WO2020015233A1 - 充电盒及充电装置 - Google Patents
充电盒及充电装置 Download PDFInfo
- Publication number
- WO2020015233A1 WO2020015233A1 PCT/CN2018/112553 CN2018112553W WO2020015233A1 WO 2020015233 A1 WO2020015233 A1 WO 2020015233A1 CN 2018112553 W CN2018112553 W CN 2018112553W WO 2020015233 A1 WO2020015233 A1 WO 2020015233A1
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- groove
- casing
- case
- turntable
- receiving portion
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
Definitions
- Embodiments of the present invention relate to the technical field of charging devices, and in particular, to a charging box and a charging device.
- the existing charging device has at least one DC line.
- the DC line is a wire for transmitting direct current.
- the above at least one DC line is randomly packed and stored, resulting in very messy. In the process of using the charging device, all the lines must be brought together. , Can not be lost, otherwise you can not charge the battery, in addition, sorting out all the wires is also quite laborious.
- an embodiment of the present invention provides a charging case.
- the charging case directly leads a power cord and can accommodate the power cord, thereby solving the problem of clutter and loss of the power cord.
- an embodiment of the present invention provides a charging case including a first case, a second case, and a power cord.
- the first case is connected to the second case, and a first A groove, the first groove is arranged around the opposite surfaces of the first casing and the second casing, a first circuit module is disposed in the first casing, and a second circuit is disposed in the second casing;
- There is a second circuit module the power cord is led out from the first housing or the second housing, and is electrically connected to the first circuit module and the second circuit module, and the first groove
- the power circuit is used for accommodating the power cord in the space of the first groove, and the first circuit module and the second circuit module are used to charge a battery electrically connected to the charging case.
- the first groove is provided around the first casing and the second casing, and a surface of the first casing opposite to the second casing is provided with a first receiving space.
- a second receiving portion is provided on a surface of the second casing opposite to the first casing, and the first receiving portion and the second receiving portion jointly form the first groove, and the first receiving portion
- a receiving portion or the second receiving portion is provided with a through hole penetrating the inner and outer surfaces of the first case or the second case, and the power line passes through the through hole from the first case or Lead out from the second casing.
- opposite surfaces of the first casing and the second casing are connected by a connecting member, and the first receiving portion is disposed at an end of the first casing near the connecting member.
- the second housing portion is provided at a position of the second housing near the end of the connector, the end of the connector and the first housing and the second housing The first surface is enclosed by opposite surfaces.
- opposite surfaces of the first casing and the second casing are at least partially abutted, and an end portion of the opposite surfaces of the first casing and the second casing is cut away from part of the material.
- opposing surfaces of the first casing and the second casing are at least partially bonded, and the first receiving portion and the second receiving portion are the first casing and the second receiving portion.
- the second casing is formed by bending, and the first receiving portion and the second receiving portion are spaced apart.
- first and second mating members are provided on opposite surfaces of the first and second shells, and the first receiving portion and the first Two accommodating portions extend inward from the first casing and the outer wall of the second casing, and the first connector is disposed at an end of the first accommodating portion away from the outer wall of the first casing, And the second plug-in member is disposed at an end of the second receiving portion remote from the outer wall of the second housing, the first receiving portion, the second receiving portion, the first plug-in component and / Alternatively, the second plug-in member may be enclosed together to form the first groove.
- the power cord includes a wire body and a connector, the wire body is led out from the first housing or the second housing, and the connector is connected to the wire body away from the first housing or the housing.
- a second groove is also provided on the opposite surface of the first housing and the second housing, and the second groove is in communication with the first groove, and Making the second groove and the first groove together form an annular groove, the depth of the second groove is deeper than the first groove, and the second groove is used to receive the second groove Connector.
- the first groove forms a plane around a circle
- the second groove at least partially penetrates the first shell and the second shell in a direction perpendicular to the plane where the first groove is located.
- the charging case further includes a first turntable and a second turntable.
- the first turntable is rotatably connected to a first surface of the first case facing away from the second housing, and the second turntable is rotatably connected.
- On the second surface of the second casing facing away from the first casing the first turntable is provided with a third surface
- the second turntable is provided with a fourth surface
- the third surface is in contact with the second surface.
- the first surface is opposite, the fourth surface is opposite to the second surface, the first surface or the third surface, and the second surface or the fourth surface is provided with a contact, and the contact
- the head is used to plug into the battery to charge the battery.
- the first surface is provided with the contact
- the third surface is provided with a third groove
- the size of the third groove corresponds to the contact
- the first turntable is rotated to be When the first surface is bonded to the third surface, the contacts are received in the third groove.
- the first surface is provided with a protruding extension
- the first turntable is provided with a corresponding rotation groove
- the rotation groove runs through the edge of the first turntable to the third groove
- the extension section extends into the rotation groove to form a rotation connection structure.
- the first surface is provided with a latching groove
- the third surface is provided with a latching protrusion
- the latching protrusion is used to cooperate with the latching groove to rotate the first turntable to
- the engaging protrusion is engaged with the engaging groove to fix the first turntable.
- the first housing includes a first body plate, a first side plate, and a second side plate, and the first side plate and the second side plate are oppositely disposed at two ends of the first body plate.
- the first surface is located on the first body plate
- the first groove is located on a surface of the first body plate facing away from the first surface
- the first side plate, the second The side plate and the first main body plate are enclosed to form a storage space, so that the first turntable is rotated and stored in the storage space.
- the first side plate or the second side plate is provided with a first connection hole
- the first turntable is provided with a second connection hole
- the first connection hole and the second connection hole are used for It is connected with the first connecting member to fix the first turntable in the storage space.
- an embodiment of the present invention further provides a charging device, including a charger and the charging box according to any one of the first aspects, wherein the charger is connected to a power cord of the charging box.
- the charger is used to connect to a power source, and converts AC power to DC power to the charging box.
- the first casing and the second casing are connected to form a first groove, and the power cord is led out from the first casing and the second casing.
- the power cord is connected to the first casing and the second casing. Form a whole, and can be accommodated in the space of the first groove, so that the power cord is not lost, and has a good storage.
- FIG. 1 is a schematic structural diagram of a charging case according to an embodiment.
- FIG. 2 is a schematic structural diagram of the charging case of another embodiment from another perspective.
- 3a is a schematic cross-sectional structure view of a charging case according to an embodiment.
- FIG. 3b is a schematic sectional view of a charging case according to another embodiment.
- FIG. 3c is a schematic sectional view of a charging case according to another embodiment.
- Fig. 3d is a schematic diagram of a partially enlarged structure at B in Fig. 3c.
- 3e is a schematic cross-sectional structure view of a charging case according to an embodiment.
- FIG. 3f is a schematic diagram of a partially enlarged structure at C in an embodiment of FIG. 3e.
- FIG. 3g is a schematic diagram of a partially enlarged structure at C of another embodiment of FIG. 3e.
- FIG. 4 is a schematic diagram of a developed structure of a charging case according to an embodiment.
- FIG. 5 is a partially enlarged structure diagram of the charging case at A in FIG. 4.
- FIG. 6 is a schematic structural diagram of a connection between a charging case and a battery according to an embodiment.
- an embodiment of the present invention provides a charging device, including a charger and a charging box provided in an embodiment of the present invention.
- the charger is connected to a power cord of the charging box. It is connected to a power source and converts AC power to DC power to the charging case.
- the charger is a power conversion and voltage regulator, which can convert AC power and output stable DC power.
- a battery is inserted into the charging box, and the battery is charged through the charging box.
- the charger in this embodiment may be a charger suitable in the prior art.
- the battery of this embodiment may be a common rechargeable battery, preferably a battery for a drone or a battery for a remote control of a drone.
- the charging box can charge multiple batteries at one time. As shown in FIG. 5, in one embodiment, the charging box can charge 4 batteries (battery one 101, battery two 102, battery three 103, and battery four 104) at one time.
- an embodiment of the present invention provides a charging case including a first casing 11, a second casing 12, and a power cord.
- the first casing 11 and the second casing 12 are connected, and a first groove 13 is formed at the connection.
- the first groove 13 is disposed around the opposite surfaces of the first casing 11 and the second casing 12.
- a first circuit module (not shown) is provided in the first case 11, and a second circuit module (not shown) is provided in the second case 12.
- the power cord is provided from the first case. It is drawn out from the body 11 or the second casing 12 and is electrically connected to the first circuit module and the second circuit module.
- the first groove 13 is used for accommodating the power cord in the space of the first groove 13, and the first circuit module and the second circuit module are used for plugging in the charging case. On the battery.
- the first casing 11 and the second casing 12 are connected to form a first groove 13, and the power cord is led out from the first casing 11 and the second casing 12.
- the power cord is connected to the first casing 11 and the first casing 12.
- the two casings 12 form a whole and can be accommodated in the space of the first groove 13 so that the power cord is not lost and has a good storage property.
- the charging box is used to electrically connect the battery and provide a charging interface for the battery. How to connect the battery to the battery will be described in the subsequent embodiments, and is omitted here.
- the first casing 11 and the second casing 12 constitute a main frame of the power supply box.
- the first casing 11 and the second casing 12 may be hollow structures.
- the first casing 11 and the second casing 12 and Various necessary devices are arranged inside the device, such as a first circuit module and a second circuit module.
- the first circuit module and the second circuit module may be a circuit board and corresponding connecting wires. After the power line is energized, electricity is introduced into the circuit board, and the current is distributed through the circuit on the circuit board. The battery on the second case is charged.
- the first casing 11 and the second casing 12 may be an integrated structure.
- the first casing 11 and the second casing 12 may be manufactured by using an integral molding process, and a manufacturing method may be casting, stamping, or the like.
- the first casing 11 and the second casing 12 may also have two structures, respectively.
