Patents Assigned to Neology
  • Patent number: 10140568
    Abstract: Various embodiments of RFID switch devices are disclosed herein. Such RFID switch devices advantageously enable manual activation/deactivation of the RF module. The RFID switch device may include a RF module with an integrated circuit adapted to ohmically connect to a substantially coplanar conductive trace pattern, as well as booster antenna for extending the operational range of the RFID device. The operational range of the RFID switch device may be extended when a region of the booster antenna overlaps a region of the conductive trace pattern on the RF module via inductive or capacitive coupling. In some embodiments, all or a portion of the booster antenna may at least partially shield the RF module when the RFID switch device is in an inactive state.
    Type: Grant
    Filed: September 14, 2017
    Date of Patent: November 27, 2018
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, Sheshi Nyalamadugu
  • Patent number: 10102685
    Abstract: The present disclosure provides various examples of a self-declaring wireless device installed on a vehicle operable to automatically detect, determine and declare occupancy information of the vehicle traveling on a restricted traffic lane to an electronic toll collection (ETC) system. According to one aspect, a process for performing self-declaration by a vehicle traveling on a restricted traffic lane includes the steps of: receiving sensor data collected by one or more sensors installed on the vehicle; determining occupancy data of the vehicle based on the received sensor data; and controlling a wireless transceiver installed on the vehicle to communicate with an electronic toll collection (ETC) system associated with the restricted traffic lane based on the determined occupancy data.
    Type: Grant
    Filed: August 1, 2016
    Date of Patent: October 16, 2018
    Assignee: Neology, Inc.
    Inventors: Sheshi Nyalamadugu, Joe Mullis, Bobby Leanio
  • Patent number: 10083385
    Abstract: An account is managed using information read from a dual frequency transponder. Information stored on the dual frequency transponder can be read by a NFC-enabled device and by a UHF RFID reader. The information links, corresponds, or otherwise provides access to account information stored at a remote server. For example, a NFC-enabled device can read the information from the dual frequency transponder and use that information to enable instant and on-the-spot recharging of a toll account. In addition, a UHF RFID toll reader can scan information from the dual frequency transponder and use that information to debit toll charges from the correct toll account. The dual frequency transponder can be embedded in a license plate and read using a reader placed in the road. Additionally, the transponder can be configured to function at the correct frequency only when a valid vehicle registration sticker is applied to the license plate.
    Type: Grant
    Filed: April 10, 2015
    Date of Patent: September 25, 2018
    Assignee: Neology, Inc.
    Inventors: Francisco Martinez de Velasco Cortina, Joe Mullis, Manfred Rietzler, Sheshi Nyalamadugu, Rodolfo Monsalvo
  • Patent number: 10061949
    Abstract: The present invention provides a method and system for verifying and tracking identification information. In an embodiment of the invention, a system for delivering security solutions is provided that includes at least one of the following: a radio frequency (RF) identification device, an identification mechanism (e.g., a card, sticker), and an RF reader.
    Type: Grant
    Filed: September 18, 2017
    Date of Patent: August 28, 2018
    Assignee: Neology, Inc.
    Inventors: Francisco Martinez de Velasco Cortina, Manfred Rietzler
  • Patent number: 10032108
    Abstract: In the embodiments described herein, a RFID enabled license plate is constructed by using the license plate, or a retro-reflective layer formed thereon as part of the resonator configured to transmit signals generated by and RFID chip integrated with the license plate. Such an RFID enabled license plate can include a metal license plate with a slot formed in the metal license plate, and a RFID tag module positioned in the slot. The RFID tag module can include a chip and a loop, and the loop can be coupled with the metal license plate, e.g., via inductive or conductive coupling. In this manner, the metal license plate can be configured to act as a resonator providing increased performance.
    Type: Grant
    Filed: October 11, 2016
    Date of Patent: July 24, 2018
    Assignee: Neology, Inc.
    Inventors: Jeffrey Zhu, Chih-chuan Yen, Jason Liu, Joe Mullis
  • Patent number: 10029650
    Abstract: A license plate validation system for a vehicle is disclosed. This license plate validation system includes: a radio frequency identification (RFID) reader located inside the vehicle and configured to read from an RFID-enabled license plate on the vehicle upon detecting an attempt to start the vehicle; and a microcontroller coupled to the RFID reader and configured to receive, from the RFID reader, information obtained from the RFID-enabled license plate and subsequently determine, based at least on the received information, whether the vehicle is properly registered. In some embodiments, the microcontroller and the RFID reader are integrated as a single electronic module.
    Type: Grant
    Filed: August 18, 2017
    Date of Patent: July 24, 2018
    Assignee: Neology, Inc.
    Inventors: Sheshi Nyalamadugu, Joe Mullis, Bobby Leanio
  • Patent number: 9996791
    Abstract: A radio frequency identification (RFID) enabled mirror includes a mirror comprising a reflective layer. The reflective layer comprises at least one layer of a metallic material. At least one portion of the reflective layer is removed to form a booster antenna from a remaining portion of the reflective layer. A dielectric coating is applied to the mirror where the reflective layer was removed. The RFID-enabled mirror further includes an RFID chip coupled to the booster antenna.
