Liquid cooling system with thermoeletric cooling module
Abstract
A liquid cooling system has a thermoelectric cooling module, a heat dissipating assembly, a water block and multiple flexible guide tubes with liquid flows inside. The thermoelectric cooling module has a cold surface and a hot surface. The water block has a contacting surface attached to a processor of a computer. The guide tubes are mounted between the thermoelectric cooling module, the heat dissipating assembly and the water block. With the thermoelectric cooling module, the liquid cooling system can cool a processor of computer hardware with high efficiency, and is able to dissipate extraordinary heat generated by the processor.
Claims
exact text as granted — not AI-modified1 . A liquid cooling system comprising
a cooling module having a cold surface, a hot surface, and two electrical wires; a cold plate being a hollow plate, wherein the cold plate has two joint pipes communicated with two opposite sides thereof, and a cold exchanging surface attached to the cold surface of the cooling module; a hot plate being a hollow plate, wherein the hot plate has two joint pipes communicated with two opposite sides thereof, and a hot exchanging surface attached to the hot surface of the cooling module; a pressure increasing device having two tubes for increasing pressure for fluid inside the tubes; a water block having
a receiving space formed therein; and
two joint heads and a contacting surface respectively disposed on an outside portion thereof; and
a heat dissipating assembly allowing to dissipate heat of the fluid flowing inside the heat dissipating assembly to lower the temperature of the fluid; wherein one of the tubes of the pressure increasing device connects with the joint pipe of the cold plate via a guide tube and the other joint pipe of the cold plate connects with the heat dissipating assembly via a guide tube; wherein the other tube of the pressure increasing device connects with one joint head of the water block and the other joint head of the block connects with one joint pipe of the hot plate via a guide tube; wherein the other joint pipe of the hot plate connects with the heat dissipating assembly via a guide tube.
2 . The liquid cooling system as claimed in claim 1 , wherein the heat dissipating assembly comprises
an outlet chamber and an inlet chamber being formed oppositely; two tubes being respectively formed on the inlet chamber and the outlet chamber; and a fin assembly having
a rear;
a plurality of plates being mounted securely between the outlet chamber and the inlet chamber in an interval and parallel to each other, each of the plurality of plate having a channel formed through the plate to communicate the outlet chamber and the inlet chamber; and
a plurality of fins being respectively mounted securely between the plates, each of the plurality of fin having a surface attached to the adjacent plates; and
a fan being mounted securely in the rear of the fin assembly.
3 . The liquid cooling system as claimed in claim 1 , wherein the guide tubes are made of rubber.
4 . The liquid cooling system as claimed in claim 1 , wherein the guide tubes are made of metallic,
5 . A liquid cooling system comprising
a cooling module connecting having a cold surface, a hot surface, and two electrical wires; a cold plate being a hollow plate, wherein the cold plate has two joint pipes communicated with two opposite sides thereof, and a cold exchanging surface attached to the cold surface of the cooling module; a hot plate being a hollow plate, wherein the hot plate has two joint pipes communicated with two opposite sides thereof, and a hot exchanging surface attached to the hot surface of the cooling module; a pressure increasing cooling device having a receiving space formed therein; and two joint heads and a contacting surface respectively disposed on an outside portion thereof allowing to increase pressure of fluid inside the tubes; and a heat dissipating assembly allowing to dissipate heat of the fluid flowing inside the heat dissipating assembly to lower the temperature of the fluid; wherein one of the tubes of the pressure increasing cooling device connects with the joint pipe of the cold plate via a guide tube and the other joint pipe of the cold plate connects with the heat dissipating assembly via a guide tube; wherein the other tube of the pressure increasing cooling device connects with the heat dissipating assembly via a guide tube.
6 . The liquid cooling system as claimed in claim 5 , wherein the heat dissipating assembly comprises
an outlet chamber and an inlet chamber being formed oppositely; two tubes being respectively formed on the inlet chamber and the outlet chamber; and a fin assembly having
a rear;
a plurality of plates being mounted securely between the outlet chamber and the inlet chamber in an interval and parallel to each other, each of the plurality of plate having a channel formed through the plate to communicate the outlet chamber and the inlet chamber; and
a plurality of fins being respectively mounted securely between the plates, each of the plurality of fin having a surface attached to the adjacent plates; and
a fan being mounted securely in the rear of the fin assembly.
7 . The liquid cooling system as claimed in claim 5 , wherein the guide tubes are made of rubber.
8 . The liquid cooling system as claimed in claim 5 , wherein the guide tubes are made of metallic.
9 . A liquid cooling system comprising
a cooling module having a cold surface and a hot surface; a cold plate being a hollow plate, wherein the cold plate has a cold exchanging surface attached to the cold surface of the cooling module; and a water block having
a receiving space formed therein; and
two joint heads and a contacting surface respectively disposed on an outside portion thereof; and
wherein one of the joint heads of the water block connects with one side of the cold plate via a guide tube and the other joint head of the water block connects with the other side of the cold plate via a guide tube.
10 . The liquid cooling system as claimed in claim 12 , wherein the guide tubes are made of rubber.
11 . The liquid cooling system as claimed in claim 12 , wherein the guide tubes arc made of metallic.
12 . A liquid cooling system comprising
a cooling module having a cold surface and a hot surface; a cold plate being a hollow plate, wherein the cold plate has a cold exchanging surface attached to the cold surface of the cooling module; and a pressure increasing cooling device having a receiving space formed therein; and two joint heads and a contacting surface respectively disposed on an outside portion thereof allowing to increase pressure of fluid inside the tubes; wherein one of the tubes of the pressure increasing cooling device connects with one side the cold plate via a guide tube and the other tube of the pressure increasing cooling device connects with the other side of the cold plate via a guide tube.
13 . The liquid cooling system as claimed in claim 12 , wherein the guide tubes are made of rubber.
14 . The liquid cooling system as claimed in claim 12 , wherein the guide tubes are made of metallic.
15 . A liquid cooling system comprising
a thermoelectric cooling module having
a hot surface; and
a cold surface attached with a cold plate having
two joint pipes connecting to each other via at least one guide tube.
16 . The liquid cooling system as claimed in claim 15 , wherein the guide tubes are made of rubber.
17 . The liquid cooling system as claimed in claim 15 , wherein the guide tubes are made of metallic.Join the waitlist — get patent alerts
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