CN218673711U - Hardware debugging and testing frame - Google Patents
Hardware debugging and testing frame Download PDFInfo
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- CN218673711U CN218673711U CN202223005540.8U CN202223005540U CN218673711U CN 218673711 U CN218673711 U CN 218673711U CN 202223005540 U CN202223005540 U CN 202223005540U CN 218673711 U CN218673711 U CN 218673711U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
Abstract
The utility model relates to a five metals debugging check rack belongs to door and window production technical field. The problem of the big operation degree of difficulty in the door and window production process is solved. Including base group, bracket group and removal clamping mechanism, the bracket group is installed on the base group, and the both sides of bracket group are provided with removal clamping mechanism, and the base group is used for supporting the bracket group and adjusts the angle of bracket group, and removal clamping mechanism is used for pressing from both sides the door and window of placing on the bracket group tight. The utility model discloses can carry out multiple regulation, be convenient for install, debug, detect door and window, improve work efficiency, reduce the operation degree of difficulty.
Description
Technical Field
The utility model relates to a debugging frame belongs to door and window production technical field.
Background
In wood door and window and aluminium package timber door and window production process, need install glass, hardware accessories etc. to debug, inspection, because the difference of size, weight isoparametric of door and window etc. in the production process, because there is not suitable shelf in the market to let the comfortable completion of workman relevant operation, often need the workman to adjust the installation posture of oneself according to glass's position, the operation degree of difficulty is big, influences work efficiency, and takes place accidents such as glass damage easily.
Therefore, it is desirable to provide a hardware debugging and inspecting stand to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
The utility model discloses research and development solve is the big problem of the operation degree of difficulty in the door and window production process. A brief summary of the present invention is provided below in order to provide a basic understanding of some aspects of the present invention. It should be understood that this summary is not an exhaustive overview of the invention. It is not intended to identify key or critical elements of the invention or to delineate the scope of the invention.
The technical scheme of the utility model:
the utility model provides a five metals debugging test rack, includes base group, bracket group and removes clamping mechanism, the bracket group is installed on the base group, and the both sides of bracket group are provided with and remove clamping mechanism, and the base group is used for supporting bracket group and adjusts the angle of bracket group, and it is tight that removal clamping mechanism is used for pressing from both sides the door and window of placing on the bracket group.
Preferably: the base group includes support body, round pin axle, bolt, regulating plate, bracing piece, first cylinder, optical axis and grudging post, the both sides of support body are provided with the grudging post, and the both sides of support body still are connected with the bracing piece through round pin axle rotation, and the one end of regulating plate is connected with the bracing piece through a bolt, and the other end of regulating plate is provided with the spout, and the other end of regulating plate passes through the spout to be connected with the grudging post, installs the optical axis on the bracing piece, installs first cylinder on the support body, and bracket group establishes the installation with optical axis, first cylinder respectively.
Preferably: the base set further comprises a ground foot, an optical axis mounting seat, an auxiliary adjusting plate, a first air cylinder connecting piece, a first air cylinder connecting seat and a first connecting plate, wherein an auxiliary sliding groove is formed in the other end of the auxiliary adjusting plate, the other end of the auxiliary adjusting plate is connected with the vertical frame through the auxiliary sliding groove, the ground foot is arranged on the frame body, the ground foot is located below the bracket set, the first connecting plate is arranged on two sides of the frame body, the first air cylinder connecting seat is arranged on the first connecting plate, the first air cylinder is arranged on the first air cylinder connecting seat, the extending end of the first air cylinder is installed with the bracket set through the first air cylinder connecting piece, one end of the auxiliary adjusting plate is connected with the supporting rod through another bolt, and the optical axis mounting seat at the two ends of the optical axis mounting seat is connected with the supporting rod.
