Guide rail and cabinet for realizing equipment information acquisition
By integrating a U-position information marking module, an IP address setting module, and a rail sensing information acquisition module into the rack rail, the problem of traditional rack rails being unable to automatically collect equipment information is solved, realizing automated collection and remote management of equipment information and improving rack operation and maintenance efficiency.
Patent Information
- Application Number
- CN202422939036.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Traditional rack rails lack equipment information collection capabilities, which means that backend rack monitoring systems rely on tedious manual data entry, resulting in low efficiency and a high risk of human error.
Design a guide rail for collecting equipment information, integrating a U-position information marking module, an IP address setting module, and a guide rail sensing information collection module, which can automatically collect equipment information and upload it to a remote cabinet monitoring system in real time.
It improves the efficiency of cabinet management and maintenance, reduces manual data entry workload and human error, and realizes automated management and remote monitoring of equipment information.
Smart Images

Figure CN223600180U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to rack guide technology field, concretely relates to a guide that realizes equipment information collection and a cabinet. BACKGROUND
[0002] As the infrastructure of data center deployment, the cabinet has an independent or self-supporting housing to accommodate electrical or electronic equipment, and is the key to ensure that these devices remain efficient, stable and safe in complex and variable operating environments. The cabinet not only provides a safe operating environment for precision equipment through internal design such as doors, removable or non-removable back panels, side panels, but also fixes and installs equipment through guide rails. However, in the traditional cabinet design, the guide rail function is relatively simple, usually a groove or ridge made of metal or other materials, which can withstand, fix, guide mobile devices or equipment and reduce friction, and is limited to physical support for equipment installation and fixation.
[0003] With the increasing variety and quantity of integrated equipment inside the cabinet, such as cabinet-type all-in-one machine, according to customer requirements, computing, storage, network, power distribution, standby power, refrigeration and intelligent control modules are integrated inside the cabinet, which puts higher requirements on the management and maintenance of the cabinet. However, the current guide rail lacks equipment information collection function, so that the back-end cabinet monitoring system has to rely on a tedious manual input process when maintaining asset information, which is not only inefficient, especially when facing large cabinets with numerous internal equipment nodes, the workload of manual input is huge, and human errors are prone to occur, which brings many inconveniences to the operation and maintenance of the cabinet. SUMMARY
[0004] In view of the current guide rail only having the function of equipment installation and physical support, and the back-end cabinet asset information management can only be achieved through manual input, the utility model provides a guide rail that realizes equipment information collection.
[0005] To solve the above problems, the utility model adopts the technical scheme, a guide rail that realizes equipment information collection, including guide rail body, U position information marking module, IP address setting module and guide rail sensing information collection module;
[0006] The guide rail body includes a transverse contact surface and a longitudinal contact surface perpendicular to each other;
[0007] The U position information marking module and the IP address setting module are both arranged at the front end of the guide rail body;
[0008] The guide rail sensing information collection module is arranged at the longitudinal contact surface;
[0009] The guide rail sensing information acquisition module is connected with the U-bit information marking module, the IP address setting module and the equipment node.
[0010] As preferred, it further comprises an L-shaped support component;
[0011] The L-shaped support component comprises a longitudinal support surface and a transverse support surface perpendicular to each other;
[0012] The guide rail body is first transversely bent inwards along the longitudinal support surface, then longitudinally bent downwards, and then secondly transversely bent along the transverse support surface towards the side of the longitudinal support surface;
[0013] The first transverse bending forms a vertical mounting portion and a transverse support portion;
[0014] The longitudinal bending bends the transverse support portion to obtain a longitudinal support portion;
[0015] The second transverse bending bends the longitudinal support portion to obtain a transverse mounting portion;
[0016] The transverse contact surface is the upper surface of the transverse support portion, and the longitudinal contact surface is the outer surface of the longitudinal support portion;
[0017] The vertical mounting portion is attached to the longitudinal support surface and is fixed by a screw;
[0018] The transverse mounting portion is attached to the transverse support surface and is fixed by a screw;
[0019] The lower surface of the transverse support portion, the inner surface of the longitudinal support portion, the transverse mounting portion, the transverse support surface and the longitudinal support surface form a guide rail cavity. In this preferred embodiment, the L-shaped support component of the guide rail makes full use of the space of the rack, improves the utilization rate of the internal space of the cabinet, and also provides more flexibility for the installation and fixation of the equipment.
