Patents by Inventor Peter M. Agboh

Peter M. Agboh 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).

  • Patent number: 10263753
    Abstract: In order to improve the quality of communication between electronic devices, one or more sub-channels used during communication between the electronic devices are dynamically modified based on one or more performance metrics and allowed transmit powers of the sub-channels. In particular, when the one or more performance metrics indicate that a distance between the electronic devices falls within a mid-range of distances, the one or more performance metrics may be used to guide selective changes to the sub-channels used during the communication based on the allowed transmit powers. The changes to the sub-channels used during the communication may increase, decrease or leave the total bandwidth unchanged. Moreover, by changing the sub-channels used during the communication, the allowed transmit power(s) of the sub-channel(s) used may be increased, which may improve the performance during the communication.
    Type: Grant
    Filed: September 10, 2015
    Date of Patent: April 16, 2019
    Assignee: Apple Inc.
    Inventors: Lei Li, Xiaojun Chen, Vusthla Sunil Reddy, Diego C. Hernandez, Peter M. Agboh, Mohit Narang, Ruben Caballero, Indranil S. Sen
  • Publication number: 20190097664
    Abstract: A transceiver that allows dynamic high-pass filter (HPF) cut-off frequency adjustment may include a mixer circuit to mix a local oscillator (LO) signal with a receive (RX) signal received from a transmitter to generate a baseband signal. The transceiver may further include a high-pass filter (HPF) having an adjustable cut-off frequency that is used to reduce a DC offset of the baseband signal. A control circuit can dynamically control components of the HPF to set the adjustable cut-off frequency at a first frequency during a first time period and at a second frequency during a second time period.
    Type: Application
    Filed: September 26, 2017
    Publication date: March 28, 2019
    Inventors: Xinping ZENG, Mohit Narang, Peter M. Agboh, Vusthla Sunil Reddy
  • Publication number: 20190098435
    Abstract: An electronic device includes a transmitter configured to generate a signal. The electronic device also includes tuning circuitry coupled to the transmitter, wherein the tuning circuitry comprises a variable capacitance element and at least one fixed capacitance element having a fixed capacitance, wherein the variable capacitance element is configured to provide a dynamic capacitance based upon a voltage value related to a determined phase difference between the signal and a second signal, wherein the tuning circuitry is configured to adjust a frequency of the first signal to generate a tuned signal based upon a total capacitance comprising the fixed capacitance and the dynamic capacitance. The electronic device further includes an antenna coupled to the tuning circuitry and configured to generate an electromagnetic field based on the tuned signal.
    Type: Application
    Filed: September 27, 2017
    Publication date: March 28, 2019
    Inventors: Xinping Zeng, Peter M. Agboh, Vusthla Sunil Reddy
  • Publication number: 20190081614
    Abstract: Systems, methods, and devices are provided to efficiently share an antenna between multiple communication systems and allow for the communication systems to be simultaneously connected to the antenna with less attenuation and/or no fluctuation in signal strength. Communication circuitry may include an antenna that transmits and receives electromagnetic radiation. The communication circuitry may also include an antenna port that provides primary access to the antenna with a first attenuation via an antenna port input. Additionally, the communication circuitry may include a coupler attached to the antenna port. The coupler may provide secondary access to the antenna with a second attenuation.
    Type: Application
    Filed: September 13, 2017
    Publication date: March 14, 2019
    Inventors: Chia Yiaw Chong, Mohit Narang, Peter M. Agboh, Hsin-Yuo Liu, Sultan R. Helmi, Tursunjan Yasin, Ye Chen
  • Publication number: 20190058507
    Abstract: A transceiver that implements a high dynamic range NFC reader mode receiver may include a transmitter circuit to generate a transmit (TX) signal for communication to a first device via an antenna. The transceiver may further include a receiver circuit that is in communication with the first device via the antenna. The receiver circuit includes a mixer circuit and an adder circuit. The mixer circuit mixes a carrier signal with a first signal to generate a baseband signal. The adder circuit is coupled to the antenna and produces the first signal by adding a receive (RX) signal with a second signal to reduce a component of the TX signal included in the RX signal. The second signal is produced by processing a TX clock signal generated by the transmitter circuit.
