Data conversion workstation

By using a detachable connecting and guiding structure inside the electrical cabinet, the problem of traditional data conversion workstation electrical cabinets being unable to adjust their internal space independently is solved, enabling flexible adjustment of the partition positions and efficient installation.

CN224205367UActive Publication Date: 2026-05-05JINAN TAIGE ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINAN TAIGE ELECTRONIC TECH CO LTD
Filing Date
2025-05-16
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Traditional data conversion workstations' electrical cabinets cannot automatically adjust their internal space according to the data processing units to be installed, which limits their usability.

Method used

It adopts a detachable connection of the receiving and guiding structure, including the receiving rod, the partition and the guide rod. The clamping structure enables flexible installation and positioning of the partition to meet the needs of different data processing units.

Benefits of technology

It enables flexible adjustment of the shelf positions inside the electrical cabinet, adapting to the installation needs of different data processing units and improving installation efficiency and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of data processing equipment, and particularly discloses a data conversion workstation which comprises an electric appliance cabinet, a cabinet door and a plurality of data processing units, a bearing structure is arranged in the electric appliance cabinet, and guide structures used for installing the bearing structure are symmetrically arranged in the electric appliance cabinet. The bearing structure comprises two bearing rods and a partition plate which is detachably connected between the bearing rods and is used for carrying the data processing unit, and the guide structure comprises two guide rods which are vertically and fixedly connected in the electric appliance cabinet and a baffle plate which is fixedly connected between the guide rods; vertical sliding grooves are formed in the guide rods, the ends of the bearing rods extend into the vertical sliding grooves, the bearing rods vertically slide in the vertical sliding grooves, a plurality of positioning grooves are formed in the guide rods on the inner sides of the vertical sliding grooves at equal intervals, and clamping structures capable of being clamped into the positioning grooves are arranged at the ends, close to the guide rods, of the bearing rods. The problem that according to installation equipment of a data processing unit of a traditional data conversion work station, the internal space of an electric appliance cabinet cannot be autonomously adjusted according to the to-be-installed data processing unit is solved.
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Description

Technical Field

[0001] This application relates to the field of data processing equipment technology, and specifically discloses a data conversion workstation. Background Technology

[0002] A data conversion workstation typically consists of an electrical cabinet and various data processing units installed or mounted inside the cabinet. These data processing units are connected by cables.

[0003] Traditional electrical cabinets are divided into several areas by partitions to house different data processing units. This division also facilitates wiring and cable routing. However, the partitions in traditional cabinets are directly bolted to the inner wall, with each partition having a fixed height and position. This means that data processing units can only be installed within the designated areas defined by the partitions. Therefore, when setting up a data conversion workstation, a suitable cabinet must be selected based on the total volume of the data processing units used, resulting in limitations in its use.

[0004] This invention provides a data conversion workstation to solve the above-mentioned problems. Utility Model Content

[0005] The purpose of this invention is to solve the problem that the electrical cabinet, the installation equipment for the data processing unit of a traditional data conversion workstation, cannot autonomously adjust its internal space according to the data processing unit to be installed.

[0006] To achieve the above objectives, the basic solution of this utility model provides a data conversion workstation, including an electrical cabinet, a cabinet door, and several data processing units disposed within the electrical cabinet. The electrical cabinet is characterized by having several receiving structures for mounting the data processing units, and symmetrically arranged guide structures for installing the receiving structures. Each receiving structure includes two receiving rods and a partition detachably connected between the receiving rods for mounting the data processing units. The guide structures include two guide rods vertically fixed within the electrical cabinet and a baffle fixed between the guide rods. Each guide rod has a vertical groove for the end of the receiving rod to extend into and slide vertically within it. The guide rods inside the vertical grooves have several positioning grooves equidistantly spaced. The end of the receiving rod near the guide rod has a locking structure that can be engaged into the positioning groove.

[0007] Furthermore, a gap is formed between the guide rod and the baffle and the adjacent wall surface inside the electrical cabinet for wiring and cable routing.

[0008] Furthermore, a top baffle is fixedly connected to the top of the electrical cabinet, the top of the guide rod is fixedly connected to the bottom surface of the top baffle, and the top baffle has a through groove communicating with the gap.

[0009] Furthermore, the two ends of the partition are respectively connected to the receiving rod on the same side by bolts.

[0010] Furthermore, support rods can be detachably connected to the receiving rods on the same side at both ends of the partition.

[0011] Furthermore, the bottom end of the guide rod has an inclined groove to facilitate the insertion of the receiving rod.

[0012] Furthermore, the clamping structure includes a limiting groove formed on the receiving rod, a clamping groove extending through to the end face of the receiving rod and communicating with the limiting groove, a slider slidably connected in the limiting groove, a clamping block fixed to one side of the slider and capable of passing through the clamping groove and clamping into the positioning groove, and a spring fixed between the limiting groove and the slider and used to push the clamping block into the positioning groove.

