Holographic cabin

By integrating the device's sound-emitting part into the holographic support base, the problems of large size and lack of sound function of the holographic cabin are solved, realizing a more portable and powerful holographic cabin design and improving the user experience.

CN223471252UActive Publication Date: 2025-10-24JINDA INTELLIGENT INNOVATION CO LTD
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Patent Information

Application Number
CN202422641322.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-24
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing holographic capsules are large in size, have complex structures, and lack external sound output, resulting in a reduced user experience.

Method used

The device's sound-emitting part is connected inside the holographic support base, and the holographic main control module controls the projection and sound emission of the holographic display module, reducing the need for external sound-emitting devices and optimizing the structure of the holographic cabin.

Benefits of technology

It improves the portability and functionality of the holographic capsule, enhances the display effect, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of holographic projection, in particular to a holographic cabin which comprises a holographic cabin body, a holographic supporting base, a holographic display module, a holographic master control module and an equipment sound production part, the holographic cabin body is connected to the holographic supporting base, the holographic display module is connected into the holographic cabin body, and a holographic projection cavity is defined by the holographic display module and the holographic cabin body; the holographic display module is connected to the holographic supporting base and is connected with the holographic main control module; the holographic main control module and the equipment sound production part are respectively connected in the holographic supporting base, and the equipment sound production part is connected to the holographic main control module; the holographic master control module controls the holographic display module to be projected into the holographic projection cavity, and sound production is carried out through the equipment sound production part. According to the scheme, the structural design that the sound production part of the equipment is connected into the holographic supporting base is adopted, so that the effects of improving the outdoor portability of a holographic cabin product, reducing the overall volume of the holographic cabin and enhancing the display functionality of the holographic cabin product are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of holographic projection, especially relates to a holographic cabin. BACKGROUND

[0002] The holographic cabin combines holographic projection technology and a display stand, and the cost effectiveness brought by the progress of holographic projection technology, the provision of interactive experience to enhance user participation, the effective transmission of complex product information, the saving of space and the adaptation to different environmental conditions, the innovative marketing means to enhance brand image, the intuitive display in education and training, the immersive experience in artistic and cultural activities, the demand for sustainable development, and the flexibility and reusability of display content, the three-dimensional image display capability of the holographic cabin meet the market demand for innovative display tools, and provide a novel and attractive presentation mode for the display of brand image and products. UTILITY MODEL CONTENT

[0003] The utility model discloses a kind of holographic cabins, adopt the structure design of connecting equipment sound production part in holographic support base, reach the effect of improving the portable of holographic cabin product, reducing the overall volume of holographic cabin and enhancing the functionality of holographic cabin product display.

[0004] Based on this, the utility model provides a kind of holographic cabin, comprising:

[0005] Holographic cabin body, holographic support base, holographic display module, holographic main control module, equipment sound production part, the holographic cabin body is connected on the holographic support base;The holographic display module is connected in the holographic cabin body, and is surrounded with the holographic cabin body to form holographic projection cavity;And the holographic display module is connected on the holographic support base and is connected with the holographic main control module;The holographic main control module and equipment sound production part are connected in the holographic support base respectively, and the equipment sound production part is connected on the holographic main control module;The holographic main control module controls the holographic display module to project in the holographic projection cavity, and sounds through the equipment sound production part.

[0006] As described above, a kind of holographic cabin, the holographic support base is equipped with holographic first connection base, holographic second base connecting plate, holographic base support column, holographic sound, the holographic first connection base with holographic second base connecting plate is connected by the holographic base support column, the holographic sound is wrapped in the outside of the holographic first connection base and the sound of the equipment sound production part is handled.

[0007] The holographic cabin as claimed in any one of the above, the device sound production part is provided with first sound production structure, second sound production structure, the first sound production structure, second sound production structure is arranged at the both sides of the holographic main control module respectively and is connected in the holographic first connecting base, and the first sound production structure and second sound production structure sound production after through the holographic sound distribution outward conduction.

[0008] The holographic cabin as claimed in any one of the above, the holographic main control module is provided with holographic main control board, holographic external terminal box, the holographic external terminal box, holographic display module, first sound production structure, second sound production structure are connected in the holographic main control board and are controlled through the holographic main control board.

[0009] The holographic cabin as claimed in any one of the above, the holographic external terminal box is provided with holographic wireless receiving end, holographic network interface, holographic HDMI interface, holographic SIM card interface, is connected with external through the holographic wireless receiving end, holographic network interface, holographic HDMI interface, holographic SIM card interface respectively.

