The present invention relates to a split-type controlling device for producing oxygen and delivering air, especially to the device that allows an outdoor unit to produce oxygen and delivers the oxygen to indoor units, so that an indoor space could be full of oxygen.
An R.O.C. patent No. 566521 discloses “A SPLIT AIR CONDITIONER PROVIDING OXYGEN AND PURIFICATION”. Wherein, an outdoor unit has an oxygen enrichment device to produce oxygen of high concentration. The oxygen is further delivered to a heat exchanger installed in an indoor unit by a pipe, so that the oxygen that contains high temperature and rich moisture is further processed and thence delivered to an indoor space. Accordingly, the indoor space is provided with high oxygen content.
Afore disclosures have shortcomings as follows:
1. The oxygen enrichment device is a subordinate device to the air conditioner. Namely, there is no exclusive and proper pipe arrangement for delivering oxygen, and there is no controlling module. Accordingly, the oxygen is unsuitably delivered.
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3. The air conditioner of the disclosure does not filter the outdoor air first and then deliver clean air to the oxygen enrichment device for generating oxygen. Accordingly, the oxygen provided by the oxygen enrichment device is not clean enough. As a result, the air quality indoors is influenced.
4. The oxygen flow generated in accordance with the oxygen enrichment membrane is less than 10 liters per minute. Obviously, the oxygen flow is unsatisfactory for enhancing the oxygen content indoors.
5. The oxygen generated in the disclosure does not go through a dehydration process. The oxygen is directly delivered to the indoor unit. Wherein, the pipe easily gathers moss in view of humidity. As a result, the oxygen quality is influenced, and the maintenance of the device and the pipe becomes difficult.
A split-type controlling device for producing oxygen and delivering air in accordance with the present invention comprises an outdoor unit having an air purification unit, an oxygen condenser, and a molecule sieve that are orderly connected by a pipe; a plurality of indoor units being connected to the molecule sieve through the pipe; each of the indoor units having an oxygen outlet, and an oxygen sensor disposed near the oxygen outlet; and a control panel having a controlling unit; the controlling unit being electrically connected to the outdoor unit and the indoor units so as to control an operation of the outdoor unit and the indoor units; the controlling unit allowing oxygen generated by the outdoor unit to be output from the oxygen outlet of one of the indoor units.
Advantages over the present invention are as follows:
1. The present invention allows a single outdoor unit to be set correspondingly to multiple indoor units. Moreover, the pipe is arranged properly for each indoor unit to be placed in different rooms. Whereby, a supplying mode and a supplying position of the oxygen could be controlled by the control panel, thence conducing to an exclusive device for producing oxygen and delivering the same.
2. When the separation of oxygen over nitrogen in the air is executed by the molecule sieve, the oxygen of high concentration that contains 40% to 50% oxygen could be produced. The flow is also promoted to 40 litters to 50 litters per minute. Accordingly, if such oxygen of high concentration is released in the indoor space, the oxygen content indoors is obviously encouraged.
3. External air is efficiently filtered; therefore, the device produces clean oxygen.
4. The oxygen content can reach to 90% for emergent patients while emergency.
5. The split-type design keeps the indoor space quiet. When Pythoncidere is provided, the air quality indoors is even better.
6. When the control panel is applied for users to choose a manual mode, users are able to manually turn on the outdoor unit as well as the oxygen outlet of any one of the indoor units. Accordingly, the controlling device is more suited to the need of users with economical electricity.
7. When the control panel is further applied for users to choose a semi-automatic mode or an automatic mode, a single controlling means or a united controlling means is accessible. When the single controlling means is adopted, the oxygen sensor automatically enhances or reduces the oxygen concentration according to a predetermined value. When the united controlling means is adopted, a detecting receiver is able to detect and receive a location signal from an emitter. Accordingly, when users approach any detecting receiver, the outdoor unit is automatically turned on so as to produce oxygen. Thereby, the indoor unit set in accordance with where the users stay allows its oxygen outlet to release oxygen. These modes are especially economical of electricity. Moreover, the controlling device for producing oxygen is further intelligent.
Referring to
an outdoor unit 1 being installed outdoors; the outdoor unit 1 having an air purification unit 11, an exsiccator 12, a catalyst sterilization unit 13, an oxygen condenser 14, and a molecule sieve 15 that are orderly connected by a pipe 2;
at least one indoor unit 3 being installed indoors; the indoor unit 3 being connected to the molecule sieve 15 through the pipe 2; each of the indoor units 3 having a flow controlling unit 31, a humidifying and Pythoncidere unit 32, an oxygen outlet 33, a flow sensor 34, an oxygen sensor 35 that are connected to the indoor unit 3; and
a control panel 4 having a controlling unit 41; the controlling unit 41 being connected to the outdoor unit 1 and the indoor unit 3 so as to control an operation of the outdoor unit 1 and the indoor unit 3.
Wherein, the outdoor unit 1 allows external air to enter the air purification unit 11. Herein, the air purification unit 11 provides three filtering means. A piece of filter paper 111 blocks heavy metal or large dust particles in the air first. Then, a bamboo charcoal filter 112 deodorizes, dehydrates, and filters the air. Next, a nano-silver filter 113 utilizes the nano-silver to achieve antiseptic, deodorized, and anticorrosive functions. Accordingly, by means of the three filters, cleaner air is easily obtainable.
The air that is purified by the air purification unit 11 enters the exsiccator 12 via the oxygen condenser 14, so that moisture contained in the air is eliminated. Subsequently, the dehydrated air enters the catalyst sterilization unit 13 for being processed with photo catalyst or low-temperature catalyst. Herein, both the photo catalyst and the low-temperature catalyst have a high-efficiency broad spectrum. Therefore, such catalysts are good for sterilization and disinfection.
Further, the sterilized air enters the molecule sieve 15. Herein, the nitrogen whose particle size is larger is blocked from the molecule sieve 15. As to the oxygen, the molecule sieve does not block it since the oxygen has a smaller particle size. Therefore, the oxygen continues going forward for resulting in oxygen of high concentration. In this embodiment, there are twelve molecule sieve tubes defined on the molecule sieve 15 for respectively and orderly producing the oxygen of high concentration. As a result, the oxygen with a high flow rate and high concentration is available.
The indoor unit 3 carries the oxygen via the pipe 2, controls the flow rate via the flow controlling unit 31, and monitors the flow rate via the flow sensor 34. The humidifying and Pythoncidere unit 32 is utilized for adjusting relative humidity in the indoor space. Namely, the humidifying and Pythoncidere unit 32 could be switched to a slight mode, a medium mode, or a heavy mode. Moreover, under a certain temperature, the relative humidity should be maintained between 40% and 60%. To do so, a fine spray for increasing humidity enters the pipe 2, the fine spray further mixes with the oxygen, and the oxygen containing moisture is released by means of the oxygen outlet 33 to the indoor space.
Additionally, there is an air hole along with an oil can defined on the humidifying and Pythoncidere unit 32. Whereby, when the oxygen is carried to the air hole, the smell of Pythoncidere is also released to the indoor space. While an emergent oxygen pipe 36 is provided on one indoor unit 3, the oxygen content can reach to 90% for emergent patients in time of emergency.
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