Patents by Inventor Craig E. Hampel

Craig E. Hampel 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: 9721642
    Abstract: A memory component includes a memory core comprising dynamic random access memory (DRAM) storage cells and a first circuit to receive external commands. The external commands include a read command that specifies transmitting data accessed from the memory core. The memory component also includes a second circuit to transmit data onto an external bus in response to a read command and pattern register circuitry operable during calibration to provide at least a first data pattern and a second data pattern. During the calibration, a selected one of the first data pattern and the second data pattern is transmitted by the second circuit onto the external bus in response to a read command received during the calibration. Further, at least one of the first and second data patterns is written to the pattern register circuitry in response to a write command received during the calibration.
    Type: Grant
    Filed: May 16, 2016
    Date of Patent: August 1, 2017
    Assignee: Rambus Inc.
    Inventors: Craig E. Hampel, Richard E. Perego, Stefanos Sidiropoulos, Ely K. Tsern, Frederick A. Ware
  • Patent number: 9703503
    Abstract: In a reconfigurable data strobe-based memory system, data strobes may be re-tasked in different modes of operation. For example, in one mode of operation a differential data strobe may be used as a timing reference for a given set of data signals. In a second mode of operation, one of the components of the differential data strobe may be used as a timing reference for a first portion of the set of data signals and the other component used as a timing reference for a second portion of the set of data signals. Different data mask-related schemes also may be invoked for different modes of operation. For example, in a first mode of operation a memory controller may generate a data mask signal to prevent a portion of a set of data from being written to a memory array. Then, in a second mode of operation the memory controller may invoke a coded value replacement scheme or a data strobe transition inhibition scheme to prevent a portion of a set of data from being written to a memory array.
    Type: Grant
    Filed: October 8, 2014
    Date of Patent: July 11, 2017
    Assignee: Rambus Inc.
    Inventors: Ian Shaeffer, Frederick Ware, Craig E. Hampel
  • Patent number: 9667406
    Abstract: A method and system provides for execution of calibration cycles from time to time during normal operation of the communication channel. A calibration cycle includes de-coupling the normal data source from the transmitter and supplying a calibration pattern in its place. The calibration pattern is received from the communication link using the receiver on the second component. A calibrated value of a parameter of the communication channel is determined in response to the received calibration pattern. The steps involved in calibration cycles can be reordered to account for utilization patterns of the communication channel. For bidirectional links, calibration cycles are executed which include the step of storing received calibration patterns on the second component, and retransmitting such calibration patterns back to the first component for use in adjusting parameters of the channel at first component.
    Type: Grant
    Filed: April 24, 2015
    Date of Patent: May 30, 2017
    Assignee: Rambus Inc.
    Inventors: Frederick A. Ware, Richard E. Perego, Craig E. Hampel
  • Patent number: 9667359
    Abstract: A method and system that provides for execution of a first calibration sequence, such as upon initialization of a system, to establish an operation value, which utilizes an algorithm intended to be exhaustive, and executing a second calibration sequence from time to time, to measure drift in the parameter, and to update the operation value in response to the measured drift. The second calibration sequence utilizes less resources of the communication channel than does the first calibration sequence. In one embodiment, the first calibration sequence for measurement and convergence on the operation value utilizes long calibration patterns, such as codes that are greater than 30 bytes, or pseudorandom bit sequences having lengths of 2N?1 bits, where N is equal to or greater than 7, while the second calibration sequence utilizes short calibration patterns, such as fixed codes less than 16 bytes, and for example as short as 2 bytes long.
    Type: Grant
    Filed: May 20, 2015
    Date of Patent: May 30, 2017
    Assignee: Rambus Inc.
    Inventors: Craig E. Hampel, Frederick A. Ware, Richard E. Perego
  • Patent number: 9652176
    Abstract: A micro-threaded memory device. A plurality of storage banks are provided, each including a plurality of rows of storage cells and having an access restriction in that at least a minimum access time interval must transpire between successive accesses to a given row of the storage cells. Transfer control circuitry is provided to transfer a first amount of data between the plurality of storage banks and an external signal path in response to a first memory access request, the first amount of data being less than a product of the external signal path bandwidth and the minimum access time interval.
