Englehart
David Englehart, Shillington, PA US
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20140212688 | HIGH GRADE TITANIUM ALLOY SHEET AND METHOD OF MAKING SAME - A sheet of titanium alloy that is less than 0.015″ thick has adequate plasticity for subsequent forming into at least a part of a medical device that is MR-Conditional. A method for making the titanium alloy sheet includes cold rolling a titanium alloy to form a sheet having an average thickness less than or equal to 0.015″, cutting the sheet to length, and vacuum annealing the sheet in a final step, wherein the sheet following vacuum annealing has adequate plasticity for subsequent forming into at least a part of a medical device that is MR-Conditional. Neither grinding nor chemical etching is used to reduce the thickness of the titanium alloy when processing the sheet. | 07-31-2014 |
Joseph F. Englehart, Gastonia, NC US
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20090049837 | GAS TURBINE ENGINE AIR VALVE ASSEMBLY - A gas turbine engine air valve assembly has first and second valving elements. The second element is rotatable about a first axis relative to the first element. The rotation controls a flow of air through the first and second elements. An actuator is coupled by a linkage to the second element. A plurality of follower member assemblies each have an insertion portion extending through a corresponding first aperture in the first valving element and a corresponding second aperture in the second element. The insertion portion is circumferentially fixed relative to one of the first and second valving elements and circumferentially moveable relative to the other of the first and second valving elements. | 02-26-2009 |
Krystle Jo Englehart, Pittsburgh, PA US
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20120203309 | METHOD OF ALLEVIATING MOTION SICKNESS - The present invention provides a method of alleviating motion sickness in a patient during a predetermined event. The predetermined event commencing at a start time. The patient having a vestibular system. The method including determining the start time of the predetermined event. The method further including providing a stimulus to the vestibular system of the patient during a treatment, the treatment occurring a predetermined amount of time before the start time of the predetermined event and lasting a predetermined duration. | 08-09-2012 |
Matthew Englehart, Olmsted Township, OH US
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20090248385 | SIMPLIFIED DATA SIGNAL SUPPORT FOR DIAGRAMMING ENVIRONMENT LANGUAGES - In a graphical modeling environment, bus signals, which group a plurality of signals together for simplifying a model, include a partial or complete physical definition. Models are simplified by passing bus signals through graphical objects representing functional entities, without degrouping the bus signal. During simulation of the model, code can be generated for the bus signal having a complete definition independent of other components of the graphical model. | 10-01-2009 |
20100211369 | SIMPLIFIED DATA SIGNAL SUPPORT FOR DIAGRAMMING ENVIRONMENT LANGUAGES - A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals. | 08-19-2010 |
20100211374 | SIMPLIFIED DATA SIGNAL SUPPORT FOR DIAGRAMMING ENVIRONMENT LANGUAGES - A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals. | 08-19-2010 |
20100250222 | SIMPLIFIED DATA SIGNAL SUPPORT FOR DIAGRAMMING ENVIRONMENT LANGUAGES - A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals. | 09-30-2010 |
Matthew J. Englehart, Olmstead Township, OH US
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20140208289 | SYSTEMS AND METHODS FOR MODELING EXECUTION BEHAVIOR - A mechanism in a block diagram environment allows the modeling of an execution behavior of a block in a block diagram, where a user selects the execution behavior from a plurality of functions related to the block diagram and where the execution behavior of the block is performed when at least one model variable associated with the block satisfies a user-specified condition is disclosed. States and other internal data in the designated block are initialized upon the satisfaction of the user-specified condition. The illustrative embodiment of the present invention also allows the internal data to be reset upon the ending of the event, such as the modeled introduction or withdrawal of power. The execution behavior may be suspended and resumed multiple times during the simulation in response to multiple occurrences of the specified event. The present invention also allows for selected data to be exempt from the reset process so that the selected data is non-volatile. | 07-24-2014 |
Matthew J. Englehart, Olmsted Township, OH US
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20150331978 | CODE GENERATION FOR USING AN ELEMENT IN A FIRST MODEL TO CALL A PORTION OF A SECOND MODEL - A device may generate code for a caller element of a first graphical model and a called element of a second graphical model by generating a first function and a second function. The first function may represent an interface between the caller element and the called element. The first function may include a first input argument corresponding to an input variable and a first output argument corresponding to an output variable. The second function may represent an underlying function of the called element. The underlying function may include the input variable passed from the caller element and the output variable. The underlying function may further include an internal input variable and an internal output variable. The second function may include second input arguments corresponding to the input variable and the internal input variable, and may include second output arguments corresponding to the output variable and the internal output variables. | 11-19-2015 |
20150331979 | USING AN ELEMENT IN A FIRST MODEL TO CALL A PORTION OF A SECOND MODEL - A device may receive function information that describes a caller element that calls a called element that is separate from the caller element. The function information may identify a name or reference of the called element, a passed input, and a passed output. The passed input may be provided by the caller element to the called element, and the passed output may be received by the caller element from the called element. The caller element may be associated with a caller model, and the called element may be associated with a called model. The device may identify the called element, and may execute the caller element in a simulation environment. Execution of the caller element may cause execution of the called element without causing execution of an entirety of the called model. The device may receive the passed output from the called element based on executing the called element. | 11-19-2015 |
Theodore M. Englehart, Indianapolis, IN US
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20100146870 | SHIELDED STRUCTURE FOR RADIATION TREATMENT EQUIPMENT AND METHOD OF ASSEMBLY - A modularized approach for rapidly and cost effectively assembling a structure suitable for housing radiation emitting equipment is disclosed. The modules include reinforced walls to contain radiation shielding fill material. The modules are transported empty and then filled on site with the fill material to form a radiation shielding barrier around radiation emitting equipment. | 06-17-2010 |