[0013] Furthermore, a guide rod is fixedly connected to the top of the slider and a stop block is slidably limited. A spring is fixedly connected between the slider and the stop block. A stop block that can abut against the stop block is fixedly connected in the limiting groove. A sliding gap is formed between the bottom of the stop block and the top of the slider, allowing the stop block to slide through. An exposure gap is formed between the two sides of the stop block and the two inner walls of the adjacent limiting groove, allowing the stop block to be exposed.

[0014] The principle and effect of this solution are as follows:

[0015] 1. Compared with the prior art, this utility model pre-determines the installation position of the data processing unit to be installed in the electrical cabinet. Then, according to the requirements, a partition is first installed between the receiving rods to reserve the position for installing the data processing unit. Then, the receiving rods are installed accordingly, and the data processing units are sequentially built on the partition to form a data conversion workstation.

[0016] 2. Compared with the prior art, the partition of this utility model is installed by a detachable connection method, and the position of the partition can be freely adjusted to adapt to the installation of data processing units with different needs. This solves the problem that the installation equipment of the data processing unit in the traditional data conversion workstation, the electrical cabinet, cannot adjust the internal space independently according to the data processing unit to be installed.

[0017] 3. When positioning the receiving rod, after the receiving rod moves upward to the predetermined height, hold the receiving rod with one hand and press the stop block downward with the other hand to disengage the stop block from the stop block. Once the spring returns to its original position, it pushes the slider and the stop block to move until the locking block is engaged in the positioning groove to fix the receiving rod. By fixing the locking blocks at both ends of the receiving rod into the positioning groove in this way, a more convenient and efficient partition installation method is provided. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 A schematic diagram of a data conversion workstation according to an embodiment of this application is shown;

[0020] Figure 2 A schematic diagram of a data conversion workstation according to an embodiment of this application is shown;

[0021] Figure 3 This illustration shows a schematic diagram of a clamping structure for a data conversion workstation according to an embodiment of this application;

[0022] Figure 4 A schematic diagram of the clamping structure of a data conversion workstation proposed in an embodiment of this application is shown. Detailed Implementation

[0023] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.

[0024] The reference numerals in the accompanying drawings of the instruction manual include: electrical cabinet 1, cabinet door 2, positioning groove 3, guide rod 4, top baffle 5, barrier 6, receiving rod 7, partition 8, stop block 9, toggle block 10, slider 11, and stop block 12.

[0025] A data conversion workstation, implementing, for example Figure 1 and Figure 2 As shown:

[0026] It includes an electrical cabinet 1, a cabinet door 2, and several data processing units installed inside the electrical cabinet 1. The cabinet door 2 is hinged to the electrical cabinet 1, and ventilation slots are provided on the left side and top surface of the electrical cabinet 1.

[0027] The electrical cabinet 1 contains a receiving structure for the data processing unit to be installed. The receiving structure includes two receiving rods 7 and a partition 8 installed between the two receiving rods 7. The data processing unit is mounted on the partition 8. A receiving connecting plate is formed inside each receiving rod 7, and each receiving connecting plate has a through groove. The two ends of the partition 8 are aligned with the receiving connecting plates on both sides, and each of the four corners of the partition 8 has through holes aligned with the through grooves. Figure 2As shown, in this embodiment, the partition 8 can be directly placed on the receiving plate, and after the through hole and through groove are aligned, the partition 8 and the receiving plate can be directly fixed by mounting bolts. Alternatively, the partition 8 and the receiving plate can be fixed by adding a support rod between them. Specifically, both ends of the added support rod need to have internal threaded holes, and the support rod is placed between the through hole and through groove, aligned, and then fixed with bolts to the supporting plate, support rod, and partition 8. By adding the support rod, the installation height of the partition 8 can be further adjusted to meet the installation requirements of different data processing units.

[0028] The electrical cabinet 1 also has two sets of guide structures symmetrically installed inside for installing the support structure. The guide structure includes two guide rods 4 that are vertically fixed inside the electrical cabinet 1 and two baffles 6 fixed between the guide rods 4. The inner side of each guide rod 4 has a vertical groove into which the end of the support rod 7 can extend and slide vertically, and the bottom end of the guide rod 4 has an inclined groove to facilitate the insertion of the support rod 7.

[0029] like Figure 3 and Figure 4 As shown, the guide rod 4 on the inner side of the vertical slide groove is also provided with several positioning grooves 3 at equal intervals, and the end of the receiving rod 7 near the guide rod 4 is provided with a clamping structure that can be inserted into the positioning groove 3.

[0030] Specifically, the locking structure includes a limiting groove on the receiving rod 7, a locking groove extending to the end face of the receiving rod 7 and communicating with the limiting groove, a slider 11 installed in the limiting groove and slidable, a locking block fixedly installed on the slider 11 and capable of passing through the locking groove and locking into the positioning groove 3, and a spring 1 fixed between the limiting groove and the slider 11, which pushes the locking block into the positioning groove 3. Further, in this embodiment, a guide rod is fixedly installed on the top of the slider 11, and the top of the guide rod is formed with a T-shaped ring. A stop block 12 is installed through the guide rod, and the stop block 12 has a hole for the guide rod to extend into. The T-shaped groove can only slide within the hole and cannot disengage from the hole. A second spring is also fixedly installed between the slider 11 and the stop block 12, which pushes the stop block 12 upwards. A stop block 9 is also formed inside the limiting groove. When the stop block 12 is pushed upward by the spring, the stop block 9 blocks the movement of the stop block 12. Furthermore, a sliding gap is formed between the bottom of the stop block 9 and the top of the slider 11, allowing the stop block 12 to slide through. Exposure gaps are formed between the two sides of the stop block 9 and the two inner walls of the adjacent limiting groove, allowing the stop block 12 to protrude. Additionally, a toggle block 10 is fixed to the top of the stop block 12 to facilitate its movement. A moving gap is formed between the stop block 9 and the groove, allowing the toggle block 10 to move.

