Wearing-type sensing device for muscle strength training
Abstract
A wearable muscle training sensing device. The user includes a sensor, a sensitivity adjuster, a data storage device, an identification code discrimination unit, a display and a data input/output port. The sensitivity adjuster can be adjusted to the desired sensitivity according to the difference of the sensor on the selected part of the user. A wireless transceiver can instantly transmit the muscle strength training information to the display on the muscle strength training device, or can wirelessly transmit the motion dynamic signal in the data storage device to a central monitoring unit. Multiple peripheral sensing devices can be matched with different types of muscle training devices, worn on corresponding parts of the user, and wirelessly connected to the wearable muscle training sensing device and displayed.
Term
No projected expiry on record.
- Priority and filed
- Granted
- Today
16 claims: 15 independent, 1 dependent
- 1一種穿戴式肌力訓練感測裝置,係電連結於一肌力訓練器,該穿戴式肌力訓練感測裝置係戴附定位在一使用者之一選定部位,該穿戴式肌力訓練感測裝置包括:一微控器;至少一感測器,連接於該微控器,用以即時量測該使用者之運動動態信號;一識別碼判別單元,連接於該微控器,用以判別該肌力訓練器之類型;至少一感度調整器,連接於該感測器及該微控器,依據該感測器穿戴於該使用者之選定部位之不同以及該識別碼判別單元所判別之該肌力訓練器之類型,而可受調整至所需之感度。
- 2如申請專利範圍第1項之穿戴式肌力訓練感測裝置,更包括有一資料儲存裝置,用以儲存該運動動態信號。
- 3如申請專利範圍第1項之穿戴式肌力訓練感測裝置,更包括有一顯示器,用以顯示該運動動態信號。
- 4如申請專利範圍第1項之穿戴式肌力訓練感測裝置,其中該肌力訓練器之類型係為推式肌力訓練器、拉式肌力訓練器、擺臂式肌力訓練器、壓腳式肌力訓練器、舉腳式肌力訓練器及其他肌力訓練器。
- 5如申請專利範圍第1項之穿戴式肌力訓練感測裝置,更包括有一資料輸出入埠,用以輸出/輸入至少一運動資料。
- 6如申請專利範圍第1項之穿戴式肌力訓練感測裝置,其中該運動動態信號更經由一無線收發器以無線方式傳送至一中央監控單元。
- 7如申請專利範圍第1項之穿戴式肌力訓練感測裝置,其中該運動動態信號更經由一無線收發器以無線方式傳送至該肌力訓練器所配 置之一肌力訓練器顯示器。
- 8如申請專利範圍第1項之穿戴式肌力訓練感測裝置,更包括:至少一週邊感測裝置,戴附定位在一使用者之一週邊選定部位,用以即時量測該使用者之週邊選定部位之運動動態信號,該週邊感測裝置;一週邊處理單元;至少一週邊感測器,連接於該週邊處理單元,用以即時量測該使用者之運動動態信號;至少一感度調整器,連接於該週邊感測器及該週邊處理單元,依據該週邊感測器穿戴於該使用者之週邊選定部位之不同,而可受調整至所需之感度;一無線收發器,連接於該週邊處理單元,用以接收該週邊感測裝置之週邊感測器所感測到的運動動態信號。
- 9一種穿戴式肌力訓練感測裝置,係電連結於一肌力訓練器,該穿戴式肌力訓練感測裝置係戴附定位在一使用者之一選定部位,該穿戴式肌力訓練感測裝置包括:一微控器;一識別碼判別單元,連接於該微控器,用以判別該肌力訓練器之類型;至少一週邊感測裝置,戴附定位在一使用者之一週邊選定部位,用以即時量測該使用者之週邊選定部位之運動動態信號,該週邊感測裝置;一週邊處理單元;至少一週邊感測器,連接於該週邊處理單元,用以即時量測該使用者之運動動態信號;至少一感度調整器,連接於該週邊感測器及該週邊處理單元, 依據該週邊感測器穿戴於該使用者之週邊選定部位之不同,而可受調整至所需之感度;一無線收發器,連接於該週邊處理單元,用以接收該週邊感測裝置之週邊感測器所感測到的運動動態信號。
- 10如申請專利範圍第9項之穿戴式肌力訓練感測裝置,更包括有一資料儲存裝置,用以儲存該運動動態信號。
- 11如申請專利範圍第9項之穿戴式肌力訓練感測裝置,更包括有一顯示器,用以顯示該運動動態信號。
- 12如申請專利範圍第9項之穿戴式肌力訓練感測裝置,其中該肌力訓練器之類型係為推式肌力訓練器、拉式肌力訓練器、擺臂式肌力訓練器、壓腳式肌力訓練器、舉腳式肌力訓練器及其他肌力訓練器。
- 13如申請專利範圍第9項之穿戴式肌力訓練感測裝置,更包括有一資料輸出入埠,用以輸出/輸入至少一運動資料。
- 14如申請專利範圍第9項之穿戴式肌力訓練感測裝置,其中該運動動態信號更經由一無線收發器以無線方式傳送至一中央監控單元。
- 15如申請專利範圍第9項之穿戴式肌力訓練感測裝置,其中該運動動態信號更經由一無線收發器以無線方式傳送至該肌力訓練器所配置之一肌力訓練器顯示器。
- 16如申請專利範圍第9項之穿戴式肌力訓練感測裝置,係結合於該肌力訓練器所配置之一肌力訓練器顯示器中,而該各個週邊感測裝置係戴附定位在一使用者之一週邊選定部位。
Independent claims16
29 paragraphs, as filed
Wearable muscle training sensing device
This creation is about a muscle training sensing device, especially a wearable muscle training sensing device, which can be carried around, and the user can wear it on the wrist and waist according to different muscle training machines. Or other appropriate locations.
