CN108194775B - Gear drive type mobile phone supporting device - Google Patents

Gear drive type mobile phone supporting device Download PDF

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Publication number
CN108194775B
CN108194775B CN201711397694.7A CN201711397694A CN108194775B CN 108194775 B CN108194775 B CN 108194775B CN 201711397694 A CN201711397694 A CN 201711397694A CN 108194775 B CN108194775 B CN 108194775B
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CN
China
Prior art keywords
gear
shell
horizontal support
mobile phone
shaft sleeve
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CN201711397694.7A
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Chinese (zh)
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CN108194775A (en
Inventor
朱长仙
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Shenzhen Zhigaoxiang Technology Development Co ltd
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Shenzhen Zhigaoxiang Technology Development Co ltd
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Priority to CN201711397694.7A priority Critical patent/CN108194775B/en
Publication of CN108194775A publication Critical patent/CN108194775A/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/04Supports for telephone transmitters or receivers

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)

Abstract

The invention discloses a gear transmission type mobile phone supporting device which comprises a base, wherein a driving mechanism is arranged on the base, a shell is arranged at the upper end of the driving mechanism, a clamping mechanism is arranged on the shell, the clamping mechanism comprises two clamping jaws which are oppositely arranged, the clamping jaws are in sliding connection with the shell, each clamping jaw is an L-shaped clamping jaw comprising a horizontal support arm and a vertical support arm, a tension spring is connected between the two horizontal support arms, a gear is arranged in the shell, straight racks are formed at the end parts of the horizontal support arms, the two straight racks are respectively arranged at two sides of the gear, the two straight racks are meshed with the gear, the driving mechanism is used for applying torsion to the gear, and the gear is stressed to rotate and drive the two horizontal support arms to slide outwards so as to enable the two clamping jaws to be far away from each other. The invention can apply force to the two clamping jaws by the driving mechanism, which is helpful for clamping and picking and placing the mobile phone, thereby being convenient for operation, time saving and labor saving.

