Machine room data acquisition control cabinet
By introducing a transmission cylinder and sliding seat structure into the data acquisition control cabinet in the computer room, the problem of limited operating space inside the cabinet was solved, enabling more efficient component installation and debugging.
Patent Information
- Application Number
- CN202520441258.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-13
AI Technical Summary
The limited operating space inside the data acquisition and control cabinet in the computer room makes it difficult for installers to quickly install components.
A data acquisition control cabinet for a computer room was designed. It adopts a transmission cylinder and sliding seat structure, which makes the mounting plate detachable and can be operated outside the cabinet, providing a larger operating space.
It improves installation accuracy and efficiency, reduces operational difficulty, provides a more spacious operating environment, and facilitates the use of various tools and techniques by installers.
Smart Images

Figure CN223912741U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of control cabinet, more specifically, especially relate to a machine room data acquisition control cabinet. BACKGROUND
[0002] The machine room data acquisition control cabinet is a key device for data acquisition, processing, uploading and equipment control in a machine room.
[0003] During use of the machine room data acquisition control cabinet, some components are installed inside the machine room data acquisition control cabinet, but when installing these components, the components need to be installed inside the machine room data acquisition control cabinet, so the installer needs to reach into the cabinet to perform installation operation, and the limited operation space in the cabinet causes certain limitation, which makes the installer unable to perform installation operation quickly. UTILITY MODEL CONTENTS
[0004] The embodiment of the disclosure relates to a machine room data acquisition control cabinet, to solve the problem that when installing the components, the components need to be installed inside the machine room data acquisition control cabinet, so the installer needs to reach into the cabinet to perform installation operation, and the limited operation space in the cabinet causes certain limitation, which makes the installer unable to perform installation operation quickly.
[0005] The utility model relates to a machine room data acquisition control cabinet, which is achieved by the following specific technical means:
[0006] In a first aspect of the disclosure, a machine room data acquisition control cabinet is provided, comprising: a cabinet body, an installation plate is fixedly installed inside the cabinet body; the cabinet body further comprises: a cabinet door, the cabinet door is rotatable at the front end of the cabinet body; a support base, the support base has a rectangular seat structure, and the support base is fixedly installed at the bottom of the cabinet body; a cooling fan, the number of cooling fans is six, and the cooling fans are fixedly installed on both sides of the cabinet body in a symmetrical manner; an installation base, the number of installation bases is three, and the installation bases are fixedly installed inside the cabinet body below.
[0007] As a preferred scheme of the utility model, the cabinet body further comprises: an adjusting seat, the adjusting seat is slidingly arranged on the top of the installation base; a connecting seat A, the connecting seat A is fixedly arranged on the top of the adjusting seat; a transmission cylinder A, the transmission cylinder A is internally provided with a normal thread and a reverse thread; the transmission cylinder A is rotatable on the top of the connecting seat A; an anti-skid block A, the anti-skid block A is externally provided with anti-skid lines, and the anti-skid block A is fixedly arranged on the outside of the transmission cylinder A.
[0008] As the preferred scheme of the utility model, the cabinet body further includes: sliding seat A, the number of sliding seat A is two, sliding seat A is symmetrically slid on the both sides of the top of connecting seat A; fixed plug A, fixed plug A is integrally arranged on one side of sliding seat A; transmission screw rod A, transmission screw rod A is fixedly arranged on the other side of sliding seat A; transmission screw rod A is in threaded connection between transmission cylinder A; mounting seat A, the number of mounting seat A is two, mounting seat A is symmetrically fixed on the both ends of the top of adjusting seat; fixed slot A, fixed slot A is arranged on the top of mounting seat A.
[0009] As the preferred scheme of the utility model, the mounting plate further includes: connecting seat B, connecting seat B is integrally arranged on the top of the mounting plate; transmission cylinder B, the inside of transmission cylinder B is provided with a right thread and a reverse thread, and transmission cylinder B is rotated on the top of connecting seat B; anti-skid block B, anti-skid block B is externally provided with anti-skid lines, and anti-skid block B is fixed on the outside of transmission cylinder B; sliding seat B, the number of sliding seat B is two, and sliding seat B is symmetrically slid on the top of connecting seat B.
[0010] As the preferred scheme of the utility model, the mounting plate further includes: fixed plug B, fixed plug B is integrally arranged on one side of sliding seat B; transmission screw rod B, transmission screw rod B is fixed on the other side of sliding seat B; transmission screw rod B is in threaded connection between transmission cylinder B; mounting seat B, the number of mounting seat B is two, and mounting seat B is symmetrically integrally arranged on the top of the mounting plate; fixed slot B, fixed slot B is arranged in the inside of mounting seat B.
[0011] As the preferred scheme of the utility model, the mounting plate further includes: fixed base, the number of fixed base is two, and fixed base is symmetrically integrally arranged on the bottom of the mounting plate; connecting plug, connecting plug is integrally arranged on the bottom of fixed base; connecting slot, connecting slot is arranged on one side of connecting plug; connecting slot is matched between fixed plug B and fixed plug A.