[0020] As preferred, it further comprises an equipment weight information acquisition module;
[0021] The equipment weight information acquisition module is arranged at the lower surface of the transverse support portion in the guide rail cavity;
[0022] The equipment weight information acquisition module is connected with the guide rail sensing information acquisition module. In this preferred embodiment, by adding the equipment weight information acquisition module, the guide rail can monitor the weight of the equipment in real time, providing important data support for the load balancing and safety management of the cabinet.
[0023] Preferably, the U-bit information marking module comprises a first rotary counting column, a second rotary counting column and a first trigger button;
[0024] The outer side of the guide rail cavity of the front end of the guide rail body is fixedly provided with a support plate;
[0025] The first rotary counting column and the second rotary counting column are arranged on the support plate;
[0026] The first trigger button, the first rotary counting column and the second rotary counting column are connected with the guide rail sensing information acquisition module. In this preferred embodiment, the U-bit information marking module can accurately record the position information of the equipment on the guide rail through the design of the rotary counting column, and provide data support for the asset management of the cabinet. Moreover, the U-bit information marking module is arranged at the front end of the guide rail body, so that the U-bit information marking module can be conveniently designed.
[0027] Preferably, the IP address setting module comprises a second trigger button and four data setting units;
[0028] Each data setting unit is arranged on the support plate;
[0029] Each data setting unit comprises a first touch counter, a second touch counter and a third touch counter;
[0030] The second trigger button and the first touch counter, the second touch counter and the third touch counter of each data setting unit are connected with the guide rail sensing information acquisition module. In this preferred embodiment, the IP address setting module can flexibly set and record the IP address information of the equipment through the design of the data setting unit, and provides a convenient IP address setting module for the network management and remote monitoring of the cabinet.
[0031] Preferably, the guide rail sensing information acquisition module is connected with an RFID transmission module, and is connected with a remote cabinet monitoring system through the RFID transmission module.
[0032] Preferably, the guide rail sensing information acquisition module is connected with a remote cabinet monitoring system through an RS485 signal line;
[0033] The RS485 signal line is arranged in the guide rail cavity.
[0034] Preferably, the vertical mounting portion is fixed to the longitudinal support surface of the rack through three screws;
[0035] The vertical mounting portion is respectively provided with screw hole positions near the front end, the middle and near the rear end of the guide rail body;
[0036] The transverse mounting portion is fixed to the transverse support surface of the rack by three screws;
[0037] The transverse mounting portion is provided with screw hole positions at the front end, the middle and the rear end of the guide rail body, respectively.
[0038] Preferably, the guide rail sensing information acquisition module is connected with the remote cabinet monitoring system through a network switch.
[0039] The device node is also connected with the remote cabinet monitoring system through a network switch. In this preferred scheme, the guide rail sensing information acquisition module can upload device information to the remote cabinet monitoring system in real time through the connection of the network switch, realizing remote monitoring and management of information and improving the operation and maintenance efficiency of the cabinet.
[0040] In another aspect, the utility model also provides a cabinet, which comprises a cabinet shell and a rack.
[0041] The rack is arranged inside the cabinet shell.
[0042] The device node is arranged on the rack through a guide rail, and the guide rail is the guide rail of the first aspect. In this scheme, the cabinet adopts the guide rail with the device information acquisition function described above, which can automatically collect device information and upload it to the remote cabinet monitoring system in real time, improving the management and maintenance efficiency of the cabinet and reducing the operation and maintenance cost. At the same time, the design of the cabinet fully considers the installation and fixing requirements of the device, providing a guarantee for the stable operation of the device.
[0043] As can be seen from the above technical scheme, the utility model has the advantages that the scheme provides a guide rail for realizing device information acquisition, which can automatically collect device information and upload it to the remote cabinet monitoring system in real time through the integration of the U-bit information marking module, the IP address setting module and the guide rail sensing information acquisition module. Furthermore, the cabinet of the utility model can improve the management and maintenance efficiency and reduce the workload of manual input and human errors. BRIEF DESCRIPTION OF DRAWINGS
[0044] In order to more clearly illustrate the technical scheme of the utility model, the drawings needed in the description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor.
[0045] Figure 1 It is a structural schematic view of the guide rail for realizing device information acquisition of the utility model.
[0046] Figure 2The control schematic diagram of one embodiment of the guide rail for realizing equipment information collection of the utility model.
[0047] Figure 3 The control schematic diagram of another embodiment of the guide rail for realizing equipment information collection of the utility model.
