CN204809433U - Power structure - Google Patents

Power structure Download PDF

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Publication number
CN204809433U
CN204809433U CN201520453114.1U CN201520453114U CN204809433U CN 204809433 U CN204809433 U CN 204809433U CN 201520453114 U CN201520453114 U CN 201520453114U CN 204809433 U CN204809433 U CN 204809433U
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China
Prior art keywords
putting part
opening
cover plate
power supply
supply architecture
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Active
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CN201520453114.1U
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Chinese (zh)
Inventor
杨雄
褚青松
罗羽
丁俊
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Shenzhen Longood Intelligent Electric Co Ltd
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Shenzhen Longood Intelligent Electric Co Ltd
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Priority to CN201520453114.1U priority Critical patent/CN204809433U/en
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Abstract

The utility model relates to a power structure. This power structure includes: the holding shell has the opening, exempt from screw binding post, the one end holding is in the holding shell, and the other end exposes in the opening part, the apron, lie in the holding shell outside, the apron has and rotates the first end is connected and relative second end with the holding shell, second end ability can be dismantled with the holding shell and be connected, wherein, when the apron when the opening rotates, at least the part covers the opening, makes second end and holding shell cooperation formation line mouth, expose in line mouth department in the wiring hole of exempting from screw binding post. Connect the I/O line on exempting from screw binding post, do not need the process of playing the screw. After connecting the I/O line on exempting from screw binding post for the apron covers the opening, connects the I/O line to draw forth from the line mouth, then makes the second end be connected with the holding shell, thereby makes the I/O line fixed, does not need the process of playing the screw, very convenience of customers equipment.

Description

Power supply architecture
Technical field
The utility model relates to electronic and electrical equipment technical field, particularly relates to a kind of power supply architecture.
Background technology
The power supply of tape input/lead-out terminal is when connecting input/output line, the mode that usual employing screws connects input/output line on input/output terminal, and then adopting the mode screwed that input/output line is fixed, this assembly operation is very inconvenient, wasting manpower and material resources.
Utility model content
Based on this, be necessary the power supply architecture that a kind of ease of assembly is provided.
A kind of power supply architecture, comprising:
Putting part, has opening;
Exempt from screw terminal, one end is placed in described putting part, and the other end exposes in described opening part; And
Cover plate, is positioned at outside described putting part, and described cover plate has and the first end that described putting part is rotationally connected and the second relative end, and described second end can removably connect with described putting part;
Wherein, when described cover plate rotates towards described opening, cover described opening at least partly, described second end coordinated with described putting part and forms line mouth, described in exempt from screw terminal wiring hole expose in described line mouth place.
In above-mentioned power supply architecture, when cover plate is in open mode, can exempt from screw terminal to connect input/output line, without the need for this operation that screws.When after exempting from that screw terminal connects input/output line, make cover plate cover opening, connecing input/output line can draw from line mouth, then the second end is made to be connected with putting part, thus input/output line is fixed, and without the need for this operation that screws, very convenient user's assembling.
Wherein in an embodiment, described putting part comprises clamshell and base plate, and described opening is located on described clamshell, and described base plate is positioned at the open end of described clamshell, and removably connects with described clamshell.
Wherein in an embodiment, described power supply architecture also comprises at least one in following feature:
The sidewall of described base plate is provided with the first draw-in groove, and the inwall of described clamshell is provided with the first buckle block, and described first buckle block is arranged in described first draw-in groove; And
Described power supply architecture also comprises circuit board, and described circuit board is placed in described putting part, and is located on described base plate, described in exempt from screw terminal and be located on described circuit board; Described putting part also comprises limiting plate and keeper, described limiting plate is placed in described putting part, and is located on described base plate, and is positioned at the periphery of described circuit board, the sidewall of described circuit board caves in formation breach, and described breach coordinates with described limiting plate and forms location notch; Described keeper is placed in described putting part, and described keeper one end is fixed on described clamshell, and the other end inserts in described location notch.
