1. Technical Field
The present disclosure relates to a monitoring system, a flow rate monitor and a flow rate monitoring method.
2. Description of the Related Art
Monitoring systems, such as gas alarm systems and air monitoring alarm systems are usually designed as one unit, including an alarm. However, in use, it is more efficient for the detector to be put near a monitored object, and for the alarm to be put where it can be heard clearly by users. If the alarm and the detector are designed as one unit, and the object that needs to be monitored is in an area away from the users there could be a problem hearing the alarm, it may result in inconvenience for the users.
Therefore, there is room for improvement within the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring
The first control unit 24 obtains the angle threshold value from the first storage unit 22 in response to the signal generated by the monitoring unit 23, and determines whether the angle 26 detected by the monitoring unit 23 is equal to or larger than the angle threshold value. If the angle detected by the monitoring unit 23 is equal to or larger than the angle threshold value, the first control unit 24 generates a warning signal, and controls the wireless transmitting unit 25 to transmit the warning signal to the alarm 10.
In the embodiment, the alarm 10 further includes a button, which can be operated by a user to stop the warning signal. In detail, the button is operated by the user to generate a trigger signal, the second control unit 13 controls the sound output unit 13 to stop playing the audio warning files and/or the warning light emitter 15 to go out.
In step S501, the pendulum 21 is suspended in a moving medium filling in the flow rate monitor 20.
In step S502, the monitoring unit 23 detects angular movement of the pendulum 21 by movement of the moving medium, senses the angle 26 of the angular movement of the pendulum 21, and generates a signal associated therewith.
In step S503, the first control unit 24 obtains the angle threshold value from the first storage unit 22 in response to the signal generated by the monitoring unit 23, and determines whether the angle 26 detected by the monitoring unit 23 is equal to or larger than the angel threshold value. If yes, the procedure goes to step S504, otherwise, the procedure ends.
In step S504, the first control unit 24 generates the warning signal and controls the wireless transmitting unit 25 to transmit the warning signal to the alarm 10.
In step S505, the wireless receiving unit 12 of the alarm 10 receives the warning signal transmitted by the wireless transmitting unit 25. The second control unit 13 obtains one of the plurality of warning audio files in response to the warning signal, and controls the sound output unit 10 to play the obtained warning audio file.
In the embodiment, the second control unit 13 controls the warning light emitter 15 to emit the warning light in response to the received the warning signal. Then, the button is operated by the user to generate a trigger signal, the second control unit 13 controls the sound output unit 13 to stop playing the warning audio files and/or the warning light emitter 15 to go out.
It is understood that the present disclosure may be embodied in other forms without departing from the spirit thereof. The present examples and embodiments are to be considered in all respects as illustrative and not restrictive, and the disclosure is not to be limited to the details given herein.
Number | Date | Country | Kind |
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101110312 | Mar 2012 | TW | national |