Fixing base for condensing units for modular data center systems and use thereof

WO2026156425A1PCT designated stage Publication Date: 2026-07-30MODULAR DATA CENTERS IND COMÉRCIO E SERVIÇOS LTDA
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
MODULAR DATA CENTERS IND COMÉRCIO E SERVIÇOS LTDA
Filing Date
2026-01-26
Publication Date
2026-07-30

Smart Images

  • Figure BR2026050035_30072026_PF_FP_ABST
    Figure BR2026050035_30072026_PF_FP_ABST
Patent Text Reader

Abstract

The present invention relates to the field of modular data centers, more specifically to the structural field, such as a mounting base for condensing units, designed to withstand all mechanical loads imposed by the condensing units used in a modular data center system, while ensuring that the structure provides sufficient rigidity to support lifting, loading, and unloading operations, as well as the assembly and transportation of each data center module, even under the most critical handling and transportation conditions. The present document proposes a mounting base that can be installed in a modular configuration using self-supporting structures, thereby accelerating installation and enabling full data center operational availability within a short period, which cannot be achieved by the conventional masonry-built structures of the prior art. One of the main advantages of the mounting base for the condensing units is modular design thereof, which enables future expansion. The developed mounting base for condenser units further aims to provide a cost-effective solution when compared to conventional constructions, while still satisfying all the requirements of a data center.
Need to check novelty before this filing date? Find Prior Art

Description

[0001] FIXING BASE FOR CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, AND USE OF THE FIXING BASE. FIELD OF THE INVENTION.

[0002]

[0001] The present innovation belongs to the field of Engineering, in its technological aspect of modular infrastructure, more specifically, in a base for fixing condenser units developed for data processing centers, such as room structures for modular data center systems, but not limiting the invention to this single field, since the product can be applied in the most diverse technological areas of Engineering.

[0003] BACKGROUND OF THE INVENTION

[0004]

[0002] The demand for data center facilities has been steadily increasing with the rise in global connectivity. This growth directly impacts the capacity for data storage, processing, and control, which can be used in a wide variety of industries, businesses, offices, shopping malls, commercial establishments, and even leisure environments. All the technology applied in these diverse solutions relies on a data center for its operation.

[0005]

[0003] The demand for data centers available for the completion of construction projects in periods of less than one year is a need that has not yet been solved in the state of the art, with traditional masonry constructions, which typically take about three years, depending on the data center's capacity. However, the urgency for data centers to become operational requires that this development and installation time become increasingly shorter, potentially reaching a timeframe of less than 6 (six) months, starting with contracting, going through project development, manufacturing, transportation, installation, testing, and activation.

[0006]

[0004] Another difficulty of the state of the art is the integration between the components that constitute the data center, preferably, in the condition of expanding the processing or storage capacity of the data center.

[0007]

[0005] In order to guarantee the necessary characteristics so that each room of the modular data center system can be transported ready, that is, with all the equipment assembled in each room, it was necessary to develop the fixing bases for condensing units that guarantee the mechanical rigidity of the assembly between the condensers and the structure of the respective room.

[0008]

[0006] The developed condenser unit mounting base still needs to withstand all mechanical stresses, whether tensile, compressive, bending or torsional, during module lifting operations, both during loading and unloading operations, for each module.

[0009]

[0007] In order to obtain a solution that resolves all the technical problems listed above, with all their adversities, this document describes the mounting base for condensing units for a modular data center system, capable of meeting all the operational requirements of a data center.

[0010]

[0008] Several solutions have been developed seeking optimization and improvements for data centers, more specifically in solutions for rooms used in modular data center systems, given the extensive use of this equipment.

[0011]

[0009] In 2023, patent application CN219261884 described a solution using a modular system for a data center machine room, proposing a single structure with all the components of a data center within an enclosure, containing: data cabinet, air conditioning, power cabinet, cooling tower, water pump, and control box. The description of the solution clearly indicates it is a solution for small data centers, which differs from the scope of the solution proposed in this document. This solution aims to be for large data centers, with dedicated structures for the condensing units used in each of the rooms that make up the modular data center system; that is, a dedicated structure for the installation of the set of condensing units for each room: electrical room; redundant electrical room; data room; cooling room; and telecommunications room.