Wherein in an embodiment, described power supply architecture also comprises circuit board, and described circuit board is placed in described putting part, and is located on described base plate, described in exempt from screw terminal and be located on described circuit board;
Described putting part also comprises limiting plate and keeper, described limiting plate is placed in described putting part, and is located on described base plate, and is positioned at the periphery of described circuit board, the sidewall of described circuit board caves in formation breach, and described breach coordinates with described limiting plate and forms location notch; Described keeper is placed in described putting part, and described keeper one end is fixed on described clamshell, and the other end inserts in described location notch;
Described limiting plate is provided with limiting stand near the side of described circuit board, and described circuit board is taken on described limiting stand.
Wherein in an embodiment, described power supply architecture also comprises at least one in following feature:
Described cover plate comprises the first relative lug and the second lug, described first lug is provided with the first rotating shaft near the side of described second lug, described second lug is provided with the second rotating shaft near the side of described first lug, described putting part is provided with two installing holes, and described first rotating shaft and described second rotating shaft are inserted in described two installing holes respectively;
The inwall of described cover plate is provided with lock dog, and described putting part is provided with locked groove, and after described cover plate covers described opening, described lock dog can be stuck in described locked groove; And
The number of described opening is two, is respectively the first opening and the second opening, and described first opening and described second opening lay respectively at the two ends of the same side of described putting part; Described number of exempting from screw terminal is two, be respectively first exempt from screw terminal and second exempt from screw terminal, described first exempts from screw terminal and described second exempts from screw terminal and exposes respectively at described first opening and described second opening part; The number of described cover plate is two pieces, be respectively the first cover plate and the second cover plate, described first cover plate is rotatably connected near one end of described second cover plate and described putting part, described second cover plate is rotatably connected near one end of described first cover plate and described putting part, and described first cover plate and described second cover plate can cover described first opening and described second opening respectively; The number of described line mouth is two, is respectively First Line mouth and the second line mouth, and the wiring hole that the described first wiring hole and described second of exempting from screw terminal exempts from screw terminal exposes respectively at described First Line mouth and described second line mouth place.
Wherein in an embodiment, described power supply architecture also comprises wire clamp, described wire clamp is positioned at described line mouth place, described wire clamp comprises cell body and counterpart, described counterpart is half frame-shaped, described counterpart and described cell body are socketed, and between described counterpart and described cell body, there is gap, described cell body is provided with multiple the first wire casing be intervally arranged near one end of described counterpart, described counterpart is provided with multiple the second wire casing be intervally arranged, and described second wire casing and described First Line slot fit are for pinning input/output line;
Wherein, described gap and described line mouth just right, described counterpart is near described opening, and described cell body and described putting part removably connect.
Wherein in an embodiment, described putting part is provided with the second draw-in groove, and described cell body is provided with the second buckle block near the side of described putting part, and described second buckle block is arranged in described second draw-in groove.
Wherein in an embodiment, described putting part is provided with two bucket portions, described two barrel sections are not positioned at the both sides of described second draw-in groove, wherein, the openend in described bucket portion is near the opening of described putting part, described bucket portion is provided with otch near the side of described wire clamp, and the openend of described otch from described bucket portion extends towards the blind end in described bucket portion;
Described cell body is two fasteners on the side of described putting part, described two fasteners lay respectively at the both sides of described second buckle block, described fastener comprises the card be located on described wire clamp and is located at described card away from the card column on the side of described wire clamp, described card column is placed in described bucket portion, and described card is arranged in described otch.
Wherein in an embodiment, two blocks of plates that described counterpart comprises transverse slat, is located at two pieces of risers on described transverse slat and is located between described two pieces of risers, described riser and described plate are positioned at the same side of described transverse slat, and the described plate formation clip that described two pieces of risers are close with it respectively, the wall contacts of the riser in described clip and described cell body one end, the plate in described clip inserts in described cell body.
Wherein in an embodiment, the riser in described clip is provided with the first latch near the side of described plate, and the outer wall of described cell body is provided with the second latch, and described first latch engages with described second latch.
Accompanying drawing explanation
Fig. 1 is the structural representation of the power supply architecture of an execution mode;
Fig. 2 is the schematic diagram that cover plate in the power supply architecture in Fig. 1 is in open mode;
Fig. 3 is the exploded view of the power supply architecture in Fig. 1;
Fig. 4 is the structural representation of clamshell;
Fig. 5 is the structural representation of the power supply architecture after removing wire clamp;
Fig. 6 is the exploded view of wire clamp;
Fig. 7 is the structural representation of the cell body in wire clamp;
Fig. 8 is the structural representation of the counterpart in wire clamp.
