CN101529369A - Compact solid state drive and processor assembly - Google Patents

Compact solid state drive and processor assembly Download PDF

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Publication number
CN101529369A
CN101529369A CNA2007800384796A CN200780038479A CN101529369A CN 101529369 A CN101529369 A CN 101529369A CN A2007800384796 A CNA2007800384796 A CN A2007800384796A CN 200780038479 A CN200780038479 A CN 200780038479A CN 101529369 A CN101529369 A CN 101529369A
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mentioned
circuit board
state drive
processor
pcb
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CNA2007800384796A
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Chinese (zh)
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O·特泽尔
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Milsys Ltd
Western Digital Israel Ltd
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Milsys Ltd
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Abstract

A hardware assembly of a non-volatile solid state drive and a processor is made more compact by eliminating elements previously associated with such assemblies. For embodiments implementing a SATA cable to electrically connect the solid state drive and processor, the SATA cable directly connects the two elements without implementing intervening bulky SATA connectors. For embodiments implementing a printed circuit board for mounting the solid state drive and processor, the SATA cable itself may be eliminated by replacing it with a hardwired signal path on the printed circuit board. These compact hardware assemblies are manufactured by hardwiring the signal path to the solid state drive at a SATA interface and hardwiring the same signal path to the processor also such that the hardwired signal path electrically connects the solid state drive to the processor.

