Patents by Inventor James Power
James Power 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).
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Patent number: 11160512Abstract: A monitoring system is disclosed for in vivo monitoring of preselected physiological parameters associated with acute and/or chronic tissue compromise or failure in one or multiple tissue/organ sites in real time. In one method, a body portion of a surgical stapling device is positioned adjacent a first tissue section, an anvil assembly adapted to engage the body portion is positioned adjacent a second tissue section, and a monitoring device is positioned adjacent the first and/or second tissue sections. The monitoring device includes a sensor adapted to measure a preselected physiological parameter and a transmitter for transmitting signal to an extracorporeal receiving unit. The surgical stapling device is fired to mechanically secure the first and second tissue sections with at least one staple and the preselected physiological parameter is monitored via the information transmitted from the monitoring device to the receiving unit.Type: GrantFiled: May 12, 2017Date of Patent: November 2, 2021Assignee: COVIDIEN LPInventors: Yong Ma, Nelson Scarborough, Marisha Godek, Rohan Shah, James Power, Nilay Mukherjee, Frank Viola, Edward Mckenna, Shannon Campbell
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Patent number: 10648427Abstract: The present disclosure relates generally to a thrust reverser for a gas turbine engine. As a translating cowl is translated aft from the nacelle of the gas turbine engine, a cascade is also translated in the aft direction and a blocker door coupled to the cascade is pivoted into a fan duct by means of a camming surface, thereby diverting air in the fan duct through the cascade. In the stowed position, both the cascade and the blocker door are disposed radially outward of a radially inner wall of the nacelle and/or the translating cowl.Type: GrantFiled: December 15, 2015Date of Patent: May 12, 2020Assignee: UNITED TECHNOLOGIES CORPORATIONInventors: Nigel David Sawyers-Abbott, James Power
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Patent number: 10605197Abstract: The present disclosure relates generally to a thrust reverser for a gas turbine engine. As a translating cowl is translated aft from the nacelle of the gas turbine engine, a cascade is also translated in the aft direction and a blocker door coupled to the cascade is pivoted into a fan duct, thereby diverting air in the fan duct through the cascade. In the stowed position, both the cascade and the blocker door are disposed radially outward of a radially inner wall of the nacelle and/or the translating cowl.Type: GrantFiled: December 1, 2015Date of Patent: March 31, 2020Assignee: UNITED TECHNOLOGIES CORPORATIONInventors: Nigel David Sawyers-Abbott, James Power
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Publication number: 20170245809Abstract: A monitoring system is disclosed for in vivo monitoring of preselected physiological parameters associated with acute and/or chronic tissue compromise or failure in one or multiple tissue/organ sites in real time. In one method, a body portion of a surgical stapling device is positioned adjacent a first tissue section, an anvil assembly adapted to engage the body portion is positioned adjacent a second tissue section, and a monitoring device is positioned adjacent the first and/or second tissue sections. The monitoring device includes a sensor adapted to measure a preselected physiological parameter and a transmitter for transmitting signal to an extracorporeal receiving unit. The surgical stapling device is fired to mechanically secure the first and second tissue sections with at least one staple and the preselected physiological parameter is monitored via the information transmitted from the monitoring device to the receiving unit.Type: ApplicationFiled: May 12, 2017Publication date: August 31, 2017Inventors: Yong Ma, Nelson Scarborough, Marisha Godek, Rohan Shah, James Power, Nilay Mukherjee, Frank Viola, Edward Mckenna, Shannon Campbell
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Patent number: 9649113Abstract: A monitoring system is disclosed for in vivo monitoring of preselected physiological parameters associated with acute and/or chronic tissue compromise or failure in one or multiple tissue/organ sites in real time. In one method, a body portion of a surgical stapling device is positioned adjacent a first tissue section, an anvil assembly adapted to engage the body portion is positioned adjacent a second tissue section, and a monitoring device is positioned adjacent the first and/or second tissue sections. The monitoring device includes a sensor adapted to measure a preselected physiological parameter and a transmitter for transmitting signal to an extracorporeal receiving unit. The surgical stapling device is fired to mechanically secure the first and second tissue sections with at least one staple and the preselected physiological parameter is monitored via the information transmitted from the monitoring device to the receiving unit.Type: GrantFiled: April 3, 2012Date of Patent: May 16, 2017Assignee: Covidien LPInventors: Yong Ma, Nelson Scarborough, Marisha Godek, Rohan Shah, James Power, Nilay Mukherjee, Frank Viola, Edward McKenna, Shannon Campbell
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Patent number: 9610133Abstract: A wireless laparoscopic camera system includes a housing having proximal and distal ends and a lens disposed at the distal end thereof. A chip package is disposed within the housing. The chip package is positioned proximally of the lens and includes an image sensor, a processing component, and a wireless transmitter. The image sensor, the processing component, and the wireless transmitter are configured as bare die and are stacked and coupled in sequence with respect to one another to form the chip package. The chip package is configured to convert an optical image produced by the lens into an electrical signal. The signal is transmitted wirelessly to a wireless receiver positioned remote of the housing.Type: GrantFiled: February 14, 2011Date of Patent: April 4, 2017Assignee: Covidien LPInventors: Yong Ma, Eric Stanley, Ravi Durvasula, James Power