- the first casing 11 and the second casing 12 are formed as a whole by assembling.
- the assembling method may be fixed or detachable, and the assembly is completed.
- the first case 11 and the second case 12 form a stable structure for carrying other accessories such as a battery, a circuit board, and a connecting wire.
- the advantages of the fixed first case 11 and second case 12 structures are that the structure is more stable, and it is not easy to separate the first case 11 and the second case 12 due to the accidental fall of the charging case, causing damage to internal components. .
- the structure of the detachable first casing 11 and the second casing 12 is easier to assemble, especially the assembly of the devices inside the first casing 11 and the second casing 12 is easier.
- a surface of the first casing 11 opposite to the second casing 12 is provided with a first receiving portion 15, and the second casing 12 is opposite to the first casing 11.
- the surface is provided with a second receiving portion 16.
- the first receiving portion 15 and the second receiving portion 16 together form the first groove 13.
- the first accommodating portion 15 or the second accommodating portion 16 is provided with a through hole penetrating the inner and outer surfaces of the first case 11 or the second case 12, and the power line passes through the through hole from Draw out from the first casing 11 or the second casing 12.
- the first receiving portion 15 of the first casing 11 is provided with a through hole 151 through which the power cord can pass. 151, so that the power line can be connected to a first circuit module such as a circuit board in the first casing 11.
- the first circuit module in the first casing 11 and the second circuit module in the second casing 12 are electrically connected, so that a power line can be electrically connected to the first circuit module and the second circuit module at the same time.
- the electrical connection between the first circuit module and the second circuit module can be made through the connecting wires through the opposite side walls of the first casing 11 and the second casing 12.
- the first circuit module and the second circuit module may be integrated into one circuit board, and may be disposed in the first casing 11 or the second casing 12.
- the surfaces of the first casing 11 and the second casing 12 opposite to each other are connected by a connecting member 60.
- the first receiving portion 15 is disposed on the first A position of the housing 11 near the end of the connecting member 60, and the second receiving portion 16 is provided at a position of the second housing 12 near the end of the connecting member 60.
- the first groove 13 is formed by enclosing surfaces of the first shell 11 and the second shell 12 opposite to each other.
- the wall thicknesses of the opposite sides of the first casing 11 and the second casing 12 may be consistent with the wall thicknesses of other positions.
- the connection by the connecting member 60 eliminates the need to provide a connection structure on the opposite surfaces of the first casing 11 and the second casing 12, and the structure is simple.
- the connecting member 60 may be a welding member, and the connecting member 60 and the first casing 11 and the second casing 12 are connected into a whole by a welding process.
- the connecting member 60 may also be an adhesive member, and the surfaces of the connecting member 60 and the first casing 11 and the second casing 12 opposite to each other are formed by adhesive bonding.
- the connecting member 60 may have other feasible solutions, which are no longer enumerated.
- the first accommodating portion 15 and the second accommodating portion 16 are a part of the structure of the side wall of the opposite side of the first casing 11 and the second casing 12, and the structure thereof may be the same as that of the other portions, except that their positions are located without connecting members
- the end of 60 is such that the first accommodating portion 15 and the second accommodating portion 16 are spaced apart from each other, and the first groove 13 is formed by enclosing the first accommodating portion 15 and the second accommodating portion 60 together.
- the opposing surfaces of the first casing 11 and the second casing 12 are at least partially abutted, and the first casing 11 and the second casing 12 are opposed to each other.
- a part of the material is cut off at the end position of the surface to form the first receiving portion 15 and the second receiving portion 16 respectively, so that the wall thickness of the first receiving portion 11 and the second receiving portion 16 is smaller than the thickness of the first receiving portion 15 and the second receiving portion 16.
- the wall thicknesses of the opposite sidewalls of the first casing 11 and the second casing 12 are thicker than those of the sidewalls at other positions, so that cutting can be performed on the opposite sidewalls, thereby forming First groove 13.
- the first accommodating portion 15 and the second accommodating portion 16 are located at the cut portions of the first casing 11 and the second casing 12, respectively, so that the inner walls of the first groove 13 are both the first casing 11 and the second casing. Partial structure of the sidewall of 12.
- first casing 11 and the second casing 12 are at least partially abutted, and the first accommodation portion 15 and the second accommodation
- the portion 16 is formed by bending the first casing 11 and the second casing 12, and the first receiving portion 15 and the second receiving portion 16 are spaced apart from each other.
- the wall thickness of the inner wall of the first casing 11 facing the second casing 12 remains the same, that is, the side wall of the portion where the first casing 11 and the second casing 12 abut and the first receiving portion 15
- the wall thickness of the second shell 12 is the same, and the structure of the second shell 12 is similar. Further, the wall thickness of the side walls of the first shell 11 and the second shell 12 can be kept the same, making the processing easier, and The first receiving portion 15 and the second receiving portion 16 have higher structural strength and better reliability.
- first mating members 152 and second mating members that cooperate with each other. 161.
- the first accommodating portion 15 and the second accommodating portion 16 extend inward from outer walls of the first casing 11 and the second casing 12, and the first plug-in member 152 is provided at The first receiving portion 15 is located at an end away from the outer wall of the first housing 11, and the second connector 161 is disposed at an end of the second receiving portion 16 away from the outer wall of the second housing 12.
- the first accommodating portion 15, the second accommodating portion 16, the first plug-in member 152 and / or the second plug-in member 161 are collectively enclosed to form the first groove 13.
- the first groove 13 is an annular groove.
- the opposite sidewall portions of the first casing 11 and the second casing 12 are hollowed out, that is, the first sidewall includes a first receiving portion 15 and a second receiving portion 16.
- 11 and the second housing 12 are connected through the first plug-in member 152 and the second plug-in member 161.
- the difference between FIG. 3f and FIG. 3g is whether the first plug-in member 152 and the second plug-in member 161 abut against the surface of the first receiving portion 15 or the second receiving portion 16 on the opposite side, that is, in FIG. 3f.
- the first connector 152 extends from the first receiving portion 15 toward the second receiving portion 16 and abuts against the outer wall surface of the second receiving portion 16, and the second connector 161 abuts with the outer wall surface of the first receiving portion 15.
- the first plug-in member 152 and the second plug-in member 161 are stacked up and down, so that a part of the inner wall of the first groove 13 is the first plug-in member 152 or the second plug-in member 161; in FIG. 3g,
- the first plug-in member 152 and the second plug-in member 161 form a boss structure.
- the shape of the boss structure is generally "L".
- the shape of the first plug-in member 152 and the second plug-in member 161 are the same but in the same position.
- the position of the second plug-in member 161 is rotated 180 ° relative to the first plug-in member 152, so that a part of the inner wall of the first groove 13 is composed of the first plug-in member 152 and the second plug-in member 161 together.
- the size of the first groove 13 enables the power cord to be completely contained in the space of the first groove 13, that is, the width and depth of the first groove 13 correspond to the size of the power cord.
- the power cord is preferably circular in cross section. Shape, the width and depth of the first groove 13 are not less than the diameter of the power cord.
- the shape of the first groove 13 is not limited, such as a “U” shape and a rectangular groove.
- the length surrounded by the first groove 13 is adapted to the power line.
- the power cord is longer than the size of the first casing 11 and the second casing 12 in a circle. Then, the first groove 13 surrounds the first casing 11 and the second casing.
- the housing 12 is set once, so that the power cord surrounds the space of the first groove 13, and the part beyond the size of the circle can continue to be stacked or wrapped with the power cord already accommodated in the first groove 13. At this time, The corresponding width and depth dimensions of the first groove 13 are slightly increased so that all parts of the power cord are received.
- the power cord is short, shorter than the size of the first casing 11 and the second casing 12 in a circle. At this time, the first groove 13 is surrounded by the first casing 11 and the second casing 12. The size can be less than one week, as long as the power cord can be completely stored.
- the power cord is led out from the inside of the first casing 11 and the second casing 12, and one end of the power cord is connected to the first circuit module or the second circuit module, and the other end of the power cord is used to connect with the charger and connect through the charger.
- the power supply enables the charging box to be electrically conducted and can charge the battery.
- the power cord is a DC wire, that is, a connection wire for conducting DC power.
- the core of the DC wire is a metal material such as copper that has good ductility and toughness.
- the outer periphery of the core is covered with a protective sleeve.
- the protective sleeve is a flexible material ( (Such as rubber, plastic, cloth products, etc.), so that the DC wire can be bent and easily stored in the space of the first groove 13.
- the position where the power cord is led out from the first case 11 or the second case 12 may be located at any position.
- the position where the power cord is led out is a through hole opened in the first receiving part 15 or the second receiving part 16. Because the outlet of the through hole is located in the space of the first groove 13, the entire power cord can be housed in the first groove 13, so as to prevent the lead-out position at other positions from affecting the storage effect of the lead-out end of the power cord.
- the power cord includes a wire body 31 and a connector 32.
- the wire body 31 is drawn out from the first case 11 or the second case 12.
- the joint 32 is connected to an end of the wire body 31 away from the first shell 11 or the second shell 12.
- a second groove 33 is also provided on the opposite surfaces of the first shell 11 and the second shell 12, and the second groove 33 communicates with the first groove 13 so that the first The two grooves 33 and the first groove 13 together form an annular groove.
- the depth of the second groove 33 is deeper than that of the first groove 13, and the second groove 33 is used to receive the joint 32.
- the connector 32 is used to connect with the charger 50.
- the connector 32 includes a connector housing 321 and a first connection contact 322.
- the connector housing 321 is connected to the wire body 31.
- the wire body 31 is broken at the connection with the joint shell 321, and a reinforcing portion 311 may be provided.
- the reinforcing portion 311 covers the position where the wire body is connected to the joint shell 321.