Traditional muscle training devices are mainly used to train the muscles of various parts of the human body, so there are various models on the market. Because the muscle movement methods and characteristics of each part of the human body are different, and each person's physical condition is also different, muscle strength training must be achieved according to the characteristics of each part. If the user does not have the instruction of the coach or therapist, or the body has had sports injuries or other illnesses before, the tension, weight, direction and posture of the training should be adjusted according to the situation. Otherwise, the training will not be effective, and it may even cause muscles. Sports injuries such as strains.
The traditional measurement method of muscle strength training is to install different sensing devices on various types of muscle strength training devices, such as magnetic yellow switches, laser sensors, and so on. With the continuous evolution of muscle strength training devices, there is a trend of becoming more and more complex. Therefore, different sensing devices must be used in various parts, which makes assembly difficult and extremely inconvenient maintenance. At the same time, this kind of muscle training device sensing device must be combined with the wheel and axle of the muscle training device, so that manufacturers must produce multiple sensors for the muscle training devices on the market, which makes it difficult to produce.
In addition, the traditional muscle training device cannot be adjusted for different user's personal conditions, so the error value is large, which is also the shortcoming of the traditional sensing device.
In view of the lack of existing models, the purpose of this creation is to target individual users The difference in human physiology and physical condition is the starting point, and a wearable muscle training sensing device is proposed, which can be carried by users and can be worn on various parts such as wrists, arms, waists, and feet.
This creation can facilitate the user to adjust the sensitivity of the training part before the muscle strength training to achieve the best sensitivity, instead of using the muscle strength training device as the adjustment object. At the same time, this creation can be applied to various muscle strength training devices on the market. When users operate different muscle strength training devices, they only need to make adjustments on the wearable muscle strength training sensing device of this creation to complete the conversion. .
In order to achieve the above purpose, the authoring system is equipped with a sensor, a sensitivity adjuster, a data storage device, an identification code discrimination unit, a display and a data input/output port on the sensing device. The attachment is positioned on the user's wrist for real-time measurement of the motion dynamic signal of the selected part. The sensitivity adjuster can be adjusted to the desired sensitivity according to the difference of the sensor on the selected part of the user. The identification code is used to identify the type of the strength training device. In one of the embodiments, this creation is also equipped with a wireless transceiver, which can instantly transmit the muscle strength training information to the display on the muscle strength trainer, or can transmit the information in the data storage device to the central monitoring unit.
