1. Field of the Invention
The present invention relates to a portable sensing module, and more particularly to a portable sensing module for a fitness equipment and a data transmission process for using the portable sensing module.
2. Description of the Prior Art
The existing fitness equipments generally include the simple fitness equipment without control panel and the fitness equipment which is provided with an electronic control panel. The user using the fitness equipment without a control panel doesn't know the relative data after doing work out, therefore, has to learn to know by experience whether the amount of work out is enough. The fitness equipment with an electronic control panel is capable of showing relative work-out data but is still unable to be used in combination with other follower equipments, such as the 3C products and smart phone, therefore, the function of the existing fitness equipment with an electronic control panel is still limited.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a portable sensing module for a fitness equipment and a data transmission process for using the same, which is capable of collecting the static data of the fitness equipment and the dynamic data indicating the status of the user. With the sensing module, the fitness equipment can be connected with follower equipments, such as a display or a household audio and video equipment or handheld 3C equipment in a wire or wireless manner, thus expanding the function of the fitness equipment to better meet the user's demand.
To achieve the above objective, a portable sensing module for a fitness equipment in accordance with the present invention comprises: a sensing unit, a center control unit, a storage unit, a wireless transceiver and a connecting unit. The sensing unit is a contact or non-contact sensor connected to the center control unit, the center control unit is connected to the storage unit, the wireless transceiver and the connecting unit, the wireless transceiver and the connecting unit are used to connect follower equipments which include a display or household audio and video equipment or handheld 3C equipment. The center control unit is a MCU (microprocessor control unit), the storage unit is used to store relative data sheets, including various electronic signals and formats corresponding to data detected by the sensing unit, and product code for the follower equipments, the household audio and video equipment or handheld 3C equipment, the wireless transceiver is an antenna for connecting the follower equipments in a wireless manner, and the connecting unit is an input and output port for connection of the follower equipments via wire.
A data transmission process for using the portable sensing module comprises the following steps:
using the sensing unit to detect the status of the fitness equipment, including the dynamic data indicating the status of the user, and the static data of the fitness equipment;
transmitting the data to the center control unit and converting it into computable data, then computing;
comparing the data obtained from previous step with the data sheets stored in the storage unit and then encoding it into codes transmittable or usable by the follower equipments;
packaging the codes into data useable by the follower equipments; and
using the connecting unit and the wireless transceiver to transmit the data to the follower equipments.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Referring to
The sensing module 10, as shown in
The sensing module 10 is connected to the center control unit 12 via the sensing unit 11. Meanwhile, the center control unit 12 is connected to the storage unit 13, the wireless transceiver 14 and the connecting unit 15. The wireless transceiver 14 and the connecting unit 15 are used to connect follower equipments, such as the network 30 and the display 40, as shown in
Referring then to
sensing 51: using the sensing unit 11 to detect the status of the fitness equipment 20, including the dynamic data indicating the status of the user, and the static data of the fitness equipment;
code converting 52: transmitting the data to the center control unit 12 and converting it into computable data, then computing;
encoding 53: comparing data obtained from previous step with data sheets stored in the storage unit 13 and then encoding it into codes transmittable or usable by follower equipments;
packaging 54: packaging the code into data useable by the follower equipments; and
transmitting 55: using the connecting unit and the wireless transceiver to transmit the data to the follower equipments, so that the follower equipments can be directly plugged in the fitness equipment to expand the function of the fitness equipment.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.