- the joint shell 321 is a rigid structure to provide rigid support for the first connection contact 322 to be inserted into and removed from the charger.
- the first connection contact 322 extends from the connector housing 321 and protrudes from the surface of the connector housing 321.
- the first connection contact 322 is electrically connected to the wire core in the wire body 31.
- the shape and structure of the first connection contact 322 can be adopted The shapes and structures of the existing contacts are not limited in the embodiment of the present invention.
- the first connection contact 322 protrudes from the surface of the joint housing 321 facing away from the wire body 31, or protrudes from the joint housing 321 line.
- the surface in the extending direction of the body 31 may be any surface, and the first connection contact 322 is used to connect with the charger to achieve electrical conduction of the charging case.
- the connector 32 needs to be connected to the charger, and the joint housing 321 needs to be provided with the first connection contact 322. Therefore, the size of the joint 32 is larger than that of the wire body 31.
- the joint 32 Take the joint 32 as a rectangular parallelepiped as an example.
- the dimensions of the joint 32 in the circumferential direction of the wire body 31 are larger than the diameter of the wire body 31;
- the distance between the two faces facing each other is the same as the diameter of the wire body 31, and the distance between the two faces facing each other is greater than the diameter of the wire body 31.
- the second groove 33 is used to receive the joint 32, and the second groove 33 is in communication with the first groove 13, so that the continuous structure of the wire body 31 and the joint 32 can be received. Since the dimensions of at least two opposite sides of the joint 32 in the circumferential direction of the wire body 31 are larger than the diameter of the wire body 31, the depth of the second groove 33 is greater than the depth of the first groove 13, and the deeper second The groove 33 can accommodate a joint 32 with a larger size. One of the two faces of the joint 32 having a larger size than the diameter of the wire body 31 is disposed toward the bottom of the second groove 33 and can be connected to the second groove. The bottom of 33 is attached, and the other surface faces away from the bottom of the second groove 33.
- the width of the second groove 33 is determined according to the size of the joint 32. When the distance between two opposite sides of the joint 32 is the same as the diameter of the wire body 31, the width of the second groove 33 may be the same as that of the first groove 13. Similarly, when the distance between two opposite sides of the joint 32 is greater than the diameter of the wire body 31, the width of the second groove 33 is wider than the width of the first groove 13.
- the first groove 13 forms a plane around a circle. In a direction perpendicular to the plane where the first groove 13 is located, the second groove 33 penetrates the first housing 11 and the second housing at least partially.
- the housing 12 provides a space for taking out the joint 32.
- the joint 32 is received in the second groove 33.
- the joint 32 needs to be taken out of the second groove 33. Therefore, the second groove 33 is provided to at least partially penetrate the first shell 11 and the second shell 12, The finger 32 can be taken out through the space of the penetrating part, the wire body 31 connected to the connector 32 is taken out from the first groove 13, and the first connection contact 322 of the connector 32 is connected to the charger.
- the plane formed by the first groove 13 may be parallel to the extending direction of the entirety of the first casing 11 and the second casing 12.
- the plane formed by the first groove 13 may be parallel to two planes facing the first shell 11 and the second shell 12.
- the entirety of the first shell 11 and the second shell 12 are rectangular parallelepiped, but when the shapes of the respective cross sections are trapezoidal, the plane formed by the first groove 13 may be the same as the first shell 11 and the second shell.
- the two planes facing away from the housing 12 form an included angle.
- the charging case further includes a first turntable 21 and a second turntable 22.
- the first turntable 21 is rotatably connected to the first case 11 facing away from the second case 12.
- a first surface P1 the second turntable 22 is rotatably connected to a second surface (not shown) of the second housing 12 facing away from the first housing 11, and the first turntable 21 is provided with a third Surface P2, the second turntable 22 is provided with a fourth surface (not shown), the third surface P2 is opposite to the first surface P1, the fourth surface is opposite to the second surface, the The first surface P1 or the third surface P2 and the second surface or the fourth surface are provided with contacts, and the contacts are used for plugging into a battery to charge the battery.
- the structures of the first case 11 and the second case 12 may be the same, and the structures of the first turntable 21 and the second turntable 22 may be the same.
- the first case 11 and the first turntable 21 are used as an example for description.
- the second case The structures of the body 12 and the second turntable 22 may be referred to.
- the contact is provided on the first surface P1, and a third groove 214 is provided on the third surface P2.
- the size of the third groove 214 corresponds to the contact.
- the first turntable 21 and the second turntable 22 when the battery is connected to the contact, the first turntable 21 and the second turntable 22 are in an unfolded state.
- the first turntable 21 and the second turntable 22 are unfolded to form the same plane, and together with the first housing 11 and the second housing 12, form a support plane.
- the first turntable 21 and the second turntable 22 may be opposed to the first
- the casing 11 and the second casing 12 form a fixed structure, and a fixing method may adopt a structure such as a buckle, so that the above-mentioned supporting plane structure is stable to provide stable support for the battery.
- the third groove 214 when the first turntable 21 is in the unfolded state, can also accommodate a part of the battery. When designing the specific shape of the groove, it can also be part of the battery.
- the raised portions correspond to the partial protrusions of the battery to cooperate with the third groove 214 to form a fixed structure, so that the battery has a stable structure during charging, and does not shake and disconnect the charged state.
- the structure of the contact includes a contact case 114 and a contact 115.
- the contact 115 is a plurality of connection points. Each connection point is electrically connected to a circuit board or a connecting wire and connected to a power line.
- the contact case 114 is provided on the contact. On the outer periphery of the point 115, the contact housing 114 and the contact 115 protrude outward from the first surface P1.
- the contacts are used to electrically connect with the corresponding charging contacts of the battery.
- the structure of the charging contacts is similar to the structure of the contacts.
- the charging contact is inserted and fixed to the inner wall or the outer wall of the contact housing 114, and the charging contact of the charging contact is correspondingly connected to the contact 115, so that the charging box and the battery can be connected.
- the contacts may be provided in multiples, and the corresponding third groove 214 may also be provided in multiples to charge multiple batteries at the same time.
- the first surface P1 of the first housing 11 is provided with two contacts, and the corresponding third groove is also provided with two contacts, that is, the second contact includes the second contact housing 116 and the first contact.
- the structure of the two contacts 117 is the same as that of the contact housing 114 and the contacts 115 of the contacts, and the other third groove 215 corresponds to the structure of the third groove 214.
- the two contacts are spaced evenly on the first surface P1 to connect with the corresponding two batteries.
- the first surface P1 of the first turntable 21 is provided with a protruding extension 119.
- the first turntable 21 is correspondingly provided with a rotation groove 217.
- the rotation groove 217 can be set to penetrate the first turntable 21.
- the extension section 119 extends into the rotation groove 217 and forms a rotation connection structure.
- a through hole may be provided in the extension section 119, and a rotation shaft and an extension section are correspondingly arranged in the rotation groove 217. 119 cooperates with the shaft through the through hole.
- the rotation groove 217 is set to run through the edge of the first turntable 21 to another third groove 215, so that the structure will not interfere during rotation.
- the first surface P1 and the third surface P2 can be attached to each other.
- the rotation groove 217 only penetrates the third surface P2 to the bottom surface of another third groove 215, and does not penetrate the surface of the first turntable 21 facing away from the third surface P2, so that the first A turntable 21 is rotated to form a complete and unified appearance when the third surface P2 and the first surface P1 are bonded.
- the extension section 217 may also be connected to the non-through portion of the first turntable 21
- the structure resists to define the relative positions of the first turntable 21 and the first casing 11.
- the first surface P1 is provided with a latching groove
- the third surface P2 is provided with a latching protrusion
- the latching protrusion is used to cooperate with the latching groove to rotate the first turntable 21.
- the engaging protrusion is engaged with the engaging groove to fix the first turntable 21.
- a plurality of the latching slots are provided, and the shapes of the plurality of latching slots are not all the same, and the latching protrusions are also provided in a plurality and corresponding to the latching slots to strengthen and fix the first turntable 21. Effect.
- the latching slot includes a first latching slot H1, a second latching slot H2, and a second latching slot H2, which are arranged at intervals.
- the corresponding engaging protrusions include the first engaging protrusion S1, the second engaging protrusion S2, the third engaging protrusion S3, and the fourth engaging protrusion S4.
- the shape and extension direction of the clip slot H1 and the third clip slot H3 are the same, and the shape and extension direction of the second clip slot H2 and the fourth clip slot H4 are the same.
- the first clip slot H1 and the second clip slot H2 is located above the two sides of the contact on the first surface P1, and the extension directions of the two are different.
- the third and fourth snap-in slots H3 and H4 are similarly extended in different directions, forming a staggered arrangement.
- the corresponding structure of the plurality of latching grooves corresponds to that, the first latching protrusions S1 to the fourth latching protrusions S4 also have a staggered structure. In this way, in addition to facilitating manufacturing, a plurality of latching protrusions and The cooperation of the plurality of clamping grooves is closer, and the formed clamping structure is more stable.
- the number of the engaging grooves and the engaging protrusions may not be limited to four, and the shapes may be different.
- the outer wall of the latching protrusion and the inner wall of the latching groove form a frictional force, so that the first turntable 21 and the second turntable 22 can be temporarily limited in position to form a certain pretension force.
- the first turret 21 and the second turret 22 need to be opened, they need to be opened by force to avoid the first turret 21 and the second turret 22 being rotated without restriction and causing damage.
- the first casing 11 includes a first body plate 112, a first side plate 111, and a second side plate 113.
- the first side plate 111 and the first Two side plates 113 are oppositely disposed at both ends of the first body plate 112, the first surface P1 is located on the first body plate 112, and the first groove 13 is located on the first body plate 112
- the surface facing away from the first surface P1, the first side plate 111, the second side plate 113, and the first body plate 113 are enclosed to form a storage space, so that the first turntable 21 rotates It is then stored in the storage space.
