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CN112316412A - Modularized detachable handheld game console and computing unit based on x86 architecture - Google Patents

Modularized detachable handheld game console and computing unit based on x86 architecture Download PDF

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Publication number
CN112316412A
CN112316412A CN202011285579.2A CN202011285579A CN112316412A CN 112316412 A CN112316412 A CN 112316412A CN 202011285579 A CN202011285579 A CN 202011285579A CN 112316412 A CN112316412 A CN 112316412A
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CN
China
Prior art keywords
module
groove
guide
handle module
hidden
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Pending
Application number
CN202011285579.2A
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Chinese (zh)
Inventor
周庚嘉
宋征
张春杰
宋盈满
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Shanghai Anghe Computer Science And Technology Center
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Shanghai Anghe Computer Science And Technology Center
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Application filed by Shanghai Anghe Computer Science And Technology Center filed Critical Shanghai Anghe Computer Science And Technology Center
Priority to CN202011285579.2A priority Critical patent/CN112316412A/en
Publication of CN112316412A publication Critical patent/CN112316412A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/20Input arrangements for video game devices
    • A63F13/24Constructional details thereof, e.g. game controllers with detachable joystick handles
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/90Constructional details or arrangements of video game devices not provided for in groups A63F13/20 or A63F13/25, e.g. housing, wiring, connections or cabinets
    • A63F13/98Accessories, i.e. detachable arrangements optional for the use of the video game device, e.g. grip supports of game controllers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Human Computer Interaction (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

The invention discloses a multifunctional modularized detachable handheld game console and a computing unit based on an x86 framework, which have high integration level, each part realizes the function thereof, the overall strength and the reasonable arrangement of the functions are realized, the left handle and the right handle realize the detachable design, a hidden screw is adopted, the appearance can be effectively ensured, the detachment and the maintenance are convenient, the problem of screw falling is avoided, meanwhile, the detachment is simple and convenient, only a buckle needs to be buckled and pressed, and the simplicity and the convenience are realized; the shell is a section bar and is subjected to anodic oxidation treatment, and the detail cNc is processed. The section bar has low cost and is more friendly to the environment, but the section bar has low precision and is easy to deform. The detachable handle/host shell module is isolated by 2 layers of plastics, so that heat inside the host is prevented from being transferred to the handle, and the user operation experience is improved.

Description

Modularized detachable handheld game console and computing unit based on x86 architecture
Technical Field
The invention particularly relates to a multifunctional modularized detachable handheld game machine and a computing unit based on an x86 architecture, and relates to the field related to games.
Background
In the current x86 architecture-based computer, the notebook computer is usually 10 inches or more, and the desktop computer is usually larger in size. The main factors restricting the development of small high-performance computers with the x86 architecture include:
(1) computer chipsets have now formed relatively uniform specifications, with both high performance and low performance chips often not being customizable and slimmer in size/interface/appearance. Small computers often use a lower chipset or reduced module and a smaller chipset after function. When people use a portable computer (7 inches), the work efficiency and the entertainment function are poor, so that the market share of the products in the level is low, and the user recognition sense is poor.
(2) The computer using a high performance chip is subject to a high constraint, i.e., higher power consumption and heat generation/larger heat sink and larger fan/larger capacity of built-in battery is required to satisfy the endurance requirement. The spearhead of which tends to point towards the inner space.
(3) Smaller computers, due to their more portable nature, have a more complex usage scenario and place greater demands on structural strength and durability. On the other hand, the weight of the x86 notebook computer is usually about 1kg at present, while the portable computer is possible to be used by being held by hands for a long time, and the total weight is reduced as much as possible. I.e. the contradiction between structural strength and weight.
(4) The structural design of the traditional notebook computer usually adopts a stack method, so that the space utilization rate is low, how to more reasonably arrange modules and optimize a structural scheme is one of effective solution ways for miniaturization of a high-performance computer.
(5) The assembly and fixing steps are more, the number of screws is more, the maintenance is not easy, the screws are easy to drop during maintenance, the tiny screws are difficult to be reconfigured, the design of external screws is not attractive, and the adhesive mode is not easy to disassemble and assemble;
(6) the common handheld game machine can generate a large amount of heat after being used for a long time, so that the operation performance is reduced, even the handle is hot and uncomfortable, and the internal mainboard is easy to damage when the handheld game machine falls off.