Description

Compact solid state drive and processor module
Technical background
Because to the widespread demand of portability, electronic product is redesigned the lighter packing of Cheng Gengxiao always.Such electronic product is kneetop computer, PDA(Personal Digital Assistant) and multimedia player for example.Even do not have the bigger product of daily demand for portability, desktop computer for example still exists the demand of littler and lighter packing.
Some electronic product has wishes that not too size dwindles the parts above certain limit.For example the display of PC and keyboard are difficult to use if its size dwindles will become too much.On the contrary, do not causing that under the prerequisite that the user is caused same inconvenience, electrical components inside is dwindled usually as much as possible.
A trend that reduces hardware size stems from the progress of memory technology.A concrete example is the use of solid state drive (SSD), and solid state drive (SSD) also is known as " solid-state disk " sometimes to substitute bigger more traditional hard disk drive (HDD).What example was relevant therewith is the use that storer is connected to the SATA cable of processor.The SATA cable replacement more traditional and bigger ATA cable.(term " SATA " is the abbreviation of " serial ATA ", and " ATA " is the abbreviation of " advanced techniques attachment device ".SATA and ATA are generally used for being connected the component of computing machine.)
Fig. 1 has provided the nextport hardware component NextPort 10 of typical existing technology, comprises the non-volatile solid state drive 12 that can be electrically connected to processor 14, the CPU (central processing unit) (CPU) of these processor 14 usable as personal computers.Solid-state drive 12 has SATA interface 15.Solid-state drive 12 and processor 14 are assemblied on the printed circuit board (PCB) 16, and SATA cable 18 is electrically connected to processor 14 by SATA interface 15 with solid-state drive 12.
SATA cable 18 comprises a SATA cut cable 18a and the 2nd SATA cut cable 18b.The one SATA cut cable is electrically connected to SATA connector 20a with the SATA interface 15 of solid-state drive 12, and the 2nd SATA cut cable 18b is electrically connected to processor 14 the SATA connector 20b that is complementary.SATA connector 20a and SATA connector 20b couple together and form from solid-state drive 12 to processor 14 electrical signal path.
If solid-state drive 12 breaks down, the solid-state drive of having upgraded is perhaps arranged, solid-state drive 12 can be disconnected from processor 14 and connect and remove from nextport hardware component NextPort 10.In order to disconnect the connection of solid-state drive 12 from processor 14, SATA connector 20a disconnects mutually with SATA connector 20b and being connected, and removes solid-state drive 12 from printed circuit board (PCB) 16.Then, the solid-state drive of replacing is assemblied on the printed circuit board (PCB) 16.The solid-state drive of replacing has the SATA cut cable, and its connector is connected to SATA connector 20b and is electrically connected to processor 14 with the solid-state drive that will replace.
In the component of nextport hardware component NextPort 10, SATA connector 20a, 20b are bigger.Like this, consider the trend of the electronic product that design is compacter, impel the more compact SATA connector of some hardware design Shi Kaifa.But, not clearly do not damaging its function and meeting under the prerequisite of SATA standard, the size of SATA connector can be reduced to which kind of degree.
Summary of the invention
The present invention proposes the method for the nextport hardware component NextPort of more compact solid-state drive of a kind of design and processor.Different with the SATA connector that exploitation is compacter, this method has been removed the SATA connector from nextport hardware component NextPort, consequently, compare with merely dwindling SATA connector size, has saved bigger space.Some embodiments of the present invention comprise printed circuit board (PCB), have removed the SATA cable in some in these embodiments.The SATA cable is printed power path substitute on the circuit board to save bigger space.
That is, although the reaction that small hardware system requirements are more made is to design littler parts traditionally, reaction of the present invention then is that parts are removed.With regard to the inventor's understanding, never exploitation was carried out in this kind improvement of the nextport hardware component NextPort of solid-state drive and processor before this in the prior art, this perhaps considers for the tradition to the reservation of the selection of replacing the defect driven device.Seem to have ignored by the shortening between the operating period of growing and many electronic equipments of the mean lifetime of the solid-state drive that technical development caused that continues.That is, although product operate as normal still, owing to more complicated product has been arranged, this product often is replaced.Like this, the interchangeability of sacrifice mems is worth to exchange nextport hardware component NextPort of the present invention dwindling on space requirement for.
