DETACHABLE MEMORY AND ELECTRONIC DEVICE HAVING THE DETACHABLE MEMORY
20230244282 · 2023-08-03
Inventors
Cpc classification
H01R12/7076
ELECTRICITY
H01R12/725
ELECTRICITY
G06F1/186
PHYSICS
G06F1/1658
PHYSICS
International classification
Abstract
An electronic device having a detachable memory is provided with a docking connector, and includes a device body and a memory. The device body has an accommodating slot and a stopping portion provided corresponding to the accommodating slot, and the stopping portion and the accommodating slot jointly form a displacement space in between. The memory is provided with a connector and a protruding stopped portion. When the memory is accommodated in the accommodating slot, the stopped portion is moved along into the displacement space and is stopped by the stopping portion, and the connector is docked with the docking connector. Thus, the memory is provided with an anti-misplugging effect.
Claims
1-21. (canceled)
22. An electronic device having a detachable memory, the electronic device provided with a docking connector and comprising: a device body, having an accommodating slot and a stopping portion provided corresponding to the accommodating slot, the stopping portion and the accommodating slot jointly forming a displacement space in between; and the memory, provided with a stopped portion and a connector; arranged such that the stopped portion is partially receivable in the displacement space with the memory in an inclined position relative to the accommodating slot such that the stopped portion is abutted against the stopping portion, and the memory is rotatable from the inclined position to a horizontal position with the stopping portion operating a fulcrum for the stopped portion as the stopped portion simultaneously slides relative to the stopping portion fully into the displacement space, wherein the memory is accommodated in the accommodating slot with the connector docked with the docking connector when in the horizontal position.
23. The electronic device having a detachable memory according to claim 22, wherein the stopped portion is provided with at least two guiding grooves, and the stopping portion is provided with at least two guiding ribs respectively corresponding to the guiding grooves.
24. The electronic device having a detachable memory according to claim 22, wherein the accommodating slot is recessed from the device body and has a slot bottom surface formed at a recess ending point, and the stopping portion is located in front of the recess ending point of the accommodating slot and partially blocks the accommodating slot.
25. The electronic device having a detachable memory according to claim 22, wherein the memory comprises a memory body, the stopped portion and a fastener, the stopped portion protrudes from the memory body, the fastener protrudes from the stopped portion, and the stopped portion is connected between the memory body and the fastener.
26. The electronic device having a detachable memory according to claim 25, wherein a slot wall of the accommodating slot is provided with a fastening hole, arranged such the memory is accommodated in the accommodating slot in the horizontal position, and the fastener is received in the fastening hole.
27. The electronic device having a detachable memory according to claim 25, wherein the memory comprises a positioner at the memory body, and the accommodating slot comprises a positioning portion respectively corresponding to the positioner.
28. The electronic device having a detachable memory according to claim 25, wherein the length of the memory from the memory body to the fastener is greater than the length of the accommodating slot.
29. The electronic device having a detachable memory according to claim 22, wherein the stopped portion has a joining surface arranged to partially abut against a corresponding joining surface of the stopping portion when the stopped portion is partially received in the displacement space with the memory in the inclined position, to rotate and slide along relative to and the corresponding joining surface when the memory is rotated from the inclined position to the horizontal position, and to fully abut the corresponding joining surface when the stopping portion is fully received into the displacement space.
30. The electronic device having a detachable memory according to claim 29, wherein the joining surface and the corresponding joining surface are inclined relative to a slot bottom surface of the accommodating slot.
31. The electronic device having a detachable memory according to claim 22, wherein the device body comprises a retaining structure comprising a retainer, arranged such that when the memory is accommodated in the accommodating slot in the horizontal position, the retainer is movable into a position to retain the memory in the accommodating slot.
32. The electronic device having a detachable memory according to claim 31, wherein the memory comprises a retaining notch, arranged such that when the memory is accommodated in the accommodating slot in the horizontal position, the retainer is movable into the retaining notch to retain the memory in the accommodating slot, and movable out the retaining notch to release the memory.
33. The electronic device having a detachable memory according to claim 22, wherein the device body has a first heat conductive carrier plate forming the accommodating slot, the memory comprises a second heat conductive carrier plate and a memory circuit board provided on the second heat conductive carrier plate, the second heat conductive carrier plate is adhered to the first heat conductive carrier plate, and one surface of the memory circuit board is adhered to the second heat conductive carrier plate to further transfer heat through the first heat conductive carrier plate to the device body.
34. The electronic device having a detachable memory according to claim 33, wherein the memory further comprises a cover, the cover and the second heat conductive carrier plate are joined to jointly form a box, and the memory circuit board is provided in the box and is provided with the connector exposed from the box.
35. The electronic device having a detachable memory according to claim 33, wherein one other surface of the memory circuit board is adhered with at least one anti-electrostatic discharge (ESD) adhesive.
36. The electronic device having a detachable memory according to claim 22, wherein the stopping portion projects over a portion accommodating slot, and the displacement space is formed between the stopping portion and a slot bottom surface of the accommodating slot.
37. The electronic device having a detachable memory according to claim 22, wherein the stopping portion projects over a portion accommodating slot, and the displacement space is overlapping with the stopping portion on the vertical projection plan of the slot bottom surface of the accommodating slot.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] Details and technical contents of the present invention are given with the accompanying drawings below. However, the drawings are for purposes of reference and illustration and are not to be construed as limitations to the present invention.