Disclosure of Invention
Therefore, in order to solve the above-mentioned disadvantages, the present invention provides a multifunctional modular detachable handheld game machine and computing unit based on x86 architecture.
The invention is realized in this way, construct a kind of multi-functional modularization detachable palm game machine and computational unit based on x86 framework, it includes the host computer module and locates at left and right both ends of said host computer module left handle module and right handle module, characterized by that, said left handle module and right handle module and said host computer module adopt the detachable chucking connection of the buckle;
annular sealing rings are arranged at the connecting ends of the left handle module and the right handle module and the host module;
the left end and the right end of the host module are provided with positioning clamping locking seats, four corners between the positioning clamping locking seats and the shell of the host module are provided with limiting slotted holes, two of the limiting slotted holes at the diagonal positions are provided with positioning pins, and the other two of the limiting slotted holes at the diagonal positions are provided with hidden locking screws;
positioning pin holes are formed in the left handle module and the right handle module corresponding to the positioning pins;
hidden screw holes are formed in the left handle module and the right handle module corresponding to the hidden locking screws;
a hidden driving locking mechanism is further arranged at the position, located on the hidden locking screw, in the positioning, clamping and locking seat, and the hidden driving locking mechanism is in driving connection with the hidden locking screw;
the input end of the hidden driving locking mechanism is located on the inner side of the buckle, so that the buckle is pressed once or for multiple times to drive the hidden locking screw to rotate and move axially through the hidden driving locking mechanism, and the hidden locking screw is connected in the hidden screw hole in a locking mode.
Further, as preferred, hide drive locking mechanism and include mounting panel, miniature drive rack, rotatory micro-gear, reference column, extension spring that resets, switching-over complementary unit, preceding guide, back guide and guide slot mechanism, wherein, the mounting panel is fixed in location block locking seat, be provided with on the mounting panel guide slot mechanism, the inner of miniature drive rack is provided with preceding guide, the outer end of miniature drive rack is provided with back guide, preceding guide and back guide all are located guide slot mechanism internal guide removes, still fixed being provided with on the mounting panel the reference column, rotatable and axially movable's cover is equipped with on the reference column rotatory micro-gear, the front end of rotatory micro-gear is towards hide the screw hole, just the integrative coaxial setting of the front end of rotatory micro-gear hide the locking screw, the back guide is close to the buckle sets up, just the tip of miniature drive rack is just right the buckle sets up, so that by the buckle drive miniature drive rack, the switching-over position of guide slot mechanism is provided with right the front guide carries out supplementary direction the switching-over complementary unit, be close to on the mounting panel one side of buckle still is provided with the groove that resets, reset inslot be provided with the extension spring that resets that miniature drive rack is connected.
Further, as preferred, guide slot mechanism is including the straight line groove that communicates in proper order, the groove of commuting and dodging the groove, wherein, the back guide is located all the time the direction removal of straight line inslot, just preceding guide is located during the straight line inslot, miniature drive rack, rotatory micro-gear mesh transmission all the time, the groove of commuting is in the tip orientation of straight line groove is kept away from rotatory micro-gear's direction extends, just dodge the groove with an contained angle has between the straight line groove, preceding guide is located when dodging the inslot and removing, miniature drive rack with at least part time unmeshed transmission between the rotatory micro-gear.
Further, as preferred, the switching-over complementary unit is located the junction between straight line groove and the switching-over groove, just the dodge the groove with the junction between the straight line groove also is provided with the switching-over complementary unit, the switching-over groove with dodge the junction between the groove for the circular arc transition, the medial surface of buckle is convex surface structure.
Further, preferably, the front guide and the rear guide have the same structure and are guide wheels or guide balls.
Further, as preferred, rotatory micro-gear's front end with hide still to be provided with the elastic protection bumping post between the locking screw, the switching-over complementary unit includes the spring, promotes slider and supplementary ejector pad, the switching-over groove with between the straight line groove, dodge the groove with be provided with logical groove between the straight line groove respectively, it is provided with to lead to the inslot the spring, the end connection of spring have lead to inslot gliding promote the slider, it is provided with on the promotion slider supplementary ejector pad, supplementary ejector pad orientation switching-over groove or straight line groove set up, the orientation of supplementary ejector pad one side of ring channel or straight line groove is the cambered surface, so that right the preceding guide leads.
