Pedal exercise signal detection device
10551260 ยท 2020-02-04
Assignee
Inventors
Cpc classification
A63B71/0619
HUMAN NECESSITIES
B62M3/086
PERFORMING OPERATIONS; TRANSPORTING
A63B2220/833
HUMAN NECESSITIES
A63B69/16
HUMAN NECESSITIES
A63B2225/50
HUMAN NECESSITIES
A63B22/0605
HUMAN NECESSITIES
A63B22/0046
HUMAN NECESSITIES
G01L3/242
PHYSICS
A63B71/0622
HUMAN NECESSITIES
International classification
B62M3/00
PERFORMING OPERATIONS; TRANSPORTING
G01L5/22
PHYSICS
A63B22/06
HUMAN NECESSITIES
A63B69/16
HUMAN NECESSITIES
A63B22/00
HUMAN NECESSITIES
Abstract
A pedal exercise signal detection device includes a sleeve having an outer circumference having a pressure signal connection device and a pressure detection unit mounted thereon; a first bearing disposed in the sleeve; a stator having a positioning axle having an end formed with a fastening hole; a fastener element fastening the stator and the sleeve together; a pedal having an axle hole into which the sleeve is inserted to be positioned therein and a receiving trough including a through opening corresponding to the pressure signal connection device; and a control circuit board disposed in the receiving trough and including signal reader units that extend through the through opening and corresponding to the pressure signal connection device.
Claims
1. A pedal exercise signal detection device for detecting an exercise signal generated by a rider treading a pedal of a bicycle and transmitting the exercise signal to a display to present exercising reference information to the rider, comprising: a sleeve having an external circumference that is provided with at least one pressure signal connection device and at least one pressure detection unit, an end of the sleeve being formed with a positioning hole; a first bearing disposed in the sleeve and set against a circumferential surface of the sleeve at the end in which the positioning hole is formed, the first bearing being coaxial with respect to the positioning hole; a stator having a positioning axle extending through the positioning hole of the sleeve and the first bearing; a fastener element for coupling the sleeve to the stator; the pedal formed with an axle hole and a receiving trough, the axle hole receiving the sleeve to insert therein so as to position the sleeve in the axle hole, the receiving trough being formed in a bottom of the pedal, the receiving trough comprising a through opening receiving the pressure signal connection device of the sleeve; and a control circuit board, which is disposed in the receiving trough of the pedal, the control circuit board comprising a plurality of signal reader units that extend through the through opening of the receiving trough to contact the pressure signal connection device.
2. The pedal exercise signal detection device as claimed in claim 1, wherein the control circuit board is fixed in the receiving trough of the pedal.
3. The pedal exercise signal detection device as claimed in claim 1, wherein the sleeve comprises a second bearing arranged in the positioning hole to receive the positioning axle to extend therethrough for supporting rotation of the sleeve about a center defined by the stator.
4. The pedal exercise signal detection device as claimed claim 1, wherein an inner circumference of the axle hole of the pedal and an outer circumference of the end of the sleeve that is opposite to an end of the stator into which the stator extends are provided with thread structures that correspond to and are engageable with each other.
5. The pedal exercise signal detection device as claimed claim 1, wherein an inner circumference of a fastening hole of the positioning axle and an outer circumference of the fastener element are provided with thread structures that correspond to and are engageable with each other.
6. The pedal exercise signal detection device as claimed claim 1, wherein the stator has an end that is opposite to the positioning axle is provided with a thread engageable with the bicycle.
7. The pedal exercise signal detection device as claimed claim 1, wherein the receiving trough of the pedal receives and holds a power supply device therein such that the power supply device supplies electrical power to the control circuit board, the pressure signal connection device, and the at least one pressure detection unit.
8. The pedal exercise signal detection device as claimed claim 1, wherein the control circuit board comprises a signal processor unit, a trace detection unit, a trace detection circuit, a pressure detection circuit, and a wireless transmission module, the pressure detection circuit being operable to read, through a signal reader unit and the pressure signal connection device, at least one exercise force application signal of a rider treading the pedal detected by the at least one pressure detection unit and being also operable to detect at least one exercise trace signal of the pedal by means of the trace detection unit and the trace detection circuit, the exercise force application signal and the exercise trace signal being supplied to the signal processor unit, so that the signal processor unit carries out computation to obtain a combined exercise signal of the rider and transmits the exercise signal through the wireless transmission module to the display to present the exercising reference information to the rider.
9. The pedal exercise signal detection device as claimed in claim 1, wherein the pressure signal connection device is arranged on an outer circumference of the sleeve at approximately a middle thereof and the at least one pressure detection unit is mounted on a surface of the outer circumference of the sleeve and adjacent to one side of the pressure signal connection device.