[0010] The holographic cabin as claimed in any one of the above, the holographic cabin body is provided with first holographic support frame, second holographic support frame, holographic cabin body fastening cover, backlight unit, the first holographic support frame and second holographic support frame are connected on the holographic first connecting base oppositely;The holographic display module one end is connected with the first holographic support frame, the other end is connected with the second holographic support frame, so that the holographic display module is fastened on the holographic first connecting base;The backlight unit is connected on the second holographic support frame, and is surrounded with the holographic display module to form holographic projection cavity;The holographic cabin body fastening cover is connected on the second holographic support frame on the other side relative to the holographic first connecting base, and fastens the first holographic support frame, second holographic support frame, holographic display module, backlight unit.

[0011] The holographic cabin as claimed in any one of the above, the backlight unit is provided with holographic backboard, holographic light emitting unit, one end of the holographic backboard is connected in the holographic first connecting base, the other end is connected in the holographic cabin body fastening cover;The holographic light emitting unit is connected on the holographic cabin body fastening cover and carries out brightness adjustment.

[0012] The holographic cabin as claimed in any one of the above, the holographic cabin body fastening cover is provided with first holographic fastening cover connecting outer plate, second holographic fastening cover connecting outer plate, holographic fastening cover magnetic connecting piece, the holographic fastening cover magnetic connecting piece is connected in the second holographic fastening cover connecting outer plate, the first holographic fastening cover connecting outer plate is connected in the second holographic fastening cover connecting outer plate through the holographic fastening cover magnetic connecting piece;The first holographic fastening cover connecting outer plate is provided with holographic fastening cover limiting portion, and the first holographic support frame is limited through the holographic fastening cover limiting portion.

[0013] The holographic cabin as described above, the holographic first connecting base is provided with a first base connecting plate, a first connecting base body, the first base connecting plate is connected on the first connecting base body for connecting the holographic cabin body and the holographic display module; and the first base connecting plate is provided with a second holographic base limiting part, the second holographic base limiting part can limit the first holographic support frame in cooperation with the holographic fastening cover limiting part.

[0014] The holographic cabin as described above, the holographic display module can adopt LCD or LED or OLED technology to assist imaging

[0015] The embodiment of the present application has the following beneficial effects:

[0016] 1, the device sound emitting part is connected in the structure design of the holographic support base, the holographic display module is connected in the holographic cabin body and is surrounded by the holographic cabin body to form a holographic projection cavity, the holographic main control module and the device sound emitting part are connected in the holographic support base, the device sound emitting part is connected on the holographic main control module, the holographic display module is controlled by the holographic main control module to project and image in the holographic projection cavity, and the device sound emitting part is sounded, the sound emitting function of the holographic cabin is increased, the overall structure of the holographic cabin is optimized, the use of external sound emitting equipment is reduced, the portability of the holographic cabin product is improved, the overall volume of the holographic cabin is reduced, and the functional effect of enhancing the holographic cabin product display is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0018] Figure 1 The structure diagram of the embodiment of the present application without connecting holographic sound cloth;

[0019] Figure 2 For corresponding Figure 1 Another direction structure diagram;

[0020] Figure 3 For corresponding Figure 2 Another direction structure diagram;

[0021] Figure 4 For corresponding Figure 3 The A part of the enlarged view;

[0022] Figure 5 The structure explosion diagram of the embodiment of the present application without connecting holographic sound cloth;

[0023] Figure 6 To correspond Figure 5 A magnified view of part B;

[0024] Figure 7 To correspond Figure 5 Magnified view of part C;

[0025] Figure 8 To correspond Figure 5 Structural diagram of the other direction;

[0026] Figure 9 To correspond Figure 8 An enlarged view of the D portion;

[0027] Figure 10 To correspond Figure 8 Structural diagram of the other direction;

[0028] Figure 11 It is a partially hidden diagram corresponding to an embodiment of the present utility model;

[0029] Figure 12 Schematic diagram of the structure of the second holographic support frame corresponding to the embodiment of the utility model;

[0030] Figure 13 To correspond Figure 12 Structural diagram of the other direction;

[0031] Figure 14 This is a schematic diagram of the structure of the embodiment of the utility model connected with the holographic sound cloth;

[0032] Figure 15 To correspond Figure 14 Structural diagram of the other direction;

[0033] Figure 16 To correspond Figure 15 Schematic diagram of the structure in another direction.