Further, as preferred, be provided with at least one external communication interface on the lateral wall of host computer module, still be provided with control communication interface on the location block locking seat, communication joint on left handle module and the right handle module with control communication interface pegs graft, be provided with mainboard, battery and antenna and hard disk in the host computer module at least, be provided with the fan on the mainboard, wherein, the antenna is fixed on the grillage with the hard disk, one side of battery is provided with the back frame that is used for supporting the battery, still be provided with positive frame on the back frame, back frame with be provided with loudspeaker between the positive frame, all be provided with a plurality of control button on left handle module and the right handle module.
Further, as preferred, left side handle module and right side handle module structure are the same, all include outer heat insulation shell and interior heat insulation shell, interior heat insulation shell is integrative to be established on the inside wall of outer heat insulation shell, just the tip protrusion of interior heat insulation shell the terminal surface of outer heat insulation shell so that form the convex shoulder with the host computer module lock.
Further, as preferred, the shell of host computer module is the aluminum alloy, left handle module and right handle module are the plastics material, just the shell section bar of host computer module adopts anodic oxidation to handle, the details of the shell of host computer module adopts CNC processing to form, is provided with between the host computer screen of host computer module and the other modules in the host computer mm's buffer space to play the effect of the inside mainboard of protection and thermal-insulated effect, the data communication mode of left handle module and right handle module and host computer module is typec formula jack, so that realize waterproof function.
In addition, the invention also provides a computer unit which is characterized by being used for the multifunctional modularized detachable handheld game console based on the x-architecture.
The invention has the following advantages: compared with the same type of equipment, the multifunctional modularized detachable handheld game machine and the computing unit based on the x86 framework provided by the invention have the following advantages:
(1) the multifunctional modularized detachable handheld game console and the computing unit based on the x86 framework have high integration level in the aspect of the whole machine, each part realizes the self function, the matching of related parts is considered, the integral strength is realized, the functions are reasonably arranged, the detachable design is realized by the left handle and the right handle, in addition, the required screws are few, the hidden screws are adopted, the appearance can be effectively ensured, the detachment and the maintenance are convenient, the problem that the screws fall off is avoided, meanwhile, the detachment is simple and convenient, only the buckle needs to be buckled, and the simplicity and the convenience are realized;
(2) the whole machine of the invention comprises a plurality of big modules: host computer shell, host computer inside module, host computer screen module, handle module can be dismantled to the host computer, and every module has own unique technique and structural advantage.
(3) The shell of the invention is a section bar and is processed by anodic oxidation and detail cnc. The section bar has low cost and is more friendly to the environment, but the section bar has low precision and is easy to deform.
(4) The internal sandwich module of host computer is the upper and lower two-layer plastics stop device and presss from both sides tightly and keep apart out middle mainboard and battery space alone, is different from the metal screen stack in the past and arranges, and this design integrated level is high, and space utilization is high. The inner structure is cage type, and has the advantages of high strength, good impact resistance, good heat insulation and the like. The module adopts an injection molding process, has low cost and high precision, and can realize the advantages of simple processing of a production line, high qualification rate and the like.
(5) The handle module is an independent module, and realizes a high-strength quick-release type and concise connection mode with the host. The external contact surface of the handle module is screwless and only has 1 seam, so that the influence and corrosion of hand sweat and moist environment on electric devices in the handle during operation of a user are avoided. Several modules of the whole machine do not interfere with each other, namely a host screen/a host shell, and only two modules of a host detachable handle/the host shell are related and have unique technical structures.
(6) Through space design and structural design between host computer screen and other modules, there is 1.5 mm's buffering space, has played the effect of protection inside mainboard promptly if the emergence falls the accident, and the screen has constituted the energy-absorbing bradyseism structure of this direction with the buffering space jointly. On the other hand 1.5 mm's buffer space has played thermal-insulated effect, and the inside high temperature of host computer can not influence the screen display promptly, can not influence and use experience yet, has stopped any low temperature that comes from the screen direction and has scalded the possibility.
