CN212430285U - Support frame for terminal equipment of X-ray imaging system and terminal equipment - Google Patents

Support frame for terminal equipment of X-ray imaging system and terminal equipment Download PDF

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Publication number
CN212430285U
CN212430285U CN202021458469.7U CN202021458469U CN212430285U CN 212430285 U CN212430285 U CN 212430285U CN 202021458469 U CN202021458469 U CN 202021458469U CN 212430285 U CN212430285 U CN 212430285U
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China
Prior art keywords
support
support frame
terminal equipment
hole
rotating sleeve
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CN202021458469.7U
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Chinese (zh)
Inventor
王宏灿
张立宇
陶欢
潘绍波
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Changzhou Sifary Medical Technology Co ltd
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Changzhou Sifary Medical Technology Co ltd
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Abstract

The utility model relates to a support frame and terminal equipment for terminal equipment of X-ray imaging system, the support frame includes front support and after-poppet, the front support is the shell structure support that is L-shaped, after-poppet swing joint is on the top of front support, has the damping when rotating the after-poppet; this novel support frame angularly adjustable, what can stabilize places on the desktop.

Description

Support frame for terminal equipment of X-ray imaging system and terminal equipment
Technical Field
The utility model relates to a support frame field, in particular to X ray imaging system's terminal equipment is with support frame and terminal equipment.
Background
The digital X-ray imaging system in the mouth is a digital device for shooting the mouth through X-rays, and is suitable for dental examination of the mouth or shooting diagnosis of intraoral structural diseases such as teeth, jaw and the like; the support frame for the terminal equipment of the common X-ray imaging system in the market can not be adjusted in angle or cannot be stably placed on a desktop.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is through X ray imaging system's support frame for terminal equipment, this neotype support frame angularly adjustable, what can stabilize places on the desktop.
In order to solve the technical problem, the utility model provides a support frame for terminal equipment of X-ray imaging system, the support frame includes fore-stock and after-poppet, the fore-stock is the shell structure support that is L shape, after-poppet swing joint has the damping on the top of fore-stock during rotatory after-poppet.
Furthermore, the left side and the right side of the front part of the front support are both vertically provided with limiting bulges, and a tablet personal computer is clamped between the limiting bulges and the front end surface of the rear part of the front support; the limiting protrusion prevents the tablet computer from toppling forwards, so that the front support is more reliable in bearing.
Furthermore, a through hole is formed in the side face of the top of the rear support, and a plurality of clamping grooves are uniformly formed in the circumference of the inner wall of the through hole;
the left side and the right side of the top of the front support are both provided with a hollow columnar connecting part, the rear support is positioned on the inner side of the connecting parts on the left side and the right side, the outer end face of each connecting part is provided with a counter bore, a bolt penetrates through the middle through hole of the connecting part on the left side and the right side, the left side and the right side of the bolt are both sleeved with a T-shaped rotating sleeve, the large end of each rotating sleeve is positioned in the counter bore, the circumference of the small end of each rotating sleeve is uniformly provided with bulges which are the same as the clamping grooves in number and correspond to the positions of the clamping grooves, the small end of each rotating sleeve penetrates through the middle through hole of the connecting part, the bulges are in sliding fit with the clamping grooves, the small end of each rotating sleeve is sleeved with a gasket, the outer end of the;
the nut is screwed to increase the friction force between the outer side surface of the gasket and the large end of the rotating sleeve, and the rotating rear support can drive the rotating sleeve on the left side and the right side to rotate.
A terminal device of an X-ray imaging system comprises the support frame, wherein a tablet personal computer is loaded at the front end of the support frame, a PCBA integrated circuit board integrating a USB interface and a data connector is arranged in the support frame, the USB interface is connected with an X-ray sensor outside the support frame through a USB data wire, and the data connector penetrates through a through hole formed in the support frame and is inserted into the data interface of the tablet personal computer; the X-ray sensor can convert the received X-ray signals into electric signals and transmit the electric signals to the PCBA, and the tablet personal computer can receive and process data transmitted by the PCBA so as to generate X-ray images; the terminal equipment occupies small space and can realize mobile operation and observation; because the volumes of the support frame and the tablet personal computer are far smaller than those of the special computer and the display screen, the terminal equipment saves more space; when the tablet computer receives the data transmitted by the PCBA integrated circuit board, an operator can pull the tablet computer from the data connector, the tablet computer is moved to generate X-ray images, and during moving operation, a patient can conveniently and visually see the operation process and the generated X-ray images.
The utility model has the advantages that: the angle of the novel support frame is adjustable, and the novel support frame can be stably placed on a table top; after the nut is screwed, friction force can be generated between the outer side face of the gasket and the large end of the rotating sleeve, so that damping is realized when the rear support is rotated, and the support frame can be stably placed on a table top; the terminal equipment containing the support frame occupies small space and can realize mobile operation and observation.
Drawings