The present invention may be implemented as different nextport hardware component NextPorts and different manufacture methods thereof.Nextport hardware component NextPort has non-volatile solid state drive, processor separately and solid-state drive is electrically connected to the signal path of the hard wire of processor with the SATA interface.Realization " signal path of hard wire " means in the signal path that solid-state drive is connected to processor does not use socket, plug, jack etc.The method of manufacturing nextport hardware component NextPort of the present invention comprises by the SATA interface signal path of hard wire is hardwired to solid-state drive and this signal path is hardwired to processor, makes the signal path of hard wire that solid-state drive is electrically connected to processor.
The hard wire signal path can comprise by above-mentioned SATA interface and is connected directly to solid-state drive, processor or the SATA cable of the two.Be not connected directly in some embodiment of solid-state drive and processor at the SATA cable, nextport hardware component NextPort has been implemented printed circuit board (PCB).
In the embodiment of having implemented printed circuit board (PCB), solid-state drive, processor or the two are all assembled thereon.Be not connected directly to the SATA cable if solid-state drive, processor or the two all are assemblied on the printed circuit board (PCB), the signal path of hard wire comprises the printed circuit path on the printed circuit board (PCB).Printed circuit path can be the power path that solid-state drive and/or processor be may be operably coupled to the SATA cable.In the embodiment that substitutes, solid-state drive is assemblied on the different printed circuit board (PCB)s with processor.
In some embodiments of the present invention, provide NAND type flash memory device as solid-state drive.Can be to many variations of carrying out of embodiment, below example embodiment is elaborated with reference to accompanying drawing.Brief description of drawings is as follows.
Description of drawings
Below in claims, describe the present invention, to the understanding of these claims based on the explanation that comprises the following drawings, wherein:
Fig. 1 has provided the nextport hardware component NextPort that comprises bulky SATA cable connector in the prior art.
Fig. 2 has provided the embodiments of the present invention of having removed the SATA cable connector.
Fig. 3 has provided the alternate embodiments that comprises two circuit boards of the present invention.
Fig. 4 has provided another embodiment that is printed on two power paths on the circuit board that comprises of the present invention.
Fig. 5 has provided another alternate embodiments that is printed on two power paths on the circuit board that comprises of the present invention.
Fig. 6 has provided another embodiment of having removed the SATA cable from nextport hardware component NextPort of the present invention.
Embodiment
In conjunction with detailed description, can understand above the present invention that sum up and that be defined by the following claims better to embodiments of the present invention.This explanation is not intended to limit the scope of claim, but for the invention provides example.At first explanation is the embodiment of nextport hardware component NextPort.Be the embodiment of making the method for nextport hardware component NextPort subsequently.
Fig. 2 has provided an embodiment of the invention, and wherein nextport hardware component NextPort comprises the non-volatile solid state drive 24 that is electrically connected to processor 26.Solid-state drive 24 can be NAND type flash memory device, and processor 26 can be the CPU (central processing unit) (CPU) of PC.Solid-state drive 24 and processor 26 are assemblied on the printed circuit board (PCB) 28.
Solid-state drive 24 and processor 26 utilize SATA cable 30 to be electrically connected, and do not use the bulky SATA cable connector of prior art.SATA cable 30 directly is connected by SATA interface 32 with solid-state drive 24 and directly is connected to form the signal path of hard wire with processor 26.That is, the continuous electrical connection that extends to processor 26 from the SATA interface of solid-state drive 24 has replaced comprising a plurality of power paths that press together with " discontinuous " of the metal lead wire of keeping the separation that electrically contacts.This power path does not have socket, plug and socket etc., so nextport hardware component NextPort 22 is simple more, cheap and compact.
Although this embodiment comprises printed circuit board (PCB), be clear that very therefore the present invention is not restricted.The embodiment that does not comprise printed circuit board (PCB) in nextport hardware component NextPort also comprises within the scope of the present invention fully.
Fig. 3 has provided another embodiment of the invention, wherein has the circuit board of two separation rather than one.In nextport hardware component NextPort 34, solid-state drive 36 is assemblied on first printed circuit board (PCB) 38, and processor 40 is assemblied on second printed circuit board (PCB) 42.Solid-state drive 36 and processor 40 utilize SATA cable 44 to be electrically connected.SATA cable 44 directly is connected by SATA interface 46 with solid-state drive 36 and directly is connected to form the signal path of hard wire with processor 40.Present embodiment is useful to such system: in this system, when allowing the extra circuit board that is parallel to existing circuit board, require to reduce the planar dimension of printed circuit board (PCB).
Fig. 4 has provided another alternate embodiments of the present invention that comprises power path on two circuit boards.In nextport hardware component NextPort 48, solid-state drive 50 is assemblied on first printed circuit board (PCB) 52, and processor 54 is assemblied on second printed circuit board (PCB) 56.SATA cable 58 forms the part of the signal path of the hard wire that connects solid-state drive 50 and processor 54.But different from the embodiment described above, solid-state drive 50 all directly is not connected with the SATA cable with processor 54.