Embodiment
Below in conjunction with drawings and the specific embodiments, power supply architecture is described further.
As Figure 1-3, the power supply architecture 10 of an execution mode comprise putting part 100, circuit board 200, exempt from screw terminal 300, cover plate 400 and wire clamp 500.
As shown in Figures 3 and 4, putting part 100 has opening 110.In the present embodiment, putting part 100 comprises clamshell 120 and base plate 130.Opening 110 is located on clamshell 120.Base plate 130 is positioned at the open end of clamshell 120, and removably connects with clamshell 120.
Further, in the present embodiment, the sidewall of base plate 130 is provided with the first draw-in groove 132, and the inwall of clamshell 120 is provided with the first buckle block 122, first buckle block 122 and is arranged in the first draw-in groove 132.In traditional power supply architecture, base plate and clamshell adopt mode that is gluing or that screw to realize assembling usually, the gluing step needing coating adhesive, and wait for that adhesive curing also needs the regular hour, and screw and also need this operation that screws.And in the present embodiment, clamshell 120 and base plate 130 adopt the mode of back-off can realize assembling, very convenient, effectively can improve packaging efficiency, and user's assembling of being more convenient for.
Circuit board 200 is placed in putting part 100, and is located on base plate 130.
Further, in the present embodiment, putting part 100 also comprises limiting plate 140 and keeper 150.Limiting plate 140 is placed in putting part 100, and is located on base plate 130, and is positioned at the periphery of circuit board 200.The sidewall of circuit board 200 caves in and forms breach 210, and breach 210 coordinates with limiting plate 140 and forms location notch (scheming not mark).Keeper 150 is placed in putting part 100, and keeper 150 one end is fixed on clamshell 120, and the other end inserts in location notch.Limiting plate 140 and keeper 150 be arranged so that the assembling of above-mentioned power supply architecture 10 has higher accuracy.
Further, in the present embodiment, limiting plate 140 is provided with limiting stand 142 near the side of circuit board 200, and circuit board 200 is taken on limiting stand 142.Limiting stand 142 makes to there is air layer between circuit board 200 and base plate 130, thus is more conducive to above-mentioned power supply architecture 10 and operationally dispels the heat.
As shown in Fig. 2, Fig. 3 and Fig. 5, exempt from screw terminal 300 one end and be placed in putting part 100, the other end exposes in opening 110 place.In the present embodiment, exempt from screw terminal 300 to be located on circuit board 200.Exempting from screw terminal 300 when being connected with input/output line, only needing input/output line to insert to exempt from the wiring hole 310 of screw terminal 300, not needing to screw, very convenient user's assembling.
Cover plate 400 is positioned at outside putting part 100, and is rotatably connected with putting part 100.Wherein, when cover plate 400 moves towards opening 110, opening 110 can be covered.One end that cover plate 400 and putting part 100 are rotatably connected is first end 410, and the other end is that the second end 420, second end 420 coordinates with putting part 100 and forms line mouth 430, and the wiring hole 310 of exempting from screw terminal 300 exposes in line mouth 430 place.After cover plate 400 covers opening 110, the second end 420 can removably connect with putting part 100.
In traditional power supply architecture, on binding post after wiring, need to adopt the mode screwed that cover plate is fixed, with fixing input/output line, need this operation that screws.And in the present embodiment, when cover plate 400 is in open mode, can wiring on screw terminal 300 exempted from.When after exempting from that screw terminal 300 connects input/output line, cover plate 400 is made to cover opening 110, connect input/output line to draw from line mouth 430, then the second end 420 is made to be connected with putting part 100, thus input/output line is fixed, without the need for this operation that screws, very convenient user's assembling.
Further, in the present embodiment, cover plate 400 comprises the first relative lug 440 and the second lug 450, first lug 440 and is provided with the first rotating shaft 442, second lug 450 near the side of the second lug 450 and is provided with the second rotating shaft (not shown) near the side of the first lug 440.Clamshell 120 is provided with two installing holes 124.First rotating shaft 442 and the second rotating shaft are inserted in two installing holes 124 respectively.Thus cover plate 400 is rotatable relative to putting part 100.
