Abstract:
A non-interdependent displacement measuring device for converting a rotary motion to a linear motion is disclosed, which includes a driving unit, a detection unit, and a resistance device. The driving unit includes an adjustment section and a driving section. The detection unit is arranged in the adjustment section. The driving section is connected to the resistance device. The detection unit includes a sensing module and a transmission module, and the detection unit is arranged in the adjustment section, so that when the adjustment section rotates, the detection unit detects turns and an angle of rotation of the adjustment section to generate a detection signal, which, after being subjected to calculation, is transmitted through the transmission module to the electronic device to display the level of an resistance, so as to overcome the drawbacks of the prior art that accuracy is poor, calibration is difficult, and fabrication is difficult due to a magnet and a sensor being arranged as two separate parts.
Abstract:
An embedded magnetic induction pedal device adapted to be mountable to a bicycle pedal crank, which includes a pedal body, a bearing, a pedal axle, a magnetic induction unit, a permanent magnet unit, a processing unit, a transmission device, and a power supply unit. The pedal body is formed with an axle hole in which the magnetic induction unit is arranged. The pedal axle is received in the axle hole. The eccentric seat is mounted to the pedal axle. The permanent magnet unit is retained in the eccentric seat and is set at a position that is deviated from an axis of the pedal axle so that during a relative motion between the permanent magnet unit and the magnetic induction unit, the magnetic induction unit detects a variation of the magnetic field, based on which the processing unit calculate and determine operation data of the pedal crank that are transmitted by the transmission device.
Abstract:
Disclosed is an exercising information administering system in an outdoor environment. A team leader and a plurality of exercising members forms an outdoor exercising group. The team leader is configured with a master controller and each of the exercising members is configured with a member controller. A communication connection device is communicated with a data transmission interface of the master controller for transmitting the outdoor exercising information to a remote data collection center for collection, administration, and analysis.
Abstract:
A head-mount display with exercise information displayed thereon includes an information box securely mounted on one temple of a frame, at least one wireless receiving unit mounted inside the information box, and a transparent body mounted on one front end of the information box in a visual range of a user. A display screen is mounted on an outer sidewall of the transparent body to display exercise information in the form of icon or text message, which is detected by the at least one wireless receiving unit. A magnifying lens is mounted on an inner sidewall of the transparent body to enlarge information displayed on the display screen as a virtual image for the user to view upon exercising. Accordingly, the head-mount display not only provides convenience in demonstrating information but also enhances space utilization efficiency of the display screen and recognition of exercise information on the display screen.
Abstract:
A wearable optical system capable of displaying dynamic information and images includes a carrier, an information box and a transparent body. The information box is mounted on the carrier and has a wireless sensing unit, a microprocessor and a display unit mounted therein. The transparent body is mounted on the information box and located within a sight range of the wearer, and has a partially-transmitting coated lens mounted on a surface thereof and located on an optical path of the display unit for forming a virtual image on the wearer's retina. A first convex lens is mounted between the partially-transmitting coated lens and the wearer's eyes for adjusting a position of the virtual image formed inside the wearer's eyes.
Abstract:
A non-interdependent displacement measuring device for converting a rotary motion to a linear motion is disclosed, which includes a driving unit, a detection unit, and a resistance device. The driving unit includes an adjustment section and a driving section. The detection unit is arranged in the adjustment section. The driving section is connected to the resistance device. The detection unit includes a sensing module and a transmission module, and the detection unit is arranged in the adjustment section, so that when the adjustment section rotates, the detection unit detects turns and an angle of rotation of the adjustment section to generate a detection signal, which, after being subjected to calculation, is transmitted through the transmission module to the electronic device to display the level of an resistance, so as to overcome the drawbacks of the prior art that accuracy is poor, calibration is difficult, and fabrication is difficult due to a magnet and a sensor being arranged as two separate parts.
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.
Abstract:
A head mounted virtual reality object synchronized physical training system includes a virtual reality device, a physical training equipment, and a physiological signal sensor. The virtual reality device includes a display operable to display a virtual reality object according to an operation of the user. The virtual reality device is detachably mounted to a head of the user and provides the user with a function of interaction. The physical training equipment includes an exercise data sensor operable to detect exercise data that the user operates the physical training equipment. The physiological signal sensor is operable to detect a human body physiological signal and a human body movement signal of the user. The physical training equipment and the physiological signal sensor have a function of synchronization with the virtual reality object displayed on the virtual reality device.
Abstract:
A photoplethysmogram signal measurement device for exercise equipment is provided, which includes a photoplethysmogram signal detector for detecting a volumetric variation caused by a blood pressure pulse of a user through a skin surface of a user and then a series of heart rate signals are generated. The photoplethysmogram signal detector includes a carrier, a light emitting device, a light receiving device, a signal digitizer, a processing unit and a detection actuating unit. The detection actuating unit is used to generate an enabling signal to actuate the light receiving device to start receiving a series of photoplethysmogram signals and actuate the processing unit to start receiving a digitized photoplethysmogram signals from the signal digitizer. An optical grating is disposed between the light emitting device and the light receiving device for blocking an outside interference light from interfering the light receiving device.
Abstract:
A cycling computer with image processing device is provided for a bike and includes a monitor and a button. The cycling computer is designed to record traffic conditions and physiological signals of a rider. The traffic conditions and the physiological signals are digitalized into cycling data to be displayed on a monitor through operation of a button. A CCD device is mounted on the cycling computer for recording environmental images. An image processing unit is connected to the CCD device for receiving the environmental images captured by the CCD module. The environmental images are incorporated with the cycling data to form a plurality of object images. The object images are displayed on the monitor for versatile applications to the rider.