[0031] In this embodiment, a gap for wiring and cable routing is formed between the guide rod 4 and the baffle 6 and the adjacent wall surface inside the electrical cabinet 1. A top baffle 5 is also fixedly installed on the top of the electrical cabinet 1. The top of the guide rod 4 is fixed to the bottom surface of the top baffle 5, and the top baffle 5 has a through groove communicating with the gap.

[0032] When using this utility model, the installation position of the data processing unit to be installed in the electrical cabinet 1 is determined in advance. Then, according to the requirements, the partition 8 is first installed between the supporting rods 7 to reserve the position for installing the data processing unit. Then, the supporting rods 7 are installed in this way, and the data processing units are sequentially built on the partition 8 to form a data conversion workstation. The cables of the data processing unit can be arranged in the gap between the partition and the inner wall of the electrical cabinet 1 to prevent the wiring from being messy.

[0033] When installing the support rod 7, the support rod 7 with the partition plate 8 installed is inserted upward from the inclined groove at the bottom of the guide rod 4. At this time, the stop block 12 and the bottom slider 11 are located inside the groove, and the spring is in a compressed state. At this time, the stop block 12 abuts against the stop block 9.

[0034] After the receiving rod 7 moves upward to the predetermined height, hold the receiving rod 7 with one hand and press down the lever 10 with the other hand to disengage the stop block 12 from the stop block 9. Once the spring returns to its original position, it pushes the slider 11, the stop block 12 and the lever 10 to move until the locking block is engaged in the positioning groove 3 to fix the receiving rod 7. In this way, the locking blocks at both ends of the receiving rod 7 are fixed into the positioning groove 3, providing a more convenient and efficient way to install the partition 8.

[0035] During disassembly, simply press the lever 10 to disengage the stop block 12 from the stop block 9, and then push the lever 10 back to disengage the locking block from the positioning groove 3.

[0036] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A data conversion workstation, comprising an electrical cabinet, a cabinet door, and a plurality of data processing units disposed within the electrical cabinet, characterized in that, The electrical cabinet is equipped with several receiving structures for mounting data processing units. The electrical cabinet is also equipped with symmetrical guide structures for installing the receiving structures. Each receiving structure includes two receiving rods and a partition that is detachably connected between the receiving rods and used to mount the data processing units. The guide structure includes two guide rods that are vertically fixed inside the electrical cabinet and a baffle that is fixed between the guide rods. Each guide rod has a vertical groove that allows the end of the receiving rod to extend into and slide vertically inside. The guide rod inside the vertical groove has several positioning grooves that are equidistantly spaced. The end of the receiving rod near the guide rod has a locking structure that can be inserted into the positioning groove.

2. The data conversion workstation according to claim 1, characterized in that, The guide rod and the baffle plate form a gap with the adjacent wall surface inside the electrical cabinet for wiring and cable routing.

3. A data conversion workstation according to claim 2, characterized in that, The top of the electrical cabinet is fixedly connected to a top baffle, the top of the guide rod is fixedly connected to the bottom surface of the top baffle, and the top baffle has a through groove communicating with the gap.

4. A data conversion workstation according to claim 1, characterized in that, The two ends of the partition are respectively connected to the supporting rod on the same side by bolts.

5. A data conversion workstation according to claim 1, characterized in that, Support rods can also be detachably connected to the receiving rods on the same side at both ends of the partition.

6. A data conversion workstation according to claim 1, characterized in that, The bottom end of the guide rod has an inclined groove to facilitate the insertion of the receiving rod.

7. A data conversion workstation according to claim 1, characterized in that, The clamping structure includes a limiting groove on the receiving rod, a clamping groove extending through to the end face of the receiving rod and communicating with the limiting groove, a slider slidably connected in the limiting groove, a clamping block fixed to one side of the slider and capable of passing through the clamping groove and being clamped into the positioning groove, and a spring fixed between the limiting groove and the slider and used to push the clamping block into the positioning groove.

8. A data conversion workstation according to claim 7, characterized in that, The top of the slider is fixedly connected to a guide rod and a stop block is slidably limited. A spring is fixedly connected between the slider and the stop block. A stop block that can abut against the stop block is fixedly connected in the limiting groove. A sliding gap is formed between the bottom of the stop block and the top of the slider, allowing the stop block to slide through. An exposure gap is formed between the two sides of the stop block and the two inner walls of the adjacent limiting groove, allowing the stop block to be exposed.