Alternatively, SATA cable 58 is hardwired to printed circuit board (PCB) 52 at first end 60 places, is hardwired to second printed circuit board (PCB) 56 at the second end 62 places.Power path 64 on first printed circuit board (PCB) 52 may be operably coupled to solid-state drive 50 at SATA interface 66 places the second end 62 that power path 70 on first end 60, the second printed circuit board (PCB)s 56 of SATA cable 58 may be operably coupled to processor 54 on SATA cable 58.
The present invention with the power path of printed circuit board (PCB) be called plate " on ", but the use of this term is not intended to get rid of power path physically at the upper surface of plate and the embodiment between the lower surface.Term " on " only use for simple and clear purpose, narrate " last or interior " in to the explanation of each embodiment, to substitute loaded down with trivial detailsly.Accompanying drawing for the sake of clarity usually shows path situation onboard, and is not in order to distinguish mutually with the embodiment with embedded electrical paths.
In the embodiment of Fig. 4, power path can comprise the conductive material that is printed on each printed circuit board (PCB).Utilize present embodiment, the SATA cable can connect near the edge of printed circuit board (PCB), and solid-state drive, processor or the two can be placed away from the edge.
Fig. 5 has provided another embodiment that is printed on two power paths on the circuit board that comprises of the present invention.In nextport hardware component NextPort 72, the signal path of hard wire connects solid-state drive 74 and processor 76, and the two all is assemblied on the printed circuit board (PCB) 78.The signal path of hard wire comprises first power path 80, SATA cable 82 and second circuit footpath 84.First and second power paths 80,84 can be the conductive materials that is printed on the printed circuit board (PCB) 78.First power path 80 may be operably coupled to the first end 88 of SATA cable 82 with solid-state drive 74 by SATA interface 86, and second circuit footpath 84 the second ends 90 with SATA cable 82 may be operably coupled to processor 54.
Fig. 6 has provided another embodiment of having removed the SATA cable from nextport hardware component NextPort of the present invention.In nextport hardware component NextPort 92, the signal path of hard wire connects solid-state drive 94 and processor 96, and the two all is assemblied on the printed circuit board (PCB) 98.The signal path of hard wire comprises it can being the power path 100 that is printed on the conductive material on the printed circuit board (PCB) 98.In the signal path of this hard wire, there is not the SATA cable.The first end 102 of power path 100 may be operably coupled to solid-state drive 94 at SATA interface 104 places, and the second end 106 of power path 100 may be operably coupled to processor 96.Because of power path less than the SATA cable, nextport hardware component NextPort 92 has further reduced space requirement of the present invention.
Above-mentioned nextport hardware component NextPort is useful for the undersized kneetop computer of needs.But the out of Memory processor can be benefited from the saving in this space equally.For example, wish that equally desktop personal computer is little, even if on daily demand, need not portable.Nextport hardware component NextPort of the present invention can also be implemented in personal digital assistant (PDA), phone and the portable multimedia player.
The present invention can also be embodied as the method for making nextport hardware component NextPort.This way comprises the steps: signal path is hardwired to non-volatile solid state drive and this signal path is hardwired to processor by the SATA interface, makes the signal path of hard wire that solid-state drive is electrically connected to processor.These hard wire operations can be undertaken by any order.The step that hardwires the signal path to non-volatile solid state drive can be undertaken by the SATA cable is directly hardwired to solid-state drive, and the step that hardwires the signal path to processor can be undertaken by the SATA cable is directly hardwired to processor.The SATA cable can be directly hardwired to solid-state drive and processor the two.
The method of making nextport hardware component NextPort can comprise solid-state drive, processor or the two are assemblied in step on the printed circuit board (PCB).An end or two ends of SATA cable can be hardwired to printed circuit board (PCB).The end that is hardwired to the SATA cable of printed circuit board (PCB) is operably connected to solid-state drive or processor.This manufacture method can comprise solid-state drive is assemblied in step and the step that processor is assemblied on the different printed circuit board (PCB)s on the printed circuit board (PCB).
Like this, after embodiments of the present invention are described, obviously, to those skilled in the art, be easy to make various variations, correction and improvement.Although invention is done to the disclosure variation, correction and improvement do not illustrate especially above-mentioned, but still are contained within the spirit and scope of the invention.Therefore, above-mentioned discussion only is the purpose of explanation, and the present invention is only by appended claim and equivalent restriction and definition.