    Type: Grant
    Filed: August 1, 2014
    Date of Patent: May 16, 2017
    Assignee: Rambus Inc.
    Inventors: Frederick A. Ware, Craig E. Hampel, Wayne S. Richardson, Chad A. Bellows, Lawrence Lai
  • Publication number: 20170132150
    Abstract: A memory module having reduced access granularity. The memory module includes a substrate having signal lines thereon that form a control path and first and second data paths, and further includes first and second memory devices coupled in common to the control path and coupled respectively to the first and second data paths. The first and second memory devices include control circuitry to receive respective first and second memory access commands via the control path and to effect concurrent data transfer on the first and second data paths in response to the first and second memory access commands.
    Type: Application
    Filed: October 17, 2016
    Publication date: May 11, 2017
    Inventors: Craig E. Hampel, Frederick A. Ware
  • Patent number: 9628257
    Abstract: A method and system provides for execution of calibration cycles from time to time during normal operation of the communication channel. A calibration cycle includes de-coupling the normal data source from the transmitter and supplying a calibration pattern in its place. The calibration pattern is received from the communication link using the receiver on the second component. A calibrated value of a parameter of the communication channel is determined in response to the received calibration pattern. The steps involved in calibration cycles can be reordered to account for utilization patterns of the communication channel. For bidirectional links, calibration cycles are executed which include the step of storing received calibration patterns on the second component, and retransmitting such calibration patterns back to the first component for use in adjusting parameters of the channel at first component.
    Type: Grant
    Filed: November 4, 2015
    Date of Patent: April 18, 2017
    Assignee: Rambus Inc.
    Inventors: Frederick A. Ware, Richard E. Perego, Craig E. Hampel
  • Publication number: 20170097904
    Abstract: A memory module includes a substrate, plural memory devices, and a buffer. The plural memory devices are organized into at least one rank, each memory device having plural banks. The buffer includes a primary interface for communicating with a memory controller and a secondary interface coupled to the plural memory devices. For each bank of each rank of memory devices, the buffer includes data buffer circuitry and address buffer circuitry. The data buffer circuitry includes first storage to store write data transferred during a bank cycle interval (tRR). The address buffer circuitry includes second storage to store address information corresponding to the data stored in the first storage.
    Type: Application
    Filed: May 26, 2015
    Publication date: April 6, 2017
    Inventors: Frederick A. Ware, Craig E. Hampel
  • Publication number: 20170085368
    Abstract: Systems and methods for performing cryptographic data processing operations in a manner resistant to external monitoring attacks. An example method may comprise: executing, by a processing device, a first data manipulation instruction, the first data manipulation instruction affecting an internal state of the processing device; executing a second data manipulation instruction, the second data manipulation instruction interacting with said internal state; and breaking a detectable interaction of the first data manipulation instruction and the second data manipulation instruction by executing a third data manipulation instruction utilizing an unpredictable data item.
    Type: Application
    Filed: May 15, 2015
    Publication date: March 23, 2017
    Applicant: Cryptography Research, Inc.
    Inventors: Sami James Saab, Pankaj Rohatgi, Craig E. Hampel
  • Publication number: 20170054549
    Abstract: A signaling system is disclosed. The signaling system includes a first integrated circuit (IC) chip to receive a data signal and a strobe signal. The first IC includes circuitry to sample the data signal at times indicated by the strobe signal to generate phase error information and circuitry to output the phase error information from the first IC device. The system further includes a signaling link and a second IC chip coupled to the first IC chip via the signaling link to output the data signal and the strobe signal to the first IC chip. The second IC chip includes delay circuitry to generate the strobe signal by delaying an aperiodic timing signal for a first time interval and timing control circuitry to receive the phase error information from the first IC chip and adjust the first time interval in accordance with the phase error information.