Preferably: the bracket group comprises an upper beam, side beams, rubber wheels, a rubber wheel supporting beam, a second sliding block, a roller connecting beam, a roller, connecting seats, a middle beam, a bottom beam, a second cylinder connecting seat, a second cylinder and a guide rail with seats, wherein the upper beam is provided with a horizontal guide rail with seats, the horizontal guide rail with seats is installed with a movable clamping mechanism, two ends of the upper beam are respectively provided with a vertical side beam, the middle part of the upper beam is provided with a vertical middle beam, the rubber wheel supporting beam is horizontally arranged, a plurality of rubber wheel supporting beams arranged in an array are connected with the side beams and the middle beam, the rubber wheel supporting beam is provided with a plurality of rubber wheels arranged in an array, the side beams are connected with a first cylinder connecting piece, the side beams are provided with second sliding blocks, the second sliding blocks are connected with an optical axis, one second cylinder is respectively connected with one side beam and the middle beam through two second cylinder connecting seats, the other second cylinder is respectively connected with the other side beam and the middle beam through the other two second cylinder connecting seats, the extending ends of the two second cylinders are respectively installed with the movable clamping mechanism, the bottom beam and the middle beam, the lower end of the bottom beam is connected with the roller, and the roller is connected with the upper beam through the roller.
Preferably: the bracket set further comprises a synchronous connecting shaft, a second shaft support and a gear, the second shaft support is connected with the two side beams and the middle beam respectively, the synchronous connecting shaft is arranged on the second shaft support, the gears are arranged at two ends of the synchronous connecting shaft, the base set further comprises a rack, the rack is connected with the supporting rod, and the gear is meshed with the rack.
Preferably: the bracket set further comprises a connecting shaft, a fisheye joint and a shoulder bolt, the extending end of the second cylinder is connected with the fisheye joint through the connecting shaft, and the shoulder bolt penetrates through the fisheye joint to be connected with the movable clamping mechanism.
Preferably: the movable clamping mechanism comprises a third slider, a clamping plate, a third shaft support, a main connecting plate, an auxiliary connecting plate, a connecting beam, a third cylinder connecting seat, a third cylinder connecting piece and a six-edge shaft, wherein the two main connecting plates are respectively arranged at two ends of the connecting beam, the end part of the main connecting plate is provided with the third shaft support, the middle part of the main connecting plate is provided with the third cylinder connecting seat, the two sides of the clamping plate are provided with the auxiliary connecting plate, the clamping plate passes through the auxiliary connecting plate and the six-edge shaft, two ends of the six-edge shaft are connected with the third shaft support, one end of the third cylinder is connected with the third cylinder connecting seat, the other end of the third cylinder is connected with the auxiliary connecting plate, a shoulder bolt penetrates through a fisheye joint and is connected with the connecting beam, and the third slider is connected with a guide rail in a sliding manner.
Preferably: the clamping plates are arranged in an array, and the third cylinder is connected with a secondary connecting plate at the end part.
The utility model discloses following beneficial effect has:
1. the utility model can be adjusted in various ways, is convenient for installing, debugging and detecting doors and windows, improves the working efficiency and reduces the operation difficulty;
2. the utility model discloses an adjustment spout and the cooperation mounted position of grudging post, thereby the angle of control support pole, thereby the angle of control bracket group, it is convenient to remove, through the flexible of first cylinder, drive the second slider along the motion of optical axis direction, drive through the second cylinder and connect the roof beam along taking the seat guide rail to the middle removal, rethread third cylinder stretches out, make the vice connecting plate take place to rotate, thereby make splint clip glass, can be according to adjustment height such as mounted position, workman's height, working habit.
Drawings
FIG. 1 is a perspective view of a hardware debugging and inspecting stand;
FIG. 2 is a schematic view of a base set;
fig. 3 is a front view of the carrier group;
fig. 4 is a perspective view of the bracket assembly;
FIG. 5 is a schematic view of the structure of the moving clamping mechanism;
fig. 6 is a perspective view of the moving clamping mechanism.
