Abstract:
A detection device and a monitoring system are adapted to detect an exercising state of a user. The detection device is adapted to be equipped on a circulation exercise device of a physical training equipment. The detection device has a state detector and a rotation speed detector. The state detector generates multiple signal combinations based on a periodic motion of the circulation exercise device. The rotation speed detector estimates a relative variation between a rotation speed and degrees of the circulation exercise device based on the signal combinations. The relative variation represents the user's exercising state. According to the relative variation, a user can realize whether the exercising state is in balance.
Abstract:
A mounting bracket has a sleeve body and at least one fastener. The sleeve body has two clamping portions, a welding extension and an insertion hole and two clamping tabs. The clamping portions are disposed adjacent to each other and each has an end. The ends of the clamping portions are opposite to each other and separated by a gap. The welding extension is formed on and protrudes from a bottom end of one of the clamping portions. The clamping tabs are respectively formed on and protrude from the clamping portions and each clamping tab has at least one mounting hole. The fastener is mounted through corresponding mounting holes. When a support post is inserted into the insertion hole, the clamping portions are drawn together by the fastener to fully contact a surface of the support post and firmly clamp the support post.
Abstract:
A fitness bike with a braking device has a frame, a flywheel, an adjusting assembly, a braking assembly, and a wire. The adjusting assembly is mounted on the frame, and has a main housing, a shaft, and a first resilient member. The shaft is movably mounted in the main housing. The first resilient member is located in the main housing and abuts the shaft. The braking assembly is rotatably mounted on the frame and has an abutting element. The abutting element is capable of abutting a radial outer surface of the flywheel. The wire is mounted on the frame and connects the shaft to the braking assembly. The braking assembly abuts and limits the flywheel in one single direction. Thus, the fitness bike with the braking device has a simplified structure and is easy to install.
Abstract:
A torque detecting system is adapted to detect a setting torque of a torque providing apparatus. A torque driving apparatus is mounted on a stationary base to exert a resisting force on the torque providing apparatus. The setting torque of the torque providing apparatus corresponds to the resisting force. The torque detecting system comprises an angle detecting module and an operation device. The angle detecting module is mounted on the torque driving apparatus and outputs a detecting voltage. The operation device obtains a torque value via table-searching based on the detecting voltage. The torque value corresponds to the setting torque of the torque providing apparatus. The torque detecting system performs the torque detection through a non-contact detecting technique, such that detecting accuracy would not be affected after long term use.
Abstract:
A torque detecting assembly connected to a torque acting assembly and a controller, the torque detecting assembly has a passive rotating member and a rotating angle detecting member. The passive rotating member is mounted on a pivot shaft of a torque bracket of the torque acting assembly and is capable of rotating synchronously with the pivot shaft and the torque bracket in an angular extent. The rotating angle detecting member is mounted on the torque acting assembly and is capable of detecting a signal according to rotating angle variation of the passive rotating member to calculate out a torque value. The torque detecting assembly may detect slight rotation of the passive rotating member and calculate out a corresponding torque value.
Abstract:
A torque measuring device for a flywheel is mounted on a frame of an exercise bike and has a base, multiple torque measuring apparatuses of a measuring assembly mounted on the base, a communication module mounted on the base, and a power module mounted on the base. The base is directly connected to the flywheel, a Wheel shaft, and a transmission mechanism of the exercise bike. The communication module receives and outputs measurement data. The power module provides electricity to the communication module and the measuring assembly. Through the simplified structure, the torque measuring device is directly assembled on the exercise bike to improve installation convenience and facilitate inspection or replacement. Moreover, the multiple torque measuring apparatuses can rotate simultaneously along with the base so as to improve the accuracy of torque measurement.
Abstract:
A detection apparatus of a training machine has a shifting device, four sensors and a controller. The shifting device is mounted on an exercise device along a circular motion trace divided into four segments. The four sensors are respectively mounted on the body and correspond to the four segments. The controller determines multiple exercise states, including the rotation speed, the rotational direction, the first rotation speed, the second rotation speed and the force exerted on the exercise device, according to detecting signals from the sensors at a same time. The structure of the detection apparatus is simplified for ease of use.
Abstract:
A platform assembly for a vibration exerciser has a base, a platform, a vibration generator and a resilient assembly. The platform is connected operationally to the base and has a bottom. The vibration generator is attached to the bottom of the platform to make the platform vibration. The resilient assembly is mounted around the base and is connected to the platform along a lateral direction. Accordingly, the vibration exerciser platform assembly can provide a gentle vibration force to a user to keep the user from being injured.
Abstract:
A resistance adjusting apparatus is disposed on a frame and has a rotating member, a magnetic resistance member, and a wind resistance member. The rotating member has an axle rotatably disposed on the frame, an assembly seat fixedly disposed on the axle, and a magnetic wheel detachably disposed on the assembly seat. The magnetic resistance member is disposed on the frame, is located out of the magnetic wheel, and has an adjusting seat disposed on the frame and multiple magnetic elements. The magnetic wheel is inserted into an inner space of the adjusting seat. The magnetic elements are disposed in the adjusting seat and are located in the inner space of the adjusting seat. The wind resistance member is detachably disposed on an outer surface of the magnetic wheel. The wind resistance member and the magnetic resistance member are independent and can be detached individually.
Abstract:
A torque sensing apparatus has a torque adjusting assembly and a non-contact sensing assembly. The torque adjusting assembly has a fitting unit, a regulating rod and a regulating seat. The non-contact sensing assembly has a first device and a second device. The regulating rod is rotatably mounted through the fitting unit. The regulating seat is movably mounted on the regulating rod and located outside the fixed plate of the fitting unit. The first device is mounted on the fixed plate. The second device is mounted on the regulating seat and kept from contacting the first device. The non-contact sensing assembly detects a change of the distance between the first device and the second device and generates a signal to a controller, and the controller gauges a torsional value of the torque adjusting assembly. Therefore, the non-contact sensing assembly is not abraded and increases the precision of the torque sensing apparatus.