    Type: Application
    Filed: October 19, 2017
    Publication date: February 21, 2019
    Inventors: Xinping ZENG, Peter M. AGBOH, Vusthla Sunil REDDY
  • Patent number: 10206236
    Abstract: A device and method selects an antenna configuration. The method performed at a user equipment includes determining at least one communication functionality that is being used, each communication functionality configured to utilize at least one antenna in a multi-antenna arrangement of the user equipment. The method includes receiving a first indication of whether a cellular communication functionality is being used, the cellular communication functionality configured to utilize at least one antenna in the multi-antenna arrangement. The method includes receiving a second indication of whether a coexistence condition is present. The method includes determining an antenna configuration for the multi-antenna arrangement to be used by the determined communication functionality based upon the determined communication functionality, the first indication, and the second indication.
    Type: Grant
    Filed: December 28, 2016
    Date of Patent: February 12, 2019
    Assignee: APPLE INC.
    Inventors: Hsin-Yuo Liu, Ruben Caballero, Mohit Narang, Peter M. Agboh, Paul V. Flynn, Qiong Wu, Nicholas M. McDonnell, Navid Damji, Ming Hu, Wen Zhao
  • Patent number: 10200183
    Abstract: Devices and systems useful in concurrently receiving and transmitting Wi-Fi signals and Bluetooth signals in the same frequency band are provided. By way of example, an electronic device includes a transceiver configured to transmit data and to receive data over channels of a first wireless network and a second wireless network concurrently. The transceiver includes a plurality of filters configured to allow the transceiver to transmit the data and to receive the data in the same frequency band by reducing interference between signals of the first wireless network and the second wireless network.
    Type: Grant
    Filed: June 22, 2016
    Date of Patent: February 5, 2019
    Assignee: APPLE INC.
    Inventors: Hsin-Yuo Liu, Peter M. Agboh, Mohit Narang, Indranil S. Sen, Nicholas M. McDonnell, Chia Yiaw Chong
  • Patent number: 10187856
    Abstract: A host device is configured to increase the power output by an internal amplifier of its wireless chipset in response to requests from a remote device. Once the internal amplifier has reached its maximum power, further requests for power increases from the remove device do not similarly lead to automatic power increases being delivered by a external amplifier of the host device. Rather, the host device determines the strength of the link between it and the remote device. If the signal strength is too low, it is an indication that the signal power output by the remote device may not be sufficient to maintain the link and that any further increases in signal power by the host device will have little or no effect on the link. However, if the signal strength from the remote device is sufficient, the host device determines an error rate between it and the remote device. If the error rate is sufficiently low to maintain the link, then the host device will not further increase its signal output power.
    Type: Grant
    Filed: January 18, 2018
    Date of Patent: January 22, 2019
    Assignee: Apple Inc.
    Inventors: Mohit Narang, Peter M. Agboh, Qiyang Wu, Ruben Caballero, Vusthla Sunil Reddy, Xi Yang
  • Patent number: 10178711
    Abstract: Exemplary embodiments include a system having a first wireless audio output device and a second wireless audio output device. One of the first or second audio output devices is configured to one of connect as a slave to a source device in a first piconet and connect as a master to the other one of the first or second audio output devices in a second piconet. The one of the first or second wireless audio output devices determines whether an audio packet transmitted by the source device via the first piconet was received by the first wireless audio output device and the second wireless audio output device, and, when at least one of the first wireless audio output device or the second wireless audio output device did not receive the audio packet, the audio packet is exchanged between the first and second wireless audio output devices via the second piconet.
    Type: Grant
    Filed: September 19, 2017
    Date of Patent: January 8, 2019
    Assignee: APPLE INC.
    Inventors: Lei Li, Xiaojun Chen, Vusthla Sunil Reddy, Peter M. Agboh, Mohit Narang
  • Publication number: 20180212669
    Abstract: A wireless communication device includes a number of radio-frequency (RF) antennas and one or more radio circuits. Each radio circuit includes a receive (RX) chain to process RX signals and a transmit (TX) chain to process TX signals. An RF switch network couples at least one RF antenna to at least one radio circuit. A baseband processor controls a configuration of the RF switch network. The baseband processor determines a plurality of parameters and controls the RF switch network based on at least one of the parameters. The parameters are determined during a training interval including at least an inter-frame space (IFS). The configuration of the RF switch network is based on the determined parameters and is employed for selection of an antenna to improve a link performance when used for communication of a next packet following the IFS.
