CN1991670B - Method for solving heat dissipation problem of computer system and modular computer system - Google Patents

Method for solving heat dissipation problem of computer system and modular computer system Download PDF

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Publication number
CN1991670B
CN1991670B CN200510023056XA CN200510023056A CN1991670B CN 1991670 B CN1991670 B CN 1991670B CN 200510023056X A CN200510023056X A CN 200510023056XA CN 200510023056 A CN200510023056 A CN 200510023056A CN 1991670 B CN1991670 B CN 1991670B
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China
Prior art keywords
micro
power supply
computer system
disk drive
winchester disk
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Expired - Fee Related
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CN200510023056XA
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Chinese (zh)
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CN1991670A (en
Inventor
足达信博
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Giga Byte Technology Co Ltd
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Giga Byte Technology Co Ltd
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Priority to CN200510023056XA priority Critical patent/CN1991670B/en
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Abstract

The invention discloses a modular computer system that consists of several independent devices, and the typical combination includes a micro-micro host computer, a power supply, a CD drive, a hard disc, and a TV signal handler. The independent devices has independent source, and solves the diffusion problem by oneself, and the heating can not be centralized in the same space, for example the micro-micro host computer. So the micro-micro host computer in the modular computer system doesn't need fans when high running, and the noise produced by the fan can be reduced greatly.

