CN218100339U - Battery compartment mechanism sharing mobile power supply and leasing equipment thereof - Google Patents

Battery compartment mechanism sharing mobile power supply and leasing equipment thereof Download PDF

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Publication number
CN218100339U
CN218100339U CN202222118906.6U CN202222118906U CN218100339U CN 218100339 U CN218100339 U CN 218100339U CN 202222118906 U CN202222118906 U CN 202222118906U CN 218100339 U CN218100339 U CN 218100339U
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Prior art keywords
battery compartment
module
thimble
power supply
swing arm
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CN202222118906.6U
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Chinese (zh)
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潘良春
王浩
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Shenzhen Besiter Power Bank Co ltd
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Shenzhen Besiter Power Bank Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model relates to a power technical field, in particular to battery compartment mechanism of sharing portable power source and equipment of renting thereof. Its sharing portable power source's battery compartment mechanism includes the core module, the hasp module, the drive module, be equipped with two battery compartments of placing portable power source at least in the core module, each hasp module corresponds a battery compartment, portable power source in hasp module locking or the unblock battery compartment, be equipped with a drive module between per two adjacent hasp modules, the drive module includes motor and swing arm, the swing arm is connected on the motor, two adjacent hasp modules are located the swing region of swing arm, a hasp module is pressed in the motor drive swing arm, portable power source in a battery compartment of unblock. The opening and closing locks of the two lock catch modules are respectively controlled through the motor and the swing arm, so that the using number of the motors is reduced, the battery compartment mechanism of the whole shared mobile power supply can be more compact, and the whole size is smaller.