In the figure: 1-base set, 2-base set, 3-mobile clamping mechanism, 11-frame body, 12-foot, 13-optical axis mount, 14-pin, 15-bolt, 16-adjustment plate, 17-secondary adjustment plate, 18-support bar, 19-rack, 110-first cylinder connection, 111-first cylinder, 112-first cylinder connection, 113-first connection plate, 114-optical axis, 115-vertical frame, 21-upper beam, 22-side beam, 23-rubber wheel, 24-rubber wheel support beam, 25-second slider, 26-roller connection beam, 27-roller, 28-connection base, 29-middle beam, 210-bottom beam, 211-connection shaft, 212-fish eye joint, 213-synchronous connection shaft, 214-second shaft support, 215-gear, 216-second cylinder connection base, 217-second cylinder, 218-shoulder bolt, 219-seated guide, 31-third slider, 32-clamp plate, 33-third connection plate, 34-main connection plate, 35-secondary connection plate, 36-secondary cylinder connection plate, 37-third cylinder connection, 39-sixth cylinder connection, 310.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described below with reference to specific embodiments shown in the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
The first embodiment is as follows: the embodiment is described with reference to fig. 1 to 6, and the hardware debugging and inspecting stand of the embodiment includes a base set 1, a bracket set 2 and a mobile clamping mechanism 3, wherein the bracket set 2 is installed on the base set 1, the mobile clamping mechanism 3 is arranged on two sides of the bracket set 2, the base set 1 is used for supporting the bracket set 2 and adjusting the angle of the bracket set 2, and the mobile clamping mechanism 3 is used for clamping a door and window placed on the bracket set 2; (ii) a
The base set 1 comprises a frame body 11, a pin shaft 14, a bolt 15, an adjusting plate 16, a support rod 18, a first air cylinder 111, an optical axis 114 and a vertical frame 115, wherein the vertical frame 115 is arranged on two sides of the frame body 11, the support rod 18 is rotatably connected on two sides of the frame body 11 through the pin shaft 14, one end of the adjusting plate 16 is connected with the support rod 18 through the bolt 15, a sliding groove is formed in the other end of the adjusting plate 16, the other end of the adjusting plate 16 is connected with the vertical frame 115 through the sliding groove, the vertical frame 115 and a threaded hole are formed in the vertical frame 115, a fastening bolt penetrates through the sliding groove to be connected with the threaded hole, the end part of the fastening bolt is used for tightly pressing the adjusting plate 16, the optical axis 114 is installed on the support rod 18, the first air cylinder 111 is installed on the frame body 11, and the bracket set 2 is respectively installed with the optical axis 114 and the first air cylinder 111; the angle of the support rod 18 and thus the angle of the bracket group 2 are controlled by adjusting the matching installation position of the sliding chute and the stand 115;
the base set 1 further comprises an anchor 12, an optical axis mounting base 13, an auxiliary adjusting plate 17, a first cylinder connecting piece 110, a first cylinder connecting base 112 and a first connecting plate 113, an auxiliary sliding groove is formed in the other end of the auxiliary adjusting plate 17, the other end of the auxiliary adjusting plate 17 is connected with a vertical frame 115 through the auxiliary sliding groove, the anchor 12 is arranged on the frame body 11, the anchor 12 is located below the bracket set 2 and slows down falling of the bracket set, the first connecting plate 113 is arranged on two sides of the frame body 11, the first cylinder connecting base 112 is arranged on the first connecting plate 113, the first cylinder 111 is arranged on the first cylinder connecting base 112, an extending end of the first cylinder 111 is mounted with the bracket set 2 through the first cylinder connecting piece 110, one end of the auxiliary adjusting plate 17 is connected with the supporting rod 18 through another bolt 15, and the optical axis 114 is connected with the supporting rod 18 through the optical axis mounting bases 13 at two ends;