Description

Solve the method and the modular computer system of heat dissipation problem of computer system
Technical field
The present invention relates to the technical field of the employed computer system of personal computer, particularly relate to the problem that how to solve computer system heat radiation and noise.
Background technology
Traditional computer system consists essentially of a main case and is arranged on this main case interior a motherboard, a power supply unit, a CD-ROM drive and a Winchester disk drive.The same main case of this usefulness holds several ways of device that all can give birth to heat, uses till today and without any change always.The problem of this way is that the volume of this main case is too big, causes the inconvenience on the ornaments.The more important thing is, CPU on this motherboard and master, the heat that passive component produced, the heat that this power supply unit produced, the heat that this CD-ROM drive produced, and the heat that this Winchester disk drive produced all concentrate in this main case and cause temperature too high.Therefore, this traditional computer system must solve the too high problem of temperature by running up of a plurality of fans, and incident is the noise problem that produces because fan runs up, and this problem does not have good mode to solve for a long time.
Summary of the invention
The object of the present invention is to provide a kind of method of heat dissipation problem of computer system and modular computer system of implementation method of solving, solve in the above-mentioned known technology problem of heat radiation and noise.
To achieve these goals, the invention provides a kind of modular computer system, comprising:
One micro-mainframe computer has at least one group of interface connector cohort and at least one supply socket that is emerging in the outside, includes a CD interface connector and a hard-disk interface connector in those interface connector cohorts at least;
One power supply unit is powered to this micro-mainframe computer by connecting this supply socket;
One CD-ROM drive is configured to be connected to the CD interface connector of this micro-mainframe computer by a CD interface connecting line, and can connects one first power supply by one first power lead; And
One Winchester disk drive is configured to be connected to by a hard-disk interface connecting line hard-disk interface connector of this micro-mainframe computer, and can connects a second source by a second source line;
Also comprise a processing television signals machine, this processing television signals machine is configured to and can connects a display by a TV signal connecting line, and can connect one the 3rd power supply by one the 3rd power lead.
Above-mentioned modular computer system, wherein, this micro-mainframe computer, CD-ROM drive and Winchester disk drive three's width and identical length are together.
Above-mentioned modular computer system, wherein, this first power supply and second source are all obtained from this power supply unit by connecting this micro-mainframe computer.
Above-mentioned modular computer system, wherein, this Winchester disk drive has a lockset, and this lockset is provided under the unlocking condition and allows this Winchester disk drive by access, and this Winchester disk drive of refusal is by access under blocking.
Above-mentioned modular computer system, wherein, the width of this micro-mainframe computer, CD-ROM drive, Winchester disk drive and this processing television signals machine and identical length are together.
Above-mentioned modular computer system, wherein, this first power supply, second source, and the 3rd power supply all obtain from this power supply unit by connecting this micro-mainframe computer.
Above-mentioned modular computer system, wherein, this Winchester disk drive has a lockset, and this lockset is provided under the unlocking condition and allows this Winchester disk drive by access, and this Winchester disk drive of refusal is by access under blocking
To achieve these goals, the invention provides a kind of method that solves heat dissipation problem of computer system, comprising:
Produce corresponding several temperature ranges of formulating of situation according to this computer system thermal source;
According to these temperature ranges, this computer system correspondence is distinguished into several can interconnective autonomous device.For example interconnect and form this modular computer system by a micro-mainframe computer, a power supply unit, a CD-ROM drive, a Winchester disk drive and a processing television signals machine; And
Make each autonomous device respectively have the ability that independently obtains power supply.This represents that each autonomous device all has the power supply of oneself.These power supplys can be obtained from civil power, also can obtain by connecting wherein an autonomous device.For example this power supply unit is powered to this micro-mainframe computer, and this CD-ROM drive, Winchester disk drive and processing television signals machine can be obtained needed power supply from civil power, also can obtain needed power supply from this power supply unit by connecting this micro-mainframe computer.
In any case because this micro-mainframe computer, power supply unit, CD-ROM drive, Winchester disk drive and processing television signals machine all are autonomous devices, the heat that they produced all is to be solved by oneself, can't focus on this micro-mainframe computer inside.Therefore, the fan in this micro-mainframe computer does not need frequent high-speed rotation just can disperse the own heat that is produced, and this makes and is significantly reduced by the noise that fan produced.
In addition, because this method can further make the length of each autonomous device and width all identical, that is to say that the length of this micro-mainframe computer, power supply unit, CD-ROM drive, Winchester disk drive and a processing television signals machine and width all are the same.Therefore, in can interconnective scope, they can be looked the scene at an easy rate or look user's demand and put in the optional position.
In addition, the present invention also provides a kind of Winchester disk drive with lockset, and this lockset is provided under the unlocking condition and allows this Winchester disk drive by access, and this Winchester disk drive of refusal is by access under blocking.Therefore, this Winchester disk drive has the anti-theft feature of saving from damage.
Describe the present invention below in conjunction with the drawings and specific embodiments, but not as a limitation of the invention.
Description of drawings
Fig. 1 is a preferred embodiment of the present invention synoptic diagram;
Fig. 2 is the different ornaments mode synoptic diagram of this preferred embodiment of the present invention with Fig. 3.
Wherein, Reference numeral:
1 modular computer system, 2 micro-mainframe computers
3 power supply units, 30 power leads
4 CD-ROM drives, 40 CD interface connecting lines
41 first power leads
5 Winchester disk drive, 50 hard-disk interface connecting lines
51 second source lines, 52 locksets
53 keys
6 processing television signals machines, 60 TV signal connecting lines
61 the 3rd power leads
Embodiment
Figure 1 shows that a preferred embodiment of the present invention, this preferred embodiment is for realizing an exemplary of the invention described above method.Wherein point out a modular computer system 1, comprise a micro-mainframe computer 2, a power supply unit 3, a CD-ROM drive 4, a Winchester disk drive 5 and a processing television signals machine 6.Wherein each all is an autonomous device, and they not only can interconnect by some connecting lines forms this modular computer system 1, and has the ability that independently obtains power supply separately.In addition, the length of each autonomous device and width also all are configured to the same.
