Abstract:
The present invention discloses a contact type of pulse measurement device, which comprises a first active sensor electrode and a second active sensor electrode having corresponding opposite polarities with each other; and the two active sensor electrodes respectively connected to the pulse measurement device by conductive wires and the pulse measurement device comprises a negative feedback difference common mode signal and a buffer/balanced circuit for providing a circuit with a self common point electrode potential. Therefore, the first bio-potential signal can be detected by means of the first active sensor electrode and the common point electrode. Similarly, a second bio-potential signal having the same magnitude but a different phase as the first bio-potential signal can be detected by the second active sensor electrode and the common point electrode.
Abstract:
The present invention discloses a contact type of pulse measurement device, which comprises a first active sensor electrode and a second active sensor electrode having corresponding opposite polarities with each other; and the two active sensor electrodes respectively connected to the pulse measurement device by conductive wires and the pulse measurement device comprises a negative feedback difference common mode signal and a buffer/balanced circuit for providing a circuit with a self common point electrode potential. Therefore, the first bio-potential signal can be detected by means of the first active sensor electrode and the common point electrode. Similarly, a second bio-potential signal having the same magnitude but a different phase as the first bio-potential signal can be detected by the second active sensor electrode and the common point electrode.
Abstract:
The present invention includes a handheld device and a main device, wherein the handheld device is held by an athlete and the main device is moved with the athlete. Through a measuring device acquiring a physiological condition of the athlete and a movement state of the handheld device and transmitting thereof to the main device, the main device can produce an exercise indication signal according thereto, so that the athlete can obtain an exercise direction and also can manage the physical condition during exercise.
Abstract:
An intelligent vehicle meter includes an associative processing unit and a signal processing unit connecting to various modules to process related signals. Through a measurement module and an accelerometer module physiological conditions of an exerciser and exercise intensity can be obtained to generate a control signal to be sent to a control module. Hence a corresponding control measure can be made immediately by the control module according to exerciser's conditions to actively change use intensity of the exercise equipment to enable the exerciser to do exercise under the optimal condition to protect the health and safety of the exerciser.