the bracket group 2 comprises an upper beam 21, a side beam 22, rubber wheels 23, rubber wheel support beams 24, second sliding blocks 25, roller connecting beams 26, rollers 27, connecting seats 28, a middle beam 29, a bottom beam 210, second cylinder connecting seats 216, second cylinders 217 and belt seat guide rails 219, wherein the upper beam 21 is provided with a horizontal belt seat guide rail 219, the horizontal belt seat guide rail 219 is installed with the movable clamping mechanism 3, two ends of the upper beam 21 are respectively provided with a vertical side beam 22, the middle part of the upper beam 21 is provided with the vertical middle beam 29, the rubber wheel support beams 24 are horizontally arranged, the rubber wheel support beams 24 in array arrangement are connected with the side beam 22 and the middle beam 29, the rubber wheel support beam 24 is provided with a plurality of rubber wheels 23 in array arrangement, the side beam 22 is connected with the first cylinder connecting member 110, the side beam 22 is provided with the second sliding blocks 25, the second sliding blocks 25 are connected with the optical axis 114, one second cylinder 217 is respectively connected with one side beam 22 and the middle beam 29 through two second cylinder connecting seats 216, the other second cylinder 217 is respectively connected with the other side beam 22 and the middle beam 22, the other side beam 22 is connected with the other cylinder connecting seat 216, the roller connecting seat 26, the lower end of the movable clamping beam 26 is respectively connected with the bottom beam 26, the roller connecting seats 26, the roller connecting mechanism 26, the side beam 26 is installed with the side beam 26, the movable clamping mechanism 26, and the bottom beam 26; the upper beam 21, the side beam 22, the middle beam 29 and the bottom beam 210 form a frame structure, a worker can move to the middle position of the glass frame through the roller 27 on the bracket group 2, the glass frame plays a role of bearing, the rubber wheel 23 assists in guiding the glass to move, the glass can be protected, the glass can be effectively prevented from being damaged when the glass frame is convenient to move, the second slider 25 is driven to move along the direction of the optical axis 114 through the extension and retraction of the first air cylinder 111, and the height can be adjusted according to the installation position, the height of the worker, the working habit and the like;
the bracket assembly 2 further comprises a synchronous connecting shaft 213, second shaft supports 214 and gears 215, the three second shaft supports 214 are respectively connected with the two side beams 22 and the middle beam 29, the synchronous connecting shaft 213 is arranged on the second shaft supports 214, the gears 215 are arranged at two ends of the synchronous connecting shaft 213, the base assembly 1 further comprises racks 19, the racks 19 are connected with the supporting rods 18, and the gears 215 are meshed with the racks 19; transmitting power to the bracket group;
the bracket set 2 further comprises a connecting shaft 211, a fisheye joint 212 and a shoulder bolt 218, wherein the extending end of the second cylinder 217 is connected with the fisheye joint 212 through the connecting shaft 211, and the shoulder bolt 218 penetrates through the fisheye joint 212 to be connected with the movable clamping mechanism 3;
the movable clamping mechanism 3 comprises a third sliding block 31, a clamping plate 32, a third shaft support 33, main connecting plates 34, auxiliary connecting plates 35, a connecting beam 36, a third cylinder connecting seat 37, a third cylinder 38, a third cylinder connecting piece 39 and a hexagonal shaft 310, wherein the two main connecting plates 34 are respectively arranged at two ends of the connecting beam 36, the third shaft support 33 is arranged at the end part of each main connecting plate 34, the third cylinder connecting seat 37 is arranged at the middle part of each main connecting plate 34, the cylinders in the device are controlled by pedals, the auxiliary connecting plates 35 are arranged at two sides of the clamping plate 32, the clamping plate 32 is connected with the hexagonal shaft 310 through the auxiliary connecting plates 35, two ends of the hexagonal shaft 310 are connected with the third shaft support 33, one end of the third cylinder 38 is connected with the third cylinder connecting seat 37, the other end of the third cylinder 38 is connected with the auxiliary connecting plate 35, a shoulder bolt 218 penetrates through a fisheye joint 212 to be connected with the connecting beam 36, and the third sliding block 31 is connected with a guide rail 219; the second cylinder 217 drives the connecting beam 36 to move towards the middle along the guide rail 219 with a seat, and the third cylinder 38 extends out to enable the auxiliary connecting plate 35 to rotate, so that the clamping plate 32 clamps the glass and is suitable for various types of glass;
a plurality of said clamping plates 32 are arranged in an array, and a third cylinder 38 is connected to the end sub-connecting plate 35.