Further, in the present embodiment, the inwall of cover plate 400 is provided with lock dog 460, and clamshell 120 is provided with locked groove (not shown), and after cover plate 400 covers opening 110, lock dog 460 can be stuck in locked groove.Thus the second end 420 is removably connected with putting part 100.
As shown in Fig. 1 and Fig. 6-8, wire clamp 500 is positioned at line mouth 430 place.Wire clamp 500 comprises cell body 510 and counterpart 520.Counterpart 520 is in half frame-shaped, and counterpart 520 and cell body 510 are socketed, and have gap (scheming not mark) between counterpart 520 and cell body 510.Cell body 510 is provided with multiple the first wire casing 512 be intervally arranged near one end of counterpart 520, counterpart 520 is provided with multiple the second wire casing 522, second wire casing 522 be intervally arranged and coordinates for pinning input/output line with the first wire casing 512.Wherein, gap and line mouth 430 just right, counterpart 520 is near opening 110, and cell body 510 and clamshell 120 removably connect.
In traditional power supply architecture, in order to the requirement of satisfied independent installation safety, adopt the mode screwed to fix wire clamp, so that wire clamp 500 pins input/output line, need this operation that screws.And in the present embodiment, the assembling of wire clamp 500 and clamshell 120 is without the need for screwing this operation, very convenient user assembles.When above-mentioned power supply architecture 10 is assembled in device to be powered, be built-in type power supply, now wire clamp 500 as accessory, can save material cost.
In the present embodiment, clamshell 120 is provided with the second draw-in groove 126, and cell body 510 is provided with the second buckle block 530, second buckle block 530 and is arranged in the second draw-in groove 126 near the side of clamshell 120.
Further, in the present embodiment, clamshell 120 is provided with the both sides that bucket portion 128 of 128, two, two bucket portions lays respectively at the second draw-in groove 126.Wherein, the openend in bucket portion 128 is near the opening 110 of clamshell 120, and bucket portion 128 is provided with otch 129 near the side of wire clamp 500, and the openend of otch 129 from bucket portion 128 extends towards the blind end in bucket portion 128.
Cell body 510 two fasteners, 540, two fasteners 540 on the side of clamshell 120 lay respectively at the both sides of the second buckle block 530.Fastener 540 comprises the card 542 be located on wire clamp 500 and is located at card 542 away from the card column 544 on the side of wire clamp 500, and card column 544 is placed in barrel portion 128, and card 542 is arranged in otch 129.Bucket portion 128 makes the connection between wire clamp 500 and clamshell 120 more firm with coordinating of fastener 540.
Further, as shown in figs 6-8, in the present embodiment, two blocks of plates 528 that counterpart 520 comprises transverse slat 524, is located at two pieces of risers 526 on transverse slat 524 and is located between two pieces of risers 526, wherein, riser 526 and plate 528 are positioned at the same side of transverse slat 524, and close with it the respectively plate 528 of two pieces of risers 526 forms clip.Riser 526 in clip and the wall contacts of cell body 510 one end, the plate 528 in clip inserts in cell body 510.
Further, in the present embodiment, cell body 510 caves near the middle part of one end of transverse slat 524 and forms recess 514, and recess 514 is for forming gap.First wire casing 512 is located on the bottom of recess 514.
Further, in the present embodiment, the riser 526 in clip is provided with the first latch 5262 near the side of plate 528, and the outer wall of cell body 510 is provided with the second latch 516, first latch 5262 and engages with the second latch 516.
Further, in the present embodiment, the number of exempting from screw terminal 300 is two, is respectively first and exempts from screw terminal and second exempt from screw terminal.First exempts from screw terminal and second exempts from the two ends place that screw terminal lays respectively at circuit board 200, is respectively used to connect input line and output line.
The number being appreciated that opening 110 is two, and be respectively the first opening and the second opening, the first opening and the second opening lay respectively at the two ends of the same side of clamshell 120.First exempt from screw terminal and second exempt from screw terminal expose respectively at the first opening and the second opening part.