[0048] Figure 4 The circuit schematic diagram of the RFID transmission module of the utility model.
[0049] Figure 5 The connection schematic diagram of the guide rail for realizing equipment information collection and the remote end of the utility model.
[0050] Figure 6 The structure schematic diagram of the U position information marking module and the IP address setting module of the utility model.
[0051] Among them, 1 is a guide rail, 1.1 is a horizontal contact surface, 1.2 is a longitudinal contact surface, 2 is a U position information marking module, 3 is an equipment node, 4 is an IP address setting module, 5 is a guide rail sensing information collection module, 6 is a remote cabinet monitoring system, 7 is an L-shaped supporting part, 8 is a screw, 9 is an equipment weight information collection module, 10 is an RFID chip, 11 is an antenna, 12 is a network switch, 13 is a supporting plate, 14 is a first trigger button, 15 is a first rotary counting column, 16 is a second rotary counting column, 17 is a second trigger button, 18 is a first point touch counter, 19 is a second point touch counter, and 20 is a third point touch counter. DETAILED DESCRIPTION
[0052] In order to make the purpose, characteristics and advantages of the utility model more obvious and easy to understand, the technical solutions in the utility model will be described clearly and completely in combination with the drawings in the specific embodiments below. Obviously, the following described embodiments are only some of the embodiments of the utility model, but not all the embodiments. Based on the embodiments in the patent, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the patent.
[0053] In the following embodiments, the terms involved are explained as follows:
[0054] U is the latest unit inside the cabinet, 1U is equal to 44.45mm, and the general cabinet is divided into different height specifications such as 12U, 24U and 42U, and electrical equipment is installed on the corresponding different rack U positions.
[0055] IP address is the abbreviation of Internet Protocol Address, which refers to the Internet Protocol Address.
[0056] RFID, short for Radio Frequency Identification, is a non-contact data communication method between a reader and a tag.
[0057] Example 1
[0058] like Figure 1 As shown, a guide rail for collecting device information includes a guide rail body 1, a U-position information marking module 2, an IP address setting module 4, and a guide rail sensing information collection module 5.
[0059] The guide rail body 1 includes a transverse contact surface 1.1 and a longitudinal contact surface 1.2 that are perpendicular to each other;
[0060] Both the U-position information marking module 2 and the IP address setting module 3 are located at the front end of the guide rail body 1;
[0061] The guide rail sensing information acquisition module 5 is located at the longitudinal contact surface 1.2;
[0062] like Figure 2 As shown, the guide rail sensing information acquisition module 5 is connected to the U-position information marking module 2, the IP address setting module 4, and the device node 3, and is also connected to the remote cabinet monitoring system 6.
[0063] It should be noted that the device node 3 can slide along the guide rail body 1 from the front end to the rear end, and during the sliding process, it is pressed against the transverse contact surface 1.1 and the longitudinal contact surface 1.2;
[0064] The guide rail sensing information acquisition module 5 is provided with an interface for connecting to the device node 3;
[0065] This embodiment integrates a U-position information marking module 2, an IP address setting module 4, and a guide rail sensing information acquisition module 5. The guide rail can automatically collect equipment information and upload it to the remote cabinet monitoring system 6 in real time.
[0066] Example 2
[0067] The above embodiment one also includes an L-shaped support component 7;
[0068] The L-shaped support component 7 includes a longitudinal support surface and a transverse support surface that are perpendicular to each other;
[0069] After the guide rail body 1 is bent laterally inward along the longitudinal support surface for the first time, it is bent longitudinally downward, and then it is bent laterally a second time along the transverse support surface toward the longitudinal support surface.