[0034] In the figure: 1-holographic cabin, 11-first holographic support frame, 111-first outer support frame, 112-first inner support frame, 12-second holographic support frame, 121-display module abutment portion, 122-backboard connection portion, 13-holographic cabin fastening cover, 131-first holographic fastening cover connected to the outer plate, 1311-holographic fastening cover limiter, 132-second holographic fastening cover connected to the outer plate, 1321-display module positioning groove 2, 133-holographic fastening cover magnetic connector, 141-holographic backplate, 142-holographic light-emitting unit, 15-holographic light-transmitting cover; 2-holographic support base, 21-first holographic connection base, 211-first base connection plate, 2111-second holographic base limiter Part, 2112-display module positioning slot 1, 212-first connecting base body, 2121-base sound transmission hole, 2122-base heat dissipation slot, 2123-junction box installation position, 22-holographic second base connecting plate, 23-holographic base support column, 24-holographic audio cloth; 3-holographic display module; 5-holographic main control module, 51-holographic main control board, 52-holographic external junction box, 521-holographic wireless receiving terminal, 522-holographic network interface, 523-holographic HDMI interface, 524-holographic SIM card interface, 525-holographic device switch, 526-holographic power interface, 527-universal USB interface; 61-first sound structure, 62-second sound structure. DETAILED DESCRIPTION

[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] like Figures 1 to 16 As shown, the embodiment of the present invention provides a holographic cabin, comprising:

[0037] A holographic cabin 1, a holographic support base 2, a holographic display module 3, a holographic main control module 5, and a device sound-emitting part. The holographic cabin 1 is connected to the holographic support base 2; the holographic display module 3 is connected in the holographic cabin 1, and together with the holographic cabin 1, forms a holographic projection cavity; the holographic display module 3 is connected to the holographic support base 2 and is connected to the holographic main control module 5; the holographic main control module 5 and the device sound-emitting part are respectively connected in the holographic support base 2, and the device sound-emitting part is connected to the holographic main control module 5; the holographic main control module 5 controls the holographic display module 3 to be projected in the holographic projection cavity, and emits sound through the device sound-emitting part.

[0038] Specifically, the holographic support base 2 is provided with a holographic first connecting base 21, a holographic second base connecting plate 22, a holographic base support column 23, and a holographic sound cloth 24. The holographic base support column 23 is provided with a base support column connecting upper hole and a base support column connecting lower hole. The holographic first connecting base 21 and the holographic second base connecting plate 22 are respectively fastened by the base support column connecting upper hole and the base support column connecting lower hole of the holographic base support column 23 through threaded fasteners, so as to ensure the support stability of the holographic support base 2. The holographic sound cloth 24 is wrapped outside the holographic first connecting base 21 to process the sound emission of the device sound emitting part, so as to reduce echo and noise and improve the clarity of sound. The holographic sound cloth 24 is made of acoustic material to optimize the sound conduction effect of the device sound emitting part and reduce unnecessary audio interference.

[0039] Further, the device sound emitting part is provided with a first sound emitting structure 61 and a second sound emitting structure 62. The first sound emitting structure 61 and the second sound emitting structure 62 are respectively arranged on both sides of the holographic master control module 5 and connected to the holographic first connecting base 21. After the first sound emitting structure 61 and the second sound emitting structure 62 emit sound, the sound is conducted outward through the holographic sound cloth 24, so as to improve the clarity of sound. The mounting structure of the device sound emitting part is designed to be modular and can be detachably connected to the holographic first connecting base 21, so as to facilitate the user to replace or upgrade when needed and improve the convenience of installation and disassembly.

[0040] Further, the holographic master control module 5 is provided with a holographic master control board 51 and a holographic external wiring box 52. The holographic external wiring box 52, the holographic display module 3, the first sound emitting structure 61, and the second sound emitting structure 62 are respectively connected to the holographic master control board 51 and controlled by the holographic master control board 51. The holographic master control board 51 is provided with a multi-channel audio decoder to support decoding of multiple audio formats, so as to improve the audio output quality of the device sound emitting part. The holographic master control board 51 further includes a central processing unit (CPU) for real-time processing of signals from the holographic display module 3, the first sound emitting structure 61, and the second sound emitting structure 62, so as to ensure the rapid response of the holographic cabin system.