Further, in the present embodiment, the number of cover plate 400 is two pieces, is respectively the first cover plate and the second cover plate.First cover plate is rotatably connected near one end of the second cover plate and clamshell 120, and the second cover plate is rotatably connected near one end of the first cover plate and clamshell 120, and the first cover plate and the second cover plate can cover the first opening and the second opening respectively.The number being appreciated that line mouth 430 is two, and be respectively First Line mouth and the second line mouth, the wiring hole that the first wiring hole and second of exempting from screw terminal exempts from screw terminal exposes respectively at First Line mouth and the second line mouth place.
Further, as shown in Figures 4 and 5, in the present embodiment, clamshell 120 caves in and forms escape groove 120a, escape groove 120a extends towards the direction away from base plate 130 from the openend of clamshell 120, and the place of caving in of clamshell 120 is provided with mounting panel 120b, and mounting panel 120b is provided with mounting groove 120c.When by above-mentioned power supply architecture 10 and device to be powered with the use of time, can by screwing in mounting groove 120c, so that above-mentioned power supply architecture 10 is fixed on device to be powered.
Each technical characteristic of the above embodiment can combine arbitrarily, for making description succinct, the all possible combination of each technical characteristic in above-described embodiment is not all described, but, as long as the combination of these technical characteristics does not exist contradiction, be all considered to be the scope that this specification is recorded.
The above embodiment only have expressed several execution mode of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to utility model patent scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection range of the present utility model.Therefore, the protection range of the utility model patent should be as the criterion with claims.

Claims (10)

1. a power supply architecture, is characterized in that, comprising:
Putting part, has opening;
Exempt from screw terminal, one end is placed in described putting part, and the other end exposes in described opening part; And
Cover plate, is positioned at outside described putting part, and described cover plate has and the first end that described putting part is rotationally connected and the second relative end, and described second end can removably connect with described putting part;
Wherein, when described cover plate rotates towards described opening, cover described opening at least partly, described second end coordinated with described putting part and forms line mouth, described in exempt from screw terminal wiring hole expose in described line mouth place.
2. power supply architecture according to claim 1, is characterized in that, described putting part comprises clamshell and base plate, and described opening is located on described clamshell, and described base plate is positioned at the open end of described clamshell, and removably connects with described clamshell.
3. power supply architecture according to claim 2, is characterized in that, described power supply architecture also comprises at least one in following feature:
The sidewall of described base plate is provided with the first draw-in groove, and the inwall of described clamshell is provided with the first buckle block, and described first buckle block is arranged in described first draw-in groove; And
Described power supply architecture also comprises circuit board, and described circuit board is placed in described putting part, and is located on described base plate, described in exempt from screw terminal and be located on described circuit board; Described putting part also comprises limiting plate and keeper, described limiting plate is placed in described putting part, and is located on described base plate, and is positioned at the periphery of described circuit board, the sidewall of described circuit board caves in formation breach, and described breach coordinates with described limiting plate and forms location notch; Described keeper is placed in described putting part, and described keeper one end is fixed on described clamshell, and the other end inserts in described location notch.
4. power supply architecture according to claim 2, is characterized in that, described power supply architecture also comprises circuit board, and described circuit board is placed in described putting part, and is located on described base plate, described in exempt from screw terminal and be located on described circuit board;
Described putting part also comprises limiting plate and keeper, described limiting plate is placed in described putting part, and is located on described base plate, and is positioned at the periphery of described circuit board, the sidewall of described circuit board caves in formation breach, and described breach coordinates with described limiting plate and forms location notch; Described keeper is placed in described putting part, and described keeper one end is fixed on described clamshell, and the other end inserts in described location notch;
Described limiting plate is provided with limiting stand near the side of described circuit board, and described circuit board is taken on described limiting stand.