In other embodiments of the present invention, multiple peripheral sensing devices are attached, which can be matched with different types of muscle training devices, which can be worn on the corresponding parts of the user, such as arms, legs or feet, and connected to them wirelessly. The wearable muscle strength training sensing device displays training information on the display of the wearable muscle strength training sensing device.
The specific embodiments used in this creation will be further explained by the following embodiments and accompanying drawings.
<p>100Wearable muscle training sensing device</p><p>200Wearable muscle training sensing device</p><p>300Wearable muscle training sensing device</p><p>400Wearable muscle training sensing device</p><p>1Strength training device</p><p>10User</p><p>101Strength Trainer Display</p><p>11Weight</p><p>12Support Rod</p><p>13Drawstring</p><p>131 pulley block</p><p>2Microcontroller</p><p>21Sensor</p><p>22Sensitivity adjuster</p><p>3Data storage device</p><p>31Data input port</p><p>4Display</p><p>5Identification code discrimination unit</p><p>6Wireless Transceiver</p><p>6aWireless Transceiver</p><p>61 Peripheral sensing device</p><p>611 Peripheral Processing Unit</p><p>612 Peripheral Sensor</p><p>613Sensitivity Adjuster</p><p>614Wireless Transmitter</p><p>62 Peripheral sensing device</p><p>63 Peripheral sensing device</p><p>7Central Monitoring Unit</p>
Figure 1 shows a schematic diagram of the application of the first embodiment of this creation.
Figure 2 shows the circuit diagram of the first embodiment of this creation.
Figure 3 shows a schematic diagram of the application of the second embodiment of this creation.
Figure 4 shows the circuit diagram of the second embodiment of this creation.
Figure 5 shows the circuit diagram of the peripheral sensing device in the second embodiment of the invention.
Figure 6 shows the circuit diagram of the third embodiment of this creation.
Figure 7 shows the circuit diagram of the fourth embodiment of this creation.
Please refer to Figure 1, which shows a schematic diagram of the application of the wearable muscle training sensing device 100 according to the first embodiment of the creation. The muscle training sensing device 100 is attached to the wrist of a user 10 for real-time measurement and display of the motion dynamic signal of the part, and a muscle training device display 101 is used to display and display the motion dynamic signal, providing User observation. The embodiment shown in the figure is an example in which the user wears the wearable muscle training sensor device 100 to position the wrist, and uses the muscle training device 1 to perform muscle training. The muscle training device 1 includes at least one weight 11, at least a pair of support rods 12, a draw rope 13 connected to the weight 11, and a pair of pulley sets 131. The draw rope 13 is attached to the pulley set 131 for the user Pull down, and after pulling, it will drive the weight 11 of the muscle strength training device 1 for training. At the same time, the wearable muscle training sensor device 100 created on the user's wrist measures the user's training status.
Refer to Figure 2, which is a circuit diagram of the working system of this creation, which includes: at least one microcontroller 2, at least one sensor 21, and a sensitivity adjuster 22. The sensor 21 is attached and positioned on a selected part of the user 10, such as the wrist, arm, or foot, etc., and the sensor 21 is used to measure the motion dynamic signal of the selected part in real time. The sensor is connected to the microcontroller 2, and a sensitivity adjuster 22 is attached, which is connected to the sensor 21 and the microcontroller 2. The sensitivity adjuster 22 is provided for the user 10 to adjust to the desired sensitivity according to the selected part worn by the sensor 21.
The wearable muscle training sensing device 100 of this creation also includes a data A storage device 3 and a display 4. The data storage device 3 is used to store the motion dynamic signal measured by the sensor 21 in real time, and there is a data output port 31 for inputting and outputting at least one motion data.
As shown in the figure, the wearable muscle strength training sensing device 100 of the present invention has an identification code discrimination unit 5 connected to the microcontroller 2. The identification code identification unit 5 is based on the types of muscle training devices on the market, including type muscle training device, pull type muscle training device, arm swing type muscle training device, presser foot type muscle training device, and foot lifting type For muscle training devices and other muscle training devices, the different motion modes of different parts will cause the signal to be received by the sensor 21 to be different. The identification code determination unit 5 is used to determine the operation to be operated by the user 10 The model of the muscle training device can automatically adjust the sensor adjuster 22.