It should be noted that the terms "first," "second," and the like in the description and claims of this application and in the accompanying drawings are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of operation in sequences other than those illustrated or described herein.
It should be noted that, in the above embodiments, as long as the technical solutions can be aligned and combined without contradiction, those skilled in the art can exhaust all possibilities according to the mathematical knowledge of the alignment and combination, and therefore the present invention does not describe the technical solutions after alignment and combination one by one, but it should be understood that the technical solutions after alignment and combination have been disclosed by the present invention.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (8)
1. The utility model provides a five metals debugging check rack which characterized in that: including base group (1), bracket group (2) and removal clamping mechanism (3), install on base group (1) bracket group (2), the both sides of bracket group (2) are provided with removal clamping mechanism (3), and base group (1) is used for supporting bracket group (2) and adjusts the angle of bracket group (2), and removal clamping mechanism (3) are used for pressing from both sides the door and window of placing on bracket group (2) tightly.
2. The hardware debugging and inspecting stand of claim 1, characterized in that: base group (1) includes support body (11), round pin axle (14), bolt (15), regulating plate (16), bracing piece (18), first cylinder (111), optical axis (114) and grudging post (115), the both sides of support body (11) are provided with grudging post (115), the both sides of support body (11) still are rotated through round pin axle (14) and are connected with bracing piece (18), the one end of regulating plate (16) is connected with bracing piece (18) through a bolt (15), the other end of regulating plate (16) is provided with the spout, the other end of regulating plate (16) passes through the spout and is connected with grudging post (115), install optical axis (114) on bracing piece (18), install first cylinder (111) on support body (11), bracket group (2) establish the installation with optical axis (114), first cylinder (111) respectively.
3. The hardware debugging and inspecting stand of claim 2, characterized in that: the base set (1) further comprises ground feet (12), an optical axis mounting base (13), an auxiliary adjusting plate (17), a first cylinder connecting piece (110), a first cylinder connecting base (112) and a first connecting plate (113), wherein an auxiliary sliding groove is formed in the other end of the auxiliary adjusting plate (17), the other end of the auxiliary adjusting plate (17) is connected with a vertical frame (115) through the auxiliary sliding groove, the ground feet (12) are arranged on the frame body (11), the ground feet (12) are located below the bracket set (2), the first connecting plate (113) is arranged on two sides of the frame body (11), the first cylinder connecting base (112) is arranged on the first connecting plate (113), a first cylinder (111) is arranged on the first cylinder connecting base (112), the extending end of the first cylinder (111) is installed with the bracket set (2) through the first cylinder connecting piece (110), one end of the auxiliary adjusting plate (17) is connected with the supporting rod (18) through another bolt (15), and the optical axis (114) is connected with the supporting rod (18) through the optical axis mounting base (13) at two ends.
