IP Library Granted Patent US 8,322,159
Granted Patent B2
US 8,322,159 · App. 12/278,544 · Granted Dec 4, 2012

Air conditioning system for communication equipment and controlling method thereof

Assignee: Chang Jo 21 Co., Ltd.
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Quick Facts
Patent No.
US 8,322,159
App. No.
12/278,544
Granted
Dec 4, 2012
Kind
B2
Abstract

An air conditioning system for communication equipment includes an indoor module placed inside a base station and an outdoor module placed outside the base station. The indoor module has a first indoor heat exchanger installed on a brine pipe and having a heat exchange tube, an expansion valve installed on a refrigerant pipe, a second indoor heat exchanger having a heat exchange tube to which the refrigerant pipe is connected, a compressor for compressing refrigerant, and an indoor blower. The outdoor module has a brine pump installed on the brine pipe, a first outdoor heat exchanger having a heat exchange tube to which the brine pipe extending from the brine pump and the first indoor heat exchanger is connected, a second outdoor heat exchanger having a heat exchange tube to which the refrigerant pipe, extending from the compressor and the expansion valve, is connected, and an outdoor blower.

Claims (15)

1. An air conditioning system for communication equipment, comprising:

an indoor module placed inside a base station in which communication equipment is installed, the indoor module having a first indoor heat exchanger which is installed on a brine pipe and has a heat exchange tube, a pair of expansion valves which are respectively installed on different refrigerant pipes, a second indoor heat exchanger which has a pair of heat exchange tubes to which the refrigerant pipes extending from the expansion valves are respectively connected, a pair of compressors which compress refrigerant having passed through the second indoor heat exchanger, and an indoor blower which is arranged adjacent to the first and second indoor heat exchangers; and

an outdoor module placed outside the base station, the outdoor module having a brine pump which is installed on the brine pipe extending from the first indoor heat exchanger, a pair of first and second outdoor heat exchangers which have heat exchange tubes to which the brine pipe extending from the brine pump and the brine pipe extending from the first indoor heat exchanger are connected in series, a pair of third and fourth outdoor heat exchangers which have heat exchange tubes to which the refrigerant pipes extending from the compressors and the refrigerant pipes extending from the expansion valves are fluidly connected, and an outdoor blower which is arranged adjacent to the first through fourth outdoor heat exchangers.

2. The air conditioning system according to claim 1 , wherein the indoor blower sequentially passes indoor air through the first and second indoor heat exchangers and supplies it to the communication equipment, and the outdoor blower sequentially passes outdoor air through the first and third outdoor heat exchangers and through the second and fourth outdoor heat exchangers and directs it to the atmosphere.

3. The air conditioning system according to claim 2 , wherein an indoor temperature sensor is installed inside the base station, an outdoor temperature sensor is installed outside the base station, and a brine temperature sensor is installed on a portion of the brine pipe which extends to the outdoor module after passing through the first indoor heat exchanger.

4. A method for controlling the air conditioning system according to claim 3 , comprising:

a first step of sensing indoor and outdoor temperatures of the base station and a brine temperature using the indoor and outdoor temperature sensors and the brine temperature sensor;

a second step of comparing the indoor temperature with a first reference temperature and interrupting operation of the entire air conditioning system when the indoor temperature is lower than the first reference temperature;

a third step of comparing the outdoor temperature with the brine temperature, actuating the first indoor heat exchanger and the first and second outdoor heat exchangers when the outdoor temperature is lower than the brine temperature, and interrupting operation of the first indoor heat exchanger and the first and second outdoor heat exchangers when the outdoor temperature is not lower than the brine temperature;

a fourth step of actuating the second and third outdoor heat exchangers when the indoor temperature is higher than a second reference temperature, and interrupting operation of the second and third outdoor heat exchangers when the indoor temperature is not higher than the second reference temperature; and

a fifth step of operating the fourth outdoor heat exchanger when the indoor temperature is higher than a third reference temperature, and interrupting operation of the fourth outdoor heat exchanger when the indoor temperature is not higher than the third reference temperature.

5. The method according to claim 4 , wherein the third step further comprises:

a third-first step of interrupting operation of the outdoor blower when the brine temperature is lower than a fourth reference temperature, and actuating the outdoor blower when the brine temperature is not lower than the fourth reference temperature.

6. The method according to claim 5 , wherein the third-first step further comprises:

a third-second step of interrupting operation of the outdoor blower when the brine temperature is not lower than the fourth reference temperature and is lower than a fifth reference temperature, and actuating the outdoor blower when the brine temperature is not lower than the fifth reference temperature.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2016
From: CHANG JO 21 CO., LTD.
To: SOLID VENTUS INC.
Reel/Frame 038919/0191 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2008
From: PARK, HEE TAE
To: CHANG JO 21 CO., LTD.
Reel/Frame 021350/0857 →
Priority Claims (1)
KR 10-2006-0011533 · Feb 7, 2006 · national
Continuity (1)
Related Publication 20090056370A1 · Mar 5, 2009