JP2006308301A5 - - Google Patents

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JP2006308301A5
JP2006308301A5 JP2005127780A JP2005127780A JP2006308301A5 JP 2006308301 A5 JP2006308301 A5 JP 2006308301A5 JP 2005127780 A JP2005127780 A JP 2005127780A JP 2005127780 A JP2005127780 A JP 2005127780A JP 2006308301 A5 JP2006308301 A5 JP 2006308301A5
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information
pair
measurement
speed
measuring devices
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JP2005127780A
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JP2006308301A (en
JP4889960B2 (en
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Priority claimed from JP2005127780A external-priority patent/JP4889960B2/en
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Claims (15)

一対の計測装置を有する半導体装置であって、
前記一対の計測装置は、
利用者の歩数、歩幅、及び歩速度を計測する計測手段と、
前記計測手段により計測した第1の情報及び計測時刻を含む第2の情報を記憶する計測情報記憶手段と、
前記第1の情報及び前記第2の情報を外部無線で送受信を行う無線通信手段とをそれぞれし、
前記計測手段は、速度又は加速度を検知するセンサ、及び前記一対の計測装置間の距離を検知するセンサを有することを特徴とする半導体装置
A semiconductor device having a pair of measuring devices,
The pair of measuring devices includes
A measuring means for measuring the number of steps, the step length, and the walking speed of the user;
A measurement information storing means for storing the second information including the first information and the measurement time measured by said measuring means,
And wireless communication means for transmitting and receiving wirelessly the first information and the second information to the external possess respectively,
The semiconductor device has a sensor for detecting speed or acceleration, and a sensor for detecting a distance between the pair of measuring devices .
請求項において、
前記一対の計測装置は、複数の計測装置から前記一対の計測装置を識別するための体識別番号を含む体識別情報を記憶する体識別情報記憶手段をそれぞれ有することを特徴とする半導体装置
In claim 1 ,
The pair of measuring devices, semiconductors and having respective individual member identification information storage means for storing individual member identification information including an individual identification number for identifying the pair of the measuring device from a plurality of measuring devices Equipment .
請求項において、
前記個体識別情報記憶手段は、追記型の不揮発性メモリを有することを特徴とする半導体装置
In claim 2 ,
The semiconductor device characterized in that the individual identification information storage means has a write-once nonvolatile memory.
請求項1乃至3のいずれか一において、In any one of Claims 1 thru | or 3,
前記歩数は、前記速度を検知するセンサの速度が0となる回数をカウントして計測され、The number of steps is measured by counting the number of times the speed of the sensor that detects the speed is zero,
前記歩幅は、速度の時間積分をとることで計測され、The stride is measured by taking the time integral of speed,
前記歩速度は、速度の平均値を求めることにより計測されることを特徴とする半導体装置。The walking speed is measured by obtaining an average speed value.
請求項1乃至4のいずれか一において、前記速度を検知するセンサは、レーザ光、マイクロ波又は超音波の反射波の周波数の変化から速度を計測することを特徴とする半導体装置。5. The semiconductor device according to claim 1, wherein the sensor that detects the speed measures the speed from a change in frequency of a reflected wave of laser light, microwave, or ultrasonic wave. 6. 請求項1乃至4のいずれか一において、前記速度を検知するセンサは、格子状に作られた受光素子上に結像された光学像から測定対象の光学的なムラの移動を検出して速度信号を得ることを特徴とする半導体装置 5. The sensor according to claim 1, wherein the sensor that detects the speed detects a movement of an optical unevenness of a measurement target from an optical image formed on a light receiving element formed in a lattice shape. A semiconductor device characterized in that a signal is obtained . 請求項1乃至3のいずれか一において、前記加速度を検知するセンサは、加速度による振り子の変位量を検出して電気信号に変換することにより加速度を計測することを特徴とする半導体装置。4. The semiconductor device according to claim 1, wherein the sensor that detects the acceleration measures the acceleration by detecting a displacement amount of the pendulum caused by the acceleration and converting the detected amount into an electric signal. 請求項1乃至3のいずれか一において、前記加速度を検知するセンサは、振り子の変位量を電気的バネにより零位置にするときのフィードバック電流から加速度を計測することを特徴とする半導体装置。4. The semiconductor device according to claim 1, wherein the sensor that detects the acceleration measures the acceleration from a feedback current when the displacement amount of the pendulum is set to a zero position by an electric spring. 請求項1乃至8のいずれか一において、前記距離を検知するセンサは、前記一対の計測装置の一方から信号を投光し、前記一対の計測装置の他方に設けられた反射板により反射される信号の位相差によって前記一対の計測装置間の距離を求めることを特徴とする半導体装置。9. The sensor according to claim 1, wherein the sensor that detects the distance projects a signal from one of the pair of measuring devices and is reflected by a reflector provided on the other of the pair of measuring devices. A semiconductor device characterized in that a distance between the pair of measuring devices is obtained from a phase difference of signals. 請求項1乃至8のいずれか一において、前記距離を検知するセンサは、前記一対の計測装置の一方に設けられた送信器から発振する超音波が前記一対の計測装置の他方に設けられた受信器に検知されるまでの時間を計測することにより前記一対の計測装置間の距離を計測することを特徴とする半導体装置。9. The sensor according to claim 1, wherein the sensor for detecting the distance is an ultrasonic wave oscillated from a transmitter provided on one of the pair of measuring devices. A semiconductor device, wherein a distance between the pair of measuring devices is measured by measuring a time until the device is detected. 請求項1乃至10のいずれか一において、
前記計測情報記憶手段は、書き換え可能な不揮発性メモリを有することを特徴とする半導体装置
In any one of Claims 1 thru | or 10 ,
The measurement information storage unit is a semiconductor device characterized by having a rewritable nonvolatile memory.
請求項1乃至請求項11のいずれか一において、
前記一対の計測装置のそれぞれは、利用者の左右の足、靴下、または、靴に装着されることを特徴とする半導体装置
In any one of Claims 1 thru | or 11 ,
Wherein each of the pair of measurement device, the left and right feet of the user, socks, or a semiconductor device characterized by being mounted on the shoe.
一対の計測装置と情報処理装置とを有し
前記一対の計測装置は、
利用者の歩数、歩幅及び歩速度を計測する計測手段と、
前記計測手段により計測した情報及び計測時刻を含む計測情報を記憶する計測情報記憶手段と、
前記情報処理装置と無線通信を行う第一の無線通信手段とを有し、
前記計測手段は、速度又は加速度を検知するセンサ、及び前記一対の計測装置間の距離を検知するセンサを有し、
前記情報処理装置は、
前記一対の計測装置と無線通信を行う第二の無線通信手段と、
前記利用者の個人情報を有する管理情報をデータベース化して記憶する情報記憶手段と、
前記計測情報及び前記管理情報から情報処理を行う情報処理手段と、
前記情報処理手段により処理された情報を表示する表示手段と、
を有することを特徴とする計測システム。
And a pair of measuring device and the information processing apparatus,
The pair of measuring devices includes
A measuring means for measuring the number of steps, step length and step speed of the user;
Measurement information storage means for storing measurement information including information measured by the measurement means and measurement time;
A first wireless communication means for performing wireless communication with the information processing apparatus;
The measuring means includes a sensor for detecting speed or acceleration, and a sensor for detecting a distance between the pair of measuring devices,
The information processing apparatus includes:
A second wireless communication means for performing wireless communication with the pair of measuring devices;
Information storage means for storing management information having personal information of the user in a database;
Information processing means for performing information processing from the measurement information and the management information;
Display means for displaying information processed by the information processing means,
A measurement system characterized by comprising:
一対の計測装置が、利用者の歩数、歩幅及び歩速度を計測し
計測した情報及び測定時刻を含む計測情報を記憶し、
情報処理装置が、前記一対の計測装置から計測情報を受信し、
受信した情報から利用者の歩行距離及び運動量を求め、処理情報を表示し、
前記歩数及び歩速度は、速度又は加速度を検知して計測し、
前記歩幅は、前記一対の計測装置間の距離を検知して計測することを特徴とする計測方法。
A pair of measuring devices measure the number of steps, step length and step speed of the user ,
Stores measurement information including measured information and measurement time ,
An information processing device receives measurement information from the pair of measurement devices,
Obtain the walking distance and momentum of the user from the received information, display the processing information ,
The number of steps and the walking speed are measured by detecting speed or acceleration,
The step is measured by detecting a distance between the pair of measuring devices .
一対の計測装置が、利用者の歩数、歩幅及び歩速度を計測し、
計測した情報及び計測時刻を含む計測情報を記憶し、
情報処理装置が、前記計測装置に情報要求信号を送信し、
前記計測装置が、前記情報要求信号に応じて計測情報及び個体識別情報を前記情報処理装置に送信し、
前記情報処理装置が、前記計測装置から情報を受信し、
受信した情報及び記憶している管理情報とから利用者の歩行距離及び運動量を求め、処理情報を表示し、
前記歩数及び歩速度は、速度又は加速度を検知して計測し、
前記歩幅は、前記一対の計測装置間の距離を検知して計測することを特徴とする計測方法。
A pair of measuring devices measure the number of steps, step length and step speed of the user,
Memorize measurement information including measured information and measurement time,
The information processing device transmits an information request signal to the measurement device,
The measurement device transmits measurement information and individual identification information to the information processing device in response to the information request signal,
The information processing device receives information from the measuring device;
From the received information and the stored management information, the walking distance and the amount of exercise of the user are obtained, the processing information is displayed ,
The number of steps and the walking speed are measured by detecting speed or acceleration,
The step is measured by detecting a distance between the pair of measuring devices .
JP2005127780A 2005-04-26 2005-04-26 Semiconductor device Expired - Fee Related JP4889960B2 (en)