(7) The host module, the handle and the interior of the host module are in large-area precise fit, so that the falling resistance and the vibration resistance of the whole machine are improved. Through the precise matching between the modules, the use of fewer limiting buckles, fewer fixing screws and more reasonable internal heat dissipation pneumatic layout are realized. The highly integrated high performance of this product, the inside chip of high calorific capacity can derive inside heat well in user experience, can not influence user's use experience through metal casing conduction more heat again. In the aspects of production, maintenance, deashing and maintenance, the advantages of low disassembly difficulty, small risk and the like are achieved. The innovative structure has originality and leadership.
(8) The detachable handle/host shell module is isolated by 2 layers of plastics, so that heat inside the host is prevented from being transferred to the handle, the user operation experience is improved, and meanwhile, dust and objects are not easy to influence the host and the two sides of the handle simultaneously. The data communication mode of handle module and host computer is typec formula jack, can realize waterproof function, has really accomplished the communication independent between handle and the host computer promptly, each other does not influence. The handle is a consumable product, the keys and the rocker have upper service life limits, and the handle is an independent module and is easy to replace and maintain. The fixing mode between handle and the host computer can cover 2 to 4 points through the fine setting to the structure buckle, and the seamless switching between buckle and the hasp, this scheme is 2 point quick detach formula buckles.
Drawings
FIG. 1 is a schematic view of the structure of one of the angles of the present invention;
FIG. 2 is a schematic view of another embodiment of the present invention;
FIG. 3 is a schematic diagram of the overall structure of the host module of the present invention;
FIG. 4 is a schematic structural view of the host module of the present invention after being pulled out;
FIG. 5 is a schematic diagram of the layout of the host module housing, fan, motherboard, battery, hard disk, etc. of the present invention;
FIG. 6 is a schematic structural diagram of a blower and a main board according to the present invention;
FIG. 7 is a schematic structural diagram of a blower, a main board, a battery, a hard disk and a back frame according to the present invention;
FIG. 8 is a schematic structural view of the fan, the main board, the battery, the hard disk, the back frame and the front frame after being installed;
FIG. 9 is a schematic structural view of a left handle module of the present invention;
FIG. 10 is a schematic view of the internal structure of the left handle module of the present invention;
FIG. 11 is a schematic diagram of an external structure of a host module according to the present invention;
FIG. 12 is a schematic view of the present invention in one of its states of a hidden actuated locking mechanism;
FIG. 13 is a schematic view of another embodiment of the present invention in which the locking mechanism is hidden from actuation;
FIG. 14 is a schematic view of the connection structure of the micro driving rack, the rotating micro gear and the hidden locking screw according to the present invention;
FIG. 15 is an enlarged view of the structure of FIG. 12 at A in accordance with the present invention;
fig. 16 is an enlarged view of the structure of fig. 12 at B according to the present invention.
Detailed Description
The present invention will be described in detail with reference to fig. 1 to 16, and the technical solutions in the embodiments of the present invention will be clearly and completely described, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The invention provides a multifunctional modularized detachable handheld game machine and a computing unit based on an x86 framework through improvement, which comprises a host module 1, a left handle module 2 and a right handle module 3, wherein the left handle module 2 and the right handle module 3 are positioned at the left end and the right end of the host module, and are characterized in that the left handle module 2 and the right handle module 3 are detachably clamped and connected with the host module through a buckle 4;
the connecting ends of the left handle module 2 and the right handle module 3 and the host module are provided with annular sealing rings 5;
positioning clamping locking seats 7 are arranged at the left end and the right end of the host module, limiting groove holes are formed in four corners between the positioning clamping locking seats and a shell 11 of the host module, positioning pins 9 are arranged in two limiting groove holes at diagonal positions, and hidden locking screws 10 are arranged in the other two limiting groove holes at diagonal positions;
the left handle module 2 and the right handle module 3 are provided with positioning pin holes 9 corresponding to the positioning pins;
hidden screw holes are formed in the positions, corresponding to the hidden locking screws 10, of the left handle module 2 and the right handle module 3;
a hidden driving locking mechanism is further arranged in the positioning, clamping and locking seat 7 at the position of the hidden locking screw 10, and the hidden driving locking mechanism is in driving connection with the hidden locking screw 10;
the input end of the hidden driving locking mechanism is located on the inner side of the buckle 4, so that the hidden driving locking mechanism drives the hidden locking screw 10 to rotate and axially move through one-time or multiple-time pressing of the buckle, and the hidden locking screw 10 is locked and connected in the hidden screw hole.