Description

Gear drive type mobile phone supporting device
Technical Field
The invention relates to a mobile phone supporting device, in particular to a gear transmission type mobile phone supporting device.
Background
The mobile phone supporting device is placed on a desk top, an automobile center console and other equipment and is used for supporting and clamping a mobile phone, the existing mobile phone supporting device is of a clamping jaw structure, elastic clamping is achieved by means of springs between two clamping jaws, elastic stress between the clamping jaws needs to be manually overcome during use, the mobile phone can be placed between the two clamping jaws, the same principle is achieved, elastic force between the two clamping jaws still needs to be overcome during taking down the mobile phone, the mobile phone taking and placing are laborious, the mobile phone taking and placing are inconvenient to use, and user experience is poor. In addition, the existing mobile phone supporting device only has a supporting function, and when some mobile phones with wireless charging functions are placed on the mobile phone supporting device, the mobile phones cannot be matched with the wireless charging seat for charging, so that the mobile phones cannot be subjected to wireless charging when clamped on the support, and market demands are difficult to meet.
Disclosure of Invention
The invention aims to solve the technical problem of providing the gear transmission type mobile phone supporting device which can apply force to two clamping jaws by means of a driving mechanism and is beneficial to clamping and taking and placing a mobile phone, thereby being convenient to operate, time-saving and labor-saving.
In order to solve the technical problems, the invention adopts the following technical scheme.
The utility model provides a gear transmission type cell-phone strutting arrangement, its includes the base, be equipped with actuating mechanism on the base, actuating mechanism's upper end is equipped with the casing, be equipped with fixture on the casing, fixture is including two clamping jaws of relative setting, clamping jaw with casing sliding connection, clamping jaw is including horizontal support arm and vertical support arm's "L" shape clamping jaw, and two horizontal support arms all are located in the casing, two horizontal support arm's tip sets up relatively, and is connected with the extension spring between two horizontal support arms, by the pulling force that the extension spring applyed makes two clamping jaws be close to each other, be equipped with the gear in the casing, horizontal support arm's tip is formed with straight rack, straight rack extends along the length direction of horizontal support arm, and two straight rack divide to locate the both sides of gear, and two straight rack all with the gear meshes, actuating mechanism is used for to the gear is applyed torsion, the gear atress is rotatory and two horizontal support arms outwards slide to make two clamping jaws keep away from each other.
Preferably, the shell is bowl-shaped, and an upper cover is covered at the top opening of the shell.
Preferably, the circuit board and the wireless charging module are fixed in the shell, the wireless charging module is located between the circuit board and the upper cover, the shell is provided with the socket in a penetrating mode, the socket and the wireless charging module are respectively and electrically connected to the circuit board, electric signals accessed by the socket are transmitted to the circuit board, and the circuit board controls the wireless charging module to radiate electromagnetic signals to the upper side of the upper cover.
Preferably, the circuit board is provided with an LED indicator lamp, and the upper cover is embedded with a transparent ring.
Preferably, the driving mechanism comprises a main shaft, the lower extreme of main shaft is connected in the base, the upper end cover of main shaft is equipped with the axle sleeve, the gear is fixed in the top of axle sleeve, the axle sleeve is located in the casing, just the axle sleeve with the casing rotates to be connected, the lateral wall of main shaft is formed with two outside extension crossbeams, and two crossbeams coaxial setting, the notch of two slopes has been seted up to the lateral wall of axle sleeve, and the both sides of axle sleeve are located to two notch symmetries, and the incline direction of two notches is the same, the notch runs through in the inside and outside both sides of axle sleeve, the notch with the crossbeam one-to-one aligns, the crossbeam passes the notch, when pressing the casing, the crossbeam is followed the notch slides, the axle sleeve is rotatory and to the gear is applyed to the torsion relatively.
Preferably, a cylindrical portion is fixed in the shell, the cylindrical portion surrounds the shaft sleeve, an annular groove is formed in the outer side wall of the shaft sleeve, a plurality of balls are embedded in the inner side wall of the cylindrical portion, and the balls are clamped in the annular groove.
Preferably, the lower extreme of main shaft is connected with the spheroid, circular hole has been seted up at the top of base, the spheroid card is located in the base, just the spheroidal upper end passes circular hole.
Preferably, the base is a conical base.
