BANPIL PHOTONICS, INC.
  • Publication number: 20170236953
    Abstract: This invention relates to a novel structure of photovoltaic devices (e.g. photovoltaic cells also called as solar cells) are provided. The cells are based on the micro or nano scaled structures which could not only increase the surface area but also have the capability of self-concentrating the light incident onto the photonics devices. More specifically, the structures are based on 3D structure including quintic or quintic-like shaped micor-nanostructures. By using such structures reflection loss of the light from the cell is significantly reduced, increasing the absorption, which results in increasing the conversion efficiency of the solar cell, and reducing the usage of material while increasing the flexibility of the solar cell. The structures can be also used in other optical devices wherein the reflection loss and absorption are required to enhanced to significantly improve the device performances.
    Type: Application
    Filed: March 30, 2017
    Publication date: August 17, 2017
    Applicant: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20170200751
    Abstract: An apparatus and method pertaining to a perpetual energy harvester. The harvester absorbs ambient infrared radiation and provides continual power regardless of the environment. The device seeks to harvest the largely overlooked blackbody radiation through use of a semiconductor thermal harvester.
    Type: Application
    Filed: March 24, 2017
    Publication date: July 13, 2017
    Applicant: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20170188914
    Abstract: This invention relates to the means for detection of molecular and chemical matter utilizing multiple techniques covering electronics, optics, and imaging techniques. More particularly, this invention is related to detecting levels of certain molecules inside the body through non-invasive contact or non-contact with the body. More specifically, this invention is related to the means to detect levels of molecules associated with metabolic diseases, more particularly the early diagnosis of the disease, especially diabetes. This invention also relates to a medical device that utilizes electromagnetic waves of varying wavelengths and detects waves returned to the device.
    Type: Application
    Filed: December 31, 2015
    Publication date: July 6, 2017
    Applicant: Banpil Photonics, Inc.
    Inventor: Achyut K. Dutta
  • Publication number: 20170188801
    Abstract: This invention relates to a system and their manufacturing technologies for enhanced endoscopic diagnosis. More particularly, this invention is related to endoscope capsule system, which can harvest the energy from the body to operate the system, and thereby it can increase its operating time as high as 80 hours, and can reduce the size of the capsule system. Furthermore, the system also is comprising of an antenna for transmitting and receiving the data to outside and/or to communicate with the system. The diagnosis procedure using the capsule system can be applicable to all patients with various age groups, where capsule size and large set of images for accuracy in diagnosis, are required.
    Type: Application
    Filed: July 18, 2016
    Publication date: July 6, 2017
    Applicant: Banpil Photonics, Inc.
    Inventors: Achyut K. Dutta, Robert Olah
  • Patent number: 9680046
    Abstract: A sensing device able to do concurrent real time detection of different kinds of chemical, biomolecule agents, or biological cells and their respective concentrations using optical principles. The sensing system can be produced at a low cost (below $1.00) and in a small size (˜1 cm3). The novel sensing system may be of great value to many industries, for example, medical, forensics, and military. The fundamental principles of this novel invention may be implemented in many variations and combinations of techniques.
    Type: Grant
    Filed: December 31, 2013
    Date of Patent: June 13, 2017
    Assignee: Banpil Photonics, Inc.
    Inventors: Achyut Kumar Dutta, Rabi Sengupta
  • Patent number: 9640698
    Abstract: An apparatus and method pertaining to a perpetual energy harvester. The harvester absorbs ambient infrared radiation and provides continual power regardless of the environment. The device seeks to harvest the largely overlooked blackbody radiation through use of a semiconductor thermal harvester.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: May 2, 2017
    Assignee: BANPIL PHOTONICS, INC.
    Inventor: Achyut Dutta
  • Patent number: 9551848
    Abstract: An optoelectronics chip-to-chip interconnects system is provided, including at least one packaged chip to be connected on the printed-circuit-board with at least one other packaged chip, optical-electrical (O-E) conversion mean, waveguide-board, and (PCB). Single to multiple chips interconnects can be interconnected provided using the technique disclosed in this invention. The packaged chip includes semiconductor die and its package based on the ball-grid array or chip-scale-package. The O-E board includes the optoelectronics components and multiple electrical contacts on both sides of the O-E substrate. The waveguide board includes the electrical conductor transferring the signal from O-E board to PCB and the flex optical waveguide easily stackable onto the PCB to guide optical signal from one chip-to-other chip. Alternatively, the electrode can be directly connected to the PCB instead of including in the waveguide board. The chip-to-chip interconnections system is pin-free and compatible with the PCB.
    Type: Grant
    Filed: April 15, 2016
    Date of Patent: January 24, 2017
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Patent number: 9420941
    Abstract: Autonomous/self-powering image detecting systems and their manufacturing technologies are disclosed. An antenna is used to communicate signals. A first energy harvester is used to harvest energy from blackbody radiation, RF signals, movement/vibration, or combination thereof. A power management system is used which controls the energy flow to and from the energy-storage. An image sensor to take the image, a lens, and a transmitter to transmit the images to an outside device are also used in this invention. According to this preferred embodiment, an energy harvester harnessing energy from blackbody radiation from and within the body, is used to extract enough energy to increase the operation time and also to make precision of the image detecting system.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: August 23, 2016
    Assignee: Banpil Photonics, Inc.
