Claims
- 1. An information processing apparatus in which heat of a heat-generating portion including at least a CPU is cooled by a cooling liquid, comprising:
a circulating portion for circulating said cooling liquid between a heat-absorbing portion mounted on said heat-generating portion and a heat-radiating portion for radiating heat to the outside of said apparatus; a temperature measuring portion for measuring temperature of a circulation path of said cooling liquid; and a temperature control portion for controlling operation of said circulating portion to set the temperature of said heat-generating portion to a predetermined value on the basis of temperature information obtained from said temperature measuring portion.
- 2. An information processing apparatus according to claim 1, wherein:
said circulating portion includes a cooling liquid pump having a flow rate increasing in proportion to a voltage value of supply electric power or in proportion to a frequency of supply electric power; and said temperature control portion sets length of at least one of an applied period of said supply electric power and a stop period of said supply electric power and applies said supply electric power to said pump periodically on the basis of said setting to thereby control the flow rate of said pump.
- 3. An information processing apparatus according to claim 1, wherein:
said circulating portion, said temperature measuring portion and said temperature control portion can be operated even after said CPU stops its operation; and said temperature control portion makes said cooling liquid continue to circulate until the temperature of said heat-generating portion becomes not higher than a predetermined value even after the CPU stops its operation.
- 4. An information processing apparatus according to claim 1, wherein said temperature measuring portion measures any one of the temperature of said heat-absorbing portion mounted on said heat-generating portion, the temperature of said heat-radiating portion and the temperature of said cooling liquid pump.
- 5. A cooling control method of an information processing apparatus by circulating a cooling liquid to thereby cool a heat-generating portion including at least a CPU, comprising the steps of:
measuring the temperature of said cooling liquid represented by a circulation path; calculating an applied period and a stop period of supply electric power periodically applied to a cooling-liquid-circulating pump in accordance with the measured temperature of said cooling liquid; and controlling the flow rate of the circulated cooling liquid by operating said pump on the basis of said applied period and said stop period.
- 6. A cooling control method according to claim 5, further comprising the steps of:
detecting whether the operation of said CPU stops or not; and continuing the circulation of said cooling liquid until setting of the temperature of said heat-generating portion becomes not higher than a predetermined value even after stoppage of the operation of said CPU.
- 7. A cooling control method according to claim 5, wherein the step of measuring the temperature of said cooling liquid is performed by measuring any one of the temperature of a heat-absorbing portion mounted on said heat-generating portion, the temperature of a heat-radiating portion and the temperature of said cooling liquid pump.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-385051 |
Dec 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present invention is related to (1) U.S. patent application Ser. No. 09/(Hitachi docket No. 340002019US01) filed Mar. 5, 2001 entitled “METHOD OF CONTROLLING COOLING SYSTEM FOR A PERSONAL COMPUTER AND PERSONAL COMPUTER” claiming the Convention Priority based on Japanese Patent Application No. 2000-385050 and (2) U.S. patent application Ser. No. 09/(Hitachi docket No. 340002019US02) filed Mar. 5, 2001 entitled “METHOD OF CONTROLLING COOLING SYSTEM FOR A PERSONAL COMPUTER AND PERSONAL COMPUTER” claiming the Convention Priority based on Japanese Patent Application No. 2000-385050.