    Type: Grant
    Filed: June 26, 2017
    Date of Patent: June 12, 2018
    Assignee: Neology, Inc.
    Inventors: Sheshi Nyalamadugu, Joe Mullis
  • Patent number: 9892295
    Abstract: A system for providing item information includes: a radio frequency identification (RFID) tag coupled to an item; and a mobile device comprising an RFID reader. The RFID tag includes stored information related to the item, and the RFID reader is configured to access the RFID tag, obtain the item information, and communicate the item information to a user.
    Type: Grant
    Filed: April 10, 2014
    Date of Patent: February 13, 2018
    Assignee: Neology, Inc.
    Inventors: Francisco Martinez de Velasco Cortina, Manfred Rietzler
  • Patent number: 9852421
    Abstract: An account is managed using information read from a dual frequency transponder. Information stored on the dual frequency transponder can be read by a NFC-enabled device and by a UHF RFID reader. The information links, corresponds, or otherwise provides access to account information stored at a remote server. For example, a NFC-enabled device can read the information from the dual frequency transponder and use that information to enable instant and on-the-spot recharging of a toll account. In addition, a UHF RFID toll reader can scan information from the dual frequency transponder and use that information to debit toll charges from the correct toll account. The dual frequency transponder can be embedded in a license plate and read using a reader placed in the road. Additionally, the transponder can be configured to function at the correct frequency only when a valid vehicle registration sticker is applied to the license plate.
    Type: Grant
    Filed: May 27, 2016
    Date of Patent: December 26, 2017
    Assignee: Neology, Inc.
    Inventors: Francisco Martinez de Velasco Cortina, Joe Mullis, Manfred Rietzler, Sheshi Nyalamadugu, Rodolfo Monsalvo
  • Patent number: 9767403
    Abstract: Various embodiments of RFID switch devices are disclosed herein. Such RFID switch devices advantageously enable manual activation/deactivation of the RF module. The RFID switch device may include a RF module with an integrated circuit adapted to ohmically connect to a substantially coplanar conductive trace pattern, as well as booster antenna for extending the operational range of the RFID device. The operational range of the RFID switch device may be extended when a region of the booster antenna overlaps a region of the conductive trace pattern on the RF module via inductive or capacitive coupling. In some embodiments, all or a portion of the booster antenna may at least partially shield the RF module when the RFID switch device is in an inactive state.
    Type: Grant
    Filed: September 6, 2016
    Date of Patent: September 19, 2017
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, Sheshi Nyalamadugu
  • Patent number: 9767404
    Abstract: Various embodiments of RFID switch devices are disclosed herein. Such RFID switch devices advantageously enable manual activation/deactivation of the RF module. The RFID switch device may include a RF module with an integrated circuit adapted to ohmically connect to a substantially coplanar conductive trace pattern, as well as booster antenna for extending the operational range of the RFID device. The operational range of the RFID switch device may be extended when a region of the booster antenna overlaps a region of the conductive trace pattern on the RF module via inductive or capacitive coupling. The RFID switch device may further include a visual indicator displaying a first color if the RFID switch device is in an active state and/or a second color if the RFID switch device is in an inactive state.
    Type: Grant
    Filed: February 28, 2017
    Date of Patent: September 19, 2017
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, Sheshi Nyalamadugu
  • Patent number: 9747542
    Abstract: A breakaway RFID tag is configured such that it comprises part of a Printed Circuit Board Assembly (PCB). Thus, the breakaway RFID tag can be used to track the PCB as it migrates through a manufacturing process. In one embodiment, the RFID tag can be assembled first and then used to track the PCB as it is populated with components and installed into larger assemblies and ultimately into the end device. Once the PCB is installed into a larger assembly or the end device, the breakaway RFID tag is configured such that it can be broken off and attached to the outside of the larger assembly or end device.
    Type: Grant
    Filed: November 18, 2016
    Date of Patent: August 29, 2017
    Assignee: Neology, Inc.
    Inventors: Paul Elizondo, John Azevedo
  • Patent number: 9007215
    Abstract: In the embodiments described herein, a RFID enabled license plate is constructed by using the license plate, or a retro-reflective layer formed thereon as part of the resonator configured to transmit signals generated by and RFID chip integrated with the license plate. Such an RFID enabled license plate can include a metal license plate with a slot formed in the metal license plate, and a RFID tag module positioned in the slot. The RFID tag module can include a chip and a loop, and the loop can be coupled with the metal license plate, e.g., via inductive or conductive coupling. In this manner, the metal license plate can be configured to act as a resonator providing increased performance.
    Type: Grant
    Filed: December 7, 2012
    Date of Patent: April 14, 2015
    Assignee: Neology, Inc.