    Inventors: Achyut Dutta, Robert Olah
  • Patent number: 9401613
    Abstract: An apparatus for perpetually harvesting ambient near ultraviolet to far infrared radiation to provide continual power regardless of the environment, incorporating a system for the harvesting electronics governing power management, storage control, and output regulation. The harvesting electronics address issues of efficiently matching the voltage and current characteristics of the different harvested energy levels, low power consumption, and matching the power output demand. The device seeks to harvest the largely overlooked blackbody radiation through use of a thermal harvester, providing a continuous source of power, coupled with a solar harvester to provide increased power output.
    Type: Grant
    Filed: July 25, 2014
    Date of Patent: July 26, 2016
    Assignee: Banpil Photonics, Inc.
    Inventors: Robert Olah, Achyut K Dutta
  • Patent number: 9341773
    Abstract: An optoelectronics chip-to-chip interconnects system is provided, including at least one packaged chip to be connected on the printed-circuit-board with at least one other packaged chip, optical-electrical (O-E) conversion mean, waveguide-board, and (PCB). Single to multiple chips interconnects can be interconnected provided using the technique disclosed in this invention. The packaged chip includes semiconductor die and its package based on the ball-grid array or chip-scale-package. The O-E board includes the optoelectronics components and multiple electrical contacts on both sides of the O-E substrate. The waveguide board includes the electrical conductor transferring the signal from O-E board to PCB and the flex optical waveguide easily stackable onto the PCB to guide optical signal from one chip-to-other chip. Alternatively, the electrode can be directly connected to the PCB instead of including in the waveguide board. The chip-to-chip interconnections system is pin-free and compatible with the PCB.
    Type: Grant
    Filed: May 18, 2014
    Date of Patent: May 17, 2016
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Patent number: 9257406
    Abstract: An electronics interconnection system is provided with reduced capacitance between a signal line and the surrounding dielectric material. By using a non-homogenous dielectric, the effective dielectric loss of the material is reduced. This reduction results in less power loss from the signal line to the dielectric material, which reduces the number of buffers needed on the signal line. This increases the speed of the signal, and reduces the power consumed by the interconnection system. The fabrication techniques provided are advantageous because they can be fabricated using today's standard IC fabrication techniques.
    Type: Grant
    Filed: May 3, 2014
    Date of Patent: February 9, 2016
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20150331206
    Abstract: An optoelectronics chip-to-chip interconnects system is provided, including at least one packaged chip to be connected on the printed-circuit-board with at least one other packaged chip, optical-electrical (O-E) conversion mean, waveguide-board, and (PCB). Single to multiple chips interconnects can be interconnected provided using the technique disclosed in this invention. The packaged chip includes semiconductor die and its package based on the ball-grid array or chip-scale-package. The O-E board includes the optoelectronics components and multiple electrical contacts on both sides of the O-E substrate. The waveguide board includes the electrical conductor transferring the signal from O-E board to PCB and the flex optical waveguide easily stackable onto the PCB to guide optical signal from one chip-to-other chip. Alternatively, the electrode can be directly connected to the PCB instead of including in the waveguide board. The chip-to-chip interconnections system is pin-free and compatible with the PCB.
    Type: Application
    Filed: May 18, 2014
    Publication date: November 19, 2015
    Applicant: Banpil Photonics, Inc.
    Inventor: ACHYUT KUMAR DUTTA
  • Patent number: 9184202
    Abstract: This invention relates to multiband detector and multiband image sensing devices, and their manufacturing technologies. The innovative detector (or image sensing) provides significant broadband capability covering the wavelengths from within ultra-violet (UV) to long-Infrared, and it is achieved in a single element. More particularly, this invention is related to the multiband or dual band detectors, which can not only detect the broad spectrum wavelengths ranges from within as low as UV to the wavelengths as high as 25 ?m, but also band selection capability. This invention is also related to the multiband detector arrays or image sensing device for multicolor imaging, sensing, and advanced communication.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: November 10, 2015
    Assignee: BANPIL PHOTONICS, INC.
    Inventor: Achyut Dutta
  • Publication number: 20150280032
    Abstract: Novel structures of photovoltaic cells (also called as solar cells) are provided. The cells are based on nanoparticles or nanometer-scaled wires, tubes, and/or rods, which are made of electrical materials covering semiconductors, insulators, and also metallic in structure. These photovoltaic cells have large power generation capability per unit physical area over the conventional cells. These cells will have enormous applications such as in space, commercial, residential and industrial applications.
    Type: Application
    Filed: March 12, 2014
    Publication date: October 1, 2015
    Applicant: Banpil Photonics, Inc.
    Inventor: Achyut Kumar DUTTA