- the first side plate 111, the second side plate 113, and the first body plate 112 may all be flat plates, and the extending direction of the first side plate 111 and the second side plate 113 may be parallel to the first body plate 112, that is, the first side plate 111 is perpendicular to the first body plate 112, and the second side plate 113 is perpendicular to the first body plate 112.
- One end of the first side plate 111 and the second side plate 113 is connected to the first main body plate 112, and the other end protrudes in the direction of the first surface P1.
- the protruding size is the same as that of the first turntable 21 in the direction perpendicular to the third surface P2.
- the second casing 12 is similar to the first casing 11 and has a third side plate 121, a fourth side plate 123, and a second main body plate 122, and its structure is referred to the first side plate 111, the second side plate 113, and the first The main body plate 112 is sufficient and will not be described again.
- first side plate 111 or the second side plate 113 is provided with a first connection hole 118
- first turntable 21 is provided with a second connection hole 216
- first connection hole 118 and The second connection hole 216 is used for cooperative connection with a first connection member (not shown) to fix the first turntable 21 in the storage space.
- first connection hole 118 and / or the second connection hole 216 may be screw holes
- the first connection member may be a screw.
- the positions of the first connection hole 118 and the second connection hole 216 correspond to each other, and the first connection member is screwed into the first connection hole.
- the first turntable 21 is fixed, so that the overall structure of the charging box is compact and stable, which is convenient to carry and transport.
- the cooperation of the first connection member with the first connection hole 118 and the second connection hole 216 in this embodiment makes the first turntable 21 completely defined. Position, when the first turntable 21 needs to be opened, it is necessary to withdraw the first connecting member first, and then forcefully open the cooperative connection between the first protrusion 21 and the first groove 11 of the first turntable 21.
- a fourth groove 211 is provided on the first turntable 21, and the fourth groove 211 runs through the first groove in a direction perpendicular to the third surface P2.
- the position of the fourth groove 211 corresponds to the second groove 33. Since the second groove 33 is used to receive the connector 32 of the power cord, in order to provide a space for taking out the connector 32, the second groove 33 is provided to at least partially penetrate the first housing 11 and the second housing 12, and in order to make the first
- the turntable 21 also has a space for taking out the joint 32 after being stored. Therefore, a fourth groove 211 is provided corresponding to the position of the second groove 33.
- the second turntable 22 may also be provided with a fifth groove 221 similar to the fourth groove 211, and at the same time, there is space for taking out the joint 32 from both sides of the first turntable 21 and the second turntable 22.
- a soft protrusion 212 is provided on the surface of the first turntable 21 facing away from the third surface P2, and the soft protrusions 212 may be provided in a plurality.
- a soft protrusion 212 is in contact with the tabletop at the rear, which can avoid abrasion to the first turntable 21, can also increase friction, and has a non-slip effect.
- the material of the soft protrusion 212 may be rubber.
- the second turntable 22 is similar in structure to the first turntable 21 and is provided with similar soft protrusions.
- the first turntable 21 is also provided with a horizontal bar protrusion 213 for facilitating the opening of the first turntable 21.
- the extending direction of the horizontal bar protrusion 213 is the same as the extending direction of the first turntable 21.
- the horizontal bar protrusion 213 is provided on the first turntable The outer surface of the side 21 away from the rotation position, the horizontal bar protrusion 213 is used to increase the friction force when the first turntable 21 is opened, so that the operation of the first turntable 21 is easier.
- the second turntable 22 is also provided with a corresponding bar protrusion 223.
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- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