[0012]

[0010] In 2013, patent AU2018204362 of the WO2015051086 patent family described a solution for structures to support units positioned at an elevated level, in order to form hot aisles through which the hot air generated by the equipment is channeled. The solution proposed in the WO2015051086 patent family differs from the solution developed in this document, which proposes a structural solution used in the external area of ​​the modular data center system rooms for the purpose of supporting the condensing units, without any connection to the hot aisle solution of patent AU2018204362.

[0013]

[0011] In 2010, the patent family WO2011119143 described a modular data center system, which includes a specific solution for the base; however, the solution described for the base addresses the technical problem of data system heating, and therefore proposes a cooling solution for the base of the modular system to solve this problem. Thus, the difference between the solution proposed in the patent family WO2011119143 and the present document is evident, which aims to develop a mounting base for the condenser units, specifically designed to meet the requirements for mechanical stress, mainly to ensure the integrity of the modular data center system during its handling and transport operations.

[0014]

[0012] In short, none of the documents available in the state of the art proposed the development of mounting bases for condenser units for modular data center systems, capable of being assembled and withstanding all the mechanical stresses to which the rooms of the modular system are subjected, both during assembly and transport operations, and during the operation of the equipment.

[0015]

[0013] The versatility problem in installation is also solved, given that it can be quickly transported from different locations by means of the lifting solutions, which are integrated into the structural solution of the condenser unit mounting base, of the modular data center system.

[0016] OBJECTIVES OF THE INVENTION

[0017]

[0014] The present innovation aims to develop a mounting base for condensing units for a modular data center system, capable of guaranteeing the mechanical rigidity of the solution, both during assembly and transport, and during the operation of the modular data center system rooms.

[0018]

[0015] It is also an objective of the innovation developed to ensure the integrity of the equipment that is mounted in the external area of ​​each room of the modular data center system.

[0016] Furthermore, it is an objective of the condenser unit mounting base to guarantee full availability for operation throughout 365 days a year, without any interruption of data storage or processing operations or other operations performed by the modular data center system.

[0019]

[0017] Finally, the modular data center system has the versatility of being moved from one area to another, which is not possible in a masonry structure; therefore, the mounting base for condensing units developed also needs to have this portability characteristic.

[0020] BRIEF DESCRIPTION OF THE FIGURES

[0021]

[0018] In order to facilitate understanding of the system developed in the present invention, this patent includes the figures described below:

[0022]

[0019] Figure 1 shows the front perspective view of the modular system.

[0023]

[0020] Figure 2 shows the front perspective view of the first configurable variant of the modular system.

[0024]

[0021] Figure 3 illustrates the front perspective view of the condenser unit mounting base of the modular data center system.

[0025]

[0022] Figure 4 shows the top view of the mounting base for condenser units, of the modular data center system.

[0026]

[0023] Figure 5 shows the bottom view of the mounting base for condenser units, of the modular data center system.

[0027]

[0024] Figure 6 shows the left side view of the mounting base for condenser units, of the modular data center system.

[0028]

[0025] Figure 7 shows the right side view of the mounting base for condenser units, of the modular data center system.

[0029]

[0026] Figure 8 shows the front view of the mounting base for condenser units, of the modular data center system.

[0030]

[0027] Figure 9 illustrates the rear view of the condenser unit mounting base of the modular data center system.

[0028] Figure 10 illustrates the front perspective view of the condenser unit mounting base of the modular data center system, with the components in exploded position and with detail A identified.

[0031]

[0029] Figure 11 shows an enlarged front perspective view of detail A, identified in Figure 10, of the condenser unit mounting base of the modular data center system.

[0032]

[0030] Figure 12 shows a rear perspective view of the condenser base 1, the mounting base, of the modular data center system.

