Abstract:
A wearable muscle strength training detector device includes a sensor, a sensitivity adjustor, a data storage device, an identification code recognition unit, a display device, and a data input/output port. The sensitivity adjustor allows for adjustment to a desired sensitivity according to a selected body portion of the user. A wireless transceiver makes instantaneous transmission of muscle strength training data to a display device or transmission of the dynamic exercise signal from a data storage device to a central monitor and control unit. A plurality of peripheral detector devices are further provided to work with different types of muscle strength training device and is wearable on corresponding portions of the user to be wirelessly connected to a wearable muscle strength training detector device and displayed.
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.
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:
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 personal exercise measuring safety system is provided, which includes an image acquiring device, an exercise measuring device, a portable digital measuring device. The image acquiring device is configured on one portion of a bicycle by a fixator or configured on a selected portion of an exerciser. The portable digital measuring device electrically connected with the image acquiring device for receiving an image acquired by the image acquiring device. The portable digital measuring device selectively displays the image and/or transmits the image to a mobile communication device to display the image on the mobile communication device. The portable digital measuring device is further electrically connected with the exercise measuring device so as to receive and display the exercise information of the exercise measuring device.
Abstract:
A wearable muscle strength training detector device includes a sensor, a sensitivity adjustor, a data storage device, an identification code recognition unit, a display device, and a data input/output port. The sensitivity adjustor allows for adjustment to a desired sensitivity according to a selected body portion of the user. A wireless transceiver makes instantaneous transmission of muscle strength training data to a display device or transmission of the dynamic exercise signal from a data storage device to a central monitor and control unit. A plurality of peripheral detector devices are further provided to work with different types of muscle strength training device and is wearable on corresponding portions of the user to be wirelessly connected to a wearable muscle strength training detector device and displayed.
Abstract:
Disclosed is an exercise signal receiver system with a personal portable unit as a relay transmitter. Users, when using individual exercise devices, each put on a portable unit to transmit a wireless body signal and a wireless identification code of each user to a common receiving station. The common receiving station receives the identification code of each portable unit and a body signal corresponding to the identification code. The portable units also receive device signals and transmit the device signals to the common receiving station. The common receiving station is connectable via a data input/output interface to a terminal device.