一种充电装置及其充电盒,充电盒包括第一壳体(11)、第二壳体(12)和电源线,第一壳体(11)和第二壳体(12)相连接,并于连接处形成第一凹槽(13),第一凹槽(13)环绕设置在第一壳体(11)和第二壳体(12)相对的表面,第一壳体(11)内设有第一电路模块,第二壳体(12)内设有第二电路模块,电源线自第一壳体(11)或第二壳体(12)内引出,并与第一电路模块和第二电路模块电连接,第一凹槽(13)用于将电源线收纳在第一凹槽(13)的空间内,第一电路模块和第二电路模块用于为电连接在充电盒上的电池充电。通过设置第一壳体(11)和第二壳体(12)连接并形成第一凹槽(13),将电源线从第一壳体(11)和第二壳体(12)内引出,电源线与第一壳体(11)和第二壳体(12)形成一个整体,并可容纳在第一凹槽(13)的空间内,使得电源线不会丢失,且具有良好的收纳性。
Description
本发明实施例涉及充电装置技术领域,具体涉及一种充电盒及充电装置。
现有的充电装置有至少一条DC线,DC线是用于传输直流电的导线,上述至少一条DC线是随意包装和收纳的,导致非常凌乱,在使用充电装置过程中,需要带齐所有的线,不能丢失,否则就不能为电池充电,此外,理清所有的线也颇费功夫。
发明内容
为解决上述技术问题,本发明实施例提供一种充电盒,充电盒直接引出电源线,并能收纳电源线,解决了电源线凌乱和丢失的问题。
第一方面,本发明实施例提供一种充电盒,包括第一壳体、第二壳体和电源线,所述第一壳体和所述第二壳体相连接,并于连接处形成第一凹槽,所述第一凹槽环绕设置在所述第一壳体和所述第二壳体相对的表面,所述第一壳体内设有第一电路模块,所述第二壳体内设有第二电路模块,所述电源线自所述第一壳体或所述第二壳体内引出,并与所述第一电路模块和所述第二电路模块电连接,所述第一凹槽用于将所述电源线收纳在所述第一凹槽的空间内,所述第一电路模块和所述第二电路模块用于为电连接在所述充电盒上的电池充电。
一种实施例中,所述第一凹槽环绕所述第一壳体和所述第二壳体一周设置,所述第一壳体与所述第二壳体相对的表面设有第一容纳部,所述第二壳体与所述第一壳体相对的表面设有第二容纳部,所述第一容纳部和所述第二容纳部共同形成所述第一凹槽,所述第一容纳部或所述第二容纳部设有贯穿所述第一壳体或所述第二壳体内外表面的通孔,所述电源线穿过所述通孔从所述第一壳体或所述第二壳体内引出。
一种实施例中,所述第一壳体和所述第二壳体相对的表面之间通过连接件连接,所述第一容纳部设于所述第一壳体之靠近所述连接件端部的位置,所述第二容纳部设于所述第二壳体之靠近所述连接件端部的位置,所述连接件的端 部与所述第一壳体及所述第二壳体相对的表面围合形成所述第一凹槽。
一种实施例中,所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一壳体和所述第二壳体相对的表面的端部位置切除部分材料以分别形成所述第一容纳部和所述第二容纳部,使得所述第一容纳部和所述第二容纳部的壁厚小于所述第一壳体和所述第二壳体相对的一侧的侧壁的壁厚,
一种实施例中,所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一容纳部和所述第二容纳部为所述第一壳体及所述第二壳体弯折形成,所述第一容纳部和所述第二容纳部间隔设置。
一种实施例中,所述第一壳体和所述第二壳体相对的表面上设有相互配合的第一插接件和第二插接件,所述第一容纳部和所述第二容纳部自所述第一壳体和所述第二壳体外壁向内延伸而成,所述第一插接件设于所述第一容纳部远离所述第一壳体外壁的一端,及所述第二插接件设于所述第二容纳部远离所述第二壳体外壁的一端,所述第一容纳部、所述第二容纳部、所述第一插接件和/或所述第二插接件共同围合形成所述第一凹槽。
其中,所述电源线包括线体和接头,所述线体自所述第一壳体或所述第二壳体内引出,所述接头连接在所述线体远离所述第一壳体或所述第二壳体的一端,所述第一壳体和所述第二壳体相对的表面还设有第二凹槽,所述第二凹槽的与所述第一凹槽相连通,以使所述第二凹槽与所述第一凹槽共同形成一环形的凹槽,所述第二凹槽的深度比所述第一凹槽更深,所述第二凹槽用于容纳所述接头。
其中,所述第一凹槽环绕一周形成一个平面,在垂直于所述第一凹槽所在平面的方向,所述第二凹槽至少部分贯穿所述第一壳体和所述第二壳体,以提供取出所述接头的空间。
其中,所述充电盒还包括第一转台和第二转台,所述第一转台转动连接在所述第一壳体背向所述第二壳体的第一表面,所述第二转台转动连接在所述第二壳体背向所述第一壳体的第二表面,所述第一转台设有第三表面,所述第二转台设有第四表面,所述第三表面与所述第一表面相对,所述第四表面与所述第二表面相对,所述第一表面或所述第三表面,及所述第二表面或所述第四表面设有触头,所述触头用于与电池插接,以为所述电池充电。
其中,所述第一表面上设有所述触头,所述第三表面设有第三凹槽,所述 第三凹槽的尺寸与所述触头对应,所述第一转台转动至与所述第一表面与所述第三表面贴合时,所述触头容纳于所述第三凹槽内。
其中,所述第一表面上设置有突出的延伸段,所述第一转台上设有对应的转动槽,所述转动槽贯穿所述第一转台的边缘到所述第三凹槽,所述延伸段伸入所述转动槽内,形成转动连接结构。
其中,所述第一表面上设有卡接槽,所述第三表面上设有卡接突起,所述卡接突起用于与所述卡接槽配合,以使所述第一转台转动至所述第三表面与所述第一表面贴合时,所述卡接突起与所述卡接槽卡接,以固定所述第一转台。
其中,所述第一壳体包括第一主体板、第一侧板和第二侧板,所述第一侧板和所述第二侧板相对的设置在所述第一主体板的两端,所述第一表面位于所述第一主体板上,所述第一凹槽位于所述第一主体板上背向所述第一表面的表面,所述第一侧板、所述第二侧板和所述第一主体板围合形成收纳空间,以使所述第一转台转动后被收纳在所述收纳空间内。
其中,所述第一侧板或所述第二侧板上设有第一连接孔,所述第一转台上设有第二连接孔,所述第一连接孔和所述第二连接孔用于与第一连接件配合连接,以固定所述第一转台在所述收纳空间内。
第二方面,本发明实施例还提供了一种充电装置,其特征在于,包括充电器和第一方面中任一项所述的充电盒,所述充电器与所述充电盒的电源线连接,所述充电器用于与电源连接,并将交流电转换为直流电提供给所述充电盒。
本发明实施例通过设置第一壳体和第二壳体连接并形成第一凹槽,将电源线从第一壳体和第二壳体内引出,电源线与第一壳体和第二壳体形成一个整体,并可容纳在第一凹槽的空间内,使得电源线不会丢失,且具有良好的收纳性。
为了更清楚地说明本发明实施方式或现有技术中的技术方案,下面将对实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明实施例的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是一种实施例的充电盒的结构示意图。
图2是一种实施例的充电盒的另一视角的结构示意图。
图3a是一种实施例的充电盒的剖视结构示意图。
图3b是另一种实施例的充电盒的剖视结构示意图。
图3c是另一种实施例的充电盒的剖视结构示意图。
图3d是图3c中B处局部放大结构示意图。
图3e是一种实施例的充电盒的剖视结构示意图。
图3f是图3e的一种实施例的C处的局部放大结构示意图。
图3g是图3e的另一种实施例的C处的局部放大结构示意图。
图4是一种实施例的充电盒的展开结构示意图。
图5是图4的充电盒中A处的局部放大结构示意图。
图6是一种实施例的充电盒与电池连接的结构示意图。
下面将结合本发明实施方式中的附图,对本发明实施例实施方式中的技术方案进行清楚、完整地描述,显然,所描述的实施方式仅仅是本发明实施例一部分实施方式,而不是全部的实施方式。基于本发明实施例中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施方式,都属于本发明保护的范围。
请参考图1和图6,本发明实施例提供一种充电装置,包括充电器和本发明实施例提供的充电盒,所述充电器与所述充电盒的电源线连接,所述充电器用于与电源连接,并将交流电转换为直流电提供给所述充电盒。充电器为电源转换和稳压器,能将交流电转换并输出稳定的直流电,充电盒上插接有电池,通过充电盒为电池充电。本实施例的充电器可以采用现有技术中合适的充电器。本实施例的电池可以为普通的充电电池,优选为无人机用电池或无人机的遥控器用电池。充电盒可以一次性为多块电池充电,如图5所示,一种实施例中,充电盒一次可以为4块电池(电池一101、电池二102、电池三103和电池四104)充电。
请参考图1和图2,本发明实施例提供一种充电盒,包括第一壳体11、第二壳体12和电源线。所述第一壳体11和所述第二壳体12相连接,并于连接处形成第一凹槽13。所述第一凹槽13环绕设置在所述第一壳体11和所述第二壳体12相对的表面。所述第一壳体11内设有第一电路模块(图未示),所述第二 壳体12内设有第二电路模块(图未示),所述电源线自所述第一壳体11或所述第二壳体12内引出,并与所述第一电路模块和所述第二电路模块电连接。所述第一凹槽13用于将所述电源线收纳在所述第一凹槽13的空间内,所述第一电路模块和所述第二电路模块用于为插接在所述充电盒上的电池充电。
通过设置第一壳体11和第二壳体12连接并形成第一凹槽13,将电源线从第一壳体11和第二壳体12内引出,电源线与第一壳体11和第二壳体12形成一个整体,并可容纳在第一凹槽13的空间内,使得电源线不会丢失,且具有良好的收纳性。
充电盒用于电连接电池,为电池提供充电的接口,具体如何与电池连接在后续的实施例中将进行说明,此处略过。其中,第一壳体11和第二壳体12构成电源盒的主体框架,第一壳体11和第二壳体12可为空心结构,在第一壳体11和第二壳体12上及其内部设置各种所需的器件,如第一电路模块和第二电路模块等。第一电路模块和第二电路模块可以为电路板及相应的连接导线,电源线通电后将电导入电路板,通过电路板上的电路分配电流,可分别为电连接在第一壳体和第二壳体上的电池充电。第一壳体11和第二壳体12可以为一体式结构,第一壳体11和第二壳体12可为采用一体成型工艺制作,制作方法可以为铸造、冲压等。第一壳体11和第二壳体12也可以分别为两个结构,第一壳体11和第二壳体12通过装配而形成整体,装配的方式可以为固定式或可拆卸式,装配完成的第一壳体11和第二壳体12形成稳定的结构,以用于承载电池、电路板和连接导线等其他附属件。固定式的第一壳体11和第二壳体12的结构的优势在于结构更稳定,不易因充电盒意外摔落而使得第一壳体11和第二壳体12分离,造成内部的器件损坏。相对于固定式,可拆卸式的第一壳体11和第二壳体12的结构更易于装配,特别是第一壳体11和第二壳体12内部的器件的装配更容易。