Preferably, a bottom plate is fixed at the bottom of the base, a bearing part is formed by protruding upwards at the middle of the bottom plate, a notch is formed at the top end of the bearing part, and the lower end of the sphere is positioned in the notch.
Preferably, a damping rubber ring is arranged in the notch, and the damping rubber ring is clamped between the ball body and the notch.
In the gear-driven mobile phone supporting device disclosed by the invention, the driving mechanism is arranged on the base, and the clamping mechanism comprising the two clamping jaws is arranged on the driving mechanism. Compared with the existing mobile phone supporting device, the mobile phone supporting device can be matched with various types of driving mechanisms, so that secondary development is facilitated, meanwhile, a user can conveniently pick and place a mobile phone by means of the clamping mechanism, the mobile phone supporting device is easy to operate, time and labor are saved, and user experience is greatly improved.
Drawings
Fig. 1 is a perspective view of the mobile phone supporting device of the present invention after clamping a mobile phone.
Fig. 2 is a perspective view of the mobile phone supporting device of the present invention.
Fig. 3 is an exploded view of the mobile phone supporting device of the present invention.
Fig. 4 is a top view of the clamping mechanism.
Fig. 5 is a top view of the second clamping mechanism.
Fig. 6 is a block diagram of the jaw and gear.
Fig. 7 is a perspective view of the spindle.
Fig. 8 is a side view of the drive mechanism.
Fig. 9 is a second side view of the drive mechanism.
Fig. 10 is a perspective view of the cylindrical portion.
Fig. 11 is a partial cross-sectional view of a handset support device.
Fig. 12 is a partial cross-sectional view of a second embodiment of the mobile phone support device.
Detailed Description
The invention is described in more detail below with reference to the drawings and examples.
The invention discloses a gear-driven mobile phone supporting device, which is shown in fig. 1-12, and comprises a base 1, wherein a driving mechanism is arranged on the base 1, a shell 2 is arranged at the upper end of the driving mechanism, a clamping mechanism is arranged on the shell 2, the clamping mechanism comprises two oppositely arranged clamping jaws 20, the clamping jaws 20 are slidably connected with the shell 2, the clamping jaws 20 are L-shaped clamping jaws comprising a horizontal support arm 200 and a vertical support arm 201, the two horizontal support arms 200 are both positioned in the shell 2, the end parts of the two horizontal support arms 200 are oppositely arranged, a tension spring 202 is connected between the two horizontal support arms 200, the two clamping jaws 20 are mutually close to each other by the tension force exerted by the tension spring 202, a gear 21 is arranged in the shell 2, the end parts of the horizontal support arms 200 are provided with straight racks 210, the straight racks 210 extend along the length direction of the horizontal support arms 200, the two straight racks 210 are respectively arranged at two sides of the gear 21, and the two straight racks 210 are meshed with the gear 21, and the driving mechanism is used for exerting torsion force to the gear 21 to horizontally drive the two clamping arms 200 to rotate to be far away from each other.
In the mobile phone supporting device, the base 1 is provided with the driving mechanism, the driving mechanism is provided with the clamping mechanism comprising the two clamping jaws 20, and when the mobile phone supporting device is used, the driving mechanism can apply force to the clamping mechanism so as to drive the two clamping jaws 20 to be away from each other, so that the mobile phone can be placed, or drive the two clamping jaws 20 to be close to each other, so that the mobile phone can be clamped.
In the clamping mechanism, the horizontal support arms 200 of the clamping jaw 20 are located in the housing 2, the two horizontal support arms 200 can slide relatively, the two clamping jaws 20 are kept in a clamping state by means of the tension force of the tension spring 202, when a user places a mobile phone, torsion force can be applied to the gear 21 by using the driving mechanism, the gear 21 rotates, the two straight racks 210 are meshed with the gear 21 because the end parts of the horizontal support arms 200 are provided with the straight racks 210, the two straight racks 210 can be driven to be separated from each other when the gear 21 rotates, the two horizontal support arms 200 are driven to be separated from each other, the two clamping jaws 20 are in an open state so as to place the mobile phone conveniently, then the torsion force to the gear 21 can be removed, at the moment, the two clamping jaws 20 are made to be close to each other by means of the tension force of the tension spring 202 and clamp the mobile phone 100, and the driving mechanism for rotation of the gear 21 can be a knob mechanism, a screw mechanism, a mechanism with a lever and the gear and the like. Based on the structure, the invention can drive the clamping jaw 20 to open only by applying torsion to the gear 21, and meanwhile, the transmission capacity of the gear matched with the rack is stronger, so that the torsion can be stably and reliably converted into thrust. In addition, compare current cell-phone strutting arrangement, this embodiment can match multiple type actuating mechanism to make things convenient for secondary development, simultaneously with the help of this fixture, made things convenient for the user to get and put the cell-phone, not only easily operation, labour saving and time saving has moreover improved user experience greatly.