Claims (39)

1, a kind of nextport hardware component NextPort comprises:
Non-volatile solid state drive with SATA interface;
Processor; And
Above-mentioned solid-state drive is electrically connected to the signal path of the hard wire of above-mentioned processor by above-mentioned SATA interface.
2, the described nextport hardware component NextPort of claim 1, wherein,
The signal path of above-mentioned hard wire comprises the SATA cable that is connected directly to above-mentioned solid-state drive by above-mentioned SATA interface.
3, the described nextport hardware component NextPort of claim 1, wherein,
The signal path of above-mentioned hard wire comprises the SATA cable that is connected directly to above-mentioned processor.
4, the described nextport hardware component NextPort of claim 1, wherein,
The signal path of above-mentioned hard wire comprises by above-mentioned SATA interface and is connected directly to above-mentioned solid-state drive and is connected directly to the SATA cable of above-mentioned processor.
5, the described nextport hardware component NextPort of claim 1 also comprises:
Printed circuit board (PCB), wherein above-mentioned solid-state drive and above-mentioned processor are assemblied on the above-mentioned printed circuit board (PCB).
6, the described nextport hardware component NextPort of claim 5, wherein,
The signal path of above-mentioned hard wire comprises the printed circuit path on the above-mentioned printed circuit board (PCB).
7, the described nextport hardware component NextPort of claim 5, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned printed circuit board (PCB), and the power path that is printed on the foregoing circuit plate may be operably coupled to above-mentioned solid-state drive by above-mentioned SATA interface with the above-mentioned end of above-mentioned SATA cable.
8, the described nextport hardware component NextPort of claim 5, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned printed circuit board (PCB), and the power path that is printed on the foregoing circuit plate may be operably coupled to above-mentioned processor with the above-mentioned end of above-mentioned SATA cable.
9, the described nextport hardware component NextPort of claim 5, wherein,
The signal path of above-mentioned hard wire comprises the SATA cable that is hardwired to above-mentioned printed circuit board (PCB) by first end and the second end, first power path that is printed on the foregoing circuit plate may be operably coupled to above-mentioned solid-state drive with the above-mentioned first end of above-mentioned SATA cable by above-mentioned SATA interface, and the second circuit footpath that is printed on the foregoing circuit plate may be operably coupled to above-mentioned processor with the above-mentioned the second end of above-mentioned SATA cable.
10, the described nextport hardware component NextPort of claim 1 also comprises:
Printed circuit board (PCB), wherein above-mentioned solid-state drive is assemblied on the above-mentioned printed circuit board (PCB).
11, the described nextport hardware component NextPort of claim 10, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned printed circuit board (PCB), and the power path that is printed on the foregoing circuit plate may be operably coupled to above-mentioned solid-state drive with the above-mentioned end of above-mentioned SATA cable by above-mentioned SATA interface.
12, the described nextport hardware component NextPort of claim 1 also comprises:
Printed circuit board (PCB), wherein above-mentioned processor is assemblied on the above-mentioned printed circuit board (PCB).
13, the described nextport hardware component NextPort of claim 12, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned printed circuit board (PCB), and the power path that is printed on the foregoing circuit plate may be operably coupled to above-mentioned processor with the above-mentioned end of above-mentioned SATA cable.
14, the described nextport hardware component NextPort of claim 1 also comprises:
First printed circuit board (PCB); With
Second printed circuit board (PCB),
Wherein above-mentioned solid-state drive is assemblied on above-mentioned first printed circuit board (PCB), and above-mentioned processor is assemblied on above-mentioned second printed circuit board (PCB).
15, the described nextport hardware component NextPort of claim 14, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned first printed circuit board (PCB), and the power path that is printed on the above-mentioned first circuit board may be operably coupled to above-mentioned solid-state drive with the above-mentioned end of above-mentioned SATA cable by above-mentioned SATA interface.
16, the described nextport hardware component NextPort of claim 14, wherein,
The signal path of above-mentioned hard wire comprises that the end is hardwired to the SATA cable of above-mentioned second printed circuit board (PCB), and the power path that is printed on the above-mentioned second circuit board is connected to above-mentioned processor with the above-mentioned end of above-mentioned SATA cable.
17, the described nextport hardware component NextPort of claim 14, wherein,
The signal path of above-mentioned hard wire comprises that first end is hardwired to the SATA cable that above-mentioned first printed circuit board (PCB), the second end are hardwired to above-mentioned second printed circuit board (PCB), first power path that is printed on the above-mentioned first circuit board may be operably coupled to above-mentioned solid-state drive with the above-mentioned first end of above-mentioned SATA cable by above-mentioned SATA interface, and the second circuit footpath that is printed on the above-mentioned second circuit board may be operably coupled to above-mentioned processor with the above-mentioned the second end of above-mentioned SATA cable.
18, the described nextport hardware component NextPort of claim 1, wherein,