    Type: Application
    Filed: September 19, 2017
    Publication date: July 26, 2018
    Inventors: Lei LI, Peter M. AGBOH, Xiaojun CHEN, Qiyang WU, Vusthla Sunil REDDY, Mohit NARANG
  • Publication number: 20180146435
    Abstract: A host device is configured to increase the power output by an internal amplifier of its wireless chipset in response to requests from a remote device. Once the internal amplifier has reached its maximum power, further requests for power increases from the remove device do not similarly lead to automatic power increases being delivered by a external amplifier of the host device. Rather, the host device determines the strength of the link between it and the remote device. If the signal strength is too low, it is an indication that the signal power output by the remote device may not be sufficient to maintain the link and that any further increases in signal power by the host device will have little or no effect on the link. However, if the signal strength from the remote device is sufficient, the host device determines an error rate between it and the remote device. If the error rate is sufficiently low to maintain the link, then the host device will not further increase its signal output power.
    Type: Application
    Filed: January 18, 2018
    Publication date: May 24, 2018
    Inventors: Mohit Narang, Peter M. Agboh, Qiyang Wu, Ruben Caballero, Vusthla Sunil Reddy, Xi Yang
  • Patent number: 9955505
    Abstract: A method and apparatus are provided for conducting peer-to-peer communications while channel hopping among two or more wireless channels, at least one of which is a restricted channel. One type of restricted channel requires the use of DFS (Dynamic Frequency Selection) or a similar scheme for avoiding use of the channel during certain circumstances (e.g., for radar avoidance). Communicating peers may synchronize a channel-hopping sequence with TBTTs (Target Beacon Transmission Times) of the restricted channel(s), so that they switch to such a channel in time to capture a beacon and determine whether the channel is free. If the channel is free, or if no beacon is received, they may immediately begin or resume their communications. They may also quiesce just before another TBTT so as to capture that beacon. Thus, the peer-to-peer communications do not diminish a peer device's ability to receive and comply with channel switch announcements.
    Type: Grant
    Filed: December 6, 2013
    Date of Patent: April 24, 2018
    Assignee: Apple Inc.
    Inventors: Pierre B. Vandwalle, Christiaan A. Hartman, Peter M. Agboh
  • Publication number: 20180084456
    Abstract: Exemplary embodiments include a system having a first wireless audio output device configured to connect to a source device via a first piconet and a second wireless audio output device configured to connect to the first wireless audio output device via a second piconet. A schedule of the first piconet includes a plurality of slots associated with an audio packet, a first subset of the slots used by the source device to transmit the audio packet, the first and second wireless audio output devices tuning to the first piconet to listen for the transmissions of the audio packet, and when, after a last one of the first subset of slots, the first or second wireless audio output devices did not receive the audio packet, the first and second wireless audio output devices exchange information via the second piconet such that the both wireless audio output device receive the audio packet.
    Type: Application
    Filed: September 19, 2017
    Publication date: March 22, 2018
    Inventors: Anatoli GOSTEV, Louay Alsakka, Axel Berny, Tad Dreier, Joachim Hammerschmidt, Lei Li, Xiaojun Chen, Vusthla Sunil Reddy, Peter M. Agboh, Mohit Narang
  • Publication number: 20180084569
    Abstract: Exemplary embodiments include a method performed by a wireless device configured as a slave in a first piconet and configured as a master in a second piconet. The method includes determining whether the wireless device has data to transmit over the second piconet to an other wireless device, determining an availability of a full slot in a first piconet schedule, selecting a data transmission scheme based on the availability of the full slot in the first piconet schedule and transmitting the data via the second piconet to the other wireless device in accordance with the selected data transmission scheme.
    Type: Application
    Filed: September 19, 2017
    Publication date: March 22, 2018
    Inventors: Lei LI, Xiaojun CHEN, Vusthla Sunil REDDY, Mohit NARANG, Qiyang WU, Peter M. AGBOH
  • Publication number: 20180084606
    Abstract: Exemplary embodiments include a system having a first wireless audio output device and a second wireless audio output device. One of the first or second audio output devices is configured to one of connect as a slave to a source device in a first piconet and connect as a master to the other one of the first or second audio output devices in a second piconet. The one of the first or second wireless audio output devices determines whether an audio packet transmitted by the source device via the first piconet was received by the first wireless audio output device and the second wireless audio output device, and, when at least one of the first wireless audio output device or the second wireless audio output device did not receive the audio packet, the audio packet is exchanged between the first and second wireless audio output devices via the second piconet.