    Type: Application
    Filed: August 29, 2016
    Publication date: February 23, 2017
    Inventors: Bret G. Stott, Craig E. Hampel, Frederick A. Ware
  • Publication number: 20170053691
    Abstract: A memory controller component includes transmit circuitry and adjusting circuitry. The transmit circuitry transmits a clock signal and write data to a DRAM, the write data to be sampled by the DRAM using a timing signal. The adjusting circuitry adjusts transmit timing of the write data and of the timing signal such that an edge transition of the timing signal is aligned with an edge transition of the clock signal at the DRAM.
    Type: Application
    Filed: September 20, 2016
    Publication date: February 23, 2017
    Inventors: Frederick A. Ware, Ely K. Tsern, Richard E. Perego, Craig E. Hampel
  • Publication number: 20170031864
    Abstract: An integrated circuit device includes a transmitter circuit including an output driver. The integrated circuit device includes a first register to store a value representative of a drive strength setting associated with the transmitter circuit such that the output driver outputs data in accordance with the drive strength setting. The integrated circuit device also includes a second register to store a value representative of an equalization setting associated with the transmitter circuit such that the output driver outputs data in accordance with the equalization setting. The integrated circuit device further includes a third register to store a value representative of a slew rate setting associated with the transmitter circuit such that the output driver outputs data in accordance with the slew rate setting.
    Type: Application
    Filed: August 4, 2016
    Publication date: February 2, 2017
    Inventors: Mark A. Horowitz, Craig E. Hampel, Alfredo Moncayo, Kevin S. Donnelly, Jared L. Zerbe
  • Publication number: 20160350549
    Abstract: Systems and methods for implementing access control by systems-on-chip (SoCs). An example SoC may comprise: an access control unit comprising a secure memory for storing access control data, the access control unit to: receive a message comprising an access control data item; store the access control data item in the secure memory; perform at least one of: authenticating the message using a message digest function, or validating contents of the secure memory by comparing a stored reference value with a calculated value of a message digest function of the contents of the secure memory; and control, in view of the access control data item, access by an initiator device to a target device.
    Type: Application
    Filed: January 27, 2015
    Publication date: December 1, 2016
    Inventors: Craig E. Hampel, Jean-Michel Cioranesco, Rodrigo Portella do Canto, Guilherme Ozari de Almeida
  • Patent number: 9507738
    Abstract: A memory system includes a memory module which further includes a set of memory devices. The set of memory devices includes a first subset of memory devices and a second subset of memory devices. An address bus is disposed on the memory module, wherein the address bus includes a first segment coupled to the first subset and a second segment coupled to the second subset. An address signal traverses the set of memory devices in sequence. The memory system also includes a memory controller which is coupled to the memory module. The memory controller includes a first circuit to output a first control signal that controls the first subset, such that the first control signal and the address signal arrive at a memory device in the first subset at substantially the same time.
    Type: Grant
    Filed: May 22, 2014
    Date of Patent: November 29, 2016
    Assignee: Rambus Inc.
    Inventors: Arun Vaidyanath, Craig E. Hampel
  • Patent number: 9472262
    Abstract: A memory controller component includes transmit circuitry and adjusting circuitry. The transmit circuitry transmits a clock signal and write data to a DRAM, the write data to be sampled by the DRAM using a timing signal. The adjusting circuitry adjusts transmit timing of the write data and of the timing signal such that an edge transition of the timing signal is aligned with an edge transition of the clock signal at the DRAM.
    Type: Grant
    Filed: March 15, 2016
    Date of Patent: October 18, 2016
    Assignee: Rambus Inc.