In order to clarify the explanation of the innovative principles of the present invention and its technical advantages compared with the prior art supports, a possible embodiment is described below, by way of non-limiting example applying said principles, with the aid of the annexed drawings. In the figure:
fig. 1 is a perspective view of a support frame for a terminal device of an X-ray imaging system according to an embodiment of the present invention;
FIG. 2 is a perspective view of the PCBA integrated circuit board;
FIG. 3 is a disassembled perspective view of the front bracket;
FIG. 4 is a perspective view of the rear bracket;
fig. 5 is a perspective view of the swivel sleeve.
Detailed Description
Example 1
Referring to fig. 1-5, the support frame 1 of the terminal device of the X-ray imaging system of the present embodiment includes a front frame 7 and a rear frame 8, the front frame 7 is an L-shaped frame with a shell structure, the rear frame 8 is movably connected to the top end of the front frame 7, and the rear frame 8 is rotated to provide damping.
The left side and the right side of the front portion of the front support 7 are both vertically provided with a limiting protrusion T, and the limiting protrusion T and the front end face 9 at the rear portion of the front support 7 are used for clamping the tablet computer 2.
A through hole is formed in the side face of the top of the rear bracket 8, and a plurality of clamping grooves 13 are uniformly distributed on the circumference of the inner wall of the through hole; the left side and the right side of the top of the front bracket 7 are both provided with a hollow columnar connecting part L, the rear bracket 8 is positioned at the inner side of the connecting part L at the left side and the right side, a counter bore 16 is arranged on the outer end surface of the connecting part L, a bolt 17 is arranged in the middle through hole of the connecting part L on the left side and the right side in a penetrating way, the left side and the right side of the bolt 17 are both sleeved with T-shaped rotating sleeves 18, the large ends of the rotating sleeves 18 are positioned in the counter bores 16, the circumference of the small end circumference of the rotary sleeve 18 is evenly provided with bulges 19 with the same number and the corresponding positions with the clamping grooves 13, the small end of the rotating sleeve 18 passes through the middle through hole of the connecting part L, the bulge 19 is in sliding fit with the clamping groove 13, a gasket 20 is sleeved on the small end of the rotating sleeve 18, a nut 21 is in threaded fit on the outer end of the thread of the bolt 17, and a sealing cover 22 is fixed on the outer port of the connecting part L in a matched manner; the nut 21 is screwed to increase the friction force between the outer side surface W of the gasket 20 and the large end of the rotating sleeve 18, and the rotating rear bracket 8 can drive the rotating sleeve 18 on the left side and the right side to rotate.
Example 2
As shown in fig. 1, a terminal device of an X-ray imaging system including the support frame of embodiment 1, where a tablet pc 2 is supported at a front end of the support frame 1, a PCBA integrated circuit board 5 integrating a USB interface 3 and a data connector 4 is disposed in the support frame 1, the USB interface 3 is connected to an X-ray sensor C outside the support frame 1 through a USB data line 6, and the data connector 4 passes through a through hole formed in the support frame 1 and is inserted into a data interface of the tablet pc 2;
the X-ray sensor C can convert the received X-ray signals into electric signals and transmit the electric signals to the PCBA integrated circuit board 5, and the tablet computer 2 can receive and process data transmitted by the PCBA integrated circuit board 5 to generate X-ray images.
As shown in fig. 3, the left side and the right side of the front part of the front bracket 7 are both vertically provided with a limiting protrusion T, and the tablet computer 2 can be clamped between the limiting protrusion T and the front end face 9 at the rear part of the front bracket 7.
A through hole is formed in the side face of the top of the rear bracket 8, and a plurality of clamping grooves 13 are uniformly distributed on the circumference of the inner wall of the through hole;
the left side and the right side of the top of the front support 7 are both provided with a hollow columnar connecting part L, the rear support 8 is positioned on the inner sides of the connecting parts L on the left side and the right side, the outer end face of the connecting part L is provided with a counter bore 16, a bolt 17 penetrates through a middle through hole of the connecting part L on the left side and the right side, the left side and the right side of the bolt 17 are both sleeved with a T-shaped rotating sleeve 18, the large end of the rotating sleeve 18 is positioned in the counter bore 16, 4 bulges 19 corresponding to the positions of the clamping grooves 13 are uniformly distributed on the circumference of the small end of the rotating sleeve 18, the small end of the rotating sleeve 18 penetrates through the middle through hole of the connecting part L, the bulges 19 are slidably matched into the clamping grooves 13, the small end of the rotating sleeve 18 is sleeved with a gasket 20, the outer end of the thread of the bolt 17 is in threaded fit with a nut 21, and the;
the clamping groove 13 is rectangular, trapezoidal or cylindrical, the shape of the protrusion 19 corresponds to that of the clamping groove 13, and the clamping groove 13 is preferably rectangular in the embodiment.
The nut 21 is screwed to increase the friction force between the outer side surface W of the gasket 20 and the large end of the rotating sleeve 18, and the rotating rear bracket 8 can drive the rotating sleeve 18 on the left side and the right side to rotate.
The joint of the front bracket 7 and the rear bracket 8 can also realize that the rear bracket 8 has damping when rotating through a cam structure or a spring structure.
The angle of the novel support frame 1 can be adjusted, and the novel support frame can be stably placed on a table top; after the nut 21 is screwed, friction force can be generated between the outer side surface W of the gasket 20 and the large end of the rotating sleeve 18, so that damping is realized when the rear bracket 8 is rotated, and the support frame 1 can be stably placed on a table top; the terminal equipment containing the support frame 1 occupies small space and can realize mobile operation and observation.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.