请参考图3a至图3g,所述第一壳体11与所述第二壳体12相对的表面设有第一容纳部15,所述第二壳体12与所述第一壳体11相对的表面设有第二容纳部16。所述第一容纳部15和所述第二容纳部16共同形成所述第一凹槽13。所述第一容纳部15或所述第二容纳部16设有贯穿所述第一壳体11或所述第二壳体12内外表面的通孔,所述电源线穿过所述通孔从所述第一壳体11或所述第二壳体12内引出。
请参考图3d、图3f和图3g,以电源线从第一壳体11内引出为例,第一壳体11的第一容纳部15上设通孔151,电源线可穿过该通孔151,从而使得电源线可以连接至第一壳体11内的电路板等第一电路模块。第一壳体11内的第一电路模块与第二壳体12内的第二电路模块之间为电连接关系,使得一条电源线可以同时与第一电路模块和第二电路模块电连接,具体的第一电路模块和第二电路模块的电连接可以通过连接导线穿过第一壳体11和第二壳体12相对的侧壁进行。其他实施例中,第一电路模块和第二电路模块可以整合为一块电路板,可设在第一壳体11内或第二壳体12内。
一种实施例中,请参考图3a,所述第一壳体11和所述第二壳体12相对的表面之间通过连接件60连接,所述第一容纳部15设于所述第一壳体11之靠近所述连接件60端部的位置,所述第二容纳部16设于所述第二壳体12之靠近所述连接件60端部的位置,所述连接件60的端部与所述第一壳体11及所述第二壳体12相对的表面围合形成所述第一凹槽13。
本实施例中,第一壳体11和第二壳体12相对的一侧的壁厚可以与其他位置的壁厚保持一致。通过连接件60连接,可不需要在第一壳体11和第二壳体12相对的表面上设置连接结构,结构简单。连接件60可以为焊接件,连接件60与第一壳体11及第二壳体12通过焊接工艺连接成为一体。在其他实施例中,连接件60还可以为粘贴件,连接件60与第一壳体11和第二壳体12相对的表面通过粘胶粘贴而形成一体。当然,在其他实施例中,连接件60还可以有其他的可行的方案,不再枚举。第一容纳部15及第二容纳部16为第一壳体11及第二壳体12相对的一侧的侧壁的一部分结构,其结构可以与其他部分相同,区别在于其位置位于没有连接件60的端部,使得第一容纳部15和第二容纳部16之间间隔设置,并与连接件60的端部共同围合形成第一凹槽13。
一种实施例中,请参考图3b,所述第一壳体11和所述第二壳体12相对的表面至少部分贴合,所述第一壳体11和所述第二壳体12相对的表面的端部位置切除部分材料以分别形成所述第一容纳部15和所述第二容纳部16,使得所述第一容纳部11和所述第二容纳部16的壁厚小于所述第一壳体11和所述第二壳体12相对的一侧的侧壁的壁厚。
本实施例中,第一壳体11和第二壳体12相对的侧壁的壁厚比其他位置的侧壁的壁厚更厚,使得在相对的一侧侧壁上可以进行切削,从而形成第一凹槽 13。第一容纳部15和第二容纳部16分别位于第一壳体11及第二壳体12上被切削的部分,使得第一凹槽13的内壁均为第一壳体11和第二壳体12的侧壁的部分结构。
一种实施例中,请参考图3c和图3d,所述第一壳体11和所述第二壳体12相对的表面至少部分贴合,所述第一容纳部15和所述第二容纳部16为所述第一壳体11及所述第二壳体12弯折形成,所述第一容纳部15和所述第二容纳部16间隔设置。
本实施例中,第一壳体11朝向第二壳体12方向的内壁的壁厚保持一致,即第一壳体11与第二壳体12贴合的部分的侧壁和第一容纳部15的壁厚一致,第二壳体12的结构与此类似,进一步的,第一壳体11和第二壳体12上各处的侧壁的壁厚可以保持一致,使得加工制造更容易,且第一容纳部15和第二容纳部16的结构强度更高,可靠性更好。
一种实施例中,请参考图3e至图3g,所述第一壳体11和所述第二壳体12相对的表面上设有相互配合的第一插接件152和第二插接件161,所述第一容纳部15和所述第二容纳部16自所述第一壳体11和所述第二壳体12外壁向内延伸而成,所述第一插接件152设于所述第一容纳部15远离所述第一壳体11外壁的一端,及所述第二插接件161设于所述第二容纳部16远离所述第二壳体12外壁的一端,所述第一容纳部15、所述第二容纳部16、所述第一插接件152和/或所述第二插接件161共同围合形成所述第一凹槽13。本实施例中,所述第一凹槽13为一环形凹槽。本实施例中,第一壳体11和第二壳体12相对的侧壁部分镂空设置,即相对的侧壁存在实体的部分为第一容纳部15和第二容纳部16,第一壳体11和第二壳体12通过第一插接件152和第二插接件161插接进行连接。其中图3f和图3g的区别在于,第一插接件152和第二插接件161是否抵持到相对的一侧的第一容纳部15或第二容纳部16的表面,即图3f中第一插接件152从第一容纳部15朝向第二容纳部16延伸并与第二容纳部16的外壁面抵持,第二插接件161与第一容纳部15的外壁面抵持,且第一插接件152和第二插接件161之间为上下层叠关系,使得第一凹槽13的内壁的一部分为第一插接件152或第二插接件161;图3g中,第一插接件152与第二插接件161形成凸台结构,凸台结构的形状大致呈“L”形,第一插接件152的形状和第二插接件161的形状相同但位置不同,第二插接件161的位置相对于第一插接件152旋转 180°,使得第一凹槽13的内壁的一部分为第一插接件152和第二插接件161共同组成。
第一凹槽13的尺寸能使得电源线完全容纳在第一凹槽13的空间内,即第一凹槽13的宽度和深度的尺寸与电源线的尺寸对应,电源线优选为横截面为圆形,则第一凹槽13的宽度和深度不小于电源线的直径。第一凹槽13的形状不限,如“U”型、矩形槽均可。第一凹槽13环绕的长度与电源线适应。一种实施例中,电源线较长,超过了第一壳体11和第二壳体12环绕一周的尺寸,则所述第一凹槽13环绕所述第一壳体11和所述第二壳体12一周设置,使得电源线环绕在第一凹槽13的一周的空间内,超出一周的尺寸的部分可以继续与已容纳在第一凹槽13内的电源线层叠或者缠绕设置,此时第一凹槽13相应的宽度和深度尺寸稍增大,以使电源线的所有部分都被收纳。一种实施例中,电源线较短,短于第一壳体11和第二壳体12环绕一周的尺寸,此时第一凹槽13在第一壳体11和第二壳体12环绕的尺寸可小于一周,只需能够使得电源线完全被收纳即可。
电源线自第一壳体11和第二壳体12内部引出,电源线引出的一端与第一电路模块或第二电路模块连接,电源线的另一端用于与充电器连接,通过充电器连接电源,以使得充电盒电导通,可以为电池充电。电源线为DC线,即用于导通直流电的连接线,DC线的线芯为铜等具有良好延展性和韧性的金属材质,线芯的外周包覆有保护套,保护套为柔性材料(如橡胶、塑料、布制品等)制成,使得DC线能进行弯折而便于收纳在第一凹槽13的空间内。
电源线从第一壳体11或第二壳体12内引出的位置可以位于任何位置,优选的,所述电源线引出的位置为第一容纳部15或第二容纳部16上开设的通孔,由于通孔的出口位于第一凹槽13的空间内,使得电源线整体全部可被收纳在第一凹槽13内,避免引出位置在其他位置而影响电源线引出一端的收纳效果。
请参考图1、图2和图4,所述电源线包括线体31和接头32。所述线体31自所述第一壳体11或所述第二壳体12内引出。所述接头32连接在所述线体31远离所述第一壳体11或所述第二壳体12的一端。所述第一壳体11和所述第二壳体12相对的表面还设有第二凹槽33,所述第二凹槽33与所述第一凹槽13相连通,以使所述第二凹槽33与所述第一凹槽13共同形成一环形的凹槽。所述第二凹槽33的深度比所述第一凹槽13更深,所述第二凹槽33用于容纳所述接 头32。
接头32用于与充电器50连接,接头32包括接头壳321和第一连接触头322,接头壳321与线体31连接,为了加固线体31与接头壳321的连接,防止使用多次后线体31在与接头壳321的连接处断裂,可设置加强部311,加强部311包覆在线体与接头壳321连接的位置处,加强部311的结构可参考现有技术的相应结构,此处不再赘述。接头壳321为刚性结构,以为第一连接触头322插入和拔出充电器提供刚性支撑。第一连接触头322自接头壳321内延伸并突出于接头壳321的表面,第一连接触头322与线体31内的线芯电连接,第一连接触头322的形状和结构可采用现有的各种触头的形状和结构,本发明实施例不进行限制,例如,第一连接触头322突出在接头壳321背向线体31的一侧表面,或者突出于接头壳321在线体31延伸方向的周向的表面均可,第一连接触头322用于与充电器连接,实现充电盒的电导通。
相对于线体31,接头32由于需要与充电器连接,接头壳321需要设置第一连接触头322,因此,接头32的尺寸比线体31更大。以接头32整体呈长方体为例说明,一种实施例中,接头32在线体31周向上的尺寸均大于线体31的直径;另一种实施例中,在线体31的周向上,接头32其中相背的两个面之间的距离与线体31的直径相同,另外相背两个面之间的距离大于线体31的直径。
第二凹槽33用于容纳接头32,且第二凹槽33与第一凹槽13相连通,使得线体31和接头32的连续的结构都可被收纳。由于在线体31的周向上,接头32至少有相背的两个面的尺寸大于线体31的直径,因此,设置第二凹槽33的深度大于第一凹槽13的深度,更深的第二凹槽33可以容纳尺寸更大的接头32,其中接头32的尺寸比线体31的直径更大的两个面的其中一个面朝向第二凹槽33的底部设置,并可与第二凹槽33的底部贴合,另一个面背向第二凹槽33的底部方向。第二凹槽33的宽度根据接头32的尺寸而定,当接头32的另外相对的两个面的距离与线体31的直径相同时,第二凹槽33的宽度可以与第一凹槽13相同,当接头32的另外相对的两个面的距离大于线体31的直径时,第二凹槽33的宽度比第一凹槽13的宽度更宽。
所述第一凹槽13环绕一周形成一个平面,在垂直于所述第一凹槽13所在平面的方向,所述第二凹槽33至少部分贯穿所述第一壳体11和所述第二壳体12,以提供取出所述接头32的空间。
接头32收纳在第二凹槽33内,使用时,需要将接头32从第二凹槽33内取出,因此,设置第二凹槽33至少部分贯穿第一壳体11和第二壳体12,使得手指能通过贯穿的部分的空间取出接头32,再将与接头32连接的线体31从第一凹槽13内取出,将接头32的第一连接触头322与充电器插接。
第一凹槽13形成的平面可以与第一壳体11和第二壳体12的整体的延伸方向平行,当第一壳体11和第二壳体12形成的整体呈长方体,且第一壳体11和第二壳体12也呈长方体时,第一凹槽13形成的平面可以与第一壳体11和第二壳体12相背的两个平面平行。其他实施例中,第一壳体11和第二壳体12的整体呈长方体,但各自横截面的形状分别呈梯形时,第一凹槽13形成的平面可以与第一壳体11和第二壳体12相背的两个平面形成夹角。