[0041] Further, the holographic external terminal box 52 is provided with a holographic wireless receiving end 521, a holographic network interface 522, a holographic HDMI interface 523, and a holographic SIM card interface 524, which are respectively connected with the outside through the holographic wireless receiving end 521, the holographic network interface 522, the holographic HDMI interface 523, and the holographic SIM card interface 524; the holographic wireless receiving end 521 supports multiple wireless communication protocols, including Wi-Fi or Bluetooth or Zigbee, to realize compatible connection with multiple external devices and improve the applicability of the holographic cabin; the design of the holographic network interface 522 enables the holographic cabin to be connected to the Internet and access online resources such as streaming media services, databases, and cloud storage, so as to quickly receive and transmit a large amount of data, realize real-time display of remote content, and enhance the use flexibility of the holographic cabin; the design of the holographic HDMI interface 523 enables the holographic cabin to support 4K video output to provide high-quality image transmission and meet the high-resolution requirements of the holographic display module 3; the design of the holographic SIM card interface 524 enables the holographic cabin to allow users to insert SIM cards of different operators to support mobile network functions, which is convenient for users to use in the case of no Wi-Fi or network cable, thereby improving the use convenience of the holographic cabin; the holographic external terminal box 52 further includes a plastic external terminal box shell, a holographic device switch 525, a holographic power interface 526, and a universal USB interface 527; the plastic external terminal box shell is made of plastic material and externally sprayed with black metal paint to enhance the durability of the plastic external terminal box shell, prolong the service life of the product, and improve the heat conduction performance of the plastic shell and the heat dissipation efficiency; the holographic power interface 526 is connected with a power line to access external power supply and quickly turn on and off the holographic cabin through the holographic device switch 525, thereby improving the convenience of using the holographic cabin; and the universal USB interface 527 is connected with external devices to enhance the applicability of the holographic cabin.

[0042] Further, the holographic cabin 1 is provided with a first holographic support frame 11, a second holographic support frame 12, a holographic cabin fastening cover 13, a backlight unit, and a holographic light-transmitting cover 15. The first holographic support frame 11 and the second holographic support frame 12 are oppositely connected to the holographic first connecting base 21. One end of the holographic display module 3 is connected to the first holographic support frame 11, and the other end is connected to the second holographic support frame 12, so that the holographic display module 3 is fastened to the holographic first connecting base 21. The backlight unit is connected to the second holographic support frame 12 and surrounds the holographic display module 3 to form a holographic projection cavity. The holographic cabin fastening cover 13 is connected to the other side of the second holographic support frame 12 relative to the holographic first connecting base 21, and fastens the first holographic support frame 11, the second holographic support frame 12, the holographic display module 3, and the backlight unit. The holographic light-transmitting cover 15 is connected in the holographic cabin 1 through the first holographic support frame 11 to protect the holographic display module 3 and prolong the service life of the holographic display module 3.

[0043] The first holographic support frame 11 is provided with a first outer support frame 111 and a first inner support frame 112. The first inner support frame 112 connects the holographic light-transmitting cover 15 to the first outer support frame 111 through a second threaded fastener. The first outer support frame 111 is connected to the holographic cabin fastening cover 13 and the holographic first connecting base 21 through third threaded fasteners, so as to ensure the stability of the holographic cabin after connection.

[0044] The second holographic support frame 12 is provided with a display module abutting portion 121 and a back plate connecting portion 122. The second holographic support frame 12 abuts the holographic display module 3 to the first holographic support frame 11 through the display module abutting portion 121. The backlight unit is connected to the back plate connecting portion 122, and the backlight unit is connected to the holographic cabin fastening cover 13 and the holographic first connecting base 21 through fourth threaded connecting members, so as to limit the radial and axial movement of the holographic display module 3 and ensure the reliability of the structural connection.

[0045] Further, the backlight unit is provided with a holographic backboard 141 and a holographic light-emitting unit 142. The holographic backboard 141 is made of high-reflectivity material to enhance the light utilization efficiency of the backlight unit and improve the overall brightness performance. The holographic backboard 141 is connected to the second holographic support frame 12 through the backboard connecting part 122, and one end of the holographic backboard 141 is connected to the holographic first connecting base 21 through a fourth threaded connecting part, and the other end is connected to the holographic cabin fastening cover 13. The holographic light-emitting unit 142 is connected to the holographic cabin fastening cover 13 for brightness adjustment to enhance the brightness and contrast of the holographic image, making the image clearer and more vivid. At the same time, by adjusting the color and brightness of the light-emitting unit, different atmospheres and emotions can be created to enhance the immersive experience of the user. The holographic backboard 141 is preferably made of aluminum material, making it lightweight and durable, easy to install and maintain, and also helping to dissipate heat to prevent sensitive electronic components in the holographic cabin from being damaged due to overheating.