Claims (4)

  1. Support frame for terminal equipment of X ray imaging system, its characterized in that: the support frame (1) comprises a front support (7) and a rear support (8), the front support (7) is an L-shaped shell structure support, the rear support (8) is movably connected to the top end of the front support (7), and damping is achieved when the rear support (8) is rotated.
  2. 2. The support bracket of claim 1, wherein: the tablet computer is characterized in that a left side and a right side of the front portion of the front support (7) are vertically provided with limiting protrusions (T), and the tablet computer (2) is clamped between the limiting protrusions (T) and a front end face (9) of the rear portion of the front support (7).
  3. 3. The support bracket of claim 1, wherein: a through hole is formed in the side face of the top of the rear support (8), and a plurality of clamping grooves (13) are uniformly distributed on the circumference of the inner wall of the through hole;
    the left side and the right side of the top of the front support (7) are respectively provided with a hollow columnar connecting part (L), the rear support (8) is positioned at the inner side of the connecting parts (L) at the left side and the right side, the outer end face of the connecting part (L) is provided with a counter bore (16), a bolt (17) penetrates through a middle through hole of the connecting parts (L) at the left side and the right side, the left side and the right side of the bolt (17) are respectively sleeved with a T-shaped rotating sleeve (18), the big end of the rotating sleeve (18) is positioned in the counter bore (16), bulges (19) which are the same as the clamping grooves (13) in number and correspond to the positions are uniformly distributed on the circumference of the small end of the rotating sleeve (18), the small end of the rotating sleeve (18) penetrates through the middle through hole of the connecting parts (L), the bulges (19) are in sliding fit with the clamping grooves (13), and gaskets (20) are sleeved on, a nut (21) is in threaded fit with the outer end of the thread of the bolt (17), and a sealing cover (22) is fixed on the outer port of the connecting part (L) in a matched manner;
    the friction force between the outer side surface (W) of the gasket (20) and the large end of the rotary sleeve (18) can be increased by screwing the nut (21), and the rotary sleeve (18) on the left side and the right side can be driven to rotate by rotating the rear support (8).
  4. 4. A terminal device of an X-ray imaging system comprising the support stand of claim 1, characterized in that: the front end of the support frame (1) is loaded with a tablet personal computer (2), a PCBA integrated circuit board (5) integrating a USB interface (3) and a data connector (4) is arranged in the support frame (1), the USB interface (3) is connected with an X-ray sensor (C) outside the support frame (1) through a USB data wire (6), and the data connector (4) penetrates through a through hole formed in the support frame (1) and is inserted into the data connector of the tablet personal computer (2);
    the X-ray sensor (C) can convert the received X-ray signals into electric signals and transmit the electric signals to the PCBA integrated circuit board (5), and the tablet personal computer (2) can receive and process data transmitted by the PCBA integrated circuit board (5) to generate X-ray images.
CN202021458469.7U 2020-07-22 2020-07-22 Support frame for terminal equipment of X-ray imaging system and terminal equipment Active CN212430285U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021458469.7U CN212430285U (en) 2020-07-22 2020-07-22 Support frame for terminal equipment of X-ray imaging system and terminal equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021458469.7U CN212430285U (en) 2020-07-22 2020-07-22 Support frame for terminal equipment of X-ray imaging system and terminal equipment

Publications (1)

Publication Number Publication Date
CN212430285U true CN212430285U (en) 2021-01-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021458469.7U Active CN212430285U (en) 2020-07-22 2020-07-22 Support frame for terminal equipment of X-ray imaging system and terminal equipment

Country Status (1)

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CN (1) CN212430285U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111706758A (en) * 2020-07-22 2020-09-25 常州赛乐医疗技术有限公司 Support frame for terminal equipment of X-ray imaging system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111706758A (en) * 2020-07-22 2020-09-25 常州赛乐医疗技术有限公司 Support frame for terminal equipment of X-ray imaging system

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