[0070] The first lateral bend forms a vertical mounting section and a lateral support section;
[0071] The longitudinal bending of the transverse support part obtains a longitudinal support part;
[0072] The second transverse bending of the longitudinal support part obtains a transverse mounting part;
[0073] The transverse contact surface 1.1 is the upper surface of the transverse support part, and the longitudinal contact surface 1.2 is the outer surface of the longitudinal support part;
[0074] The vertical mounting part is attached to the longitudinal support surface and is fixed by a screw 8;
[0075] The transverse mounting part is attached to the transverse support surface and is fixed by a screw 8;
[0076] The lower surface of the transverse support part, the inner surface of the longitudinal support part, the transverse mounting part, the transverse support surface and the longitudinal support surface form a guide rail cavity;
[0077] It should be noted that the L-shaped support part 7 makes full use of the space inside the cabinet, improves the utilization rate of the space inside the cabinet, and also provides more flexibility for the installation and fixation of the device nodes;
[0078] As shown in Figure 3 The lower surface of the transverse support part in the guide rail cavity is also provided with a device weight information acquisition module 9, and the guide rail sensing information acquisition module 5 is connected with the U-bit information marking module 2, the IP address setting module 4 and the device weight information acquisition module 9, and is connected with a remote cabinet monitoring system 6;
[0079] It should be noted that the device weight information acquisition module 9 can be realized by setting a pressure sensor at the lower surface of the transverse support part; by increasing the device weight information acquisition module 9, the guide rail can monitor the weight of the device in real time, and provide important data support for the load balancing and safety management of the cabinet;
[0080] The vertical mounting part is fixed to the longitudinal support surface of the rack 7 by three screws 8;
[0081] The vertical mounting part is provided with screw hole positions near the front end, the middle and the rear end of the guide rail body 1 respectively;
[0082] The transverse mounting part is fixed to the transverse support surface of the rack 7 by three screws 8;
[0083] The transverse mounting part is provided with screw hole positions near the front end, the middle and the rear end of the guide rail body 1 respectively.
[0084] Embodiment three
[0085] The guide rail sensing information acquisition module 5 in the above embodiment 1 is connected to an RFID transmission module and is connected to the remote cabinet monitoring system 6 through the RFID transmission module;
[0086] The RFID transmission module includes an RFID chip 10, a receiving unit, a transmitting unit, an antenna 11, and a tag;
[0087] The RFID chip 10 is connected to the receiving unit, the transmitting unit, and the guide rail sensing information acquisition module 5.
[0088] The antenna 11 is connected to both the receiving unit and the transmitting unit;
[0089] like Figure 4 As shown, the RFID chip 10 has a receiving pin RX, a first transmitting pin TX1, and a second transmitting pin TX2;
[0090] The receiving unit includes a capacitor C1 and a resistor R1;
[0091] The transmitting unit includes inductor L1, inductor L2, capacitor C2, capacitor C3, capacitor C4, capacitor C5, capacitor C6 and capacitor C7;
[0092] The first terminal of capacitor C1 is connected to the receiving pin RX of the RFID chip, and the second terminal of capacitor C1 is connected to the first terminal of resistor R1.
[0093] The first end of inductor L1 is connected to the first transmitting pin TX1 of the RFID chip, and the first end of inductor L2 is connected to the second reflecting pin TX2 of the RFID chip.
[0094] The second terminal of inductor L1 is connected to the first terminal of capacitor C2 and the first terminal of capacitor C3. The second terminal of capacitor C2 is connected to the second terminal of resistor R1, the first terminal of capacitor C4 and the first terminal of antenna 11.
[0095] The second terminal of inductor L2 is connected to the first terminal of capacitor C7 and the first terminal of capacitor C5. The second terminal of capacitor C7 is connected to the first terminal of capacitor C6 and the second terminal of antenna 11.
[0096] The second terminal of capacitor C3 is connected to the second terminals of capacitors C4, C5, and C6, and grounded.
[0097] It should be noted that the guide rail sensing information acquisition module 5 writes the collected U-position information, IP address, weight information and equipment information into the tag through the antenna 11. The tag can be set on the outside of the guide rail 1. The remote cabinet monitoring system 6 can obtain the U-position information, IP address, weight information and equipment information of the device node by scanning the tag with the RFID scanning device set locally.
[0098] The rail sensing information acquisition module 5 in the above embodiment three can also be connected with the remote cabinet monitoring system 5 through the RS485 signal line;
[0099] The RS485 signal line is arranged in the rail cavity.
[0100] Embodiment four
[0101] As shown in the above embodiment one, the rail sensing information acquisition module 5 is connected with the remote cabinet monitoring system 6 through the network switch 12; Figure 5 The device node 3 is also connected with the remote cabinet monitoring system 6 through the network switch 12;
[0102] It should be noted that through the connection of the network switch 12, the rail sensing information acquisition module 5 can upload the device information to the remote cabinet monitoring system 6 in real time, realizing the remote monitoring and management of the information and improving the operation and maintenance efficiency of the cabinet.