[0012] Compared with the prior art, the utility model has the beneficial effects that:
[0013] When it is necessary to install the acquisition control component into the cabinet body, the rotating transmission cylinder A drives the sliding seat A to move stably and controllably, the movement of the sliding seat A directly drives the fixed plug A on one side to move, so that the fixed plug A can be smoothly separated from the connecting slot, and the design makes the dismounting and mounting process of the mounting plate more flexible, and sufficient convenience is reserved for subsequent maintenance work, when the mounting plate is dismounted and mounted outside the cabinet body, it provides a more spacious and barrier-free operation space for the installer, so that they can more calmly install and debug the precision components, effectively reduce the operation difficulty, improve the installation precision, and the open environment outside the cabinet body is conducive to the use of more diversified installation tools and skills by the installer, further improving the installation efficiency and quality. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the whole shaft side three-dimensional structure schematic diagram of the utility model.
[0015] Figure 2 It is the cabinet body structure schematic diagram of the utility model.
[0016] Figure 3 It is the connecting seat A structure schematic diagram of the utility model.
[0017] Figure 4 It is the mounting plate structure schematic diagram of the utility model.
[0018] Figure 5 It is the transmission cylinder B structure schematic diagram of the utility model.
[0019] Figure 6 It is the sliding seat B structure schematic diagram of the utility model.
[0020] In the drawing, the corresponding relationship between the component name and the drawing number is as follows:
[0021] 1, cabinet body;101, cabinet door;102, support base;103, cooling fan;104, mounting base;105, adjusting seat;106, connecting seat A;107, transmission cylinder A;108, anti-skid block A;109, sliding seat A;110, fixed plug A;111, transmission screw A;112, mounting seat A;113, fixed slot A;2, mounting plate;201, connecting seat B;202, transmission cylinder B;203, anti-skid block B;204, sliding seat B;205, fixed plug B;206, transmission screw B;207, mounting seat B;208, fixed slot B;209, fixed base;210, connecting plug;211, connecting slot. DETAILED DESCRIPTION
[0022] The embodiment of the utility model will be described in further detail below in combination with the drawings and examples.
[0023] Embodiment: as shown in the accompanying drawings Figure 1 to the accompanying drawings Figure 6 as shown:
[0024] The utility model provides a machine room data acquisition control cabinet, include: cabinet 1, the inside fixed mounting of cabinet 1 has mounting panel 2, cabinet 1 still includes: cabinet door 101, cabinet door 101 front end rotates in the front end of cabinet 1, support base 102, the shape of support base 102 is rectangular seat structure, and support base 102 fixed mounting is in the bottom of cabinet 1, heat dissipation fan 103, the number of heat dissipation fan 103 is set to six, heat dissipation fan 103 is fixedly installed in the both sides of cabinet 1 in symmetry, install base 104, the number of install base 104 is set to three, install base 104 fixedly installed in the inside below of cabinet 1, adjustment seat 105, adjustment seat 105 slides in the top of install base 104, connecting seat A 106, connecting seat A 106 is fixed in the top of adjustment seat 105, transmission cylinder A 107, the inside of transmission cylinder A 107 is set with right screw thread and reverse screw thread, transmission cylinder A 107 rotates in the top of connecting seat A 106, antiskid block A 108, the outside of antiskid block A 108 is set with antiskid line, and antiskid block A 108 is fixed in the outside of transmission cylinder A 107, sliding seat A 109, the number of sliding seat A 109 is set to two, and sliding seat A 109 slides in the both sides of the top of connecting seat A 106 in symmetry, fixed plug block A 110, fixed plug block A 110 is integrally arranged in one side of sliding seat A 109, transmission screw rod A 111, transmission screw rod A 111 fixed setting is in the other side of sliding seat A 109, and transmission screw rod A 111 is connected between transmission cylinder A 107 with screw thread, mounting seat A 112, the number of mounting seat A 112 is set to two, and mounting seat A 112 is fixed in the both ends of the top of adjustment seat 105 in symmetry, fixed slot A 113, fixed slot A 113 is set up in the top of mounting seat A 112.
[0025] The mounting plate 2 further comprises: a connecting seat B201 integrally arranged on the top of the mounting plate 2; a transmission cylinder B202 with a positive thread and a reverse thread in the interior, and the transmission cylinder B202 rotates on the top of the connecting seat B201; an anti-skid block B203 with anti-skid lines on the exterior, and the anti-skid block B203 is fixed on the exterior of the transmission cylinder B202; two symmetrical sliding seats B204 sliding on the top of the connecting seat B201; a fixed insertion block B205 integrally arranged on one side of the sliding seat B204; a transmission screw B206 fixed on the other side of the sliding seat B204; the transmission screw B206 is in threaded connection with the transmission cylinder B202; two symmetrical mounting seats B207 integrally arranged on the top of the mounting plate 2; a fixed insertion slot B208 arranged in the interior of the mounting seat B207; two symmetrical fixed bases 209 integrally arranged on the bottom of the mounting plate 2; a connecting insertion block 210 integrally arranged on the bottom of the fixed base 209; and a connecting insertion slot 211 arranged on one side of the connecting insertion block 210, which is matched with the fixed insertion block B205 and the fixed insertion block A110.
