SOLID-STATE DISK READ/WRITE APPARATUS AND SOLID-STATE DISK ASSEMBLY THEREOF
20210014991 ยท 2021-01-14
Inventors
Cpc classification
H01R33/94
ELECTRICITY
H01R33/90
ELECTRICITY
G06F3/0679
PHYSICS
G06F3/0605
PHYSICS
G06F3/0616
PHYSICS
H05K5/0247
ELECTRICITY
International classification
H01R33/90
ELECTRICITY
H01R33/92
ELECTRICITY
Abstract
A solid-state disk read/write apparatus includes a solid-state disk assembly (400) and a read/write console (100). The solid-state disk assembly (400) includes a solid-state disk main body (6) and an adapter module (5). The adapter module (5) includes a M.2 connector (52) and a USB connector (53). The solid-state disk main body (6) is electrically connected onto the M.2 connector (52). The read/write console (100) includes a circuit board (2) having a USB engagement connector (21) and a control chip (7) electrically arranged thereon. The solid-state disk assembly (400) uses the USB connector (53) to electrically connect onto the USB engagement connector (21), allowing the solid-state disk main body (6) to electrically connect to the read/write console (100) via the adapter module (5) and the control chip (7). Accordingly, the effects of reducing purchase cost, distributing heat sources and preventing re-insertion of the solid-state disk main body can be achieved.
Claims
1. A solid-state disk read/write apparatus, comprising: a solid-state disk assembly (400) comprising a cassette (4), a solid-state disk main body (6) and an adapter module (5); the adapter module (5) secured inside the cassette (4) and having a M.2 connector (52) and a USB connector (53); the solid-state disk main body (6) electrically inserted onto the M.2 connector (52) for adapting with and electrically connected to the USB connector (53); and a read/write console (100) having a circuit board (2), and the circuit board (2) having a control chip (7) and at least one USB engagement connector (21) electrically arranged thereon; wherein when the solid-state disk assembly (400) is removably and electrically inserted onto the USB engagement connector (21) of the read/write console (100) with the USB connector (53), the solid-state main body (6) is electrically connected to the read/write console (100) via the adapter module (5) and the control chip (7).
2. The solid-state disk read/write apparatus according to claim 1, wherein the USB connector (53) and the USB engagement connector (21) are a USB Type-C connector and a USB Type-c engagement connector respectively.
3. The solid-state disk read/write apparatus according to claim 1, wherein the circuit board (2) of the read/write console (100) further comprises a main connector (22) electrically arranged thereon; the main connector (22) is arranged to be electrically connected with a processing device in order to process data of the solid-state disk main body (6).
4. The solid-state disk read/write apparatus according to claim 1, wherein the read/write console (100) includes at least one positioning slot (11) formed thereon; the at least one USB engagement connector (21) is exposed in the at least one positioning slot (11); the USB connector (53) is exposed at one end portion of the solid-state disk assembly (400); the solid-state disk assembly (400) is removably inserted into the positioning slot (11) with the end portion in order to facilitate the USB connector (53) to be electrically connected onto the USB engagement connector (21).
5. The solid-state disk read/write apparatus according to claim 1, wherein the read/write console (100) further comprises at least one other connector (3a) electrically arranged on the circuit board (2), at least one card read/write unit (3b) electrically arranged thereon, or at least one other connector (3a) and at least one card read/write device (3b) electrically arranged thereon.
6. A solid-state disk assembly (400), comprising: a cassette (4); an adapter module (5) comprising an adapter circuit board (51), a M.2 connector (52) and a USB connector (53); the adapter circuit board (51) secured inside the cassette (4); the M.2 connector (52) and the USB connector (53) electrically arranged on the adapter circuit board (51); the USB connector (53) exposed out of the cassette (4); and a solid-state disk main body (6) arranged on the adapter circuit board (51) and electrically connected to the M.2 connector (52); wherein the solid-state disk main body (6) is adapted with and electrically connected to the USB connector (53) via the M.2 connector (52) and the adapter circuit board (51).
7. The solid-state disk assembly (400) according to claim 6, wherein the cassette (4) comprises a cassette base (41) and a cassette cover (42); the cassette cover (42) is detachably locked onto the cassette box (41) in order to form an accommodating space (43) between the cassette cover (42) and the cassette base (41); the solid-state disk main body (6) and the adapter module (5) are jointly received inside the accommodating space (43).
8. The solid-state disk assembly (400) according to claim 7, wherein the cassette base (41) further includes an opening hole (411) formed thereon; the opening hole (411) is fluidly connected to the accommodating space (43), and the USB connector (53) is exposed out of the cassette (4) via the opening hole (411).