5. power supply architecture according to claim 1, is characterized in that, described power supply architecture also comprises at least one in following feature:
Described cover plate comprises the first relative lug and the second lug, described first lug is provided with the first rotating shaft near the side of described second lug, described second lug is provided with the second rotating shaft near the side of described first lug, described putting part is provided with two installing holes, and described first rotating shaft and described second rotating shaft are inserted in described two installing holes respectively;
The inwall of described cover plate is provided with lock dog, and described putting part is provided with locked groove, and after described cover plate covers described opening, described lock dog can be stuck in described locked groove; And
The number of described opening is two, is respectively the first opening and the second opening, and described first opening and described second opening lay respectively at the two ends of the same side of described putting part; Described number of exempting from screw terminal is two, be respectively first exempt from screw terminal and second exempt from screw terminal, described first exempts from screw terminal and described second exempts from screw terminal and exposes respectively at described first opening and described second opening part; The number of described cover plate is two pieces, be respectively the first cover plate and the second cover plate, described first cover plate is rotatably connected near one end of described second cover plate and described putting part, described second cover plate is rotatably connected near one end of described first cover plate and described putting part, and described first cover plate and described second cover plate can cover described first opening and described second opening respectively; The number of described line mouth is two, is respectively First Line mouth and the second line mouth, and the wiring hole that the described first wiring hole and described second of exempting from screw terminal exempts from screw terminal exposes respectively at described First Line mouth and described second line mouth place.
6. power supply architecture according to claim 1, it is characterized in that, described power supply architecture also comprises wire clamp, described wire clamp is positioned at described line mouth place, described wire clamp comprises cell body and counterpart, described counterpart is half frame-shaped, described counterpart and described cell body are socketed, and between described counterpart and described cell body, there is gap, described cell body is provided with multiple the first wire casing be intervally arranged near one end of described counterpart, described counterpart is provided with multiple the second wire casing be intervally arranged, and described second wire casing and described First Line slot fit are for pinning input/output line;
Wherein, described gap and described line mouth just right, described counterpart is near described opening, and described cell body and described putting part removably connect.
7. power supply architecture according to claim 6, is characterized in that, described putting part is provided with the second draw-in groove, and described cell body is provided with the second buckle block near the side of described putting part, and described second buckle block is arranged in described second draw-in groove.
8. power supply architecture according to claim 7, it is characterized in that, described putting part is provided with two bucket portions, described two barrel sections are not positioned at the both sides of described second draw-in groove, wherein, the openend in described bucket portion is near the opening of described putting part, and described bucket portion is provided with otch near the side of described wire clamp, and the openend of described otch from described bucket portion extends towards the blind end in described bucket portion;
Described cell body is two fasteners on the side of described putting part, described two fasteners lay respectively at the both sides of described second buckle block, described fastener comprises the card be located on described wire clamp and is located at described card away from the card column on the side of described wire clamp, described card column is placed in described bucket portion, and described card is arranged in described otch.
9. power supply architecture according to claim 6, it is characterized in that, two blocks of plates that described counterpart comprises transverse slat, is located at two pieces of risers on described transverse slat and is located between described two pieces of risers, described riser and described plate are positioned at the same side of described transverse slat, and the described plate formation clip that described two pieces of risers are close with it respectively, the wall contacts of the riser in described clip and described cell body one end, the plate in described clip inserts in described cell body.
10. power supply architecture according to claim 9, is characterized in that, the riser in described clip is provided with the first latch near the side of described plate, and the outer wall of described cell body is provided with the second latch, and described first latch engages with described second latch.
CN201520453114.1U 2015-06-26 2015-06-26 Power structure Active CN204809433U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105513323A (en) * 2015-12-25 2016-04-20 惠州市智美互联科技有限公司 Remote switch with good heat dissipation effect
CN105513322A (en) * 2015-12-25 2016-04-20 惠州市智美互联科技有限公司 Remote switch
CN105811128A (en) * 2015-06-26 2016-07-27 深圳市朗科智能电气股份有限公司 Power source structure
CN107072082A (en) * 2016-07-07 2017-08-18 深圳市朗科智能电气股份有限公司 A kind of LED power

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105811128A (en) * 2015-06-26 2016-07-27 深圳市朗科智能电气股份有限公司 Power source structure
CN105513323A (en) * 2015-12-25 2016-04-20 惠州市智美互联科技有限公司 Remote switch with good heat dissipation effect
CN105513322A (en) * 2015-12-25 2016-04-20 惠州市智美互联科技有限公司 Remote switch
CN107072082A (en) * 2016-07-07 2017-08-18 深圳市朗科智能电气股份有限公司 A kind of LED power

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