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Publications (3)

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JP2006308301A5 true JP2006308301A5 (en) 2008-06-05
JP4889960B2 JP4889960B2 (en) 2012-03-07

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5489105B2 (en) * 2010-09-07 2014-05-14 株式会社アコーズ Pedometer
JP5616763B2 (en) * 2010-11-25 2014-10-29 シリコン・バレイ・マイクロ・イー・コーポレーション Pedometer with shoe-mounted sensor and transmitter
JP6041141B2 (en) * 2013-01-29 2016-12-07 清水建設株式会社 Data collection system and method
JP6580863B2 (en) * 2014-05-22 2019-09-25 株式会社半導体エネルギー研究所 Semiconductor devices, health management systems
JP2015223424A (en) * 2014-05-29 2015-12-14 株式会社デンソー Walking control device
JP6959638B2 (en) * 2017-09-12 2021-11-02 株式会社スマート・ソリューション・テクノロジー Communication systems, communication methods and programs

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JPH01202666A (en) * 1988-02-08 1989-08-15 Toyota Autom Loom Works Ltd Noncontact velocity detector
JP2004170166A (en) * 2002-11-19 2004-06-17 Eiji Shimizu Method of measuring relative migration distance and relative slipping angle using gray code, and device and system to which the same has been applied
JP3878125B2 (en) * 2002-12-12 2007-02-07 株式会社コナミスポーツ&ライフ Exercise data management server device, exercise data management program, exercise data management method, and exercise data management system
WO2004057618A2 (en) * 2002-12-19 2004-07-08 Koninklijke Philips Electronics N.V. Electric device comprising a layer of phase change material and method of manufacturing the same

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