Data center vsrv i series cabinets
By designing an openable rear door and right and left doors in the data center cabinet, the problem of difficult cable installation in narrow spaces was solved, enabling convenient cable fixing operations and improving installation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU YINGSHENG COMM TECH CO LTD
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-24
Smart Images

Figure CN224556019U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to data center cabinets, and more particularly to the VSRVI series data center cabinets. Background Technology
[0002] Patent document CN204948578U discloses a data center network cabinet, mainly in the second line of paragraph
[0022] , which discloses that two separate cable trays 2 are respectively installed on the two inner sides of the front end of the network cabinet 1. Combined with... Figure 1 As can be seen, the rack only has a door at the front opening. After opening the door, installers need to reach their hands into the rack through the front opening to secure the cables to the cable trays with straps before installation can be completed. However, the cable trays are at the front, causing obstruction to their hands by switches, status indicators, and peripheral connection ports at the front of the rack. The rack is also quite narrow, limiting the space for installers to reach both hands inside. Utility Model Content
[0003] The present invention aims to provide a data center VSRVI series cabinet that makes it easier for installers to install cables into the cable trays.
[0004] The VSRVI series data center racks include a rack frame. The left and right inner walls of the rack frame are equipped with two transverse rack beams, one for the front and one for the rear. The rear of the right side wall of the left beam and the left side wall of the right beam each have two cable trays (one for power cables and one for data cables). A rear door closes the rear opening of the rack frame, exposing the cable trays when open, allowing installers to reach inside and install cables. A left door closes the left opening of the rack frame, exposing the right side wall of the cable tray when open. A right door closes the right opening of the rack frame, exposing the left side wall of the cable tray when open. Both cable trays have multiple through holes at the bottom for cable ties to be threaded through and secured to the cables.
[0005] Furthermore, this includes the straps.
[0006] Furthermore, the rear door includes a right rear door panel and a left rear door panel. The frame column at the right rear of the cabinet frame is equipped with a first rear hinge shaft extending to the right, and the right side edge of the right rear door panel is hinged to the cabinet frame through the first rear hinge shaft. The frame column at the left rear of the cabinet frame is equipped with a second rear hinge shaft extending to the left, and the left rear door panel is hinged to the cabinet frame through the second rear hinge shaft.
[0007] Furthermore, the cabinet frame is equipped with a latching seat at its perimeter near the left and right openings; both the left and right doors are equipped with latching door locks on their backs, and the left and right doors can be detachably installed onto the corresponding latching seats through their respective latching door locks.
[0008] Furthermore, the frame column on the left front of the cabinet frame is equipped with a front hinge shaft extending to the left, and a mesh front door is installed on the front hinge shaft to close the front opening of the cabinet frame.
[0009] Furthermore, the left side walls of both the front and rear left doors of the mesh door are flush with the front of the left door; the right side walls of both the front and rear right doors of the mesh door are flush with the front of the right door.
[0010] Furthermore, the top walls of the front and rear doors (left and right), the left and right doors, and the main cabinet are all flush with the top wall of the machine.
[0011] Furthermore, the cabinet frame is specifically a nine-fold profile cabinet frame.
[0012] The advantages are as follows: When installing cables in the right-side power and data cable trays, the installer opens the left and right rear doors with their left hand and the right door with their right. The installer's left hand reaches into the cabinet through the rear opening to place the cable in the right-side tray. Then, the cable tie is placed horizontally, with its front and rear ends wrapped around the front and rear sides of the cable, respectively. The cable is then passed through two of the cable entry holes on the right side wall of the tray and out of the right opening of the cabinet. The installer withdraws their left hand and uses both hands to tie the front and rear ends of the cable tie tightly, thus securing the cable in the right-side tray. During installation, only the installer's left hand needs to reach into the cabinet; their right hand does not need to. This allows for unrestricted operation without being obstructed by the front structure of the cabinet. The same procedure applies to installing cables in the left-side trays, which will not be described further. Attached Figure Description
[0013] Figure 1 This is a perspective view of the VSRVI series data center cabinet of this utility model;
[0014] Figure 2 This is a perspective view of the VSRVI series data center cabinet of this utility model.
[0015] Figure 3 yes Figure 1 An enlarged view of point A in the image, showing... Figure 1 The frontal view of the right-side door (2);
[0016] Figure 4 yes Figure 1 An enlarged view of point A in the image, showing... Figure 1 (2) Rear view of the right-side door;
[0017] In the diagram: 1. Mesh front door; 2. Right door; 20. Snap-on door lock; 21. Pressing part; 22. Clamping part; 3. Right rear door panel; 4. Left rear door panel; 5. Left door; 6. Cabinet frame; 61. Front hinge; 7. Snap-on base; 71. Rear hinge; 10. Left cabinet crossbeam; 100. First through hole; 11. Power and data cable tray; 110. Cable hole; 12. Upright column; 13. Shelf; 14. Right cabinet crossbeam. Detailed Implementation
[0018] The present invention will be further described in detail below with reference to specific embodiments.