[0028] The present invention provides a detachable memory and an electronic device having the detachable memory. As shown in
[0029] As shown in
[0030] Specifically, the device body 900 includes a housing 9, and the accommodating slot 91 is recessed from one surface of the housing 9 so as to form on the housing 9 a recess starting point 914 as shown in
[0031] As shown in
[0032] Thus, as shown in
[0033] In brief, with the partial blocking the stopping portion 93, a user is no longer able to embed the memory 100 in a horizontal straight-up and straight-down manner without paying much attention into the accommodating slot 91, and is instead forced to perform assembly in a correct manner; that is, one end of the memory 100 having the stopped portion 1b is first extended into the displacement space S, and the other end of the memory 100 is pressed into the accommodating slot 91, such that the connector 131 becomes fully docked with the docking connector 92. Thus, the memory 100 of the present invention can prevent forced assembly in an incorrect manner to the device body 900.
[0034] It should be noted that, as shown in
[0035] To provide the movement process of the stopped portion 1b into the displacement space S with a guiding effect, as shown in
[0036] In order to be more easily assemble and detach the memory 100, as shown in
[0037] In order to securely fix the memory 100 on the device body 900, as shown in
[0038] It should be noted that, as shown in
[0039] In
[0040] The first fixing portion 115 is changed to being provided corresponding to the retaining notch 112, and the second fixing portion 9511 is changed to being provided at the fastener 951. Thus, when the memory 100 is assembled in the accommodating slot 91 and the fastener 951 is extended into the retaining notch 112, the first fixing portion 115 and the second fixing portion 9511 correspond to each other, and the fixing element R can be detachably fixed to the first fixing portion 115 and the second fixing portion 9511, so that the retainer 951 achieves both effects of retaining and securely fixing the memory 100.
[0041] Preferably, the memory 100 may be further provided with a positioner 116 at the memory body 1a, and a positioning portion 915 corresponding to the positioner 116 is provided in the accommodating slot 91 of the housing 9. The structures of the positioner 116 and the positioning portion 915 are not specifically defined in the present invention, and are exemplified by a protruding pin and a recessed hole in this embodiment for illustration. Thus, when the memory 100 is assembled in the accommodating slot 91, the positioner 116 is moved along and inserted into the positioning portion 915, so as to position the memory 100 in the accommodating slot 91.
[0042] As shown in
[0043] The housing 9 of the device body 900 is provided with an encircling wall 911 and a first heat conductive carrier plate 912 having good heat conductivity. The first heat conductive carrier plate 912 seals a lower opening of the encircling wall 911 such that the encircling wall 911 and the first heat conductive carrier plate 912 form in an encircling manner the foregoing accommodating slot 91, and the first heat conductive carrier plate 912 is provided with the foregoing slot bottom surface 913 serving as the bottom of the accommodating slot 91. The encircling wall 911 is provided with the foregoing fastening hole 9111, and preferably further provided with a plurality of ventilation holes 9112, wherein the ventilation holes 9112 are in communication with the interior of the device body 900.
[0044] In the memory 100, the memory body 1a includes a memory circuit board 13 and a second heat conductive carrier plate 12 having good heat conductivity, and preferably includes a cover 11 and a heat conductive pad 14. The cover 11 is combined with the second heat conductive carrier plate 12 to jointly form a box B, and the memory circuit board 13 is provided in the box B and is provided with the foregoing connector 131 exposed from the box B. The heat conductive pad 14 is overlappingly connected between one surface of the memory circuit board 13 and one surface of the second heat conductive carrier plate 12. It should be noted that, the foregoing stopped portion 1b is formed on one end of the cover 11, the foregoing fastener 1c is provided at the stopped portion 1b, and the first fixing portion 111 and the retaining notch 112 of the first embodiment (or the first fixing portion 115, the retaining notch 112 and the positioner 116 of the second embodiment) are provided on the other end of the cover 11. The cover 11 may preferably be provided with a plurality of air inlets 113 and a plurality of air outlets 114, and the air inlets 113 and the air outlets 114 are respectively located on a top surface and a side of the cover 11, so that the air outlets 114 located on the side can be in communication with the ventilation holes 9112 as shown in
[0045] Thus, heat generated by electronic heat emitting elements (not shown) on the memory circuit board 13 can be transferred through the heat conductive pad 14 and the second heat conductive carrier plate 12 to the first heat conductive carrier plate 912, and be quickly transferred through a heat conductive structure P (referring to
[0046] The memory body 1a may further include an aluminum foil 15 and at least one anti-electrostatic discharge (ESD) adhesive 16. The aluminum foil 15 can be adhered to the other surface of the memory circuit board 13, and an anti-electromagnetic interference (EMI) coating (not shown) may be applied on both of the aluminum foil 15 and the second heat conductive carrier plate 12, so as to provide both heating uniformity and anti-EMI effects. The aluminum foil 15 may be further adhered with at least one anti-ESD adhesive 16, and any one of the at least one anti-ESD adhesive 16 corresponds to the air inlets 113 as shown in
[0047]
[0048] In conclusion, the detachable memory and the electronic device having the detachable memory of the present invention achieve the expected application objects, solve the issues of the prior art, and are novel and involve an inventive step, fully meeting the requirements of a patent application. Therefore, a patent application is filed accordingly, and granting the application with patent rights is respectfully requested to ensure rights of the inventor.
[0049] Preferred feasible embodiments of the present invention are described as above, and are not to be construed as limitations to the scope of protection of the present invention. Similarly, equivalent structural changes made according to the contents of the description and drawings of the present invention are to be encompassed within the scope of the present invention.