[0033]

[0031] Figure 13 shows a rear perspective view of the condenser base 2, the mounting base, of the modular data center system.

[0034]

[0032] Figure 14 shows the front perspective view of the condenser base 3, the mounting base, of the modular data center system.

[0035]

[0033] Figure 15 shows a front perspective view of the condenser base 4, the mounting base, of the modular data center system.

[0036]

[0034] Figure 16 shows a perspective view of the central condenser base, the mounting base, of the modular data center system.

[0037]

[0035] Figure 17 shows a front perspective view of the support, the mounting base, of the modular data center system.

[0038]

[0036] Figure 18 shows the front view of the support, the mounting base, of the modular data center system.

[0039]

[0037] Figure 19 shows the rear view of the support, the mounting base, of the modular data center system.

[0040]

[0038] Figure 20 shows the left side view of the support, the mounting base, of the modular data center system.

[0041]

[0039] Figure 21 shows a front perspective view of the fastener, the mounting base, of the modular data center system.

[0042] DESCRIPTION OF THE INVENTION

[0043]

[0040] The modules that make up each room of the modular data center system are divided in order to allow for optimized transport by road, sea, rail and air, mainly to meet the requirements and legislation for transport in urban areas. In order to optimize the final assembly of the rooms, each module must be transported with all equipment already assembled, which in the case of the mounting base includes the assembly of the condensing units.

[0044]

[0041] The mounting base for a modular data center system, developed in the present invention, aims to be the solution for installing condensing units, which need to be fixed to the upper part of the rooms that make up the modular data center system.

[0045]

[0042] The mounting base allows for the assembly and adjustment of equipment, so that it can be transported by any type of means, such as road, rail and even sea, without risk of damage to the equipment mounted on the mounting base, which will make up the rooms of the modular data center system.

[0046]

[0043] The mounting base allows for dimensional adjustment and can be used for assemblies with different numbers of condensing units, preferably manufactured with standard raw materials in order to reduce manufacturing costs and speed up manufacturing time. In this way, it is ensured that the base is a quick and low-cost solution.

[0047]

[0044] The solution allows for a robust enough fixation to prevent damage to equipment during transport and handling of the modular data center system modules.

[0048]

[0045] At the bottom of the condensing unit assembly are mounted rubber cushion-type shock absorbers, which aim to ensure that there is no transmission of vibration, generated by the operation of the condensing unit assembly, to the structure of the respective room in which the mounting base is installed.

[0049]

[0046] All room modules are structurally self-supporting even when pre-equipped, and can be coupled and decoupled according to transport, testing and commissioning needs. To ensure that the modular solution is complete, effective and efficient, the development of the fixing base was necessary.

[0050]

[0047] Modularity allows data centers to be built, tested, and pre-commissioned under an industrial process, drastically reducing the cycles required for their installation and start-up compared to traditional construction solutions.

[0048] The dimensions of the modules vary between 2.5 and 3.5 meters in width, between 5 and 18 meters in length, and from 2.5 to 6 meters in height. These dimensions are not limiting for the construction of the modular data center system, which can have its dimensions varied by varying the number of modules used in the assembly of each room, and even by varying the dimensions of each module, since these dimensions can be varied to adapt the modular data center system to the area in which it will be installed.

[0051]

[0049] In order to show how the solution is developed for the base of fixing condensing units in the rooms of a modular data center system, Figure 1 is presented, which is a front perspective view of the modular data center system. In this view, it is possible to visualize the data room, the cooling room, the electrical room, and the redundant electrical rooms. Also in Figure 1, the orthogonal axes X, Y, and Z are indicated. The X-axis indicates the longitudinal direction of the structures, a dimension also known as the length of the structures; the Z-axis indicates the transverse direction of the structures, a dimension also known as the width of the structures; and finally, the Y-axis indicates the direction parallel to the height of the structures.