Above-mentioned solid-state drive is a NAND type flash memory device.
19, a kind of message handler comprises the described nextport hardware component NextPort of claim 1.
20, a kind of PC comprises the described nextport hardware component NextPort of claim 1.
21, a kind of personal digital assistant comprises the described nextport hardware component NextPort of claim 1.
22, a kind of phone comprises the described nextport hardware component NextPort of claim 1.
23, a kind of portable multimedia player comprises the described nextport hardware component NextPort of claim 1.
24, a kind of method of making nextport hardware component NextPort may further comprise the steps:
Signal path is hardwired to non-volatile solid state drive by the SATA interface;
Also this signal path is hardwired to processor, makes the signal path of hard wire that solid-state drive is electrically connected to processor.
25, the described method of claim 24, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive comprises the SATA cable is directly hardwired to solid-state drive.
26, the described method of claim 24, wherein,
The above-mentioned step that this signal path is hardwired to processor comprises the SATA cable is directly hardwired to processor.
27, the described method of claim 24, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive comprises the SATA cable is directly hardwired to solid-state drive, and the above-mentioned step that this signal path is hardwired to processor comprises the SATA cable is directly hardwired to processor.
28, the described method of claim 24 also comprises above-mentioned solid-state drive and above-mentioned processor are assemblied in step on the foregoing circuit plate.
29, the described method of claim 28, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive may further comprise the steps:
The end of SATA cable is hardwired to above-mentioned printed circuit board (PCB); With
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned solid-state drive.
30, the described method of claim 28, wherein,
The above-mentioned step that this signal path is hardwired to processor may further comprise the steps:
The end of SATA cable is hardwired to above-mentioned printed circuit board (PCB); With
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned processor.
31, the described method of claim 28, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive and processor may further comprise the steps:
The first end of SATA cable is hardwired to above-mentioned printed circuit board (PCB);
The above-mentioned first end of above-mentioned SATA cable be may be operably coupled to above-mentioned solid-state drive;
The second end of above-mentioned SATA cable is hardwired to above-mentioned printed circuit board (PCB); And
The above-mentioned the second end of above-mentioned SATA cable be may be operably coupled to above-mentioned processor.
32, the described method of claim 24 also comprises above-mentioned solid-state drive is assemblied in step on the printed circuit board (PCB).
33, the described method of claim 32, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive may further comprise the steps:
The end of above-mentioned SATA cable is hardwired to above-mentioned printed circuit board (PCB); And
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned solid-state drive.
34, the described method of claim 24 also comprises above-mentioned processor is assemblied in step on the printed circuit board (PCB).
35, the described method of claim 34, wherein,
The above-mentioned step that this signal path is hardwired to processor may further comprise the steps:
The end of SATA cable is hardwired to above-mentioned printed circuit board (PCB); And
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned processor.
36, the described method of claim 24, further comprising the steps of:
Above-mentioned solid-state drive is assemblied on first printed circuit board (PCB); And
Above-mentioned processor is assemblied on second printed circuit board (PCB).
37, the described method of claim 36, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive may further comprise the steps:
The end of SATA cable is hardwired to above-mentioned first printed circuit board (PCB); And
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned solid-state drive.
38, the described method of claim 36, wherein,
The above-mentioned step that this signal path is hardwired to processor may further comprise the steps:
The end of SATA cable is hardwired to above-mentioned second printed circuit board (PCB); And
The above-mentioned end of above-mentioned SATA cable be may be operably coupled to above-mentioned processor.
39, the described method of claim 36, wherein,
The above-mentioned step that hardwires the signal path to non-volatile solid state drive and processor may further comprise the steps:
The first end of SATA cable is hardwired to above-mentioned first printed circuit board (PCB);
The above-mentioned first end of above-mentioned SATA cable be may be operably coupled to above-mentioned solid-state drive;
The second end of above-mentioned SATA cable is hardwired to above-mentioned second printed circuit board (PCB); And
The above-mentioned the second end of above-mentioned SATA cable be may be operably coupled to above-mentioned processor.
CNA2007800384796A 2006-11-15 2007-11-07 Compact solid state drive and processor assembly Pending CN101529369A (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US86585006P 2006-11-15 2006-11-15
US60/865,850 2006-11-15
US11/730,598 2007-04-03

Publications (1)

Publication Number Publication Date
CN101529369A true CN101529369A (en) 2009-09-09

Family

ID=41095827

Family Applications (1)

Application Number Title Priority Date Filing Date
CNA2007800384796A Pending CN101529369A (en) 2006-11-15 2007-11-07 Compact solid state drive and processor assembly

Country Status (1)

Country Link
CN (1) CN101529369A (en)

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