IP Library Granted Patent US 8,667,810
Granted Patent B2
US 8,667,810 · App. 12/310,585 · Granted Mar 11, 2014

Air conditioning system for communication equipment

Inventor: Hee Tae Park (Yongin-si, KR)
Assignee: Chang Jo 21 Co., Ltd.
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Quick Facts
Patent No.
US 8,667,810
App. No.
12/310,585
Granted
Mar 11, 2014
Kind
B2
Abstract

An air conditioner for communication equipment is provided. The air conditioner includes an indoor module disposed at an indoor space of a base station having communication equipment and including an indoor heat exchanger and an indoor ventilator disposed closely to the indoor heat exchanger, an outdoor module disposed at an outside of the base station and including an outdoor ventilator, a brine cooling cycle including the indoor heat exchanger on a brine pipe, a brine pump, first and second outdoor brine heat exchanger, and first and second brine coolers, which are connected in a brine circulating direction, and a refrigerant cooling cycle including first and second expansion valves on a refrigerant pipe, the first and second brine coolers on the brine pipe, first and second compressors, first and second outdoor refrigerant heat exchangers, which are connected in a refrigerant circulating direction.

Claims (36)

1. An air conditioner for communication equipment, comprising:

an indoor module disposed at an indoor space of a base station having communication equipment and including an indoor heat exchanger and an indoor ventilator disposed closely to the indoor heat exchanger;

an outdoor module disposed at an outside of the base station and including an outdoor ventilator;

a brine cooling cycle including the indoor heat exchanger on a brine pipe, a brine pump, first and second outdoor brine heat exchanger, and first and second brine coolers, which are connected in a brine circulating direction; and

a refrigerant cooling cycle including first and second expansion valves on a refrigerant pipe, the first and second brine coolers on the brine pipe, first and second compressors, first and second outdoor refrigerant heat exchangers, which are connected in a refrigerant circulating direction,

wherein the first and second expansion valves are connected in parallel on the refrigerant pipe, and the first and second brine coolers are connected in parallel on the refrigerant pipe,

the first outdoor brine heat exchanger is disposed closely to the first outdoor refrigerant heat exchanger, and the second outdoor brine heat exchanger is disposed closely to the second outdoor refrigerant heat exchanger,

the outdoor ventilator is disposed between the first outdoor refrigerant heat exchanger and the second outdoor heat exchanger, and

the brine pump, the first and second brine coolers, the first and second expansion valves, and the first and second compressors are selectively included in one of the indoor module and the outdoor module.

2. The air conditioner of claim 1 , wherein the first and second outdoor brine heat exchangers are disposed in a direction to an outside of the outdoor module, the first and second outdoor refrigerant heat exchangers are disposed in a direction to an inside of the outdoor module, and the outdoor ventilator is disposed at a middle between the first and second outdoor refrigerant heat exchangers.

3. The air conditioner of claim 1 , wherein the first and second compressors are disposed at the refrigerant pipe between a branch point and a merge point in parallel;

the first and second outdoor refrigerant heat exchangers are connected in series or in parallel;

the first and second outdoor brine heat exchanger are connected in series or in parallel; and

the first and second brine coolers are disposed in series or in parallel on a brine pipe.

4. The air conditioner of claim 1 , wherein the first compressor is disposed at a lower course of a branch point and at a refrigerant pipe extending from an inlet side of the first outdoor refrigerant heat exchanger;

the second compressor is disposed at a lower course of the branch point and at a refrigerant pipe extending from an inlet side of the second output refrigerant heat exchanger;

the first and second output door brine heat exchangers are connected in series or parallel; and

the first and second brine coolers are connected in series or parallel on a brine pipe.

5. The air conditioner of claim 1 , wherein the first compressor is disposed at an upper course of a merge point and at a refrigerant pipe extending from an outlet side of the first brine cooler;

the second compressor is disposed at an upper course of the merge point and at a refrigerant pipe extending from an outlet side of the second brine cooler;

the first and second outdoor refrigerant heat exchangers are connected in series or in parallel;

the first and second outdoor brine heat exchangers are connected in series or in parallel; and

the first and second brine coolers are connected in series or in parallel on a brine pipe.

6. The air conditioner of claim 2 , wherein the first and second compressors are disposed at the refrigerant pipe between a branch point and a merge point in parallel;

the first and second outdoor refrigerant heat exchangers are connected in series or in parallel;

the first and second outdoor brine heat exchanger are connected in series or in parallel; and

the first and second brine coolers are disposed in series or in parallel on a brine pipe.

7. The air conditioner of claim 2 , wherein the first compressor is disposed at a lower course of a branch point and at a refrigerant pipe extending from an inlet side of the first outdoor refrigerant heat exchanger;

the second compressor is disposed at a lower course of the branch point and at a refrigerant pipe extending from an inlet side of the second output refrigerant heat exchanger;

the first and second output door brine heat exchangers are connected in series or parallel; and

the first and second brine coolers are connected in series or parallel on a brine pipe.

8. The air conditioner of claim 2 , wherein the first compressor is disposed at an upper course of a merge point and at a refrigerant pipe extending from an outlet side of the first brine cooler;

the second compressor is disposed at an upper course of the merge point and at a refrigerant pipe extending from an outlet side of the second brine cooler;

the first and second outdoor refrigerant heat exchangers are connected in series or in parallel;

the first and second outdoor brine heat exchangers are connected in series or in parallel; and

the first and second brine coolers are connected in series or in parallel on a brine pipe.

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 Feb 27, 2009
From: PARK, HEE TAE
To: CHANG JO 21 CO., LTD.
Reel/Frame 022363/0336 →
Priority Claims (1)
KR 10-2006-0084180 · Sep 1, 2006 · national
Continuity (1)
Related Publication 20100186442A1 · Jul 29, 2010