请参考图4和图5,所述充电盒还包括第一转台21和第二转台22,所述第一转台21转动连接在所述第一壳体11背向所述第二壳体12的第一表面P1,所述第二转台22转动连接在所述第二壳体12背向所述第一壳体11的第二表面(图未示),所述第一转台21设有第三表面P2,所述第二转台22设有第四表面(图未示),所述第三表面P2与所述第一表面P1相对,所述第四表面与所述第二表面相对,所述第一表面P1或所述第三表面P2,及所述第二表面或所述第四表面设有触头,所述触头用于与电池插接,以为所述电池充电。
第一壳体11和第二壳体12的结构可以相同,第一转台21和第二转台22的结构也可以相同,以第一壳体11和第一转台21为例进行说明,第二壳体12和第二转台22的结构参照即可。
一种实施例中,所述第一表面P1上设有所述触头,所述第三表面P2设有第三凹槽214,所述第三凹槽214的尺寸与所述触头对应,所述第一转台21转动至与所述第一表面P1与所述第三表面P2贴合时,所述触头容纳于所述第三凹槽214内。其他实施例中,还可在第三表面P2上设置触头,而第三凹槽214可设置在第一表面P1上。
应当理解,上述各个实施例中,电池插接在触头上时,第一转台21和第二转台22均为展开的状态。优选的,第一转台21和第二转台22展开形成同一平面,且与第一壳体11和第二壳体12共同形成支撑平面,此时第一转台21和第二转台22可相对第一壳体11和第二壳体12形成固定结构,固定的方式可以采用卡扣等结构,使得上述支撑平面结构稳定,以为电池提供稳定的支撑。第三 凹槽214除容纳触头外,当第一转台21为展开状态时,第三凹槽214还可以容纳电池的部分凸起,在设计凹槽的具体形状时,还可以与电池的部分凸起的部分对应,使得电池的部分凸起与第三凹槽214配合形成固定结构,使得电池在充电时具有稳定的结构,不会摇晃而断开充电状态。
触头的结构包括触头壳114和触点115,触点115为多个接线点,每个接线点均与电路板或连接导线电连接,并连接至电源线,触头壳114设置于触点115的外周,触头壳114和触点115均自第一表面P1向外突出,触头用于与电池的对应充电触头电连接,充电触头的结构与触头的结构类似,连接时,充电触头插入并与触头壳114的内壁或外壁贴合而固定,充电触头的充电触点与触点115对应连接,即可实现充电盒与电池的连接。触头可设置为多个,对应的第三凹槽214也可以设置为多个,以同时为多块电池充电。以图3为例,第一壳体11的第一表面P1上设有2个触头,对应的第三凹槽也设有2个,即第二触头包括第二触头壳116和第二触点117,其结构与触头的触头壳114和触点115相同,另一第三凹槽215与第三凹槽214的结构对应,参照即可。2个触头分别在第一表面P1上均匀间隔设置,以分别与对应的2块电池连接。
请参考图4和图5,第一转台21的第一表面P1上设置有突出的延伸段119,第一转台21上对应设有转动槽217,转动槽217可设为贯穿第一转台21的边缘到另一第三凹槽215的结构,延伸段119伸入转动槽217内,并形成转动连接结构,例如,可在延伸段119上开设通孔,转动槽217内对应设置转轴,延伸段119通过通孔与转轴配合。第一转台21转动时,延伸段119固定而转动槽217相对转动,转动槽217设为贯穿第一转台21的边缘到另一第三凹槽215,可使得转动时结构不会发生干涉,能使得第一表面P1和第三表面P2能贴合。在垂直于第三表面P2的方向上,转动槽217仅贯穿第三表面P2到另一第三凹槽215的底部表面,而不贯穿第一转台21背向第三表面P2的表面,使得第一转台21转动至第三表面P2与第一表面P1贴合时形成完整统一的外观,此外,第一转台21转动至完全展开时,延伸段217还可与第一转台21的未贯穿的部分结构抵持,以限定第一转台21和第一壳体11的相对位置。
所述第一表面P1上设有卡接槽,所述第三表面P2上设有卡接突起,所述卡接突起用于与所述卡接槽配合,以使所述第一转台21转动至所述第三表面P2与所述第一表面P1贴合时,所述卡接突起与所述卡接槽卡接,以固定所述第一 转台21。所述卡接槽设置多个,且多个所述卡接槽的形状不全相同,所述卡接突起也设置为多个且与所述卡接槽对应,以加强固定所述第一转台21的效果。
具体的,以图4所示的一种实施例的卡接槽和卡件突起为4个为例说明,卡接槽包括依次间隔设置的第一卡接槽H1、第二卡接槽H2、第三卡接槽H3和第四卡接槽H4,对应的卡接突起包括第一卡接突起S1、第二卡接突起S2、第三卡接突起S3和第四卡接突起S4,第一卡接槽H1和第三卡接槽H3的形状和延伸方向相同,第二卡接槽H2和第四卡接槽H4的形状和延伸方向相同,第一卡接槽H1和第二卡接槽H2分别位于第一表面P1上的触头的两侧上方,且两者的延伸方向不相同,第三卡接槽H3和第四卡接槽H4类似的也为延伸方向不相同,形成交错排列的多个卡接槽的结构,与之对应的,第一卡接突起S1至第四卡接突起S4也具有交错排列的结构,如此设置,除便于制造外,还使得多个卡接突起和多个卡接槽的配合更紧密,形成的卡接结构更稳定。当然,在其他实施例中,卡接槽及卡接突起的数量可以不限制为4个,且形状可以各不相同。通过卡接槽及卡接突起的配合,卡接突起的外壁和卡件槽的内壁形成摩擦力,可以使得第一转台21和第二转台22可以临时被限定位置,形成一定的预紧力,当需要打开第一转台21和第二转台22时,需用力掰开才能打开,避免第一转台21和第二转台22没有限制而随意转动,造成损坏。
请参照图4,并结合图1和图2,所述第一壳体11包括第一主体板112、第一侧板111和第二侧板113,所述第一侧板111和所述第二侧板113相对的设置在所述第一主体板112的两端,所述第一表面P1位于所述第一主体板112上,所述第一凹槽13位于所述第一主体板112上背向所述第一表面P1的表面,所述第一侧板111、所述第二侧板113和所述第一主体板113围合形成收纳空间,以使所述第一转台21转动后被收纳在所述收纳空间内。
第一侧板111、第二侧板113和第一主体板112均可以为平板,第一侧板111和第二侧板113的延伸方向可以与第一主体板112平行,即第一侧板111与第一主体板112垂直,第二侧板113与第一主体板112垂直。第一侧板111和第二侧板113的一端与第一主体板112连接,另一端突出于第一表面P1方向,突出的尺寸与第一转台21的垂直于第三表面P2方向上的尺寸对应相同,使得第一转台21收纳后,第一转台21的第三表面P2与第一主体板112上的第一表面P1贴合,且第一转台21背向第三表面P2的表面与第一侧板111和第三侧板 113远离第一主体板112的一端平齐,形成完整统一的外观。第二壳体12与第一壳体11类似的,具有第三侧板121、第四侧板123和第二主体板122,其结构参照第一侧板111、第二侧板113和第一主体板112即可,不再赘述。
进一步的,所述第一侧板111或所述第二侧板113上设有第一连接孔118,所述第一转台21上设有第二连接孔216,所述第一连接孔118和所述第二连接孔216用于与第一连接件(图未示)配合连接,以固定所述第一转台21在所述收纳空间内。本实施例的第一连接孔118和/或第二连接孔216可以为螺孔,第一连接件可以为螺钉,当充电盒使用完毕,需要将第一转台21收纳时,转动第一转台21至第一侧板111、第二侧板113和第一主体板112形成的收纳空间内,第一连接孔118和第二连接孔216的位置对应,将第一连接件旋入第一连接孔118和第二连接孔216内,将第一转台21固定,使得充电盒整体结构紧凑且稳定,便于携带和运输。相对于通过卡件槽和卡件突起的摩擦力的配合固定方式,本实施例的第一连接件与第一连接孔118和第二连接孔216的配合,使得第一转台21完全的被限定位置,当需要打开第一转台21时,需先退出第一连接件,再用力掰开第一转台21和第一壳体11的卡接突起和卡接槽的配合连接。
请参考图1,并结合图4,所述第一转台21上设有第四凹槽211,在垂直于所述第三表面P2的方向上,所述第四凹槽211贯穿所述第一转台21,所述第四凹槽211的位置与所述第二凹槽33对应。由于第二凹槽33用于容纳电源线的接头32,为了提供取出接头32的空间,第二凹槽33设置为至少部分贯穿第一壳体11和第二壳体12,而为了使得第一转台21收纳后也具有取出接头32的空间,因此,设置第四凹槽211并与第二凹槽33位置对应。第二转台22上也可设置有与第四凹槽211类似的第五凹槽221,同时从第一转台21和第二转台22两边都有取出接头32的空间。
关于充电盒,还有以下一些特征需要说明:
1、在第一转台21背向第三表面P2的表面设置软性突起212,软性突起212可设置为多个,多个软性突起212在该表面上均匀布置,使得第一转台21展开后与桌面接触的是软性突起212,既可避免对第一转台21造成磨损,还可增大摩擦力,具有防滑效果。软性突起212的材质可以为橡胶。第二转台22与第一转台21结构类似,也设有相似的软性突起。
2、在第一转台21上还设有便于掰开第一转台21的横条突起213,横条突 起213的延伸方向与第一转台21的延伸方向相同,横条突起213设置于第一转台21远离转动位置的一侧外表面,横条突起213用于增大掰开第一转台21时的摩擦力,使得掰开第一转台21的操作更容易。与第一转台21类似的,第二转台22上也设有对应的横条突起223。
以上所揭露的仅为本发明实施例几种实施方式而已,当然不能以此来限定本发明之权利范围,本领域普通技术人员可以理解实现上述实施方式的全部或部分流程,并依本发明权利要求所作的等同变化,仍属于发明所涵盖的范围。
Claims (22)
- 一种充电盒,其特征在于,包括第一壳体、第二壳体和电源线,所述第一壳体和所述第二壳体相连接,并于连接处形成第一凹槽,所述第一凹槽环绕设置在所述第一壳体和所述第二壳体相对的表面,所述第一壳体内设有第一电路模块,所述第二壳体内设有第二电路模块,所述电源线自所述第一壳体或所述第二壳体内引出,并与所述第一电路模块和所述第二电路模块电连接,所述第一凹槽用于将所述电源线收纳在所述第一凹槽的空间内,所述第一电路模块和所述第二电路模块用于为电连接在所述充电盒上的电池充电。
- 如权利要求1所述的充电盒,其特征在于,所述第一凹槽环绕所述第一壳体和所述第二壳体一周设置,所述第一壳体与所述第二壳体相对的表面设有第一容纳部,所述第二壳体与所述第一壳体相对的表面设有第二容纳部,所述第一容纳部和所述第二容纳部共同形成所述第一凹槽,所述第一容纳部或所述第二容纳部设有贯穿所述第一壳体或所述第二壳体内外表面的通孔,所述电源线穿过所述通孔从所述第一壳体或所述第二壳体内引出。