[0052]

[0050] The previous perspective view, illustrated in Figure 2, shows the first alternative solution for the modular data center, which consists of two data rooms, two cooling rooms, one electrical room and two redundant electrical rooms, and a telecommunications room, which is not visible in this figure. Other alternative configurations can be used, since 1 electrical room and 2 redundant electrical rooms are capable of serving different numbers of data rooms, up to 12 data rooms, depending on the total capacity demanded by the modular data center system.

[0053]

[0051] The previous perspective view illustrated in Figure 3 shows the assembled condenser unit mounting base, in order to allow visualization of the mounting interface between the bases and the condenser units. Also in Figure 3, it is possible to visualize the details of the assembly of the condenser unit set, with its entire structure that joins each condenser unit. This configuration is presented in order to allow visualization of an example of a condenser unit mounting base, used in a refrigeration room.

[0052] The top view illustrated in Figure 4 shows the assembled condenser unit mounting base; in this view, it is possible to visualize the fans on the upper part of each condenser unit.In Figure 4, it is also possible to identify that each base has a specific length, width, and height, parameters that were dimensioned to meet the characteristics of the set of condensing units, and were dimensioned to have the mechanical resistance to guarantee the integrity of the structure, both during the lifting stage, an operation that is carried out in the loading and unloading process of the module, and during the transport stage of the module.

[0054]

[0053] The bottom view illustrated in figure 5 shows the mounting base for the assembled condensing units. This view shows the underside of the mounting structure for the condensing unit assembly.

[0055]

[0054] The left side view illustrated in figure 6 shows the assembled condenser unit mounting base. In this view, the mounting brackets for each of the bases that make up the condenser unit mounting base are visible.

[0056]

[0055] The right side view illustrated in Figure 7 shows the assembled condenser unit mounting base. This view shows the mounting brackets for each of the bases that make up the condenser unit mounting base. The bases are assembled with square tubes, rectangular tubes, bent sheets, and structures designed for flooring purposes. This configuration was designed to ensure the necessary mechanical strength for securing the condenser units above the modular data center system room.

[0057]

[0056] The previous view illustrated in figure 8 shows the mounting base for the assembled condensing units. In figure 8 it is possible to see that the set of condensing units is mounted on the bases, with shock absorbers at their lower ends.

[0058]

[0057] The rear view illustrated in Figure 9 shows the assembled condenser unit mounting base. In Figure 9, it is possible to see the triangular reinforcements used to connect the horizontal crossbars and the vertical support columns at the bottom of the bases. These reinforcements are installed because the top of each base is used as an access platform for the condenser units and therefore bears the load of people moving around the entire area surrounding the condenser unit assembly.

[0059]

[0058] The previous perspective view illustrated in Figure 10 shows the mounting base for condenser units of the modular data center system. In Figure 10, the components are shown in exploded view to clarify the details of each component used in assembling the mounting base. Detail A is also identified in Figure 10. Each of the components that form the mounting base is identified with its respective numerical reference.

[0060]

[0059] The enlarged front perspective view of detail A, identified in Figure 10, is illustrated in Figure 11 to show the details of the mounting interface of the condenser unit mounting base of the modular data center system. Figure 11 allows visualization of the mounting interface between the structure of the condenser unit assembly, whose shock absorbers are mounted on the front face of the support, and the bases, which are mounted on the rear face of the support using the fastening elements and the fastener. The elements used in this mounting interface are identified in Figure 11 with their respective numerical references.

[0061]

[0060] The rear perspective view illustrated in Figure 12 shows the base of the condenser 1, the mounting base, of the modular data center system. The vertical structure mounted on the left side of Figure 12 is the guardrail, designed to protect operators moving around the access platform, around the set of condenser units. Also on the left side of Figure 12, it is possible to see the two vertical columns which are two of the six support feet of the condenser 1 base structure. The vertical columns contain inclined tubes that are mounted in a triangular shape, in order to function as structural reinforcement and ensure the necessary mechanical resistance for the demands of use of the condenser 1 base.