[0046] Further, the holographic cabin fastening cover 13 is provided with a first holographic fastening cover connecting outer plate 131, a second holographic fastening cover connecting outer plate 132, and a holographic fastening cover magnetic connecting part 133. The holographic fastening cover magnetic connecting part 133 is connected to the second holographic fastening cover connecting outer plate 132, and the first holographic fastening cover connecting outer plate 131 is connected to the second holographic fastening cover connecting outer plate 132 through the holographic fastening cover magnetic connecting part 133. The first holographic fastening cover connecting outer plate 131 is provided with a holographic fastening cover limiting part 1311, and the first holographic support frame 11 is limited by the holographic fastening cover limiting part 1311 to prevent the first holographic support frame 11 from moving horizontally and enhance the stability of the structure. The holographic fastening cover magnetic connecting part 133 is made of strong magnetic material to ensure that the first holographic fastening cover connecting outer plate 131 is firm and easy to disassemble during use, facilitating quick maintenance and replacement in the later stage and improving the convenience of maintenance.

[0047] Further, the holographic first connecting base 21 is provided with a first base connecting plate 211, a first connecting base body 212, the first base connecting plate 211 is provided with a display module positioning groove one 2112, the second holographic fastening cover connecting outer plate 132 is provided with a display module positioning groove two 1321, the holographic display module 3 is positioned and installed in the first base connecting plate 211 and the second holographic fastening cover connecting outer plate 132 respectively through the display module positioning groove one 2112 and the display module positioning groove two 1321, so as to improve the convenience and stability of connection; the first base connecting plate 211 is connected on the first connecting base body 212 for fixed connection of the first outer support frame 111 and the holographic back plate 141, so as to improve the connection stability of the overall structure; and the first base connecting plate 211 is provided with a second holographic base limiting portion 2111, the second holographic base limiting portion 2111 can limit the first holographic support frame 11 in cooperation with the holographic fastening cover limiting portion 1311, to prevent the first holographic support frame 11 from moving transversely, so as to improve the stability of connection; the first base connecting plate 211 is made of composite material, so as to improve its strength and reduce the overall weight, and enhance the stability of the holographic cabin 1 after connection; the first connecting base body 212 is provided with a base sound transmission hole 2121, a base heat dissipation groove 2122 and a junction box mounting position 2123, the base sound transmission hole 2121 is respectively used for sound transmission of the first sound generating structure 61 and the second sound generating structure 62 outward, so as to concentrate and transmit sound, reduce the interference of background noise and improve the definition of sound; the base heat dissipation groove 2122 can be used for heat dissipation of components in the holographic support base 2, so as to avoid holographic cabin shutdown caused by heat dissipation, so as to ensure the stability in operation; the junction box mounting position 2123 can be used for quick installation of the holographic external junction box 52, so as to improve the convenience of installation.

[0048] Further, the holographic display module 3 can adopt LCD or LED or OLED technology to assist imaging; in the embodiment of the utility model, the holographic display module 3 preferably adopts LCD technology to assist imaging, and the LCD technology can provide high resolution and accurate color reproduction in holographic projection, so as to ensure the definition and fidelity of three-dimensional projection image details, and the brightness of LCD screen is adjustable, quick response helps to optimize the image visibility in different environments and reduce motion blur, in addition, the maintenance and repair of LCD screen are relatively simple, so the convenience of maintenance is improved.

[0049] The holographic cabin provided by the utility model further comprises a holographic sensing module, the holographic sensing module comprises a motion sensor, a light sensor and a temperature sensor, so as to monitor the environment and the state of the user in real time.

[0050] It should be understood that the terms "first", "second" and the like in the present application are used to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0051] The above is the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications are also considered within the scope of protection of the present application.