The first embodiment of the invention is also attached with a wireless transceiver 6, which can wirelessly transmit real-time information to the display 4 of the muscle training device and the display 101 of the muscle training device, or use the motion dynamic signal stored in the data storage device 3 via a wireless network. Road transmission to a central monitoring unit 7.
Since many gymnasiums and other places on the market have multiple muscle training devices at the same time, the user 10 will also use different muscle training devices in turn. In response to market demand, this creation designs a wearable muscle training sensing device 200. This embodiment and the third embodiment described later are roughly the same as the aforementioned first embodiment, so the same components are labeled with the same component numbers. , Corresponding with capital. In the second embodiment, a variety of peripheral sensing devices 61, 62, 63 are attached (see Fig. 3 and Fig. 4 at the same time). Peripheral sensing devices 61, 62, 63 can be matched with various muscle training devices, which can be worn on the corresponding training parts of the user's body, such as arms, legs or feet, and wirelessly connect various peripherals through the wireless transceiver 6a. The signals sensed by the sensing devices 61, 62, and 63 are transmitted to the wearable muscle strength training sensing device 200.
Referring to Figure 5, taking the peripheral sensing device 61 as an example, the peripheral sensing device 61 includes a peripheral processing unit 611, a peripheral sensor 612, and a sensitivity adjuster. 613 and a wireless transmitter 614.
The wearable muscle training sensing device 200 is the same as the first embodiment. It is worn on the users wrist and wirelessly receives data from the peripheral sensing device 61 (as shown in Figure 4), so that the user can also The display 4 on the wearable muscle training sensing device 200 and the display 101 of the muscle training device observe the training result.
Refer to Figure 6, which shows the circuit diagram of the third embodiment of this creation. This embodiment is similar to the second embodiment, but on the wearable muscle training sensing device 300, the sensor 21 and the sensitivity adjuster 22 are removed, so the wearable muscle training sensing device of this embodiment does not have The sensing and adjustment capabilities cannot be used alone, and the peripheral sensing device 61 must be connected, and the peripheral sensing device 61 performs the sensing function.
Refer to Figure 7, which is the circuit diagram of the fourth embodiment of the creation. The components of this embodiment are similar to those of the third embodiment, but the wearable muscle training sensing device 400 is integrated and installed in the configuration of the muscle training device. In the muscle training device display 101, each peripheral sensing device 61, 62, 63 is attached to a selected part of the periphery of a user.
It can be seen from the above examples that this creation does have excellent industrial use value, so this creation already meets the requirements of a patent. However, the above description is only a description of the preferred embodiment of this creation. Anyone who is skilled in this art should make other various improvements based on the above description, but these changes still belong to the creative spirit of this creation and the following definitions In the scope of the patent.
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| TWI567587B | Cited by | Taiwan Province of China | Examiner |
4 members in 3 offices
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 102215831 | Taiwan Province of China | U | |
| TW20130215831U | – | – | – |
Members4
| Document | Office | Kind | |
|---|---|---|---|
| TWM475293UThis record | Taiwan Province of China | U | |
| US2015057576A1 | United States of America | A1 | |
| CN104414652A | China | A | |
| US9687694B2 | United States of America | B2 |
1 legal event, as the office reported them to INPADOC
Events
| Event | Code | |
|---|---|---|
| Annulment or lapse of a utility model due to non-payment of feesLapsedMM4K | MM4K |
Numbers
- Publication
- M475293
- Publication, DOCDB
- M475293
- Publication, EPODOC
- TWM475293U
- Application
- 102215831
- Application, DOCDB
- 102215831
- Application, EPODOC
- TW20130215831U
Titles2
- Chinese
- 穿戴式肌力訓練感測裝置
- English
- Wearable muscle training sensing device
Classification
- CPC, 7
- A61B5/0024
- A63B24/0062
- A61B5/224
- A61B5/6824
- A61B5/6828
- A61B5/6829
- A61B2562/08
- IPC, 2
- A63B21 00
- G06F13 00