[0026] The specific use and role of the embodiment are as follows: during the use of the machine room data acquisition control cabinet, when the acquisition control component is installed into the cabinet body 1, the mounting plate 2 can be disassembled by rotating the transmission cylinder A107, the transmission cylinder A107 drives the sliding seat A109 to move through the transmission screw A111, the fixed insertion block A110 on one side of the sliding seat A109 is separated from the connecting insertion slot 211, and then the mounting plate 2 can be taken out of the cabinet body 1 for installation, so that the installer has a larger operation space for installation.
[0027] When the installation of the acquisition control component is completed, the connecting insertion block 210 on the bottom of the mounting plate 2 is inserted into the fixed insertion slot A113, the transmission cylinder A107 is rotated in the opposite direction, the transmission cylinder A107 drives the sliding seat A109 to move, the fixed insertion block A110 on one side of the sliding seat A109 is inserted into the connecting insertion slot 211, the mounting plate 2 is fixed, and subsequent wiring operation of the acquisition control component is performed.
[0028] Moreover, the adjusting seat 105 and the mounting base 104 are in sliding connection, and during subsequent adjustment, the mounting base 104 is pulled to move, so that the mounting plate 2 can be in a suitable position in the cabinet body 1 for other operations.
Claims
1. A machine room data acquisition control cabinet, characterized in that, Include: The cabinet (1), the mounting plate (2) is fixedly installed inside the cabinet (1);The cabinet (1) further includes: cabinet door (101), cabinet door (101) front end rotates in the front end of cabinet (1);Support base (102), the shape of support base (102) is rectangular seat structure, and support base (102) is fixedly installed in the bottom of cabinet (1);Heat dissipation fan (103), the number of heat dissipation fan (103) is set to six, heat dissipation fan (103) is fixedly installed on both sides of cabinet (1) in symmetry;Mounting base (104), the number of mounting base (104) is set to three, and mounting base (104) is fixedly installed inside the lower part of cabinet (1).
2. The machine room data collection control cabinet of claim 1, wherein: The cabinet (1) further includes: adjustment seat (105), adjustment seat (105) slides on the top of mounting base (104);Connecting seat A (106), connecting seat A (106) is fixed on the top of adjustment seat (105);Drive cylinder A (107), the inside of drive cylinder A (107) is provided with a right thread and a reverse thread;Drive cylinder A (107) rotates on the top of connecting seat A (106);Anti-skid block A (108), anti-skid block A (108) is provided with anti-skid lines outside, and anti-skid block A (108) is fixed outside drive cylinder A (107).
3. The machine room data collection control cabinet of claim 2, wherein: The cabinet (1) further includes: sliding seat A (109), the number of sliding seat A (109) is set to two, and sliding seat A (109) slides on both sides of the top of connecting seat A (106) in symmetry;Fixed plug A (110), fixed plug A (110) is integrally arranged on one side of sliding seat A (109);Drive screw A (111), drive screw A (111) is fixedly arranged on the other side of sliding seat A (109);Drive screw A (111) is threadedly connected between drive cylinder A (107);Mounting seat A (112), the number of mounting seat A (112) is set to two, and mounting seat A (112) is fixedly arranged on both ends of the top of adjustment seat (105) in symmetry;Fixed slot A (113), fixed slot A (113) is arranged on the top of mounting seat A (112).
4. The machine room data collection control cabinet of claim 1, wherein: The mounting plate (2) further includes: connecting seat B (201), connecting seat B (201) is integrally arranged on the top of mounting plate (2);Drive cylinder B (202), the inside of drive cylinder B (202) is provided with a right thread and a reverse thread, and drive cylinder B (202) rotates on the top of connecting seat B (201);Anti-skid block B (203), anti-skid block B (203) is provided with anti-skid lines outside, and anti-skid block B (203) is fixed outside drive cylinder B (202);Sliding seat B (204), the number of sliding seat B (204) is set to two, and sliding seat B (204) slides on the top of connecting seat B (201) in symmetry.
5. The machine room data collection control cabinet of claim 4, wherein: The mounting plate (2) further comprises: a fixed plug B (205) integrally arranged on one side of the sliding seat B (204); a transmission screw B (206) fixed on the other side of the sliding seat B (204); the transmission screw B (206) is in threaded connection with the transmission cylinder B (202); two mounting seats B (207) are symmetrically integrally arranged on the top of the mounting plate (2); and a fixed slot B (208) is formed in the mounting seat B (207).
6. The machine room data collection control cabinet of claim 5, wherein: The mounting plate (2) further comprises: two fixed bases (209) symmetrically integrally arranged on the bottom of the mounting plate (2); a connecting plug (210) integrally arranged on the bottom of the fixed base (209); a connecting slot (211) formed on one side of the connecting plug (210); and the connecting slot (211) is matched with the fixed plug B (205) and the fixed plug A (110).