10. The pedal exercise signal detection device as claimed in claim 1, wherein the positioning axle of the stator is provided with a fastening hole formed on a free end of the stator, and the fastener element is received into the sleeve and extends through the first bearing and the positioning hole to fasten to the fastening hole of the stator.
11. The pedal exercise signal detection device as claimed claim 1, wherein the fastener element is provided with a sleeve-side external thread that is engageable with an internal thread formed on a free end that is opposite to the positioning hole of the sleeve, and the fastener element is further provided with an end section external thread that is engageable with an internal thread formed on the axle hole of the pedal.
12. The pedal exercise signal detection device as claimed claim 1, further comprises a sleeve protection tube which is engaged with the sleeve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will be apparent to those skilled in the art by reading the following description of preferred embodiments of the present invention, with reference to the attached drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(16) Referring to
(17) Referring collectively to
(18) The receiving trough 32 is formed in a bottom of the pedal 3. The control circuit board 4 is received and fixed in the receiving trough 32. The receiving trough 32 is provide with and communicating with a through opening 321 formed in a location that corresponds to a pressure signal connection device 22.
(19) Referring also to
(20) The open end of the sleeve 2 into which the stator 1 is inserted is provide with a second bearing 21a arranged therein, and a first water-resistant rubber ring 26 is arranged between the stator 1 and the sleeve 2. The sleeve 2 has a middle section having an outer circumferential surface on which at least one pressure signal connection device 22 is mounted and one or multiple pressure detection units 23 are provided on each of two opposite sides of the pressure signal connection device 22. Each of the pressure detection units 23 is operable to detect an exercise signal that is transmitted through a transmission line 24, a pressure signal connection device 22, and a signal reader unit 41 to a control circuit board 4.
(21) Referring to
(22) The receiving trough 32 receives and holds therein a power supply device 322, which supplies electrical power necessary for the operations of the control circuit board 4, the pressure signal connection device 22, and the pressure detection units 23. When the sleeve 2 is received in the axle hole 31, an opening between the sleeve 2 and the axle hole 31 is provided with and closed by a second water-resistant rubber ring 26a to protect the pressure signal connection device 22 and the pressure detection units 23 against malfunctioning caused by moisture.
(23) When a rider rides the bicycle, the pedal exercise signal detection device of this invention is operable to detect variation of a position of the pedal 3 due to the rider treading the pedal 3 by means of the pressure signal connection device 22 so as to acquire a pedal angle signal concerning an angular position of the pedal 3 and is also operable to acquire an exercise force application signal concerning a force application condition of the rider treading the pedal 3 by means of detection carried out by the pressure detection units 23. The exercise force application signal concerning the force application condition of the rider treading the pedal 3 detected by the pressure detection units 23 is transmitted through the transmission line 24, the pressure signal connection device 22, the signal reader unit 41 to the pressure detection circuit 44, and then fed to the signal processor unit 42. The trace detection unit 43 and the trace detection circuit 43 are operable to acquire the exercise trace signal concerning angular position variation of the pedal 3 in space. The signal processor unit 42, after receiving the pedal angle signal, the exercise force application signal, and the exercise trace signal, may acquire a combined exercise signal, and transmits the exercise signal through the wireless transmission module 45 to a display 61 of a receiver device 6 to present as exercising reference information to the rider.
(24) Referring to
(25) In the second embodiment of the represent invention, the pedal exercise signal detection device comprises a stator 1, a sleeve 2, a pedal 3, a control circuit board 4, and a fastener element 5. The stator 1 is coupled by the fastener element 5 to the sleeve 2. An outer circumference of the fastener unit 5 is provided with a sleeve-side external thread 51 that corresponds to and is engageable with an internal thread 25a formed on a free end of the sleeve 2 that is opposite to the positioning hole 31 of the sleeve 2. Further, the fastener element 5 is further provided with an end section external thread 52 that corresponds to and is engageable with an internal thread formed on the axle hole 31 of the pedal 3. So, the sleeve 2 may be stably engaged with the stator 1, preventing the pressure detection units 23 from unexpected deformation caused by assembled differences of the sleeve 2.
(26) A sleeve-side circuit board 29 is mounted on the sleeve 2, arranged on a position corresponding to the signal reader unit 41 of the control circuit board 4. A sleeve protection tube 28 is associated with the sleeve 2 to protect the pressure signal connection device 22, the pressure detection units 23 and the sleeve-side circuit board 29.
(27) At least one trace detection unit 43 such as a magnetic element is positioned on an outer circumference near to the free end of the sleeve 2. At least one trace detection circuit 43 such as a reed switch is arranged on the control circuit board 4 and corresponds to the trace detection unit 43. The trace detection unit 43 and the trace detection circuit 43 are operable to detect at least one exercise trace signal of the pedal 3 and transmit the exercise trace signal to the control circuit board 4.
(28) Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.