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Publication number: 20160169157Abstract: The present disclosure relates generally to a thrust reverser for a gas turbine engine. As a translating cowl is translated aft from the nacelle of the gas turbine engine, a cascade is also translated in the aft direction and a blocker door coupled to the cascade is pivoted into a fan duct by means of a camming surface, thereby diverting air in the fan duct through the cascade. In the stowed position, both the cascade and the blocker door are disposed radially outward of a radially inner wall of the nacelle and/or the translating cowl.Type: ApplicationFiled: December 15, 2015Publication date: June 16, 2016Inventors: Nigel David Sawyers-Abbott, James Power
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Publication number: 20160153399Abstract: The present disclosure relates generally to a thrust reverser for a gas turbine engine. As a translating cowl is translated aft from the nacelle of the gas turbine engine, a cascade is also translated in the aft direction and a blocker door coupled to the cascade is pivoted into a fan duct, thereby diverting air in the fan duct through the cascade. In the stowed position, both the cascade and the blocker door are disposed radially outward of a radially inner wall of the nacelle and/or the translating cowl.Type: ApplicationFiled: December 1, 2015Publication date: June 2, 2016Inventors: Nigel David Sawyers-Abbott, James Power
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Publication number: 20140031665Abstract: A system and method for determining endoscopic dimensional measurements including a projector assembly comprising a light source for projecting light through a telecentric lens and into a surgical site, and a mask coupled to the projector assembly. Light projected from the light source projects through the mask. The projected light through the mask may be a collimated pattern which does not significantly change in size as a function of the distance to a projected plane. The projected light patterns may include multiple wavelengths of light for measurements of different features of tissue and may be produced using a laser in conjunction with a light shaping optical diffuser, or using a light emitting diode in conjunction with a light shaping optical diffuser, or using a spatial filter. The projected light patterns may take the form of concentric rings with each ring representing a radius of a given dimension.Type: ApplicationFiled: June 27, 2013Publication date: January 30, 2014Inventors: Candido Dionisio Pinto, Ravi Durvasula, James Power, Yong Ma, Ashwini Kumar Pandey, Jonathan Thomas
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Publication number: 20120273548Abstract: A monitoring system is disclosed for in vivo monitoring of preselected physiological parameters associated with acute and/or chronic tissue compromise or failure in one or multiple tissue/organ sites in real time. In one method, a body portion of a surgical stapling device is positioned adjacent a first tissue section, an anvil assembly adapted to engage the body portion is positioned adjacent a second tissue section, and a monitoring device is positioned adjacent the first and/or second tissue sections. The monitoring device includes a sensor adapted to measure a preselected physiological parameter and a transmitter for transmitting signal to an extracorporeal receiving unit. The surgical stapling device is fired to mechanically secure the first and second tissue sections with at least one staple and the preselected physiological parameter is monitored via the information transmitted from the monitoring device to the receiving unit.Type: ApplicationFiled: April 3, 2012Publication date: November 1, 2012Inventors: Yong Ma, Nelson Scarborough, Marisha Godek, Rohan Shah, James Power, Nilay Mukherjee, Frank Viola, Edward Mckenna, Shannon Campbell
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Publication number: 20110261183Abstract: A wireless laparoscopic camera system includes a housing having proximal and distal ends and a lens disposed at the distal end thereof. A chip package is disposed within the housing. The chip package is positioned proximally of the lens and includes an image sensor, a processing component, and a wireless transmitter. The image sensor, the processing component, and the wireless transmitter are configured as bare die and are stacked and coupled in sequence with respect to one another to form the chip package. The chip package is configured to convert an optical image produced by the lens into an electrical signal. The signal is transmitted wirelessly to a wireless receiver positioned remote of the housing.Type: ApplicationFiled: February 14, 2011Publication date: October 27, 2011Inventors: Yong Ma, Eric Stanley, Ravi Durvasula, James Power
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Publication number: 20110218400Abstract: A surgical instrument including an integrated wireless camera includes a handle assembly housing control circuitry. An elongated shaft extends from the handle assembly and includes an end effector disposed at a distal end thereof. An image sensor assembly is disposed toward the distal end of the elongated shaft and is electrically coupled to the control circuitry. The image sensor assembly is configured to convert an optical image into an electrical signal and communicate the electrical signal to the control circuitry. The control circuitry is configured to process the signal and wirelessly transmit the processed signal to a wireless receiver positioned remote of the surgical instrument.Type: ApplicationFiled: February 11, 2011Publication date: September 8, 2011Inventors: Yong Ma, James Power
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Publication number: 20080070339Abstract: A method for one-way coupling an input signal to an integrated circuit on a semiconductor chip with the integrated circuit electrically isolated from the input signal comprises forming a MOS isolation coupler on the semiconductor chip by a CMOS process. The MOS isolation coupler comprises an inductor coil for generating a magnetic field in response to an input signal applied to terminals thereof. A MAGFET having a split drain formed by respective drain portions is formed on the semiconductor chip below the inductor coil, so that a current difference is induced between the drain currents in the drain portions which is proportional to the strength of the magnetic field generated by the inductor coil resulting from the input signal. The MAGFET is formed prior to the inductor coil. An oxide isolating layer is provided over the MAGFET, and the inductor coil is formed on the oxide layer.Type: ApplicationFiled: November 15, 2007Publication date: March 20, 2008Applicant: Analog Devices, Inc.Inventors: James Power, Michael O'Neill, Colin Lyden