[0062]

[0061] The rear perspective view illustrated in Figure 13 shows the base of condenser 2, the mounting base, of the modular data center system. On the right side of Figure 13 is the vertical structure that is the guardrail, designed to protect operators moving around the access platform, around the set of condenser units. On the left side of Figure 13, it is possible to see a vertical column that is one of the support feet of the base structure of condenser 2. On the vertical column are the inclined tubes that are mounted in a triangular shape, in order to function as structural reinforcement and guarantee the necessary mechanical resistance for the demands of use of the base of condenser 2.

[0063]

[0062] The previous perspective view illustrated in Figure 14 shows the base of condenser unit 3, the mounting base, of the modular data center system. The two vertical structures shown in Figure 14 are the guardrails, designed to protect operators moving around the access platform surrounding the condenser unit assembly. On the left side of Figure 14, it is possible to see the two vertical columns, which are two of the six support feet of the condenser unit 3 base structure. The vertical columns contain inclined tubes that are mounted in a triangular shape to act as structural reinforcement and ensure the necessary mechanical strength for the demands of use of the condenser unit 3 base.

[0064]

[0063] The previous perspective view illustrated in Figure 15 shows the base of condenser 4, the mounting base, of the modular data center system. The two vertical structures mounted in an “L” shape in Figure 15 are the guardrails, designed to protect operators moving around the access platform surrounding the condenser unit assembly. On the left side of Figure 15, it is possible to see the two vertical columns which are two of the six support feet of the condenser 4 base structure. The vertical columns contain inclined tubes mounted in a triangular shape to act as structural reinforcement and ensure the necessary mechanical strength for the demands of use of the condenser 4 base.

[0065]

[0064] The perspective view illustrated in Figure 16 shows the base of the central condenser unit, the mounting base, and the modular data center system. On the right side of Figure 16 is the vertical structure, which is the guardrail, designed to protect operators moving around the access platform surrounding the condenser unit assembly. On the left side of Figure 16, it is possible to see the two vertical columns, which are two of the six support feet of the central condenser unit base structure. The vertical columns contain inclined tubes that are mounted in a triangular shape to act as structural reinforcement and ensure the necessary mechanical resistance for the demands of use of the central condenser unit base.

[0066]

[0065] The previous perspective view shown in Figure 17 shows the support, of the mounting base, of the modular data center system. The support is the structure that connects the set of condenser units with the bases.

[0067]

[0066] The front view reproduced in Figure 18 shows the support for the mounting base of the modular data center system. In the center of the front face of Figure 18 is the surface that is mounted parallel to the direction of the plane formed by the X and Z axes, designated as the XZ plane. Also on this surface in Figure 18, there are two horizontal oblongs that are used to mount the shock absorbers. These oblongs allow for adjustment of the mounting, and this is an essential feature, since the condenser unit mounting base solution is a modular solution that can be assembled and disassembled several times, according to the need to change the location of the modular data center system installation.

[0068]

[0067] The rear view shown in Figure 19 illustrates the support, of the mounting base, of the modular data center system. On the front face of Figure 19 is the surface that is mounted parallel to the direction of the plane formed by the X and Z axes, designated as the XZ plane. Also on this surface in Figure 19, there are four vertical oblongs that are used to mount the fasteners. These oblongs allow for adjustment of the mounting, and this is an essential feature, since the condenser unit mounting base solution is a modular solution that can be assembled and disassembled several times, according to the need to change the location of the modular data center system installation.

[0069]

[0068] The left side view illustrated in figure 20 shows the support, of the fixing base, of the modular data center system. In the central part of figure 20, in the vertical position, is the structural reinforcement that is mounted perpendicularly between the front and rear faces.

[0070]

[0069] The front perspective view reproduced in figure 21 shows the fastener, of the mounting base, of the modular data center system. The fastener is mounted on the rear face of the support using the fastening elements.

[0071]

[0070] The mechanical construction of the condenser unit mounting base (10) is preferably a metal structure designed to support the assembly of the entire set of condenser units (13), with all the stresses to which the modules are subjected during transport and operation, such as tensile and / or compressive forces, and / or torsional and / or bending moments.