Specifically, these micro-mainframe computer 2 inside have a motherboard, a CPU, reach a heat abstractor, this heat abstractor comprises a heating radiator and a fan, and have the interface connector cohort and the supply socket that are emerging in the outside on this motherboard, these assemblies are identical with traditional main frame, for the purpose of simplifying the description, do not illustrate among the figure, repeat no more yet at this.Wherein more specifically, at least include a CD interface connector and a hard-disk interface connector in this interface connector cohort, this the two can be selected from common USB (universal serial bus) (USB) connector, serial ATA (SATA) connector, (wherein the English spelling of ATA is " Advanced Technology Attachment " to Parallel ATA (PATA) connector, implication is " an advanced techniques attachment device "), small computer system interface (Small Computer System Interface, SCSI) connector, and the hard disk drive of integrated manipulator and disk body (IDE) connector.
Note that different with traditional computer system to be, these micro-mainframe computer 2 inner not power supply unit, CD-ROM drive and Winchester disk drive, therefore, what past, the three produced thus is high hot, does not exist in these micro-mainframe computer 2 inside.This means, the inner only remaining master, the heat that passive component produced on this CPU and this motherboard of this micro-mainframe computer 2, traditional relatively computer system, these heat are less, are easy to be loose by this heat abstractor remove.
Point out that in Fig. 1 this power supply unit 3 is manufactured with the kenel of the cable 30 of AC/DC changeover switch, make it and to power by a power lead 30 these supply sockets of connection to this micro-mainframe computer.Such way has realized the idea of a power supply unit from computer system separation, makes these micro-mainframe computer 2 inside not have heat and the noise that produces because of power supply unit.
Have again, point out also that in Fig. 1 this CD-ROM drive 4 is configured to be connected to by a CD interface connecting line 40 the CD interface connector of this micro-mainframe computer 2, and can connect one first power supply by one first power lead 41.Such way has realized the idea of a CD-ROM drive from computer system separation, makes these micro-mainframe computer 2 inside not have heat and the noise that produces because of CD-ROM drive.
In addition, point out also that in Fig. 1 this Winchester disk drive 5 is configured to be connected to by a hard-disk interface connecting line 50 the hard-disk interface connector of this micro-mainframe computer 2, and can connect a second source by a second source line 51.Such way has realized the idea of a Winchester disk drive from computer system separation, makes these micro-mainframe computer 2 inside not have heat and the noise that produces because of Winchester disk drive.More specifically, this Winchester disk drive 5 also has a lockset 52, and this lockset 52 can be a kind of key lock, can unblank or locking by a key 53; This lockset 52 also can be a kind of combination lock, can be unblanked by a password.In any case, this lockset 52 is provided in and allows this Winchester disk drive 5 by access under the unlocking condition, and under blocking, refuse this Winchester disk drive 5 by access, one of this specific practice that is provided with is to make this Winchester disk drive 5 change its electric state along with the open and close lock machine tool action of this lockset 52, for example opens circuit or short circuit.And this electric state can determine whether this Winchester disk drive 5 can be by access.
In addition, point out also that in Fig. 1 this processing television signals machine 6 is configured to connect a display (not shown) by a TV signal connecting line 60, and can connect one the 3rd power supply by one the 3rd power lead 61.Such way makes to be used for the use of can starting shooting separately of this processing television signals machine 6 this display is delivered in the TV signal conversion, makes this display have the function of playing TV programme.The more important thing is, this processing television signals machine 6 be the position outside this micro-mainframe computer 2, therefore, these micro-mainframe computer 2 inside do not have by this processing television signals machine 6 and the heat and the noise that produce.
What need particularly point out is, the first above-mentioned power supply, second source, and the 3rd power supply can obtain from civil power (120V or 220V), also can obtain from this power supply unit 3 by connecting this micro-mainframe computer 2.
From above-mentioned explanation, can understand, this micro-mainframe computer 2, power supply unit 3, CD-ROM drive 4, Winchester disk drive 5, and processing television signals machine 6 all is an independent device, they can be optionally and all or part of interconnecting formed a modular computer system, the function of this modular computer system and traditional computer system can provide Computing function or service to the user equally, maximum difference be in, the heat that each autonomous device produced in this modular computer system is all solved by oneself, can be as traditional main frame, CD-ROM drive, Winchester disk drive and the heat that power supply unit produced all concentrate in the same main case of computer.This expression, has only the master on this CPU and this motherboard, the heat that passive component produced in the micro-mainframe computer 2 in this modular computer system, the fan of this micro-mainframe computer 2 does not need frequent high-speed rotation just can loose except that these a spot of heat, therefore, just can effectively reduce by the noise that fan produced.The heat that is produced as for this power supply unit 3, CD-ROM drive 4, Winchester disk drive 5 and processing television signals machine 6 all is easy to loss voluntarily all far below this micro-mainframe computer 2.The heat dissipation problem that this means this modular computer system is less with respect to conventional computer system and solves easily.
Modular computer system shown in Fig. 1 is to be stacked into erectility by this micro-mainframe computer 2, power supply unit 3, CD-ROM drive 4, Winchester disk drive 5 and processing television signals machine 6, the state that it is equivalent to conventional computer system when uprightly putting.Then show this micro-mainframe computer 2, power supply unit 3, CD-ROM drive 4, Winchester disk drive 5 and 6 liang of twenty percents of processing television signals machine among Fig. 2 repeatedly side by side, the state when it is equivalent to that conventional computer system is horizontal puts.Then show this micro-mainframe computer 2, power supply unit 3, CD-ROM drive 4, Winchester disk drive 5 and processing television signals machine 6 side by side state one by one among Fig. 3.These accompanying drawings have been pointed out this micro-mainframe computer 2, power supply unit 3, CD-ROM drive 4, Winchester disk drive 5 and processing television signals machine 6 in can interconnective scope, can look the scene or look user's demand and put at an arbitrary position.
Certainly; the present invention also can have other various embodiments; under the situation that does not deviate from spirit of the present invention and essence thereof; those of ordinary skill in the art can make various corresponding changes and distortion according to the present invention, but these corresponding changes and distortion all should belong to the protection domain of the appended claim of the present invention.