4. The hardware debugging and inspecting stand of claim 3, characterized in that: the bracket group (2) comprises an upper beam (21), side beams (22), rubber wheels (23), rubber wheel supporting beams (24), second sliding blocks (25), a roller connecting beam (26), a roller (27), connecting seats (28), a middle beam (29), a bottom beam (210), a second cylinder connecting seat (216), second cylinders (217) and a seat-with-seat guide rail (219), wherein the upper beam (21) is provided with a horizontal seat-with-seat guide rail (219), the horizontal seat-with-seat guide rail (219) is installed with a movable clamping mechanism (3), two ends of the upper beam (21) are respectively provided with a vertical side beam (22), the middle part of the upper beam (21) is provided with a vertical middle beam (29), the rubber wheel supporting beams (24) are horizontally arranged, the plurality of rubber wheel supporting beams (24) arranged in an array are connected with the side beams (22) and the middle beam (29), the rubber wheel supporting beams (24) arranged in an array are provided with a plurality of rubber wheels (23), the side beams (22) are connected with the first cylinder connecting piece (110), the second sliding blocks (25) are arranged on the upper beam (22), the second sliding blocks (114) are connected with the second cylinder connecting seats (216), and the second sliding wheel supporting beams (217) are respectively connected with the second cylinder (216) and the middle beam (219), the other second cylinder (217) is respectively connected with the other side beam (22) and the middle beam (29) through other two second cylinder connecting seats (216), the extending ends of the two second cylinders (217) are respectively installed with the movable clamping mechanism (3), the bottom beams (210) are installed at the lower ends of the side beam (22) and the middle beam (29), the bottom beams (210) are connected with the roller connecting beam (26) through the connecting seats (28), and a plurality of rollers (27) are arranged on the horizontal roller connecting beam (26) in an array mode.
5. The hardware debugging and inspecting stand of claim 4, characterized in that: bracket group (2) still includes synchronous connecting axle (213), secondary shaft support (214) and gear (215), and is three secondary shaft support (214) are connected with two curb girder (22), centre sill (29) respectively, are provided with synchronous connecting axle (213) on secondary shaft support (214), and the both ends of synchronous connecting axle (213) are provided with gear (215), base group (1) still includes rack (19), rack (19) are connected with bracing piece (18), and gear (215) and rack (19) meshing.
6. The hardware debugging and inspecting stand of claim 4, characterized in that: the bracket group (2) further comprises a connecting shaft (211), a fisheye joint (212) and a shoulder bolt (218), the extending end of the second cylinder (217) is connected with the fisheye joint (212) through the connecting shaft (211), and the shoulder bolt (218) penetrates through the fisheye joint (212) to be connected with the movable clamping mechanism (3).
7. The hardware debugging and inspecting stand of claim 6, characterized in that: the movable clamping mechanism (3) comprises a third sliding block (31), a clamping plate (32), a third shaft support (33), main connecting plates (34), auxiliary connecting plates (35), a connecting beam (36), a third cylinder connecting seat (37), a third cylinder (38), a third cylinder connecting piece (39) and a six-edge shaft (310), wherein the two main connecting plates (34) are respectively arranged at two ends of the connecting beam (36), the third shaft support (33) is arranged at the end part of each main connecting plate (34), the third cylinder connecting seat (37) is arranged in the middle of each main connecting plate (34), the auxiliary connecting plates (35) are arranged at two sides of the clamping plate (32), the clamping plate (32) is connected with the six-edge shaft (310) through the auxiliary connecting plates (35), two ends of the six-edge shaft (310) are connected with the third shaft support (33), one end of the third cylinder (38) is connected with the third cylinder connecting seat (37), the other end of the third cylinder (38) is connected with the auxiliary connecting plates (35), a shoulder bolt (218) penetrates through a fisheye joint (212) to be connected with the connecting beam (36), and the sliding guide rail (31) is connected with a sliding guide rail (219).
8. The hardware debugging and inspecting stand of claim 7, characterized in that: a plurality of the clamping plates (32) are arranged in an array, and a third air cylinder (38) is connected with a secondary connecting plate (35) at the end part.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223005540.8U CN218673711U (en) | 2022-11-11 | 2022-11-11 | Hardware debugging and testing frame |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223005540.8U CN218673711U (en) | 2022-11-11 | 2022-11-11 | Hardware debugging and testing frame |
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Publication Number | Publication Date |
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CN218673711U true CN218673711U (en) | 2023-03-21 |
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CN202223005540.8U Active CN218673711U (en) | 2022-11-11 | 2022-11-11 | Hardware debugging and testing frame |
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CN (1) | CN218673711U (en) |
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2022
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