Abstract:
A nebulizing driving apparatus is used to drive a piezoelectric material of a nebulizing module. The nebulizing driving apparatus includes a driving circuit, a control circuit and a feedback circuit. The feedback circuit detects an electrical data fed back from the piezoelectric material and sends the electrical data to the control circuit when the control circuit is configured to control the driving circuit to drive the piezoelectric material with a driving frequency. According to the electrical data, the control circuit is configured to control the driving circuit to drive the piezoelectric material with a working frequency.
Abstract:
A nebulization system comprises a power adapter and a nebulizer. The nebulizer comprises a nebulization module for placing a liquid and a nebulization driving device. The nebulization driving device comprises a battery unit, an input terminal, a voltage detection unit, a voltage adjustment unit, a control unit and a driving unit. The input terminal is coupled to the power adapter and the battery unit. The voltage detection unit detects whether an input voltage of the input terminal is larger than a predefined value. The control unit controls the voltage adjustment unit to adjust the input voltage to a first/second operating voltage as an output voltage respectively if the input voltage is larger/smaller than the predefined value. The first operating voltage is larger than the second operating voltage. The driving unit drives the nebulization module to nebulize the liquid according to the output voltage of the voltage adjustment unit.
Abstract:
A breathing assistance apparatus comprises a gas supply device, a mask prevent leakage control box (MPLCB), and a mask. The mask is used to cover user's face, and the mask has a gasbag at one side in contact with the user. The gas supply device connects to a gas inlet of the mask through a tunnel, and outputs treatment gas to the user stably. The MPLCB connects to the mask through a windpipe. The MPLCB pressurizes the gasbag automatically when a leakage is detected in the mask, and the gasbag is then inflated to touch the user's face. Therefore, the inside of the mask can remain airtight, so as to prevent the treatment gas in the mask from deflating out of the mask continually.