Ozone purification device control method capable of prolonging service life and purification device
A technology for ozone purification and device control, which is applied in the direction of electrical program control, program control in sequence/logic controllers, gasification substances, etc. It can solve the problems of increasing the cost of use, prolong the service life and avoid long-term high current The effect of simple work and air duct structure
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Embodiment 1
[0027] A control method for an ozone purification device that prolongs the service life, relates to an ozone purification device that is provided with a control module, a power supply module, a blower fan and an ozone generator; during operation, the control method takes the following steps (for specific steps, refer to figure 1 ):
[0028] (a) the control module controls the power supply module to provide electric energy that the electric current is X safety to the ceramic ozone generating sheet;
[0029] (b) During the preheating time H', continue the step (a) to make the temperature of the ceramic ozone generating sheet reach T, and T≥50°C;
[0030] (c) The power supply module maintains a starting current of 1.2X amps to the ceramic ozone generator. After the interval time H1 is reached, the power supply current to the ceramic ozone generator is adjusted to a working current of 0.8 amps. At the same time, the control module controls the power supply module to the fan. Powe...
Embodiment 2
[0035] see Figure 2 to Figure 4 , a portable ozone purification device provided by the present invention includes a housing 1, a battery 5 installed in the housing 1, a control circuit board 6, a transformer 7, an ozone generator 4 and a fan 3; the lower side of the housing is provided with an air inlet 101, the upper side of the casing 1 is provided with an air outlet 102, and the casing 1 is provided with an air guide duct 2 connecting the air inlet and the air outlet, the fan 3 is provided with the lower part of the air guide duct 2, and the ozone generator 4 is arranged on the upper side of the blower fan 3 . The casing 1 includes an upper casing 1A and a lower casing 1B. The air inlet 101 is arranged on the bottom side of the lower casing 1B, and the lower end of the air guide duct 2 is arranged around the upper surface of the air inlet 101; the air outlet 102 is arranged on the upper surface. On the upper side of the shell 1A, the lower end surface of the air outlet 10...
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