In this embodiment, the housing 2 is bowl-shaped, and the top opening of the housing 2 is covered with an upper cover 3.
As a preferred mode, referring to fig. 3, in order to realize wireless charging while clamping the mobile phone, a circuit board 30 and a wireless charging module 31 are fixed in the housing 2, the wireless charging module 31 is located between the circuit board 30 and the upper cover 3, a socket 32 is disposed on the housing 2, the socket 32 and the wireless charging module 31 are respectively electrically connected to the circuit board 30, an electrical signal accessed by the socket 32 is transmitted to the circuit board 30, and the circuit board 30 controls the wireless charging module 31 to radiate an electromagnetic signal to the upper side of the upper cover 3.
In this embodiment, in order to indicate the charging state, an LED indicator is disposed on the circuit board 30, and a transparent aperture 33 is embedded on the upper cover 3.
Regarding the sliding connection relationship between the horizontal arm 200 and the housing 2, in this embodiment, as shown in fig. 1 to 6, two parallel sliding rails 206 are fixed in the housing 2, the sliding rails 206 are in one-to-one correspondence with the straight racks 210, the sliding rails 206 are located at the outer sides of the straight racks 210, an annular sliding sleeve 207 is formed at the side of the straight racks 210, and the sliding rails 206 penetrate through the sliding sleeve 207 and are in sliding connection with the two sliding sleeves.
In order to connect the tension spring 202 between the two horizontal support arms 200, in this embodiment, the horizontal support arms 200 are provided with hooks 203, and the tension spring 202 is connected between the hooks 203 of the two horizontal support arms 200. Further, the number of the tension springs 202 is 2, and the tension springs 202 are located above the gear 21.
In this embodiment, a rubber pad 204 is fixed on the inner side of the vertical support arm 201. The rubber pad 204 can protect the mobile phone 100 from friction and damage.
As a preferred mode, regarding the composition of the driving mechanism, as shown in fig. 1, 3 and 6 to 10, the driving mechanism comprises a main shaft 400, the lower end of the main shaft 400 is connected to a base 1, the upper end of the main shaft 400 is sleeved with a shaft sleeve 401, the gear 21 is fixed at the top end of the shaft sleeve 401, the shaft sleeve 401 is located in the shell 2, the shaft sleeve 401 is rotationally connected with the shell 2, two outwards extending cross beams 403 are formed on the side wall of the main shaft 400, the two cross beams 403 are coaxially arranged, two inclined notches 404 are formed on the side wall of the shaft sleeve 401, the two notches 404 are symmetrically arranged on two sides of the shaft sleeve 401, the inclined directions of the two notches 404 are the same, the notches 404 penetrate through the inner side and the outer side of the shaft sleeve 401, the notches 404 are aligned with the cross beams 403 one by one, when the cross beams 403 penetrate through the notches 404 and press the shell 2, the cross beams 403 slide along the notches 404, and the shaft sleeve 401 rotates relatively to the main shaft 400 and applies torsion force to the gear 21. The gear 21 and the sleeve 401 may be integrally formed.
In the above driving mechanism, when a user places the mobile phone on top of the housing 2, by pressing the mobile phone 100 and the housing 2, pressure can be applied to the driving mechanism, and the pressure is conducted to the shaft sleeve 401 through the housing 2, and because the spindle 400 and the shaft sleeve 401 are engaged with each other through the cross beam 403 and the notch 404, and the shaft sleeve 401 is in a rotational connection relationship with the housing 2, when the shaft sleeve 401 bears the pressure, the shaft sleeve 401 slides downwards, and simultaneously the shaft sleeve 401 drives the gear 21 on top to rotate, so that the gear 21 can obtain torsion force, and the torsion force is loaded on the clamping mechanism, so that the clamping jaws 20 can be driven to be far away from each other. Based on the characteristics, the driving mechanism can apply force when the mobile phone is placed, single-hand operation is effectively achieved, parts such as a handle and a lever are not needed, the attractiveness of the mobile phone supporting device is better, and market demands are met.
In order to facilitate the rotation of the shaft sleeve 401, a cylindrical portion 402 is fixed in the housing 2, the cylindrical portion 402 surrounds the shaft sleeve 401, an annular groove 405 is formed in the outer side wall of the shaft sleeve 401, a plurality of balls 406 are embedded in the inner side wall of the cylindrical portion 402, and the balls 406 are clamped in the annular groove 405. One of the balls 406 and the annular groove 405 serves to enhance the rotation ability of the sleeve 401, and the other serves to restrict the sleeve 401 to the cylindrical portion 402, thereby ensuring the structural stability of the driving mechanism.