[0019] like Figure 2 As shown, the VSRVI series data center cabinet of this utility model includes a cabinet frame 6 made of nine-fold profile. A cabinet bottom plate and a cabinet top plate are fixedly mounted at the bottom and top of the cabinet frame 6, respectively (the cabinet top plate is located at...). Figure 2 It is now hidden, but visible. Figure 1 The rack frame has openings on all four sides: front, back, left, and right. (Combined with...) Figure 1 and Figure 2 As shown, the front left frame column of the rack frame 6 is equipped with a left-extending front hinge pin 61, on which a mesh front door 1 is mounted to close the front opening of the rack frame 6. The rear right frame column of the rack frame 6 is equipped with a right-extending first rear hinge pin 71, and the right side of the right rear door 3 is hinged to the rack frame 6 via the first rear hinge pin 71. The rear left frame column of the rack frame 6 is equipped with a left-extending second rear hinge pin 71, and the left rear door 4 is hinged to the rack frame 6 via the second rear hinge pin 71. The right rear door 3 and the left rear door 4 together serve as the rear door to close the rear opening of the rack frame 6.
[0020] The rack frame 6 has latching seats 7 installed around its perimeter near the left and right openings. Both the left door 5 and the right door 2 have latch-type door locks 20 installed on their backs. Figure 3 and Figure 4 As shown, the snap-lock 20 has a pressing part 21 mounted on the front by a spring, and a locking part 22 connected to the pressing part 21 on the back. The installer presses the pressing part 21 of the left door 5 backward, causing the locking part 22 to retract backward. The left door 5 is then placed on the left side of the cabinet frame 6, aligning the locking part 22 with the corresponding snap-lock seat 7. The pressing part 21 is then released, and the elastic force returns it to its original position, causing the locking part 22 to move forward, thus locking it into the snap-lock seat 7. The right door 2 can be installed similarly. (The text repeats itself here.) Figure 1As shown, for aesthetic purposes, the left side walls of the front mesh door 1 and the left rear door 4 are flush with the front of the left door 5, and the right side walls of the front mesh door 1 and the right rear door 3 are flush with the front of the right door 2. Because they are flush, there is no room for the left doors 5 and 2 to flip over with the front mesh door 1 and the rear door, so the left doors 5 and 2 cannot be hinged. Therefore, the left doors 5 and 2 are installed using a snap-fit method. Furthermore, the snap-fit installation is convenient for disassembly and removal, allowing installers to easily remove the left doors 5 and 2 when installing electrical wiring. The top walls of the front mesh door 1, the left rear door 4, the right rear door 3, the left door 5, and the right door 2 are all flush with the top wall of the machine cabinet.
[0021] like Figure 2 As shown, the left and right inner walls of the cabinet frame 6 are respectively equipped with two horizontal cabinet beams 10, one on the left and one on the right. Each of the two horizontal cabinet beams 10 has multiple first through holes 100 in the front-to-back direction. These first through holes 100 all penetrate the left and right side walls of the cabinet beam 10. The right side of the cabinet left beam 10 is provided with two left columns 12. The two left columns 12 have second through holes and first bolts installed in the second through holes. The two left columns 12 are respectively installed in two of the first through holes 100 of the cabinet left beam 10 by their respective first bolts. The left side of the cabinet right beam 14 is provided with two right columns 12. The two right columns 12 have second through holes (obscured in the figure) and second bolts installed in the second through holes. The two right columns 12 are respectively installed in two of the first through holes 100 of the cabinet right beam 14 by their respective second bolts. A shelf 13 is provided between the left and right pairs of uprights 12. Each upright 12 is equipped with a horizontal support plate (not shown in the figure). The four corners of the shelf 13 are placed on these four horizontal support plates respectively. Equipment such as monitors and switches can be placed on the shelf 13 according to customer needs. Depending on the size of the equipment, the installer can also replace it with a shelf 13 of a matching size, and then adjust the spacing between the two left uprights 12 and the two right uprights 12 according to the length of the shelf 13, and then install the two left uprights 12 and the two right uprights 12 respectively in the above manner.
[0022] The rear sections of the left side wall of the left crossbeam 10 and the left side wall of the right crossbeam 14 of the cabinet are equipped with two power and data cable trays 11, one on the left and one on the right. The bottom of these trays 11 is densely covered with wire-passing holes 110. When installing cables in the right-side power and data cable tray 11, the installer opens the right door 2 with their right hand and opens the left and right rear doors 4 and 3 to a horizontal position with their left hand. The installer's left hand reaches into the cabinet frame 6 through the rear opening and places the cable in the right-side power and data cable tray 11. Then, the cable tie is placed horizontally, with its front and rear ends wrapped around the front and rear sides of the cable, respectively. The cable then passes through two of the wire-passing holes 110 on the right side wall of the right power and data cable tray 11 and exits outside the right opening of the cabinet. The installer withdraws their left hand and uses both hands to tie the front and rear ends of the cable tie tightly, thus securing the cable in the right-side power and data cable tray 11. During installation, the installer only needs to reach into the cabinet with their left hand; their right hand does not need to reach into the cabinet to assist in installing the power and data cable trays 11, making the operation convenient. The right panel 3 of the rear door, in its horizontal orientation, is only half the width of a normal door (such as the mesh front door 1), allowing the installer to reach the power and data cable trays 11 with their left hand even when standing directly behind the right panel 3, facilitating installation. Similarly, the power and data cable trays 11 on the left can be installed, which will not be elaborated further.