Claims

1. A holographic pod characterized by, Include: Holographic cabin (1), holographic support base (2), holographic display module (3), holographic main control module (5), equipment sound part, the holographic cabin (1) is connected on the holographic support base (2); The holographic display module (3) is connected in the holographic cabin (1), and is surrounded with the holographic cabin (1) and is set up holographic projection cavity; And the holographic display module (3) is connected on the holographic support base (2) and is connected with the holographic main control module (5); The holographic main control module (5) and equipment sound part are connected in the holographic support base (2) respectively, and the equipment sound part is connected on the holographic main control module (5); The holographic main control module (5) controls the holographic display module (3) to project in the holographic projection cavity, and carries out sounding through the equipment sound part.

2. A holographic pod according to claim 1, wherein, The holographic support base (2) is provided with a holographic first connecting base (21), a holographic second base connecting plate (22), a holographic base support column (23) and a holographic sound cloth (24). The holographic first connecting base (21) and the holographic second base connecting plate (22) are connected through the holographic base support column (23). The holographic sound cloth (24) is wrapped outside the holographic first connecting base (21) to process the sound of the equipment sound part.

3. A holographic pod according to claim 2, wherein, The equipment sound part is provided with a first sound structure (61) and a second sound structure (62). The first sound structure (61) and the second sound structure (62) are respectively arranged on both sides of the holographic main control module (5) and connected to the holographic first connecting base (21). The first sound structure (61) and the second sound structure (62) conduct sound outward through the holographic sound cloth (24) after sounding.

4. A holographic pod according to claim 3, wherein, The holographic main control module (5) is provided with a holographic main control board (51) and a holographic external terminal box (52). The holographic external terminal box (52), the holographic display module (3), the first sound structure (61) and the second sound structure (62) are respectively connected to the holographic main control board (51) and controlled through the holographic main control board (51).

5. A holographic pod according to claim 4, wherein, The holographic external terminal box (52) is provided with a holographic wireless receiving end (521), a holographic network interface (522), a holographic HDMI interface (523) and a holographic SIM card interface (524). The holographic wireless receiving end (521), the holographic network interface (522), the holographic HDMI interface (523) and the holographic SIM card interface (524) are respectively connected to the outside.

6. A holographic pod according to claim 2, wherein, The holographic cabin (1) is provided with a first holographic support frame (11), a second holographic support frame (12), a holographic cabin fastening cover (13) and a backlight unit. The first holographic support frame (11) and the second holographic support frame (12) are oppositely connected to the holographic first connecting base (21). One end of the holographic display module (3) is connected to the first holographic support frame (11), and the other end is connected to the second holographic support frame (12), so that the holographic display module (3) is fastened to the holographic first connecting base (21). The backlight unit is connected to the second holographic support frame (12) and surrounded by the holographic display module (3) to form a holographic projection cavity; the holographic cabin fastening cover (13) is connected to the other side of the second holographic support frame (12) relative to the first holographic connecting base (21), and the first holographic support frame (11), the second holographic support frame (12), the holographic display module (3) and the backlight unit are fastened.

7. A holographic pod according to claim 6, wherein, The backlight unit is provided with a holographic backboard (141) and a holographic light emitting unit (142), one end of the holographic backboard (141) is connected to the first holographic connecting base (21), and the other end is connected to the holographic cabin fastening cover (13); the holographic light emitting unit (142) is connected to the holographic cabin fastening cover (13) for brightness adjustment.

8. A holographic pod according to claim 6, wherein, The holographic cabin fastening cover (13) is provided with a first holographic fastening cover connecting outer plate (131), a second holographic fastening cover connecting outer plate (132) and a holographic fastening cover magnetic connecting piece (133), the holographic fastening cover magnetic connecting piece (133) is connected to the second holographic fastening cover connecting outer plate (132), the first holographic fastening cover connecting outer plate (131) is connected to the second holographic fastening cover connecting outer plate (132) through the holographic fastening cover magnetic connecting piece (133); the first holographic fastening cover connecting outer plate (131) is provided with a holographic fastening cover limiting portion (1311), and the first holographic support frame (11) is limited through the holographic fastening cover limiting portion (1311).

9. A holographic pod according to claim 8, wherein, The first connecting base body (212) is provided with a first base connecting plate (211) connected thereto for connecting the holographic cabin (1) and the holographic display module (3); and the first base connecting plate (211) is provided with a second holographic base limiting portion (2111) which can cooperate with the holographic fastening cover limiting portion (1311) to limit the first holographic support frame (11).

10. A holographic pod according to claim 1, wherein, The holographic display module (3) can adopt LCD or LED or OLED technology to assist imaging.