The cylindrical portion 402 in this embodiment is fixed in the housing 2, specifically, a connecting member 407 is formed on the outer side wall of the cylindrical portion 402, and the connecting member 407 is fixed in the housing 2 by a screw.
As a preferred manner, as shown in fig. 6 to 12, a through hole 211 is formed in the middle of the gear 21, and the through hole 211 is aligned with the upper end of the main shaft 400.
In practical application, the fixture of cell phone stand is provided with the extension spring generally, when pressing casing 2, and actuating mechanism can overcome the pulling force of extension spring, but need always apply force to casing 2, can get into the auto-lock state after pressing casing 2, and the method that this embodiment adopted is: the bottom of the upper cover 3 is formed with a downward extending support rod 300, two sides of the support rod 300 are respectively formed with a hook part 301, the upper end of the main shaft 400 is fixed with a self-locking buckle 41, the self-locking buckle 41 is aligned with the support rod 300, the upper cover 3 and the support rod 300 are driven to move downwards when the shell 2 is pressed until the support rod 300 presses the self-locking buckle 41, the support rod 300 is locked by the self-locking buckle 41, and when the shell 2 is pressed again, the support rod 300 applies force to the self-locking buckle 41 again, so that the self-locking buckle 41 unlocks the support rod 300.
In the above structure, under the cooperation of the self-locking buckle 41 and the hook-shaped part 301, the feeding state of the driving mechanism can be locked, and the operation of the mobile phone is convenient. The self-locking buckle 41 is a common part with self-locking and clamping functions in the market, belongs to standard elements, and is easy to purchase.
In order to facilitate adjustment of the orientation of the mobile phone, in this embodiment, a universal adjustment mechanism is preferably adopted, referring to fig. 3, a ball 40 is connected to the lower end of the spindle 400, a circular hole 10 is formed in the top of the base 1, the ball 40 is clamped in the base 1, and the upper end of the ball 40 passes through the circular hole 10.
In this embodiment, the base 1 is a conical base.
In order to better clamp the ball 40, a bottom plate 11 is fixed at the bottom of the base 1, a bearing part 12 is formed by protruding upwards at the middle of the bottom plate 11, a notch 13 is formed at the top end of the bearing part 12, and the lower end of the ball 40 is positioned in the notch 13.
In order to increase the resistance to the ball 40, so that the ball can be positioned at a corresponding position after the direction adjustment, in this embodiment, a damping rubber ring 14 is disposed in the recess 13, and the damping rubber ring 14 is sandwiched between the ball 40 and the recess 13.
The invention discloses a gear-driven mobile phone supporting device, which is shown in fig. 1 to 12, wherein the initial state is a clamping state that two clamping jaws 20 are mutually closed, and the mobile phone supporting device works on the principle that when a user places a mobile phone, the housing 2 and the upper cover 3 slide downwards by applying force to the housing 2 and the upper cover 3, simultaneously, a shaft sleeve 401 and a gear 21 rotate, the gear 21 drives two straight racks 210 to move in opposite directions, so that two horizontal support arms 200 are mutually separated, two clamping jaws 20 open, a hook part 301 at the bottom of the upper cover 3 is triggered by the self-locking buckle 41 in the descending process of the upper cover 3, the self-locking buckle 41 locks the hook part 301, the two clamping jaws 20 are continuously in the open state, at the moment, the mobile phone can be placed between the two clamping jaws 20, then force is applied to the housing 2 and the upper cover 3 again, the self-locking buckle 41 is triggered twice, the self-locking buckle 41 is unlocked, the two clamping jaws 20 are relatively close to and clamp the mobile phone 100 by means of the pulling force of a tension spring 202, simultaneously, the horizontal support arms 200 apply force to the gear 21 through the straight racks 210, the gear 21 drives the shaft sleeve 401 to reversely rotate, the shaft sleeve 401 is driven by the main shaft 21 to move the shaft sleeve 401 to be matched with the housing 401, and the housing 2 is repeatedly reset, and the mobile phone can be placed on the housing 2 when the initial state is required to be repeatedly moved to be in the open state (when the housing 2 is reset, and the initial state is required to be reset, and the mobile phone is required to be lifted, and the mobile phone is in the state is reset to be lifted).
Based on the principle, the mobile phone is easy to take and place, can be operated by one hand, saves time and labor, does not need to be provided with a handle, a knob and other parts on the outer side, greatly improves the simplicity and the attractiveness of the mobile phone support, has wireless charging and lamplight prompting functions, and well meets market demands.
The above embodiments are only preferred embodiments of the present invention, and are not intended to limit the present invention, and modifications, equivalent substitutions or improvements made within the technical scope of the present invention should be included in the scope of the present invention.