In this embodiment, the hidden driving locking mechanism comprises a mounting plate 24, a micro driving rack 25, a rotating micro gear 28, a positioning column 29, a reset tension spring 34, a reversing auxiliary mechanism 31, a front guide piece 30, a rear guide piece 26 and a guide groove mechanism, wherein the mounting plate is fixed in the positioning clamping locking seat, the guide groove mechanism is arranged on the mounting plate, the inner end of the micro driving rack 25 is provided with the front guide piece 30, the outer end of the micro driving rack 25 is provided with the rear guide piece 26, the front guide piece 30 and the rear guide piece are both located in the guide groove mechanism for guiding and moving, the positioning column is fixedly arranged on the mounting plate 24, the rotating micro gear 28 is sleeved on the positioning column, the front end of the rotating micro gear 28 faces towards the hidden screw hole, just rotatory micro-gear 28's integrative coaxial setting in front end hide lock screw 10, back guide 26 is close to the buckle sets up, just the tip of miniature drive rack 25 is just right the buckle sets up, so that by the buckle drive miniature drive rack 25, the switching-over position of guide slot mechanism is provided with right the front guide carries out supplementary direction switching-over complementary unit 31, be close to on the mounting panel one side of buckle still is provided with the groove that resets, reset the inslot be provided with the extension spring 34 that resets that miniature drive rack 25 connects.
Guide slot mechanism is including the straight line groove 27, the groove 32 of switching-over that communicate in proper order and dodge groove 33, wherein, the back guide is located all the time the guide of straight line inslot removes, just preceding guide is located during the straight line inslot, miniature drive rack 25, rotatory micro-gear 28 mesh transmission all the time, the groove that commutates is in the tip orientation in straight line groove is kept away from rotatory micro-gear 28's direction extends, just dodge the groove with an contained angle has between the straight line groove, preceding guide is located when dodging the inslot and removing, miniature drive rack 25 with at least part time unmeshed transmission between the rotatory micro-gear 28.
The reversing auxiliary mechanism 31 is located at the joint between the straight line groove 27 and the reversing groove 32, the reversing auxiliary mechanism 31 is also arranged at the joint between the avoiding groove 33 and the straight line groove 27, the reversing groove and the joint between the avoiding groove 33 are in circular arc transition, and the inner side surface of the buckle 4 is in a convex structure.
Through setting up convex structure, can press the mode of buckle through the regulation, control the moving direction of miniature drive rack 25, and then realize the rotation mode realization control of rotatory micro-gear 28 to realize hiding locking screw's locking or unclamp. For example, due to the tensile force of the return tension spring 34, the micro-driving rack 25 is initially located at a position closest to the buckle and abuts against the buckle, when the buckle is pushed and pressed obliquely in the direction of the avoiding groove, the front guide member can be moved to the avoiding groove first and then moved to the linear groove through the reversing groove, the rotation of the micro-gear 28 is reversely rotated in the linear groove by the tensile force of the return tension spring, so that the screw loosening effect is achieved, when the buckle is pushed and pressed in the direction away from the avoiding groove, the front guide member can be moved in the linear groove first and then moved to the avoiding groove through the reversing groove, and when the buckle is moved in the linear groove, the micro-driving rack 25 is meshed with the rotating micro-gear 28, so that the rotating micro-gear 28 rotates in the forward direction, and the screw locking effect is achieved, and the.
The front guide piece and the rear guide piece are the same in structure and are guide wheels or guide balls.
Rotatory micro-gear 28 the front end with hide still to be provided with elasticity protection bumping post 35 between the locking screw 10, switching-over complementary unit 31 includes spring 31, promotes slider 37 and supplementary ejector pad 38, switching-over groove 32 with between the straight line groove, dodge the groove with be provided with logical groove between the straight line groove respectively, it is provided with to lead to the inslot the spring, the end connection of spring have lead to inslot gliding promote the slider, it is provided with on the promotion slider supplementary ejector pad, supplementary ejector pad orientation switching-over groove or straight line groove set up, the orientation of supplementary ejector pad one side of ring channel or straight line groove is the cambered surface, so that it is right preceding guide leads.