[0072]

[0071] In short, the function of the fixing base (10) is to guarantee the mechanical resistance necessary to withstand all stresses, considering the maximum total load to which the modular data center system (1) can be exposed both during its transport and during its use.

[0073]

[0072] The mounting base (10) may also have an extra function of grounding and surge protection, which is the effective grounding system and together with surge protection devices, are essential to protect equipment against power fluctuations and lightning.

[0074]

[0073] The modular data center system (1) is preferably assembled using the following components: data room (2), cooling room (3), electrical room (4), redundant electrical room (5) and telecommunications room (6).

[0075]

[0074] The present development aims at the design of the fixing base (10), which is part of a technology set, whose function is to guarantee the operation of the modular data center system (1), being a solution dedicated to the assembly and mechanical resistance for all condensing units (13) that are installed on the outside of each room, of the modular data center system (1).

[0076]

[0075] The sizing of the mounting base (10) will depend on the dimensions and total number of condensing units (13) that will be installed on the outside of each room of the modular data center system (1), which will result in the complexity of the necessary mechanical structure.

[0077]

[0076] The mounting base (10) can be assembled with a combination of different base models, with different quantities of each model, according to the dimensions and the total number of condenser units (13) that will be installed on the outside of each room of the modular data center system (1). Thus, a mounting base (10) can contain the condenser base 1 (11), the condenser base 2 (12), the condenser unit (13), the condenser base 3 (14), the condenser base 4 (15), the central condenser base (16), the support (17), the fastener (18), the fastening elements (19) and the damper (22).

[0078]

[0077] The support (17) is the structure that interconnects the set of condensing units (13) with the bases (11), (12), (14), (15) and (16) for mounting the fixing base (10). On the front face of the support (17) there are two oblongs that are used in mounting the shock absorbers (22). These oblongs allow adjustment of the mounting, and this is an essential feature, since the solution of the fixing base for condensing units (10) is a modular solution, which can be assembled and disassembled several times, according to the need to change the location of the modular data center system installation (1).

[0079]

[0078] On the rear face of the support (17) there are four oblongs which are used in mounting the fasteners (18). These oblongs allow for adjustment of the mounting, and this is an essential feature, since the condenser unit mounting base solution (10) is a modular solution, which can be assembled and disassembled several times, according to the need to change the location of the modular data center system installation (1).

[0080]

[0079] The fasteners (18) are mounted on the rear face of the support (17) using the fastening elements (19).

[0081]

[0080] An example of a mounting base (10), which is mounted to serve the refrigeration room (3), uses the condenser base 1 (11), the condenser base 2 (12), a set of condensing units (13), the condenser base 3 (14), the condenser base 4 (15), two central condenser bases (16), the supports (17), the fasteners (18), the fastening elements (19) and the shock absorbers (22).

[0082]

[0081] Each base model has a specific length, width, and height, parameters that were dimensioned to meet the position in which each base is mounted to form the fixing base (10). Each base model was dimensioned to have mechanical resistance in order to guarantee the integrity of the structure, both during the lifting stage, an operation that is carried out in the loading and unloading process of the module, and during the transport stage of the module that makes up each of the rooms of the modular data center system (1).

[0082] The fixing base (10) has the flexibility to receive base models, or even remove base models, within the base models listed above, according to the demand of the room in which the fixing base (10) is installed.

[0083]

[0083] The modular data center system (1) allows, alternatively, the variation of room size by adding or removing the lower and upper parts, hence the need for the fixing base (10) to also have the same flexibility in varying the total amount of equipment.

[0084]

[0084] The use for which the mounting base (10) was developed requires: it must be used in all rooms that make up the modular data center system (1), such as the data room (2); the cooling room (3); the electrical room (4); the redundant electrical room (5) and the telecommunications room (6), with the dimensions of the mounting base (10) depending on the requirements of each room. For example, the electrical room (4) has a lower cooling load demand than the data room (2), therefore the mounting base (10) mounted in the electrical room (4) will have fewer condensing units (13) than the mounting base (10) mounted in the data room (2), and therefore the mounting base (10) of the electrical room (4) will be smaller than the mounting base (10) of the data room (2).