Claims (4)

1. The utility model provides a gear transmission type mobile phone supporting device which is characterized in that, including base (1), be equipped with actuating mechanism on base (1), actuating mechanism's upper end is equipped with casing (2), be equipped with fixture on casing (2), fixture is including two clamping jaw (20) of relative setting, clamping jaw (20) with casing (2) sliding connection, clamping jaw (20) are including horizontal support arm (200) and vertical support arm (201) ' L ' -shaped clamping jaw, and two horizontal support arm (200) are located in casing (2), and the tip of two horizontal support arm (200) sets up relatively, and is connected with extension spring (202) between two horizontal support arm (200), by means of extension spring (202) applied pulling force makes two clamping jaw (20) be close to each other, be equipped with gear (21) in casing (2), the tip of horizontal support arm (200) is formed with straight rack (210), rack (210) extend along the length direction of horizontal support arm (200), two straight rack (210) divide gear (21) and two straight rack (21) are used for exerting torque force to two opposite directions, two horizontal support arm (200) are exerted to rotate, and are exerted to the straight rack (21) and are used for the rotation force is exerted to the straight rack (21), so as to move the two jaws (20) away from each other;
two parallel sliding rails (206) are fixed in the shell (2), the sliding rails (206) are in one-to-one correspondence with the straight racks (210), the sliding rails (206) are positioned on the outer sides of the straight racks (210), annular sliding sleeves (207) are formed on the side parts of the straight racks (210), the sliding rails (206) penetrate through the sliding sleeves (207) and are in sliding connection with the sliding sleeves, hooks (203) are arranged on the horizontal support arms (200), and tension springs (202) are connected between the hooks (203) of the two horizontal support arms (200);
the driving mechanism comprises a main shaft (400), the lower end of the main shaft (400) is connected to a base (1), a shaft sleeve (401) is sleeved at the upper end of the main shaft (400), a gear (21) is fixed at the top end of the shaft sleeve (401), the shaft sleeve (401) is positioned in a shell (2), the shaft sleeve (401) is rotationally connected with the shell (2), two outwards extending cross beams (403) are formed on the side wall of the main shaft (400), the two cross beams (403) are coaxially arranged, two inclined notch (404) are formed on the side wall of the shaft sleeve (401), the two notch (404) are symmetrically arranged on two sides of the shaft sleeve (401), the inclined directions of the two notch (404) are the same, the notch (404) penetrates through the inner side and the outer side of the shaft sleeve (401), the notch (404) is aligned with the cross beams (403) one by one, and when the shell (2) is pressed, the cross beams (403) slide along the notch (403) and the gear (21) is applied to the main shaft sleeve (404) in a rotating mode;
the shell (2) is bowl-shaped, and an upper cover (3) is covered at the top opening of the shell (2);
the bottom of the upper cover (3) is provided with a supporting rod (300) extending downwards, two sides of the supporting rod (300) are respectively provided with a hook part (301), the upper end of the main shaft (400) is fixedly provided with a self-locking buckle (41), the self-locking buckle (41) is aligned with the supporting rod (300), the upper cover (3) and the supporting rod (300) are driven to move downwards when the shell (2) is pressed until the supporting rod (300) presses the self-locking buckle (41), the supporting rod (300) is locked by the self-locking buckle (41), and when the shell (2) is pressed again, the supporting rod (300) applies force to the self-locking buckle (41) again, so that the self-locking buckle (41) unlocks the supporting rod (300);
the wireless charging device comprises a shell (2), wherein a circuit board (30) and a wireless charging module (31) are fixed in the shell (2), the wireless charging module (31) is located between the circuit board (30) and an upper cover (3), a socket (32) is arranged on the shell (2) in a penetrating mode, the socket (32) and the wireless charging module (31) are respectively and electrically connected to the circuit board (30), an electric signal accessed by the socket (32) is transmitted to the circuit board (30), and the circuit board (30) controls the wireless charging module (31) to radiate electromagnetic signals above the upper cover (3);
an LED indicator lamp is arranged on the circuit board (30), and a transparent ring (33) is embedded on the upper cover (3);
a cylindrical part (402) is fixed in the shell (2), the cylindrical part (402) surrounds the shaft sleeve (401), an annular groove (405) is formed in the outer side wall of the shaft sleeve (401), a plurality of balls (406) are embedded in the inner side wall of the cylindrical part (402), and the balls (406) are clamped in the annular groove (405);
the lower extreme of main shaft (400) is connected with spheroid (40), circular hole (10) have been seted up at the top of base (1), spheroid (40) card is located in base (1), just the upper end of spheroid (40) is passed circular hole (10).
2. Gear-driven cell phone support device according to claim 1, characterized in that the base (1) is a conical base.
3. The gear-driven mobile phone supporting device according to claim 2, wherein a bottom plate (11) is fixed at the bottom of the base (1), a bearing part (12) is formed by protruding upwards at the middle of the bottom plate (11), a notch (13) is formed at the top end of the bearing part (12), and the lower end of the sphere (40) is located in the notch (13).
4. A gear-driven mobile phone supporting device as claimed in claim 3, characterized in that a damping rubber ring (14) is arranged in the recess (13), and the damping rubber ring (14) is clamped between the sphere (40) and the recess (13).
CN201711397694.7A 2017-12-21 2017-12-21 Gear drive type mobile phone supporting device Active CN108194775B (en)

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CN108194775B true CN108194775B (en) 2024-01-16

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CN208768134U (en) * 2018-09-27 2019-04-19 深圳市鑫锐达电子五金塑胶有限公司 A kind of automatic Gear cartridge clip self-locking handset bracket
CN109348028B (en) * 2018-12-17 2024-02-27 深圳市智高翔科技发展有限公司 Mobile phone support with wireless charging function
CN109866697B (en) * 2019-03-02 2020-09-25 安徽妮可威家居用品有限公司 Mobile phone placing seat for automobile
CN113277391B (en) * 2021-06-24 2022-08-12 深圳市鸿天盛信息技术有限公司 Spliced screen for elevator
CN114076248B (en) * 2021-11-12 2024-03-12 珠海秀宝科技有限公司 Intelligent device support with adjustable clamping position
CN114290284B (en) * 2022-03-10 2022-05-24 尼特智能科技股份有限公司 A dismouting device for multiple detector

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