Description

Battery compartment mechanism sharing mobile power supply and leasing equipment thereof
Technical Field
The utility model relates to a power technology field, in particular to battery compartment mechanism of sharing portable power source and equipment of rening thereof.
Background
Along with the popularization of mobile electronic products, the frequency of using the electronic products in work and life of people is higher and higher, the energy consumption is increased gradually, and the shared mobile power supply leasing equipment is brought along to meet the charging demand of people anytime and anywhere. In the existing portable power source leasing equipment, one motor is adopted to correspondingly control the opening and closing lock of one battery compartment, when the number of the battery compartments of the leasing equipment is large, the whole leasing equipment is large in size due to the fact that each motor needs to occupy a certain internal space, and the whole energy consumption is larger due to the fact that too many motors are used. In addition, the return state of the mobile power supply is judged by adopting a single sensing component in the existing leasing equipment, and multiple guarantees of a plurality of sensing components are lacked.
SUMMERY OF THE UTILITY MODEL
The utility model provides a sharing portable power source's battery compartment mechanism and equipment of renting thereof aims at solving among the current equipment of renting motor setting too much and causes bulky, returns and judges the condition that the part is single.
The utility model provides a sharing portable power source's battery compartment mechanism, including core module, hasp module, drive module, be equipped with two battery compartments of placing portable power source at least in the core module, each the hasp module corresponds a battery compartment, portable power source in hasp module locking or the unblock battery compartment, per two are adjacent be equipped with a drive module between the hasp module, drive module includes motor and swing arm, swing arm connection is on the motor, two are adjacent the hasp module is located the swing region of swing arm, a hasp module is pressed in the motor drive swing arm, portable power source in battery compartment of unblock.
As a further improvement, be equipped with the buckle through-hole on the lateral wall of battery compartment, the hasp module includes the hasp couple, the one end of hasp couple be equipped with buckle through-hole complex clamping part, the other end of hasp couple is equipped with the extrusion face to the swing region extension of swing arm, during the unblock portable power source the swing arm is pressed on the extrusion face of a hasp couple.
As a further improvement, the latch module includes the hasp axis of rotation, the hasp couple passes through hasp axis of rotation and connects on the battery compartment, the clamping part and the extrusion face of hasp couple are located the both sides of hasp axis of rotation respectively.
As a further improvement, the latch module further comprises a hook elastic member, the battery compartment is provided with an elastic member guide pillar matched with the hook elastic member, one end of the hook elastic member is connected to the latch hook, and the other end of the hook elastic member is connected to the elastic member guide pillar of the battery compartment.
As a further improvement, the buckle through-hole sets up the middle part at the battery compartment lateral wall, the tip of buckling parts is equipped with conical tapered end, and portable power source's side middle part is equipped with tapered end complex circular lockhole, during the locking portable power source the tapered end passes behind the buckle through-hole card and goes into in the lockhole.
As the utility model discloses a further improvement, this sharing portable power source's battery compartment mechanism still includes the mainboard, the mainboard is in the bottom of battery compartment, the mainboard all is equipped with first inductive switch in the compressive plane below of every hasp couple, works as the compressive plane is pressed to the swing arm when triggering first inductive switch, the motor stops the drive.
As a further improvement, the end of the extrusion surface is provided with a sensing bone position, the first sensing switch is a grating sensing switch, the grating sensing switch is provided with a grating groove, and when the extrusion surface is pressed, the sensing bone position is located the grating groove and triggers the grating sensing switch.
As a further improvement, the mainboard still is equipped with second inductive switch, every the bottom in battery compartment all is equipped with second inductive switch, and when the portable power source locking was in the battery compartment, portable power source's bottom triggered second inductive switch.
As a further improvement, the mainboard still is equipped with charging probe, every the bottom in battery compartment all is equipped with a set of thimble that charges.
As a further improvement of the utility model, this sharing portable power source's battery compartment mechanism includes power thimble, thimble elastic component, the middle part of power thimble is equipped with the protruding circle of thimble, the battery compartment bottom is equipped with the thimble through-hole, thimble elastic component one end top on the motor, its other pot head be in the one end and the top of power thimble are on the thimble protruding circle, the other end of power thimble passes inside the thimble through-hole after extending to the battery compartment, and when portable power source popped out the battery compartment, the protruding circle card of thimble is outside at the thimble through-hole.
The utility model also provides a sharing portable power source equipment of rening, battery compartment mechanism including one or more sharing portable power sources.
The utility model has the advantages that: (1) The opening and closing locks of the two lock catch modules are respectively controlled by one motor and the swing arm, so that the using number of the motors is reduced, the battery compartment mechanism of the mobile power supply can be more compact as a whole, and the whole volume is smaller; (2) The first inductive switch and the second inductive switch are additionally arranged, the returning condition of the mobile power supply is judged in a multi-level mode, and therefore the situation that a user does not return or occupy the mobile power supply due to the fact that the user deliberately cracks a single judging condition when returning the mobile power supply is avoided.