    Inventors: Frederick A. Ware, Ely K. Tsern, Richard E. Perego, Craig E. Hampel
  • Publication number: 20160260469
    Abstract: A memory component includes a memory core comprising dynamic random access memory (DRAM) storage cells and a first circuit to receive external commands. The external commands include a read command that specifies transmitting data accessed from the memory core. The memory component also includes a second circuit to transmit data onto an external bus in response to a read command and pattern register circuitry operable during calibration to provide at least a first data pattern and a second data pattern. During the calibration, a selected one of the first data pattern and the second data pattern is transmitted by the second circuit onto the external bus in response to a read command received during the calibration. Further, at least one of the first and second data patterns is written to the pattern register circuitry in response to a write command received during the calibration.
    Type: Application
    Filed: May 16, 2016
    Publication date: September 8, 2016
    Inventors: Craig E. Hampel, Richard E. Perego, Stefanos Sidiropoulos, Ely K. Tsern, Frederick A. Ware
  • Patent number: 9432179
    Abstract: A signaling system is disclosed. The signaling system includes a first integrated circuit (IC) chip to receive a data signal and a strobe signal. The first IC includes circuitry to sample the data signal at times indicated by the strobe signal to generate phase error information and circuitry to output the phase error information from the first IC device. The system further includes a signaling link and a second IC chip coupled to the first IC chip via the signaling link to output the data signal and the strobe signal to the first IC chip. The second IC chip includes delay circuitry to generate the strobe signal by delaying an aperiodic timing signal for a first time interval and timing control circuitry to receive the phase error information from the first IC chip and adjust the first time interval in accordance with the phase error information.
    Type: Grant
    Filed: November 21, 2011
    Date of Patent: August 30, 2016
    Assignee: Rambus Inc.
    Inventors: Bret G. Stott, Craig E. Hampel, Frederick A. Ware
  • Patent number: 9411767
    Abstract: An integrated circuit device includes a transmitter circuit including an output driver. The integrated circuit device includes a first register to store a value representative of a drive strength setting associated with the transmitter circuit such that the output driver outputs data in accordance with the drive strength setting. The integrated circuit device also includes a second register to store a value representative of an equalization setting associated with the transmitter circuit such that the output driver outputs data in accordance with the equalization setting. The integrated circuit device further includes a third register to store a value representative of a slew rate setting associated with the transmitter circuit such that the output driver outputs data in accordance with the slew rate setting.
    Type: Grant
    Filed: October 5, 2015
    Date of Patent: August 9, 2016
    Assignee: Rambus Inc.
    Inventors: Mark A. Horowitz, Craig E. Hampel, Alfredo Moncayo, Kevin S. Donnelly, Jared L. Zerbe
  • Publication number: 20160196864
    Abstract: A memory controller component includes transmit circuitry and adjusting circuitry. The transmit circuitry transmits a clock signal and write data to a DRAM, the write data to be sampled by the DRAM using a timing signal. The adjusting circuitry adjusts transmit timing of the write data and of the timing signal such that an edge transition of the timing signal is aligned with an edge transition of the clock signal at the DRAM.
    Type: Application
    Filed: March 15, 2016
    Publication date: July 7, 2016
    Inventors: Frederick A. Ware, Ely K. Tsern, Richard E. Perego, Craig E. Hampel
  • Patent number: 9367248
    Abstract: A memory component includes a memory core comprising dynamic random access memory (DRAM) storage cells and a first circuit to receive external commands. The external commands include a read command that specifies transmitting data accessed from the memory core. The memory component also includes a second circuit to transmit data onto an external bus in response to a read command and pattern register circuitry operable during calibration to provide at least a first data pattern and a second data pattern. During the calibration, a selected one of the first data pattern and the second data pattern is transmitted by the second circuit onto the external bus in response to a read command received during the calibration. Further, at least one of the first and second data patterns is written to the pattern register circuitry in response to a write command received during the calibration.
    Type: Grant
    Filed: June 22, 2015
    Date of Patent: June 14, 2016
    Assignee: Rambus Inc.
    Inventors: Craig E. Hampel, Richard E. Perego, Stefanos Sidiropoulos, Ely K. Tsern, Frederick A. Ware