[0103] Embodiment five
[0104] In the above embodiment two, as shown in the above embodiment two, the U position information marking module 2 includes a first rotary counting column 15, a second rotary counting column 16 and a first trigger button 14;
[0105] Figure 6 The outer side of the rail cavity at the front end of the rail body 1 is fixedly provided with a support plate 13;
[0106] The first rotary counting column 15 and the second rotary counting column 16 are arranged on the support plate 13;
[0107] The first trigger button 14, the first rotary counting column 15 and the second rotary counting column 16 are all connected with the rail sensing information acquisition module 5;
[0108] It should be noted that the first rotary counting column 15 and the second rotary counting column 16 are both pre-selected to rotate a two-digit number corresponding to the U position, the first rotary counting column 15 corresponds to the ten-digit number, and the value range can be set to 0-4, the second rotary counting column 16 corresponds to the unit digit number, and the value range can be set to 0-9, through different combinations, the space of 01U, 02U, 03U, 04U……44U can be recorded, and after the first trigger button 14 on the support plate 13 is pressed, the set U position information will be collected to the rail sensing information acquisition module 5;
[0109] It should be noted that the first rotary counting column 15 and the second rotary counting column 16 are both pre-selected to rotate a two-digit number corresponding to the U position, the first rotary counting column 15 corresponds to the ten-digit number, and the value range can be set to 0-4, the second rotary counting column 16 corresponds to the unit digit number, and the value range can be set to 0-9, through different combinations, the space of 01U, 02U, 03U, 04U……44U can be recorded, and after the first trigger button 14 on the support plate 13 is pressed, the set U position information will be collected to the rail sensing information acquisition module 5;
[0110] The U-bit information marking module 2 can accurately record the position information of the equipment on the guide rail through the design of the rotating counting column, and provides data support for the asset management of the cabinet, and the U-bit information marking module 2 is arranged at the front end of the guide rail body 1, and after the first trigger button 14 is pressed, the U-bit information marking module 2 is triggered to report data to the guide rail sensing information acquisition module 5;
[0111] As shown in Figure 6 The IP address setting module 4 includes a second trigger button 17 and four data setting units;
[0112] Each data setting unit is arranged on the support plate 13;
[0113] Each data setting unit includes a first touch counter 18, a second touch counter 19 and a third touch counter 20;
[0114] The second trigger button 17 and the first touch counter 18, the second touch counter 19 and the third touch counter 20 of each data setting unit are connected with the guide rail sensing information acquisition module 5;
[0115] It should be noted that since the IPv4 address is divided into four parts, each part is represented by a decimal number, and the number range is 0 to 255, and the first touch counter 18 of each data setting unit corresponds to the hundredth digit, and the value range is 0-2, and when the value is 2, the counter is reset to 0 after the next click;
[0116] The second touch counter 19 corresponds to the tenth digit, and the value range is 0-9, and when the hundredth value is 1 or 0, the maximum count value is 9, and when the value is 9, the counter is reset to 0 after the next click; when the hundredth value is 2, the maximum count value is 5, and when the value is 5, the counter is reset to 0 after the next click;
[0117] The third touch counter 20 corresponds to the unit digit, and the value range is 0-9, and when the hundredth value is 1 or 0, the maximum count value is 9, and when the value is 9, the counter is reset to 0 after the next click; when the hundredth value is 2, the maximum count value of the counter is 5, and when the value is 5, the counter is reset to 0 after the next click.
[0118] For example, the touch counter in the above-mentioned embodiment four can adopt a CK7-PS61B type touch counter, and the rotating counting column can adopt an RBB type rotating counting column of Model RB series.
[0119] The working process of the guide rail for realizing equipment information acquisition is as follows:
[0120] First, according to the specific U-bit, the U-bit information marking module 2 is set to the two rotating counting columns, and according to the allocated IP address, the three point touch counters of each data setting unit of the IP address setting module 4 are set.
[0121] Secondly, after pressing the first trigger button 14 and the second trigger button 17, the U-bit information marking module 2 transmits the set U-bit information to the guide rail sensing information acquisition module 5, and the IP address setting module 4 transmits the set IP address to the guide rail sensing information acquisition module 5, and the guide rail information acquisition module 5 acquires the equipment weight information through the equipment weight information acquisition module 9 and acquires the equipment information of the equipment node 3.
[0122] Finally, the guide rail information acquisition module 5 sends the collected U-bit information, IP address, weight of the equipment node 3 and equipment serial number, equipment model and other equipment information to the remote cabinet monitoring system 6, so that the automatic acquisition of the equipment information is realized.