Drawings
Fig. 1 is an overall structural diagram of the battery compartment mechanism of the present invention for sharing mobile power supply;
fig. 2 is a structural front view of the battery compartment mechanism of the present invention sharing a mobile power supply;
fig. 3 is an exploded view of the structure of the battery compartment mechanism of the shared mobile power supply of the present invention;
FIG. 4 is a structural diagram of the main board of the present invention;
FIG. 5 is a structural view of the latch hook of the present invention;
FIG. 6 is a structural diagram of the power supply thimble of the present invention;
fig. 7 is a structural diagram of the portable power source of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.
The first embodiment is as follows:
as shown in fig. 1, the utility model discloses a battery compartment mechanism of sharing portable power source, including the core module, the hasp module, drive module, be equipped with two battery compartment 1 of placing portable power source 8 at least in the core module, mainboard 2 is connected in battery compartment 1's bottom, each hasp module corresponds a battery compartment 1, portable power source 8 in hasp module locking or the unblock battery compartment 1, be equipped with a drive module between per two adjacent hasp modules, drive module includes motor 3 and swing arm 4, swing arm 4 is connected on motor 3, two adjacent hasp modules are located swing area of swing arm 4, motor 3 drives swing arm 4 and presses a hasp module, portable power source 8 in battery compartment 1 of unblock.
Mainboard 2 is equipped with motor control module, and drive module includes motor 3 and swing arm 4, and swing arm 4 is connected on motor 3, and motor control module connects motor 3, and motor control module control motor 3's drive step makes swing arm 4 press a hasp module.
The front end of the battery compartment 1 is also connected with a compartment opening surface cover 11 for protecting and beautifying. Motor 3 passes through fixing base 31 to be fixed on mainboard 2 to be connected the package through gland 32 and fixing base 31 and play the guard action in the motor 3 outside.
Battery compartment 1 can design into the structure of a plurality of positions as required, it is the battery compartment mechanism that four battery compartment 1's structure constitutes a whole sharing portable power source to adopt as in fig. 1, every battery compartment 1 all corresponds a hasp module and comes locking and unblock portable power source 8, be equipped with two drive module in this embodiment, every module corresponds two adjacent hasp modules of battery compartment 1 one side respectively, two adjacent hasp modules are located the swing region of swing arm 4, swing arm 4 swings between two hasp modules through motor 3 drive, and swing arm 4 can swing to press one of them hasp module when unblanking at every turn, thereby unblanking portable power source 8 in one battery compartment 1.
As shown in fig. 3 and 5, a buckle through hole 12 is formed in the side wall of the battery compartment 1, the buckle module includes a buckle hook 5, a buckle portion 51 matched with the buckle through hole 12 is formed in one end of the buckle hook 5, an extrusion surface 52 is formed by extending the other end of the buckle hook 5 to the swing area of the swing arm 4, and the swing arm 4 is pressed on the extrusion surface 52 of one buckle hook 5 when the mobile power supply 8 is unlocked. The latch module comprises a latch rotating shaft 53, the latch hook 5 is connected to the battery compartment 1 through the latch rotating shaft 53, and the buckling part 51 and the squeezing surface 52 of the latch hook 5 are respectively located on two sides of the latch rotating shaft 53.
In this embodiment, each latch rotating shaft 53 is connected to two latch hooks 5 at the same time, and the two ends of the latch rotating shaft 53 are rotatably connected to the slots at the bottom of the battery compartment 1, the latch rotating shaft 53 serves as the lever center of the swing of the latch hook 5, and when the squeezing surface 52 of the latch hook 5 is pressed by the swing arm 4, the buckling part 51 at the other end is driven to tilt to unlock the mobile power supply 8 in the battery compartment 1.
As shown in fig. 3 and 5, the latch module further includes a hook elastic member 54, the battery compartment 1 is provided with an elastic member guide post 13 engaged with the hook elastic member 54, one end of the hook elastic member 54 is connected to the latch hook 5, and the other end is connected to the elastic member guide post 13 of the battery compartment 1. When the swing arm 4 is unlocked, the hook elastic piece 54 is compressed when the pressing surface 52 is pressed by the swing arm 4, and when the swing arm 4 is separated from the latch hook 5, the hook elastic piece 54 rebounds to release the elastic force, so that the latch hook 5 is reset, and meanwhile, the buckling part 51 is matched with the buckling through hole 12 again.
Buckle through-hole 12 sets up in the middle part of battery compartment 1 lateral wall, and the tip of buckle portion 51 is equipped with conical tapered end 55, as shown in fig. 7, the side middle part of portable power source 8 is equipped with the circular lockhole 81 with tapered end 55 complex, and tapered end 55 blocks in the lockhole 81 after passing buckle through-hole 12 when locking portable power source 8. Buckle through-hole 12 sets up in the middle part of 1 lateral wall of battery compartment, and same portable power source 8's lockhole 81 also can set up in the middle part, compares in traditional portable power source 8 lockhole setting and can cause the problem of easily taking off the round pin in the bottom, and this embodiment is when tapered end 55 is connected with lockhole 81, because the effect of the arm of force, pins portable power source 8's middle part can be more firm. Simultaneously conical tapered end 55 and circular lockhole 81 are mutually supported when the joint, avoid appearing mutual buckle not go up or the problem of buckle dislocation.