- 如权利要求2所述的充电盒,其特征在于,所述第一壳体和所述第二壳体相对的表面之间通过连接件连接,所述第一容纳部设于所述第一壳体之靠近所述连接件端部的位置,所述第二容纳部设于所述第二壳体之靠近所述连接件端部的位置,所述连接件的端部与所述第一壳体及所述第二壳体相对的表面围合形成所述第一凹槽;或所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一壳体和所述第二壳体相对的表面的端部位置切除部分材料以分别形成所述第一容纳部和所述第二容纳部,使得所述第一容纳部和所述第二容纳部的壁厚小于所述第一壳体和所述第二壳体相对的一侧的侧壁的壁厚;或所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一容纳部和所述第二容纳部为所述第一壳体及所述第二壳体弯折形成,所述第一容纳部和所述第二容纳部间隔设置;或所述第一壳体和所述第二壳体相对的表面上设有相互配合的第一插接件和第二插接件,所述第一容纳部和所述第二容纳部自所述第一壳体和所述第二壳体外壁向内延伸而成,所述第 一插接件设于所述第一容纳部远离所述第一壳体外壁的一端,及所述第二插接件设于所述第二容纳部远离所述第二壳体外壁的一端,所述第一容纳部、所述第二容纳部、所述第一插接件和/或所述第二插接件共同围合形成所述第一凹槽。
- 如权利要求1所述的充电盒,其特征在于,所述电源线包括线体和接头,所述线体自所述第一壳体或所述第二壳体内引出,所述接头连接在所述线体远离所述第一壳体或所述第二壳体的一端,所述第一壳体和所述第二壳体相对的表面还设有第二凹槽,所述第二凹槽的与所述第一凹槽相连通,以使所述第二凹槽与所述第一凹槽共同形成一环形的凹槽,所述第二凹槽的深度比所述第一凹槽更深,所述第二凹槽用于容纳所述接头。
- 如权利要求4所述的充电盒,其特征在于,所述第一凹槽环绕一周形成一个平面,在垂直于所述第一凹槽所在平面的方向,所述第二凹槽至少部分贯穿所述第一壳体和所述第二壳体,以提供取出所述接头的空间。
- 如权利要求1至5任一项所述的充电盒,其特征在于,所述充电盒还包括第一转台和第二转台,所述第一转台转动连接在所述第一壳体背向所述第二壳体的第一表面,所述第二转台转动连接在所述第二壳体背向所述第一壳体的第二表面,所述第一转台设有第三表面,所述第二转台设有第四表面,所述第三表面与所述第一表面相对,所述第四表面与所述第二表面相对,所述第一表面或所述第三表面,及所述第二表面或所述第四表面设有触头,所述触头用于与电池插接,以为所述电池充电。
- 如权利要求6所述的充电盒,其特征在于,所述第一表面上设有所述触头,所述第三表面设有第三凹槽,所述第三凹槽的尺寸与所述触头对应,所述第一转台转动至与所述第一表面与所述第三表面贴合时,所述触头容纳于所述第三凹槽内。
- 如权利要求7所述的充电盒,其特征在于,所述第一表面上设置有突出的延伸段,所述第一转台上设有对应的转动槽,所述转动槽贯穿所述第一转台的边缘到所述第三凹槽,所述延伸段伸入所述转动槽内,形成转动连接结构。
- 如权利要求7所述的充电盒,其特征在于,所述第一表面上设有卡接 槽,所述第三表面上设有卡接突起,所述卡接突起用于与所述卡接槽配合,以使所述第一转台转动至所述第三表面与所述第一表面贴合时,所述卡接突起与所述卡接槽卡接,以固定所述第一转台。
- 如权利要求6所述的充电盒,其特征在于,所述第一壳体包括第一主体板、第一侧板和第二侧板,所述第一侧板和所述第二侧板相对的设置在所述第一主体板的两端,所述第一表面位于所述第一主体板上,所述第一凹槽位于所述第一主体板上背向所述第一表面的表面,所述第一侧板、所述第二侧板和所述第一主体板围合形成收纳空间,以使所述第一转台转动后被收纳在所述收纳空间内。
- 如权利要求10所述的充电盒,其特征在于,所述第一侧板或所述第二侧板上设有第一连接孔,所述第一转台上设有第二连接孔,所述第一连接孔和所述第二连接孔用于与第一连接件配合连接,以固定所述第一转台在所述收纳空间内。
- 一种充电装置,其特征在于,包括充电器和充电盒,所述充电盒包括第一壳体、第二壳体和电源线,所述第一壳体和所述第二壳体相连接,并于连接处形成第一凹槽,所述第一凹槽环绕设置在所述第一壳体和所述第二壳体相对的表面,所述第一壳体内设有第一电路模块,所述第二壳体内设有第二电路模块,所述电源线自所述第一壳体或所述第二壳体内引出,并与所述第一电路模块和所述第二电路模块电连接,所述第一凹槽用于将所述电源线收纳在所述第一凹槽的空间内,所述第一电路模块和所述第二电路模块用于为电连接在所述充电盒上的电池充电;所述充电器与所述充电盒的电源线连接,所述充电器用于与电源连接,并将交流电转换为直流电提供给所述充电盒。
- 如权利要求12所述的充电装置,其特征在于,所述第一凹槽环绕所述第一壳体和所述第二壳体一周设置,所述第一壳体与所述第二壳体相对的表面设有第一容纳部,所述第二壳体与所述第一壳体相对的表面设有第二容纳部,所述第一容纳部和所述第二容纳部共同形成所述第一凹槽,所述第一容纳部或所述第二容纳部设有贯穿所述第一壳体或所述第二壳体内外表面的通孔,所述电源线穿过所述通孔从所述第一壳体或所述第二壳体内引出。
- 如权利要求12所述的充电装置,其特征在于,所述第一壳体和所述第二壳体相对的表面之间通过连接件连接,所述第一容纳部设于所述第一壳体之靠近所述连接件端部的位置,所述第二容纳部设于所述第二壳体之靠近所述连接件端部的位置,所述连接件的端部与所述第一壳体及所述第二壳体相对的表面围合形成所述第一凹槽;或所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一壳体和所述第二壳体相对的表面的端部位置切除部分材料以分别形成所述第一容纳部和所述第二容纳部,使得所述第一容纳部和所述第二容纳部的壁厚小于所述第一壳体和所述第二壳体相对的一侧的侧壁的壁厚;或所述第一壳体和所述第二壳体相对的表面至少部分贴合,所述第一容纳部和所述第二容纳部为所述第一壳体及所述第二壳体弯折形成,所述第一容纳部和所述第二容纳部间隔设置;或所述第一壳体和所述第二壳体相对的表面上设有相互配合的第一插接件和第二插接件,所述第一容纳部和所述第二容纳部自所述第一壳体和所述第二壳体外壁向内延伸而成,所述第一插接件设于所述第一容纳部远离所述第一壳体外壁的一端,及所述第二插接件设于所述第二容纳部远离所述第二壳体外壁的一端,所述第一容纳部、所述第二容纳部、所述第一插接件和/或所述第二插接件共同围合形成所述第一凹槽。
- 如权利要求12所述的充电装置,其特征在于,所述电源线包括线体和接头,所述线体自所述第一壳体或所述第二壳体内引出,所述接头连接在所述线体远离所述第一壳体或所述第二壳体的一端,所述第一壳体和所述第二壳体相对的表面还设有第二凹槽,所述第二凹槽的与所述第一凹槽相连通,以使所述第二凹槽与所述第一凹槽共同形成一环形的凹槽,所述第二凹槽的深度比所述第一凹槽更深,所述第二凹槽用于容纳所述接头。
- 如权利要求15所述的充电装置,其特征在于,所述第一凹槽环绕一周形成一个平面,在垂直于所述第一凹槽所在平面的方向,所述第二凹槽至少部分贯穿所述第一壳体和所述第二壳体,以提供取出所述接头的空间。
- 如权利要求12至16任一项所述的充电装置,其特征在于,所述充电盒还包括第一转台和第二转台,所述第一转台转动连接在所述第一壳体背向所述第二壳体的第一表面,所述第二转台转动连接在所述第二壳体背向所 述第一壳体的第二表面,所述第一转台设有第三表面,所述第二转台设有第四表面,所述第三表面与所述第一表面相对,所述第四表面与所述第二表面相对,所述第一表面或所述第三表面,及所述第二表面或所述第四表面设有触头,所述触头用于与电池插接,以为所述电池充电。
- 如权利要求17所述的充电装置,其特征在于,所述第一表面上设有所述触头,所述第三表面设有第三凹槽,所述第三凹槽的尺寸与所述触头对应,所述第一转台转动至与所述第一表面与所述第三表面贴合时,所述触头容纳于所述第三凹槽内。
- 如权利要求18所述的充电装置,其特征在于,所述第一表面上设置有突出的延伸段,所述第一转台上设有对应的转动槽,所述转动槽贯穿所述第一转台的边缘到所述第三凹槽,所述延伸段伸入所述转动槽内,形成转动连接结构。
- 如权利要求18所述的充电装置,其特征在于,所述第一表面上设有卡接槽,所述第三表面上设有卡接突起,所述卡接突起用于与所述卡接槽配合,以使所述第一转台转动至所述第三表面与所述第一表面贴合时,所述卡接突起与所述卡接槽卡接,以固定所述第一转台。
- 如权利要求17所述的充电装置,其特征在于,所述第一壳体包括第一主体板、第一侧板和第二侧板,所述第一侧板和所述第二侧板相对的设置在所述第一主体板的两端,所述第一表面位于所述第一主体板上,所述第一凹槽位于所述第一主体板上背向所述第一表面的表面,所述第一侧板、所述第二侧板和所述第一主体板围合形成收纳空间,以使所述第一转台转动后被收纳在所述收纳空间内。
- 如权利要求21所述的充电装置,其特征在于,所述第一侧板或所述第二侧板上设有第一连接孔,所述第一转台上设有第二连接孔,所述第一连接孔和所述第二连接孔用于与第一连接件配合连接,以固定所述第一转台在所述收纳空间内。
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CN116505622B (zh) * | 2023-06-26 | 2023-08-25 | 深圳市优品文创科技有限公司 | 一种可拆卸式3c数码设备电源模块 |
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CN204118391U (zh) * | 2014-07-01 | 2015-01-21 | 陕西科技大学 | 一种便携式多功能usb分线器 |
CN206983762U (zh) * | 2017-07-19 | 2018-02-09 | 深圳市大疆创新科技有限公司 | 充电连接器及充电装置 |
CN206992719U (zh) * | 2017-05-08 | 2018-02-09 | 李永伟 | 耳机充电盒 |
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CN204118391U (zh) * | 2014-07-01 | 2015-01-21 | 陕西科技大学 | 一种便携式多功能usb分线器 |
CN206992719U (zh) * | 2017-05-08 | 2018-02-09 | 李永伟 | 耳机充电盒 |
CN206983762U (zh) * | 2017-07-19 | 2018-02-09 | 深圳市大疆创新科技有限公司 | 充电连接器及充电装置 |
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