[0023] The VSRVI series server racks utilize a nine-fold profile, formed from cold-rolled steel sheet using a roll forming machine, as their frame. This unique structure gives the rack frame high strength and rigidity, achieving high stability with a small cross-sectional area, increasing internal space, and providing strong load-bearing capacity. The nine-fold profile is a cold-formed profile formed in one roll forming process from cold-rolled steel sheet, undergoing nine bends to form a closed structure. Its unique nine-fold structure and high-quality materials give it strong load-bearing capacity; a single rack can support up to 2000KG, meeting the installation requirements of various heavy equipment. This one-time roll forming process not only reduces production costs but also ensures more stable product quality and higher dimensional accuracy. The nine-fold profile features round and square holes every 25mm for easy installation and securing of internal components. Various standardized mounting holes and accessories further facilitate quick and easy equipment installation.
[0024] The mesh front door is made of cold-rolled steel sheet with a densely packed hexagonal mesh stamped on the surface. The 70% open area provides excellent ventilation and heat dissipation, while also offering some shielding against electromagnetic interference and allowing for observation of equipment operation. It is suitable for cabinets with high heat generation. Dustproof cotton can be added to the mesh door to prevent dust accumulation. The top plate is made of high-quality cold-rolled steel sheet, possessing good strength, toughness, and corrosion resistance, and can withstand certain external impacts. The cabinet top plate features front and rear openings with pre-drilled cable entry holes for easy cable routing. To prevent dust and foreign object intrusion and maintain the cabinet's overall aesthetics, the cable entry holes are covered with dedicated cable entry covers. These covers can be easily removed during equipment installation or cable laying. Fan mounting holes can be optionally provided based on actual usage needs and heat dissipation planning. Users can decide whether to add fan mounting holes to the top plate based on the heat generation and cooling requirements of the equipment inside the cabinet, creating an efficient ventilation and heat dissipation system for precise temperature control within the cabinet. If waterproofing is required, no holes should be drilled in the top plate except for the mounting holes.
[0025] The above description is merely an embodiment of this utility model and does not limit the scope of patent protection. Any non-substantial changes or substitutions made by those skilled in the art based on this utility model will still fall within the scope of patent protection.
Claims
1. A VSRVI series data center cabinet, comprising a cabinet frame, with two transverse left and right cabinet beams mounted on the left and right inner walls of the cabinet frame, respectively; and two power and data cable trays mounted on the rear of the right side wall of the left beam and the left side wall of the right beam, respectively; a rear door is installed at the rear of the cabinet frame to close the rear opening of the cabinet frame, and the two power and data cable trays are exposed when the rear door is open, allowing installers to reach into the cabinet to install cables. Its distinguishing feature is: The left outer wall of the cabinet frame is equipped with a left door to close the left opening of the cabinet frame. When the left door is open, the right side wall of the left-side power and data cable tray is exposed. The right outer wall of the cabinet frame is equipped with a right door to close the right opening of the cabinet frame. When the right door is open, the left side wall of the right-side power and data cable tray is exposed. The bottom of both power and data cable trays is densely covered with multiple cable holes for cable ties to be inserted from the outside of the power and data cable trays to secure the cables.
2. The data center VSRVI series cabinet as described in claim 1, characterized in that: Including the aforementioned straps.
3. The data center VSRVI series cabinet as described in claim 1, characterized in that: The rear door includes a right rear door and a left rear door. The frame column at the right rear of the cabinet frame is equipped with a first rear hinge shaft extending to the right, and the right side of the right rear door is hinged to the cabinet frame through the first rear hinge shaft. The frame column at the left rear of the cabinet frame is equipped with a second rear hinge shaft extending to the left, and the left rear door is hinged to the cabinet frame through the second rear hinge shaft.
4. The data center VSRVI series cabinet as described in claim 3, characterized in that: The cabinet frame is equipped with a latching seat at the perimeter of its left and right openings; both the left and right doors are equipped with latching door locks on their backs, and the left and right doors can be detachably installed onto the corresponding latching seats through their respective latching door locks.
5. The data center VSRVI series cabinet as described in claim 4, characterized in that: The frame column on the left front of the cabinet frame is equipped with a front hinge shaft extending to the left, and a mesh front door is installed on the front hinge shaft to close the front opening of the cabinet frame.
6. The data center VSRVI series cabinet as described in claim 5, characterized in that: The left side walls of the left panels of both the front and rear mesh doors are flush with the front of the left door; the right side walls of both the front and rear mesh doors are flush with the front of the right door.
7. The data center VSRVI series cabinet as described in claim 6, characterized in that: The top walls of the front and rear doors (left and right), as well as the left and right doors, are all flush with the top wall of the machine cabinet.
8. The data center VSRVI series cabinet as described in claim 1, characterized in that: The cabinet frame is specifically a nine-fold profile cabinet frame.
Citation Information
Patent Citations
Computer room of data center network cabinet
CN204948578U