As shown in fig. 4, the main board 2 is provided with a first inductive switch 61 below the extrusion surface 52 of each latch hook 5, the main board 2 is further provided with a detection module, the detection module is connected with the motor 3 control module and the first inductive switch 61, and when the swing arm 4 presses the extrusion surface 52 to trigger the first inductive switch 61, the motor 3 control module receives the feedback of the detection module and controls the motor 3 to stop driving.
First inductive switch 61 is used for detecting swing arm 4 and whether swings to target in place and make portable power source 8 unblock, and when first inductive switch 61 was triggered simultaneously, detection module can feedback signal, and swing arm 4 stall when passing through motor 3 control module reaches accurate control's effect. When the mobile power supply 8 returns, the first inductive switch 61 is also used as a first-level judgment condition, and when the first inductive switch 61 is not triggered, that is, the latch hook 5 is reset and locked into the mobile power supply 8 in the battery compartment 1, the return of the mobile power supply 8 is judged.
The end of extrusion face 52 is equipped with response position 56, first inductive switch 61 can be grating inductive switch, grating inductive switch is equipped with the grating groove, response position 56 is located grating inslot and triggers grating inductive switch when pressing extrusion face 52, when extrusion face 52 is pressed downwards, response position 56 can be pressed in the grating inslot along the situation, because grating inductive switch's response position receives the blockking of response position 56, grating inductive switch has been triggered, feedback signal, swing arm 4 stall when passing through motor control module, perhaps portable power source 8 has driven the removal of hasp couple 5 when returning in the twinkling of an eye, grating inductive switch has been triggered.
As shown in fig. 2 and fig. 4, the main board 2 is further provided with a second inductive switch 62, the bottom of each battery compartment 1 is provided with the second inductive switch 62, the second inductive switch 62 is connected with the detection module, and when the mobile power supply 8 is locked in the battery compartment 1, the bottom of the mobile power supply 8 triggers the second inductive switch 62. When the mobile power supply 8 is returned, the second inductive switch 62 also serves as a second-level judgment condition, and when the second inductive switch 62 is triggered, it is stated that the mobile power supply 8 is located in the battery compartment 1 and is pressed to the second inductive switch 62, and the return of the mobile power supply 8 is judged.
Mainboard 2 still is equipped with charging probe 63, and the bottom of every battery compartment 1 all is equipped with a set of charging probe 63. The charging probe 63 is a channel for charging the mobile power supply 8 by the battery compartment 1, and the detecting unit can detect whether the mobile power supply 8 is in the battery compartment 1 according to the current condition of the charging probe 63.
In the conventional battery compartment 1 structure, when the mobile power supply 8 is instantly plugged into the battery compartment 1 and then is immediately pulled out, the return judgment switch may be triggered, so that the battery compartment 1 mistakenly thinks that the mobile power supply 8 is returned, but the actual mobile power supply 8 is not in the battery compartment 1. Make single judgement condition have hidden danger, and the utility model discloses in judge from two aspects through first inductive switch 61 and second inductive switch 62 the returning of portable power source 8, must two conditions all reach just can judge for returning successfully, the process of judgement of two-stage has reduced the risk of erroneous judgement. As shown in fig. 7, when the portable power source 8 returns, the charging contact portion 82 of the portable power source 8 contacts the charging probe 63, and the detection module also determines whether the portable power source 8 is in the battery compartment 1 according to the current condition of the charging probe 63 charging the portable power source 8, so as to further reduce the risk of erroneous determination.
As shown in fig. 2 and 6, the battery compartment mechanism for sharing the mobile power supply further includes a power supply thimble 71 and a thimble elastic element 73, a thimble convex ring 72 is disposed in the middle of the power supply thimble 71, a thimble through hole is disposed at the bottom of the battery compartment 1, a through hole for the power supply thimble 71 to pass through is also added to the motherboard 2, one end of the thimble elastic element 73 abuts against the motor 3, the other end of the thimble elastic element is sleeved at one end of the power supply thimble 71 and abuts against the thimble convex ring 72, the other end of the power supply thimble 71 extends into the battery compartment 1 after passing through the thimble through hole, and when the mobile power supply 8 is ejected out of the battery compartment 1, the thimble convex ring 72 is clamped outside the thimble through hole.
When the mobile power supply 8 is located in the battery compartment 1, the power supply thimble 71 is pressurized, the thimble elastic piece 73 is compressed, the thimble elastic piece 73 is a spring piece, after the latch hook 5 unlocks the mobile power supply 8, the thimble elastic piece 73 rebounds due to the loss of the fixation of the latch hook 5, and the mobile power supply 8 pops out a small distance when the elastic force is applied to the power supply thimble 71, so that a user can take the mobile power supply conveniently.
Example two:
the embodiment provides a shared mobile power supply 8 leasing device, which comprises one or more battery compartment mechanisms of the shared mobile power supply. According to the use requirement, in combination with the first embodiment, a cabinet with four battery compartment openings can be formed by a single battery compartment mechanism sharing the mobile power supply, and a cabinet with eight battery compartment openings, sixteen battery compartment openings or more cabinets can also be formed by stacking.
The foregoing is a more detailed description of the present invention, taken in conjunction with specific preferred embodiments thereof, and it is not intended that the invention be limited to the specific embodiments thereof. To the utility model belongs to the technical field of ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement, all should regard as belonging to the utility model discloses a protection scope.

