Cooling device, semiconductor manufacturing apparatus, and semiconductor manufacturing method
A cooling device includes a tank, a first path configured to circulate a liquid-phase refrigerant by a pump so as to extract the liquid-phase refrigerant from the tank, cool the liquid-phase refrigerant, and return the liquid-phase refrigerant to the tank, and a second path branched from the first path. The second path includes a heater configured to heat the liquid-phase refrigerant supplied from the first path, a throttle configured to decrease a pressure of the refrigerant heated by the heater, and a vaporizer configured to vaporize, by heat from a cooling target, at least part of the refrigerant having passed through the throttle, and the refrigerant having passed through the throttle being returned to the tank.
1 . A cooling device for use in semiconductor manufacturing,
a tank;
a first path including a pump and a heat exchanger, wherein a liquid-phase refrigerant is circulated through the first path by the pump so that the liquid-phase refrigerant is extracted from the tank and returned to the tank, the heat exchanger cooling the liquid-phase refrigerant in the first path;
a second path branched from the first path;
a detector configured to detect an internal pressure of the tank; and
a controller configured to control the heat exchanger based on an output from the detector,
wherein the second path includes a heater configured to heat the liquid-phase refrigerant supplied from the first path, a throttle configured to decrease a pressure of the refrigerant heated by the heater such that the pressure of the refrigerant approaches a saturated vapor pressure of the refrigerant, and a vaporizer configured to vaporize, by heat from a cooling target, at least part of the refrigerant having passed through the throttle, and the refrigerant having passed through the throttle being returned to the tank,
wherein a gas does not condense in the tank,
wherein a partial pressure of the gas in the tank is higher than a difference between a vapor pressure of the refrigerant returned to the tank and a vapor pressure of the refrigerant in the tank,
wherein the tank includes a member, disposed within, and separate from, walls of the tank, having a sectional area larger than a horizontal sectional area in the tank, and
wherein the member is arranged to contact a liquid-phase refrigerant in the tank and the refrigerant returned from the second path.
2 . The cooling device according to claim 1 , further comprising:
a temperature detector configured to detect a temperature of the refrigerant having passed through the throttle; and
a temperature controller configured to control the heater based on an output from the temperature detector.
3 . The cooling device according to claim 2 , wherein the temperature detector is arranged between the throttle and the vaporizer, and configured to detect the temperature of the refrigerant the pressure of which is decreased by the throttle, and
wherein the temperature controller is configured to control the heater such that the refrigerant the temperature of which is set to a target temperature enters the vaporizer.
4 . The cooling device according to claim 1 , wherein a branch point of the second path from the first path is arranged between the pump and the heat exchanger.
5 . The cooling device according to claim 4 , wherein the first path further includes a first throttle arranged between the branch point of the second path and the tank.
6 . The cooling device according to claim 1 , wherein a partial pressure of the gas is not lower than NPSH (Net Positive Suction Head) of the pump.
7 . The cooling device according to claim 1 , further comprising a heat pump configured to move heat discharged from the heat exchanger to the heater,
wherein the heater is configured to heat a liquid-phase refrigerant supplied from the first path by using heat provided from the heat pump.
8 . The cooling device according to claim 7 , wherein the heat pump is controlled based on an output from the temperature detector.
9 . The cooling device according to claim 1 , further comprising a heat pump configured to move heat discharged from the heat exchanger to the heater,
wherein the heater is configured to heat a liquid-phase refrigerant supplied from the first path by using heat provided from the heat pump, and
the heat pump is controlled based on an output from the temperature detector and an output from the detector.
10 . The cooling device according to claim 1 , wherein the refrigerant returned from the first path to the tank is returned to the tank so as to drop from above the member.
11 . The cooling device according to claim 1 , wherein the refrigerant returned from the first path to the tank is dropped or sprayed as a shower or a mist from above the tank.
12 . The cooling device according to claim 1 , further comprising a second heat exchanger configured to perform heat exchange between the refrigerant heated by the heater and a second cooling target.
13 . The cooling device according to claim 12 , wherein the refrigerant having passed through the second heat exchanger is returned to the tank.
14 . The cooling device according to claim 13 , further comprising a throttle arranged on a path between the second heat exchanger and the tank.
15 . A semiconductor manufacturing apparatus including a heat generating portion, comprising a cooling device defined in claim 1 ,
wherein the cooling device is configured to cool the heat generating portion serving as the cooling target.
16 . The semiconductor manufacturing apparatus according to claim 15 , wherein the semiconductor manufacturing apparatus is constituted as a pattern formation apparatus configured to form a pattern.
17 . A semiconductor manufacturing method comprising:
a step of processing a substrate by a semiconductor manufacturing apparatus defined in claim 15 ; and
a step of treating the substrate processed in the step.
18 . The cooling device according to claim 1 , wherein the throttle is configured to decrease the pressure of the refrigerant heated by the heater such that the refrigerant readily boils at the vaporizer.