[0123] Embodiment six
[0124] The utility model also provides a kind of cabinet, including cabinet shell and rack;
[0125] The rack is arranged inside the cabinet shell;
[0126] The equipment node is arranged on the rack by guide rail, and the guide rail uses the guide rail described in embodiment one to embodiment five;
[0127] It needs to be explained that each equipment node in the cabinet sends equipment information to the remote cabinet monitoring system by the guide rail sensing information acquisition module of its own guide rail, which greatly improves the efficiency of management and maintenance of the cabinet, and reduces the workload and human error of manual input.
[0128] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the utility model. Therefore, the utility model will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A guide rail for implementing device information collection, characterized by comprising: The rail body, the U-bit information marking module, the IP address setting module and the rail sensing information acquisition module are included. The rail body includes a transverse contact surface and a longitudinal contact surface which are perpendicular to each other. The U-bit information marking module and the IP address setting module are arranged at the front end of the rail body. The rail sensing information acquisition module is arranged at the longitudinal contact surface. The rail sensing information acquisition module is connected with the U-bit information marking module, the IP address setting module and the equipment node.
2. The guide rail for realizing collection of device information according to claim 1, wherein An L-shaped supporting component is further included. The L-shaped supporting component includes a longitudinal supporting surface and a transverse supporting surface which are perpendicular to each other. The rail body is first bent transversely inward along the longitudinal supporting surface, then is bent longitudinally downward, and then is secondly bent transversely along the transverse supporting surface toward the side of the longitudinal supporting surface. The first transverse bending forms a vertical mounting portion and a transverse supporting portion. The longitudinal bending bends the transverse supporting portion to obtain a longitudinal supporting portion. The second transverse bending bends the longitudinal supporting portion to obtain a transverse mounting portion. The transverse contact surface is the upper surface of the transverse supporting portion, and the longitudinal contact surface is the outer surface of the longitudinal supporting portion. The vertical mounting portion is attached to the longitudinal supporting surface and is fixed by a screw. The transverse mounting portion is attached to the transverse supporting surface and is fixed by a screw. The lower surface of the transverse supporting portion, the inner surface of the longitudinal supporting portion, the transverse mounting portion, the transverse supporting surface and the longitudinal supporting surface enclose a rail cavity.
3. The guide rail for realizing collection of device information according to claim 2, wherein An equipment weight information acquisition module is further included. The equipment weight information acquisition module is arranged at the lower surface of the transverse supporting portion in the rail cavity. The equipment weight information acquisition module is connected with the rail sensing information acquisition module.
4. The guide rail for realizing collection of device information according to claim 2, wherein The U-bit information marking module includes a first rotary counting column, a second rotary counting column and a first trigger button. A support plate is fixedly arranged outside the rail cavity at the front end of the rail body. The first rotary counting column and the second rotary counting column are arranged on the support plate. The first trigger button, the first rotary counting column and the second rotary counting column are connected with the rail sensing information acquisition module.
5. The guide rail for realizing collection of device information according to claim 4, wherein The IP address setting module includes a second trigger button and four data setting units. Each data setting unit is arranged on the support plate. Each data setting unit includes a first touch counter, a second touch counter and a third touch counter. The second trigger button and the first touch counter, the second touch counter and the third touch counter of each data setting unit are connected with the rail sensing information acquisition module.
6. The guide rail for realizing collection of device information according to claim 2, wherein The rail sensing information acquisition module is connected with an RFID transmission module and is connected with a remote cabinet monitoring system through the RFID transmission module.
7. The guide rail for realizing collection of device information according to claim 2, wherein The rail sensing information acquisition module is connected with the remote cabinet monitoring system through an RS485 signal line. The RS485 signal line is arranged in the rail cavity.
8. The guide rail for realizing collection of device information according to claim 7, wherein The rail sensing information acquisition module and the remote cabinet monitoring system are connected through a network switch. The device node is connected with the guide rail sensing information collecting module through a network switch.
9. A cabinet, characterized in that The cabinet shell and the rack are included; The rack is arranged inside the cabinet shell; The device node is arranged on the rack through the guide rail, and the guide rail is the guide rail according to any one of claims 1-8.
10. The cabinet of claim 9, wherein, The vertical mounting portion is fixed on the longitudinal supporting surface of the rack through three screws; The vertical mounting portion is respectively provided with screw hole positions near the front end, the middle and the rear end of the guide rail body; The horizontal mounting portion is fixed on the horizontal supporting surface of the rack through three screws; The horizontal mounting portion is respectively provided with screw hole positions near the front end, the middle and the rear end of the guide rail body.