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公开(公告)号:US20180018900A1
公开(公告)日:2018-01-18
申请号:US15211357
申请日:2016-07-15
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
Abstract: A system includes a shoe, a timer, a positioning component, a controlling component, a memory and a processing component. The timer establishes a time frame. The positioning component determines a first geodetic location of the shoe at a first time within the time frame and determines a second geodetic location of the shoe at a second time within the time frame. The controlling component is disposed at the shoe and generates activity data based on the first geodetic location, the second geodetic location and the time frame. The memory is disposed at the shoe and stores the activity data. The processing component retrieves the activity data from the memory and wirelessly transmits processed activity data based on the activity data. The positioning component further determines a first geodetic location total time corresponding to a total time the shoe is located at the first geodetic location within the time frame.
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公开(公告)号:US20170273615A1
公开(公告)日:2017-09-28
申请号:US15082402
申请日:2016-03-28
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
IPC: A61B5/00 , A61B5/0205
CPC classification number: A61B5/486 , A61B5/0205 , A61B5/02438 , A61B5/112 , A61B5/6898 , A61B2503/10
Abstract: A device is provided for use by a user, wherein the device includes a first sensor, a second sensor and an efficiency generating component. The first sensor detects a first parameter and generates a first detected signal based on the first detected parameter. The second sensor detects a second parameter and generates a second detected signal based on the second detected parameter. The efficiency generating component generates an efficiency signal based on the first detected signal and the second detected signal.
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公开(公告)号:US20190380660A1
公开(公告)日:2019-12-19
申请号:US16010099
申请日:2018-06-15
Applicant: Under Armour, Inc.
Inventor: Michael Mazzoleni , F. Grant Kovach , Jeffrey Allen , John Martin , Daniel Sargeant , Bradford J. Fults , Chirstopher Green , Mark Oleson , Nathan Dau
Abstract: A method of operating a fitness tracking system includes generating movement data corresponding to movement of a user, sampling the generated movement data at a first sampling rate as first sampled data when operating the fitness tracking system in an activity detection mode, and sampling the generated movement data at a second sampling rate as second sampled data when operating the fitness tracking system in a workout mode. The second sampling rate is greater than the first sampling rate.
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公开(公告)号:US20210353234A1
公开(公告)日:2021-11-18
申请号:US17387522
申请日:2021-07-28
Applicant: Under Armour, Inc.
Inventor: Michael Mazzoleni , F. Grant Kovach , Jeffrey Allen , John Martin , Daniel Sargeant , Bradford J. Fults , Chirstopher Green , Mark Oleson , Nathan Dau
Abstract: A method of operating a fitness tracking system includes generating movement data corresponding to movement of a user, sampling the generated movement data at a first sampling rate as first sampled data when operating the fitness tracking system in an activity detection mode, and sampling the generated movement data at a second sampling rate as second sampled data when operating the fitness tracking system in a workout mode. The second sampling rate is greater than the first sampling rate.
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公开(公告)号:US20170273849A1
公开(公告)日:2017-09-28
申请号:US15082517
申请日:2016-03-28
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
IPC: A61H1/00
CPC classification number: A61H1/008 , A43B3/0005 , A43B7/141 , A43B7/1445 , A43B7/146 , A61H2201/1207 , A61H2201/1238 , A61H2201/164 , A61H2201/165 , A61H2201/5007 , A61H2201/5028 , A61H2201/5058 , A61H2201/5061 , A61H2201/5097 , A61H2205/12 , A61H2209/00
Abstract: A shoe has a sole having a capacitive sensor and a force actuating mechanism, and a wireless receiver. The capacitive sensor can detect and sense whether or not there is a foot is in the shoe. The force actuating mechanism can operate like a piston in an inactive mode (first position) and active mode (second position), wherein the active mode extends the force actuating mechanism's extending mechanism from first position to second position. The wireless receiver can retrieve any information in regards to geodetic locations from the capacitive sensor based on the capacitance signal.
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公开(公告)号:US20180015326A1
公开(公告)日:2018-01-18
申请号:US15211289
申请日:2016-07-15
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
CPC classification number: G09B5/02 , A43B3/0005 , A43B5/002 , G09B19/0038
Abstract: A system includes a shoe and a pod. The pod is disposed at the shoe and includes a positioning component and an altimeter. The positioning component determines a first geodetic location of the shoe at a first time, whereas the altimeter determines a first elevation of the shoe at the first time. The first positioning component additionally determines a second geodetic location of the shoe at a second time and generate shoe distance data based on the first geodetic location and the second geodetic location. The altimeter additionally determines a second elevation of the shoe at the second time. The positioning component additionally determines a total distance traveled based on the shoe distance data, the first elevation and the second elevation.
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公开(公告)号:US20180014581A1
公开(公告)日:2018-01-18
申请号:US15211487
申请日:2016-07-15
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
CPC classification number: A41D1/002 , A41D13/1281 , A61B5/1118 , A61B5/6804
Abstract: A system includes a biometric detector and a band of stretchable fabric. The biometric detector detects a biological parameter. The biometric detector is fastened to the band of elastomer fabric.
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公开(公告)号:US11076814B2
公开(公告)日:2021-08-03
申请号:US16010099
申请日:2018-06-15
Applicant: Under Armour, Inc.
Inventor: Michael Mazzoleni , F. Grant Kovach , Jeffrey Allen , John Martin , Daniel Sargeant , Bradford J. Fults , Chirstopher Green , Mark Oleson , Nathan Dau
Abstract: A method of operating a fitness tracking system includes generating movement data corresponding to movement of a user, sampling the generated movement data at a first sampling rate as first sampled data when operating the fitness tracking system in an activity detection mode, and sampling the generated movement data at a second sampling rate as second sampled data when operating the fitness tracking system in a workout mode. The second sampling rate is greater than the first sampling rate.
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公开(公告)号:US10297164B2
公开(公告)日:2019-05-21
申请号:US15211289
申请日:2016-07-15
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
Abstract: A system includes a shoe and a pod. The pod is disposed at the shoe and includes a positioning component and an altimeter. The positioning component determines a first geodetic location of the shoe at a first time, whereas the altimeter determines a first elevation of the shoe at the first time. The first positioning component additionally determines a second geodetic location of the shoe at a second time and generate shoe distance data based on the first geodetic location and the second geodetic location. The altimeter additionally determines a second elevation of the shoe at the second time. The positioning component additionally determines a total distance traveled based on the shoe distance data, the first elevation and the second elevation.
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公开(公告)号:US10251596B2
公开(公告)日:2019-04-09
申请号:US15082402
申请日:2016-03-28
Applicant: Under Armour, Inc.
Inventor: Mark Oleson , F. Grant Kovach , Nathan Dau , Angela Nelligan
IPC: A61B5/00 , A61B5/0205 , A61B5/11 , A61B5/024
Abstract: A device is provided for use by a user, wherein the device includes a first sensor, a second sensor and an efficiency generating component. The first sensor detects a first parameter and generates a first detected signal based on the first detected parameter. The second sensor detects a second parameter and generates a second detected signal based on the second detected parameter. The efficiency generating component generates an efficiency signal based on the first detected signal and the second detected signal.
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