    Type: Application
    Filed: September 19, 2017
    Publication date: March 22, 2018
    Inventors: Lei LI, Xiaojun CHEN, Vusthla Sunil REDDY, Peter M. AGBOH, Mohit NARANG
  • Patent number: 9913223
    Abstract: A host device is configured to increase the power output by an internal amplifier of its wireless chipset in response to requests from a remote device coupled via a data link. Once the internal amplifier has reached its maximum power, the host device may determine the strength of the data link between it and the remote device. If the strength is low, it is an indication that further increases in signal power by the host device may have little effect on the link. If the signal strength from the remote device is sufficient, the host device determines an error rate. If the error rate is sufficiently low, the host device will not increase its signal output power. However, if the error rate is too high, the host device may increase power from its external amplifier to improve the error rate of the data link.
    Type: Grant
    Filed: June 22, 2015
    Date of Patent: March 6, 2018
    Assignee: APPLE INC.
    Inventors: Mohit Narang, Peter M. Agboh, Qiyang Wu, Ruben Caballero, Vusthla Sunil Reddy, Xi Yang
  • Publication number: 20170373819
    Abstract: Devices and systems useful in concurrently receiving and transmitting Wi-Fi signals and Bluetooth signals in the same frequency band are provided. By way of example, an electronic device includes a transceiver configured to transmit data and to receive data over channels of a first wireless network and a second wireless network concurrently. The transceiver includes a plurality of filters configured to allow the transceiver to transmit the data and to receive the data in the same frequency band by reducing interference between signals of the first wireless network and the second wireless network.
    Type: Application
    Filed: June 22, 2016
    Publication date: December 28, 2017
    Inventors: Hsin-Yuo Liu, Peter M. Agboh, Mohit Narang, Indranil S. Sen, Nicholas M. McDonnell, Chia-Yiaw Chong
  • Patent number: 9743223
    Abstract: Electronic devices may communicate with each other using a “conducted RF link.” Such a conducted RF link is essentially a link that utilizes a conductor or cable that facilitates communication between electronic devices. Instead of the conductor carrying a traditional signal, it carries a modulated RF signal, such as those produced by a typical wireless RF radio like presently available WiFi/Bluetooth® cores.
    Type: Grant
    Filed: September 30, 2015
    Date of Patent: August 22, 2017
    Assignee: APPLE INC.
    Inventors: Hsin-Yuo Liu, Indranil S. Sen, Mohit Narang, Peter M. Agboh, Ruben Caballero
  • Patent number: 9717109
    Abstract: To establish a connection between electronic devices some embodiments include a system, method, and/or computer program product for password pairing user-interface devices in wireless proximity. A first electronic device (e.g., a keyboard) transmits an advertising packet, and receives a password, where the password has been generated by a second electronic device (e.g., a smartphone) and the password enables pairing between the first electronic device and the second electronic device. The first electronic device transmits a message including the password to the second electronic device, where the second electronic device is within a predefined range of the first electronic device. In some embodiments the first device receives a command from the second electronic device to transition to a discovery mode, transitions to the discovery mode, and transmits a confirmation to the second electronic device that the first device is in the discovery mode.
    Type: Grant
    Filed: June 1, 2016
    Date of Patent: July 25, 2017
    Assignee: Apple Inc.
    Inventors: Xi Yang, Hsin-Yuo Liu, Indranil S. Sen, Vusthla Sunil Reddy, Peter M. Agboh, Mohit Narang, Ruben Caballero, Qiyang Wu
  • Patent number: 9635677
    Abstract: Devices at either end of a wireless communication link are each configured to support multiple different link settings. During communication, a device that is receiving data can monitor the signal quality and initiate a dynamic transition to a new link setting if performance of the current link setting falls below a lower threshold or exceeds an upper threshold. Dynamic link adaptation can be implemented within a wireless communication interface of the device and can be transparent to application and/or operating system software executing on the device.
    Type: Grant
    Filed: March 12, 2015
    Date of Patent: April 25, 2017
    Assignee: Apple Inc.
    Inventors: Hsin-Yuo Liu, Peter M. Agboh, Indranil S. Sen, Xi Yang, Chia Yiaw Chong, Mohit Narang, Ruben Caballero