    Inventors: Jeffrey Zhu, Chih-chuan Yen, Jason Liu, Joe Mullis
  • Patent number: 8991714
    Abstract: A breakaway RFID tag is configured such that it comprises part of a Printed Circuit Board Assembly (PCB). Thus, the breakaway RFID tag can be used to track the PCB as it migrates through a manufacturing process. In one embodiment, the RFID tag can be assembled first and then used to track the PCB as it is populated with components and installed into larger assemblies and ultimately into the end device. Once the PCB is installed into a larger assembly or the end device, the breakaway RFID tag is configured such that it can be broken off and attached to the outside of the larger assembly or end device.
    Type: Grant
    Filed: December 16, 2013
    Date of Patent: March 31, 2015
    Assignee: Neology, Inc.
    Inventors: Paul Elizondo, John Azevedo
  • Patent number: 8963712
    Abstract: Systems and methods for a tamper-evident cargo container seal bolt lock are disclosed herein. The device can include a bolt member having a conductive medium running the axial length of the bolt, and a receiving member for locking the bolt into place. A battery-driven sensory circuit including a memory, a processor, and a timing circuit can be disposed within the receiving member such that a continuous circuit is formed from one circuit pin over the conductive medium through the length of the bolt and back to a second pin. The sensory circuit is configured to sense whether the circuit has been interrupted (e.g., if the bolt has been cut). In the event of an interruption, the circuit can record the time and/or date in memory. This information can then be transmitted to an RFID reader/interrogator if a dispute arises as to when the lock had been broken.
    Type: Grant
    Filed: March 8, 2013
    Date of Patent: February 24, 2015
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, James Robert Kruest
  • Patent number: 8964986
    Abstract: A method for secure cryptographic communication comprises transmitting information that identifies a group key from a first device to a second device. The method further comprises, in the first device, using the group key to encrypt an input vector, transmitting the encrypted input vector, encrypting privacy-sensitive information using a device key, an encryption algorithm, and the input vector, and transmitting the encrypted privacy-sensitive information to the second device.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: February 24, 2015
    Assignee: Neology, Inc.
    Inventors: Thomas Tahan, Jun Liu
  • Patent number: 8944337
    Abstract: Various embodiments of RFID switch devices are disclosed herein. Such RFID switch devices advantageously enable manual activation/deactivation of the RF module. The RFID switch device may include a RF module with an integrated circuit adapted to ohmically connect to a substantially coplanar conductive trace pattern, as well as booster antenna for extending the operational range of the RFID device. The operational range of the RFID switch device may be extended when a region of the booster antenna overlaps a region of the conductive trace pattern on the RF module via inductive or capacitive coupling. The RFID switch device may further include a visual indicator displaying a first color if the RFID switch device is in an active state and/or a second color if the RFID switch device is in an inactive state.
    Type: Grant
    Filed: October 22, 2013
    Date of Patent: February 3, 2015
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, Sheshi Nyalamadugu
  • Publication number: 20150022323
    Abstract: RFID tags are used for many purpose including tracking. RFID interrogators are used to retrieve information from tags. In many applications, a plurality of RFID interrogators are required. Synchronization between interrogators in the same theatre of operation is critical to ensure that their broadcasts do not interfere with each other. In fixed RFID interrogator applications, RFID interrogators can be wired together allowing a channel to synchronize the transmissions of the RFID interrogators. Methods described herein can ensure that synchronization is maintained in the event of the failure of a synchronizing master. Furthermore, additional methods for synchronizing RFID interrogators in wireless applications are described allowing synchronization in the absence of wired connections between interrogators.
    Type: Application
    Filed: March 25, 2014
    Publication date: January 22, 2015
    Applicant: Neology, Inc.
    Inventors: James Robert Kruest, Gary Bann
  • Patent number: 8933807
    Abstract: The present invention provides a method and system for verifying and tracking transactional information. In an embodiment of the invention, a system for delivering security solutions is provided that includes at least one of the following: a radio frequency (RF) identification device, an identification mechanism (e.g., a card, sticker), and an RF reader.
    Type: Grant
    Filed: September 16, 2013
    Date of Patent: January 13, 2015
    Assignee: Neology, Inc.
    Inventors: Francisco Martinez de Velasco Cortina, Manfred Rietzler
  • Patent number: 8915449
    Abstract: A Non-transferable Radio Frequency Identification (RFID) assembly for attachment to an article comprises a RFID module; and a antenna module coupled with the RFID module, the antenna module comprising a conductive layer, a substrate, and an adhesive modification layer between the conductive layer and the substrate, the adhesive modification layer configured such that when the assembly is attached to the article and attempt to remove the assembly will cause the substrate to release and leave the conductive layer intact.
    Type: Grant
    Filed: January 8, 2013
    Date of Patent: December 23, 2014
    Assignee: Neology, Inc.
    Inventors: Joe Mullis, Steve Gonzalez, Emily Olanoff