Claims (7)

1. a modular computer system is characterized in that, comprising:
One micro-mainframe computer has at least one group of interface connector cohort and at least one supply socket that is emerging in the outside, includes a CD interface connector and a hard-disk interface connector in those interface connector cohorts at least;
One power supply unit is powered to this micro-mainframe computer by connecting this supply socket;
One CD-ROM drive is configured to be connected to the CD interface connector of this micro-mainframe computer by a CD interface connecting line, and can connects one first power supply by one first power lead;
One Winchester disk drive is configured to be connected to by a hard-disk interface connecting line hard-disk interface connector of this micro-mainframe computer, and can connects a second source by a second source line; And
One processing television signals machine, this processing television signals machine are configured to and can connect a display by a TV signal connecting line, and can connect one the 3rd power supply by one the 3rd power lead, with this televisor processor of independent use;
This first power supply, second source, the 3rd power supply are obtained from civil power.
2. modular computer system according to claim 1 is characterized in that, this micro-mainframe computer, CD-ROM drive and Winchester disk drive three's width and identical length are together.
3. modular computer system according to claim 2 is characterized in that, this first power supply and second source are all obtained from this power supply unit by connecting this micro-mainframe computer.
4. according to claim 1,2 or 3 described modular computer systems, it is characterized in that this Winchester disk drive has a lockset, and this lockset is provided under the unlocking condition and allows this Winchester disk drive by access, this Winchester disk drive of refusal is by access under blocking.
5. modular computer system according to claim 1 is characterized in that, the width of this micro-mainframe computer, CD-ROM drive, Winchester disk drive and this processing television signals machine and identical length are together.
6. modular computer system according to claim 5 is characterized in that, this first power supply, second source, and the 3rd power supply all obtain from this power supply unit by connecting this micro-mainframe computer.
7. according to claim 1,5 or 6 described modular computer systems, it is characterized in that this Winchester disk drive has a lockset, and this lockset is provided under the unlocking condition and allows this Winchester disk drive by access, this Winchester disk drive of refusal is by access under blocking.
CN200510023056XA 2005-12-28 2005-12-28 Method for solving heat dissipation problem of computer system and modular computer system Expired - Fee Related CN1991670B (en)

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Application Number Priority Date Filing Date Title
CN200510023056XA CN1991670B (en) 2005-12-28 2005-12-28 Method for solving heat dissipation problem of computer system and modular computer system

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CN1991670A CN1991670A (en) 2007-07-04
CN1991670B true CN1991670B (en) 2010-10-06

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5227957A (en) * 1992-05-14 1993-07-13 Deters John B Modular computer system with passive backplane
US5602721A (en) * 1995-12-22 1997-02-11 Tandem Computers Expandable modular computer system
US20030007321A1 (en) * 2001-07-03 2003-01-09 Dayley J. Don Modular processor based apparatus
WO2004015554A1 (en) * 2002-08-12 2004-02-19 Jones John R Jr Modular computer system and components therefor
US6751094B2 (en) * 2002-05-14 2004-06-15 Dell Products L.P. Computer system cooling using temperature monitoring

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5227957A (en) * 1992-05-14 1993-07-13 Deters John B Modular computer system with passive backplane
US5602721A (en) * 1995-12-22 1997-02-11 Tandem Computers Expandable modular computer system
US20030007321A1 (en) * 2001-07-03 2003-01-09 Dayley J. Don Modular processor based apparatus
US6751094B2 (en) * 2002-05-14 2004-06-15 Dell Products L.P. Computer system cooling using temperature monitoring
WO2004015554A1 (en) * 2002-08-12 2004-02-19 Jones John R Jr Modular computer system and components therefor
US20040184242A1 (en) * 2002-08-12 2004-09-23 Jones John R Modular computer system and components therefor

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
US 20030007321 A1,全文.

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