9. The solid-state disk assembly (400) according to claim 6, further comprising a fixation member (54); the adapter circuit board (51) includes a plurality of fixation holes (511) formed thereon; the solid-state disk main body (6) includes a notch (61); the solid-state disk main body (6) is inserted onto one of the fixation holes (511) with the fixation member (54) arranged corresponding to the notch (61) in order to be secured onto the adapter circuit board (51).
10. The solid-state disk assembly (400) according to claim 6, wherein the M.2 connector (52) is arranged on one side of the adapter circuit board (51); the USB connector (53) is arranged on and protruded at an edge of the adapter circuit board (51); the solid-state disk main body (6) is arranged on the one side of the adapter circuit board (51).
Description
BRIEF DESCRIPTION OF DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
[0020] The following provides a detailed technical content of the present invention along with the accompanied drawings. However, the accompanied drawings are provided for reference and illustrative purpose only such that they shall not be used to limit the scope of the present invention.
[0021] As shown in
[0022] As shown in
[0023] As shown in
[0024] The main connector 22 of the read/write console 100 can be electrically connected to the aforementioned processing device, such as with the use of a transmission cable connected therebetween; consequently, it is able to allow the processing device to process the data in the solid-state disk assembly 400 via the read/write console 100. In addition, it is also able to save external data into the solid-state disk assembly 400 via the read/write console 100.
[0025] As shown in
[0026] Secondly, since there is no need to perform multiple times of removal and insertion on the M.2 connector 52 for different selection and use of solid-state disk main bodies 6, the limited times of insertion of gold finger would not be exceeded, and the issue of improper connection can be prevented.
[0027] Thirdly, two heat sources are separated from each other accordingly: the solid-state disk main body 6 and the control chip 7 are respectively allocated onto the solid-state disk assembly 400 and the read/write console 100, such that the heat sources are distributed and separated. Consequently, it is able to overcome the issue of heat accumulation from two heat sources, thereby improving the heat dissipation. In addition, as the solid-state disk main body 6 is prevented from operating under the environment of high temperature, the useful lifetime of the solid-state disk main body 6 can be prolonged.
[0028] Fourthly, since the read/write console 100 and the solid-state disk assembly 400 use the USB engagement connector 21 and the USB connector 53 having extensive durability in the limitation for number of times of insertion, they are of extremely high durability. In an exemplary embodiment, the USB connector 53 and the USB engagement connector 21 are a USB Type-C connector and a USB Type-C engagement connector respectively.
[0029] As shown in
[0030] As shown in
[0031] As shown in
[0032] As shown in
[0033] Preferably, the cassette 4 comprises a cassette base 41 and a cassette cover 42. The cassette cover 42 is detachably locked onto the cassette base 41 in order to form the assembly thereof. The aforementioned accommodating space 43 is formed between the cassette base 41 and the cassette cover 42.
[0034] The adapter module 5 comprises an adapter circuit board 51 and the aforementioned M.2 connector 52 and the USB connector 53 electrically arranged on the adapter circuit board 51. The adapter circuit board 51 is secured inside the cassette 4, and the M.2 connector 52 is electrically arranged on one side of the adapter circuit board 51. The USB connector 53 is electrically arranged on and protruded at an edge of the adapter circuit board 51. The solid-state disk main body 6 is arranged on the same side of the adapter circuit board 51. In addition, the head portion of the solid-state disk main body 6 is electrically inserted onto the M.2 connector 52. Accordingly, the solid-state disk main body 6 can be adapted with and electrically connected to the USB connector 53 via the M.2 connector 52 and the adapter circuit board 51.
[0035] Furthermore, regarding the method for securing the solid-state disk main body 6 onto the adapter circuit board 51, the adapter circuit board 51 includes a plurality of fixation holes 511 formed thereon, and the rear end of the solid-state disk main body 6 includes a notch 61 formed thereon in order to use a fixation member 54 to insert into one of the fixation holes 511 corresponding to the notch 61, thereby securing the solid-state disk main body 6 between the M.2 connector 52 and the fixation member 54. In other words, the solid-state disk main body 6 is secured onto the adapter circuit board 51.
[0036] In addition, as shown in
[0037] As shown in
[0038] In view of the above, a solid-state disk read/write apparatus and a solid-state disk assembly of the present invention is able to achieve the objectives of the present invention and to overcome the drawbacks of known arts. The present invention is novel and of inventive step, which satisfies the patentability requirements.
[0039] The above describes the preferable and feasible exemplary embodiments of the present invention for illustrative purposes only, which shall not be treated as limitations of the scope of the present invention. Any equivalent changes and modifications made in accordance with the scope of the claims of the present invention shall be considered to be within the scope of the claim of the present invention.