Be provided with at least one external communication interface 6 on the lateral wall of host computer module, still be provided with control communication interface 8 on the location block locking seat 7, communication joint 36 on left hand handle module 2 and the right hand handle module 3 with control communication interface pegs graft, be provided with mainboard 15, battery 14 and antenna and hard disk 12 in the host computer module at least, be provided with fan 13 on the mainboard, wherein, the antenna is fixed on grillage 16 with the hard disk, one side of battery is provided with back of the body frame 17 that is used for supporting the battery, still be provided with positive frame 18 on the back of the body frame, back of the body frame with be provided with loudspeaker between the positive frame, all be provided with a plurality of control button 19 on left hand handle module 2 and the right hand handle module 3.
The left handle module 2 and the right handle module 3 are identical in structure and comprise an outer heat insulation shell 20 and an inner heat insulation shell 21, the inner heat insulation shell is integrally sleeved on the inner side wall of the outer heat insulation shell, and the end part of the inner heat insulation shell protrudes out of the end surface of the outer heat insulation shell so as to form a convex shoulder 22 buckled with the host module.
The shell of host computer module is the aluminum alloy, left handle module 2 and right handle module 3 are the plastics material, just the shell section bar of host computer module adopts anodic oxidation to handle, the details of the shell of host computer module adopt CNC processing to form, are provided with 1.5 mm's buffering space between the host computer screen of host computer module and other modules in the host computer to play the effect of the inside mainboard of protection and thermal-insulated effect, the data communication mode of left handle module 2 and right handle module 3 and host computer module is typec formula jack, so that realize waterproof function.
In addition, the invention also provides a computer unit which is characterized by being used for the multifunctional modularized detachable handheld game console based on the x86 architecture.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described, and the standard parts used in the present invention are all available on the market, the special-shaped parts can be customized according to the description and the accompanying drawings, the specific connection mode of each part adopts the conventional means of bolt and rivet, welding and the like mature in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, and the details are not described herein.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (10)

1. The multifunctional modularized detachable handheld game console based on the x86 architecture comprises a host module (1), and a left handle module (2) and a right handle module (3) which are positioned at the left end and the right end of the host module, and is characterized in that the left handle module (2) and the right handle module (3) are detachably clamped and connected with the host module through buckles (4);
the connection ends of the left handle module (2) and the right handle module (3) and the host module are provided with annular sealing rings (5);
positioning clamping locking seats (7) are arranged at the left end and the right end of the host module, limiting groove holes are formed in four corners between the positioning clamping locking seats and a shell (11) of the host module, positioning pins (9) are arranged in two limiting groove holes at diagonal positions, and hidden locking screws (10) are arranged in the other two limiting groove holes at diagonal positions;
positioning pin holes (9) are formed in the positions, corresponding to the positioning pins, of the left handle module (2) and the right handle module (3);
hidden screw holes are formed in the positions, corresponding to the hidden locking screws (10), of the left handle module (2) and the right handle module (3);
a hidden driving locking mechanism is further arranged in the positioning, clamping and locking seat (7) at the position of the hidden locking screw (10), and the hidden driving locking mechanism is in driving connection with the hidden locking screw (10);
the input end of the hidden driving locking mechanism is located on the inner side of the buckle (4), so that the hidden driving locking mechanism drives the hidden locking screw (10) to rotate and axially move through one-time or multiple-time pressing of the buckle, and the hidden locking screw (10) is locked and connected in the hidden screw hole.
2. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 1, wherein: hide drive locking mechanism and include mounting panel (24), miniature drive rack (25), rotatory micro gear (28), reference column (29), extension spring (34) that resets, switching-over complementary unit (31), preceding guide (30), back guide (26) and guide slot mechanism, wherein, the mounting panel is fixed in the block locking seat of location, be provided with on the mounting panel guide slot mechanism, the inner of miniature drive rack (25) is provided with preceding guide (30), the outer end of miniature drive rack (25) is provided with back guide (26), preceding guide (30) and back guide all are located guide slot mechanism internal guide removes, still fixed being provided with on mounting panel (24) the reference column, rotatable and axially movable cover on the reference column is equipped with rotatory micro gear (28), the front end orientation of rotatory micro gear (28) hide the screw hole, just the integrative coaxial setting of front end of rotatory micro gear (28) hide lock screw (10), back guide (26) are close to the buckle sets up, just the tip of miniature drive rack (25) is just right the buckle sets up, so that by the buckle drive miniature drive rack (25), the switching-over position of guide slot mechanism is provided with right the preceding guide carries out supplementary direction switching-over complementary unit (31), be close to on the mounting panel one side of buckle still is provided with the groove that resets, reset the inslot be provided with the extension spring that resets (34) that miniature drive rack (25) are connected.
3. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 2, wherein: guide slot mechanism is including straight line groove (27), switching-over groove (32) that communicate in proper order and dodge groove (33), wherein, the back guide is located all the time the guide of straight line inslot removes, just preceding guide is located during the straight line inslot, miniature drive rack (25), rotatory micro gear (28) mesh transmission all the time, the switching-over groove is in the tip orientation of straight line groove is kept away from the direction of rotatory micro gear (28) is extended, just dodge the groove with an contained angle has between the straight line groove, preceding guide is located when dodging the inslot removal, miniature drive rack (25) with at least part time non-meshing transmission between rotatory micro gear (28).
4. A multifunctional modular detachable handheld game console based on x86 architecture according to claim 3, wherein: the reversing auxiliary mechanism (31) is located at the joint between the straight line groove (27) and the reversing groove (32), the reversing groove (33) and the joint between the straight line grooves (27) are also provided with the reversing auxiliary mechanism (31), the reversing groove and the joint between the reversing groove (33) are in circular arc transition, and the inner side face of the buckle (4) is of a convex structure.
5. A multifunctional modular detachable handheld game console based on x86 architecture according to any one of claims 1 to 4, characterized in that: the front guide piece and the rear guide piece are the same in structure and are guide wheels or guide balls.
6. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 5, wherein: the front end of rotatory micro gear (28) with hide still to be provided with elastic protection cushion column (35) between locking screw (10), switching-over complementary unit (31) include spring (31), promote slider (37) and supplementary ejector pad (38), switching-over groove (32) with between the straight line groove avoid the groove with be provided with logical groove between the straight line groove respectively, it is provided with to lead to the inslot the spring, the end connection of spring have lead to inslot gliding promote the slider, it is provided with on the promotion slider supplementary ejector pad, supplementary ejector pad orientation switching-over groove or straight line groove set up, the orientation of supplementary ejector pad one side in ring channel or straight line groove is the cambered surface, so that right the preceding guide leads.
7. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 5, wherein: be provided with at least one external communication interface (6) on host computer module's the lateral wall, still be provided with control communication interface (8) on location block locking seat (7), communication joint (36) on left side handle module (2) and right handle module (3) with control communication interface pegs graft, be provided with mainboard (15), battery (14) and antenna and hard disk (12) at least in the host computer module, be provided with fan (13) on the mainboard, wherein, the antenna is fixed on grillage (16) with the hard disk, one side of battery is provided with back frame (17) that are used for supporting the battery, still be provided with positive frame (18) on the back frame, back frame with be provided with loudspeaker between the positive frame, all be provided with a plurality of control button (19) on left side handle module (2) and right handle module (3).
8. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 7, wherein: left side handle module (2) and right side handle module (3) structure are the same, all include outer thermal insulation shell (20) and interior thermal insulation shell (21), the integrative cover of interior thermal insulation shell is established on the inside wall of outer thermal insulation shell, just the tip protrusion of interior thermal insulation shell the terminal surface of outer thermal insulation shell so that form convex shoulder (22) with host computer module lock.
9. The multifunctional modular detachable handheld game console based on x86 architecture as claimed in claim 7, wherein: the shell of host computer module is the aluminum alloy, left hand handle module (2) and right hand handle module (3) are the plastics material, just the shell section bar of host computer module adopts anodic oxidation to handle, the details of the shell of host computer module adopt CNC processing to form, are provided with 1.5 mm's buffer space between the host computer screen of host computer module and other modules in the host computer to play the effect of the inside mainboard of protection and thermal-insulated effect, the data communication mode of left hand handle module (2) and right hand handle module (3) and host computer module is typec formula jack, so that realize waterproof function.
10. A computer unit, characterized in that it is used in a multifunctional modular detachable palmtop game machine based on the x86 architecture according to any one of claims 1 to 9.
CN202011285579.2A 2020-11-17 2020-11-17 Modularized detachable handheld game console and computing unit based on x86 architecture Pending CN112316412A (en)

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