Claims (11)

1. The utility model provides a sharing portable power source's battery compartment mechanism, its characterized in that, includes core module, hasp module, drive module, be equipped with two battery compartments of placing portable power source at least in the core module, each the hasp module corresponds a battery compartment, portable power source in hasp module locking or the unblock battery compartment, per two are adjacent be equipped with a drive module between the hasp module, drive module includes motor and swing arm, the swing arm is connected on the motor, two are adjacent the hasp module is located the swing region of swing arm, motor drive swing arm presses a hasp module, unblock portable power source in a battery compartment.
2. The battery compartment mechanism of claim 1, wherein a through hole is formed in a sidewall of the battery compartment, the latch module comprises a latch hook, one end of the latch hook is provided with a fastening portion engaged with the through hole, the other end of the latch hook extends to a swing area of the swing arm to form a pressing surface, and the swing arm presses against the pressing surface of one latch hook when the mobile power supply is unlocked.
3. The battery compartment mechanism of claim 2, wherein the latch module comprises a latch rotating shaft, the latch hook is connected to the battery compartment through the latch rotating shaft, and the fastening portion and the pressing surface of the latch hook are respectively located on two sides of the latch rotating shaft.
4. The battery compartment mechanism of claim 2, wherein the latch module further comprises a hook elastic member, the battery compartment has an elastic member guide post engaged with the hook elastic member, and one end of the hook elastic member is connected to the latch hook and the other end of the hook elastic member is connected to the elastic member guide post of the battery compartment.
5. The battery compartment mechanism of claim 2, wherein the locking through hole is formed in the middle of the side wall of the battery compartment, a conical locking head is arranged at an end of the locking part, a circular locking hole matched with the locking head is formed in the middle of the side edge of the mobile power supply, and the locking head penetrates through the locking through hole and then is locked into the locking hole when the mobile power supply is locked.
6. The battery compartment mechanism of claim 2, further comprising a main board connected to the bottom of the battery compartment, wherein the main board is provided with a first inductive switch under the pressing surface of each latch hook, and when the swing arm presses the pressing surface to trigger the first inductive switch, the motor stops driving.
7. The battery compartment mechanism of claim 6, wherein the end of the squeezing surface is provided with a sensing rib, the first sensing switch is a grating sensing switch, the grating sensing switch is provided with a grating groove, and the sensing rib is located in the grating groove to trigger the grating sensing switch when the squeezing surface is pressed.
8. The battery compartment mechanism of claim 6, wherein the main board further comprises a second inductive switch, and a second inductive switch is disposed at the bottom of each battery compartment, and when the mobile power supply is locked in the battery compartment, the second inductive switch is triggered by the bottom of the mobile power supply.
9. The battery compartment mechanism of claim 6, wherein the motherboard further comprises a charging probe, and a set of charging pins is disposed at the bottom of each battery compartment.
10. The battery compartment mechanism of claim 1, comprising a power supply thimble and a thimble elastic member, wherein a thimble convex ring is arranged in the middle of the power supply thimble, a thimble through hole is arranged at the bottom of the battery compartment, one end of the thimble elastic member is propped against the motor, the other end of the thimble elastic member is sleeved at one end of the power supply thimble and propped against the thimble convex ring, the other end of the power supply thimble extends into the battery compartment after passing through the thimble through hole, and when the mobile power supply is popped out of the battery compartment, the thimble convex ring is clamped outside the thimble through hole.
11. A shared mobile power source leasing equipment, characterized by comprising one or more battery compartment mechanisms of the shared mobile power source according to any one of claims 1 to 10.
CN202222118906.6U 2022-08-11 2022-08-11 Battery compartment mechanism sharing mobile power supply and leasing equipment thereof Active CN218100339U (en)

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CN202222118906.6U CN218100339U (en) 2022-08-11 2022-08-11 Battery compartment mechanism sharing mobile power supply and leasing equipment thereof

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Application Number Priority Date Filing Date Title
CN202222118906.6U CN218100339U (en) 2022-08-11 2022-08-11 Battery compartment mechanism sharing mobile power supply and leasing equipment thereof

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115273341A (en) * 2022-08-11 2022-11-01 深圳市倍斯特科技股份有限公司 Battery compartment mechanism sharing mobile power supply, leasing equipment and leasing and returning control method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115273341A (en) * 2022-08-11 2022-11-01 深圳市倍斯特科技股份有限公司 Battery compartment mechanism sharing mobile power supply, leasing equipment and leasing and returning control method thereof

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