IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0549378
(2009-08-28)
|
등록번호 |
US-8704077
(2014-04-22)
|
우선권정보 |
CN-2009 1 0304349 (2009-07-15) |
발명자
/ 주소 |
|
출원인 / 주소 |
- Hon Hai Precision Industry Co., Ltd.
|
대리인 / 주소 |
Novak Druce Connolly Bove + Quigg LLP
|
인용정보 |
피인용 횟수 :
0 인용 특허 :
23 |
초록
▼
A heat recycling system for recycling heat from an electronic device includes a pipe with an inside tube and an outside tube coiled around the inside tube. The inside tube is connected to a first airduct to receive heated air from the electronic device. The outside tube is to receive cooling air fro
A heat recycling system for recycling heat from an electronic device includes a pipe with an inside tube and an outside tube coiled around the inside tube. The inside tube is connected to a first airduct to receive heated air from the electronic device. The outside tube is to receive cooling air from outside. A number of thermoelectric modules are formed in walls of the inside tube. A first end of each thermoelectric module is inserted into the outside tube, and a second end of each thermoelectric module is inserted into the inside tube. Therefore, the number of thermoelectric modules may generate current.
대표청구항
▼
1. A heat recycling system for recycling heat from an electronic device, the heat recycling system comprising: a first airduct connected to the electronic device to receive heated air from the electronic device; anda pipe comprising an inside tube, and an outside tube coiled around the inside tube,
1. A heat recycling system for recycling heat from an electronic device, the heat recycling system comprising: a first airduct connected to the electronic device to receive heated air from the electronic device; anda pipe comprising an inside tube, and an outside tube coiled around the inside tube, wherein the inside tube is connected to the first airduct to receive the heated air with an inner space, a space between the outside tube and the inside tube is used to receive cooling air from outside, a plurality of thermoelectric modules are embedded in walls of the inside tube, a first end of each thermoelectric module is inserted into the space between the outside tube and the inside tube, and a second end of each thermoelectric module is inserted into the inner space of the inside tube. 2. The heat recycling system of claim 1, further comprising a storage apparatus to store electric charge, wherein the plurality of thermoelectric modules are connected in series, with the first one and the last one of the thermoelectric modules respectively connected to two opposite ends of the storage apparatus. 3. The heat recycling system of claim 2, wherein the storage apparatus is a capacitor. 4. The heat recycling system of claim 2, further comprising a power circuit connected to the storage apparatus. 5. The heat recycling system of claim 1, wherein the outside tube comprises an air inlet, the cooling air from outside enters into the space between the outside tube and the inside tube through the air inlet. 6. The heat recycling system of claim 1, further comprising an air controller, wherein the air controller comprises a temperature sensor, an air inlet, and a first air outlet, wherein the outside tube of the pipe comprises a second air outlet, the air inlet of the air controller is connected to the second air outlet of the outside tube, the temperature sensor senses temperature of airflow in the air controller to open or close the first air outlet of the air controller correspondingly. 7. The heat recycling system of claim 6, further comprising a second airduct, wherein the air controller further comprises a third air outlet, a first end of the second airduct is connected to the third air outlet of the air controller, a second end of the second airduct is connected to the electronic device; wherein upon the condition that the temperature of the airflow in the air controller is greater than a predetermined value, the air controller opens the first air outlet to allow the airflow to enter the open space, upon the condition that the temperature of the airflow in the air controller is less than the predetermined value, the air controller opens the third air outlet to allow the airflow to enter into the second airduct. 8. The heat recycling system of claim 1, further comprising an air controller, wherein the air controller comprises a temperature sensor, an air inlet, and a first air outlet, wherein the inside tube comprises a second air outlet, the air inlet of the air controller is connected to the second air outlet of the inside tube, the temperature sensor senses temperature of airflow in the air controller to open or close the first air outlet of the air controller correspondingly. 9. The heat recycling system of claim 8, further comprising a second airduct, wherein the air controller further comprises a third air outlet, a first end of the second airduct is connected to the third air outlet of the air controller, a second end of the second airduct is connected to the electronic device; wherein upon the condition that the temperature of the airflow in the air controller is greater than a predetermined value, the air controller opens the first air outlet to allow the airflow to enter the open space, upon the condition that the temperature of the airflow in the air controller is less than the predetermined value, the air controller opens the third air outlet to allow the airflow to enter into the second airduct.
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