[0085]

[0085] The damper (22) is the element that can be mounted on all base models that make up the mounting base (10), in order to act against the transfer of vibration from the set of condensing units to the structure of the room in which the mounting base (10) is mounted.

[0086]

[0086] Alternatively, the fixing base (10) can be used in any other structure that demands the requirements for using the fixing base (10), i.e., in structures that need to be transported or moved, and which under these conditions are subjected to different mechanical stresses, such as tension; compression; bending moment and / or torsional moment.

Claims

CLAIMS 1. MOUNTING BASE FOR CONDENSING UNITS FOR MODULAR DATA CENTER SYSTEM characterized by the mounting base (10) being assembled with the condenser base 1 (11), with the condenser base 2 (12), with the condenser unit (13), with the condenser base 3 (14), with the condenser base 4 (15), with the central condenser base (16), with the support (17), with the fastener (18), with the fastening elements (19) and with the damper (22).

2. CONDENSING UNIT MOUNTING BASE FOR MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that the mounting base (10) has the flexibility to receive the assembly of different base models with different quantities of each model, according to the requirements of the data room (2), the cooling room (3), the electrical room (4), the redundant electrical room (5) and the telecommunications room (6) of the modular data center system (1).

3. BASE FOR FIXING CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that the electrical room (4), of the modular data center system (1), contains the equipment base (10) assembled with the condenser base 1 (11), the condenser base 2 (12), a set of condensing units (13), the condenser base 3 (14), the condenser base 4 (15), two central condenser bases (16), the supports (17), the fasteners (18), the fastening elements (19) and the shock absorbers (22).

4. BASE FOR FIXING CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that, alternatively, the fixing base (10) is extended in length by adding one or more condensing unit bases 1 (11), or condensing unit bases 2 (12), or condensing unit bases 3 (14), or condensing unit bases 4 (15), or central condensing unit base (16).

5. BASE FOR FIXING CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that, alternatively, the fixing base (10) is enlarged in its width by adding one or more condensing unit bases 1 (11), or condensing unit bases 2 (12), or condensing unit bases 3 (14), or condensing unit bases 4 (15), or central condensing unit base (16).

6. BASE FOR FIXING CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that, alternatively, the fixing base (10) has its length reduced by removing one or more condenser base 1 (11), or condenser base 2 (12), or condenser base 3 (14), or condenser base 4 (15), or central condenser base (16).

7. BASE FOR FIXING CONDENSING UNITS FOR A MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that, alternatively, the fixing base (10) has its width reduced by removing one or more condenser base 1 (11), or condenser base 2 (12), or condenser base 3 (14), or condenser base 4 (15), or central condenser base (16).

8. CONDENSING UNIT MOUNTING BASE FOR MODULAR DATA CENTER SYSTEM, according to claim 1, characterized in that, alternatively, the modular data center system (1) allows for variation in room size, resulting in variation in the size of the mounting base (10) through the addition or removal of condensing units (13) and the following bases: condenser base 1 (11), or condenser base 2 (12), or condenser base 3 (14), or condenser base 4 (15), or central condenser base (16).

9. USE OF THE CONDENSING UNIT MOUNTING BASE FOR A MODULAR DATA CENTER SYSTEM, defined in claim 1, characterized by the equipment base (10): - to be used in the data room (2); - to be used in the refrigeration room (3); - to be used in the electrical room (4); - to be used in the redundant electrical room (5); - to be used in the telecommunications room (6).

10. USE OF THE CONDENSER UNIT MOUNTING BASE FOR A MODULAR DATA CENTER SYSTEM, according to claim 9, characterized in that, alternatively, the mounting base (10) is used in any other structure that requires the use requirements of the mounting base (10).