ELECTRIC VEHICLE CHARGING SYSTEM
20220379757 ยท 2022-12-01
Assignee
Inventors
Cpc classification
Y02T90/16
GENERAL 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
H02J7/0048
ELECTRICITY
B60L53/18
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/70
GENERAL 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
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
B60L53/665
PERFORMING OPERATIONS; TRANSPORTING
B60L53/31
PERFORMING OPERATIONS; TRANSPORTING
B60L53/16
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/12
GENERAL 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
B60L53/62
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/14
GENERAL 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
Y02T10/7072
GENERAL 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
International classification
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
B60L53/16
PERFORMING OPERATIONS; TRANSPORTING
B60L53/18
PERFORMING OPERATIONS; TRANSPORTING
B60L53/31
PERFORMING OPERATIONS; TRANSPORTING
B60L53/62
PERFORMING OPERATIONS; TRANSPORTING
B60L53/66
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention includes a cable guide that guide a charging cable out of a rotating chamber; a rotating cylinder that is hollow inside and a form of bottom opened drum; a rotating disk, which has a fan shaped charging cable through hole and is formed from rotating cylinder's open bottom, that rotates the rotating cylinder; a fixed chamber located symmetrically below the rotating disk; a rotating support module, located under the center of the rotating disk, that rotates the rotating disk; a power module that provides torque to the rotation support module. The invention provides ease of shortening and lengthening depending on charging mode and standby mode.
Claims
1. A charging system for an electric vehicle comprising: a cylindrically shaped fixed chamber (100) wherein a driver can select charging amount and make a payment; a rotating chamber (200) installed on top of the fixed chamber (100) that rotates clockwise or counterclockwise in certain angle; a charging cable (300) that is connected to the fixed chamber (100) in one end, a charging socket (320) is installed on the other end and extracted through the rotating chamber (200), wherein, the rotating chamber (200) rotates in a direction to loosen the charging cable (300) in charging mode and rotates in reverse direction to wind up the charging cable (300).
2. The charging system of claim 1, wherein the fixed chamber (100) comprises: a touch screen (110) wherein a driver enters necessary information to charge electricity to a electric vehicle; a changing status indicator (120) shaped in ring displaying charging status in percent according to the driver's selection of either payment amount due or electricity charged; and a socket holding pocket wherein a charging socket is mounted and a charging socket lock sensor that senses the lock status of the charging socket.
3. The charging system of claim 1, wherein the rotating chamber comprises: a cable guide that guides the charging cable out of the rotating chamber; a rotating cylinder that is hollow inside and is a form of a bottom opened drum; a rotating disk which rotates the rotating cylinder above, and has a charging cable through hole, and formed as part of opened bottom; a fixed cylinder symmetrically located below the rotating disk; a rotating support module installed below the rotating disk in center and rotates the rotating disk; and a power module that transfers torque to the rotating support module.
4. The charging system of claim 3, wherein the rotating support module comprises: a center shaft, that is upright and supported by a support bracket, that supports the rotating disk; a main pulley, that is fitted outside of the center shaft and receiving torque from the power module, that rotates the rotating disk above; a support bearing, installed between the center shaft and the main pulley, that helps rotation of the main pulley fastened to the rotating disk; and a bearing cap that prevents foreign matters entry to the support bearing.
5. The charging system of claim 3, wherein the power module comprises: a motor & decelerator installed on a motor bracket which is on the support bracket; a first pulley that is connected to the axis of the motor & decelerator; and a power transfer belt that connects the first pulley and the main pulley.
6. The charging system of claim 3, wherein the rotating chamber comprises: a sensor dog that includes first sensor dog and second sensor dog; and a rotation sensor, that includes rotating direction detecting sensor and a reverse rotation detecting sensor, that stops rotation of the motor & decelerator in stand by mode and charging mode by detecting the first sensor dog and the second sensor dog that are each rotating and moving.
7. The charging system of claim 1, wherein the rotating chamber comprises; a cable guide that guides the charging cable out of the rotating chamber; a rotating cylinder that is hollow inside and is a form of a bottom opened drum; the fixed cylinder symmetrically located below the rotating cylinder; and the power module that transfers torque to inner surface of the fixed cylinder
8. The charging system of claim 7, wherein the rotating chamber comprises: an upper ring bracket formed from the rotating cylinder and a lower ring bracket formed from the fixed cylinder; and a rotation guide bearing, located between the upper ring bracket and the lower ring bracket, that supports rotation of the rotating cylinder.
9. The charging system of claim 8, wherein the power module comprises: a motor & decelerator fastened under an fan shaped extended bracket in which the extended bracket is formed from the lower ring bracket formed from the lower fixed cylinder; an internal belt that has gear teeth and installed inner surface of the rotating disk; a second pulley which has gear teeth on outer surface and connected to the motor & decelerator's axis, and that engages with the internal belt and transfer torque from the motor & decelerator to the internal belt; the fixed cylinder which has open space for engagement of the second pulley and the internal belt; and a clamp piece that has threads to fasten the internal belt to the rotating cylinder.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
[0015] The present invention may have various modifications and embodiments. Specific exemplary embodiments are described with figures. However, this is not to limit the present invention to a particular embodiment, it should be understood that this is to includes all modifications, equivalents and substitutions. While describing each figure, relevant references were used for relevant elements.
[0016] Terms such as first, second, A, B may be used to describe various elements, but the elements should not be limited by the above terms. The terms are used only for the purpose of distinguishing one element from other.
[0017] Hereinafter, the present invention, the charging system for electric vehicles are described in detail with figures.
[0018]
[0019] The fixed chamber (100) includes a touch screen (110), a charging status indicator (120) and a socket holding pocket (130).
[0020] The touch screen (110) is a control screen for a driver to charge electricity to an electric vehicle and with touch operations a driver can enter various information such as vehicle models, amount of electricity, payment amount and payment methods.
[0021] The fixed chamber (100) receives unit cost for vehicle models, unit cost for electricity amount via external communication per day or per week and displays calculated payment due on the touch screen (110) according to the driver's amount choices.
[0022] The charging status indicator (120), formed in a ring shape, displays charging status in percent showing how much electricity charged or payment amount due depending on a driver's selected amount.
[0023] The socket holding pocket (130) is to lock the charging socket (32), which is an end of the charging cable (300) that connected to the rotating chamber (200). The charging socket lock sensor (131) detects whether the charging socket is locked and may display its status to the touch screen (110).
[0024] The rotating chamber (200), which is above the fixed chamber (200) and connected to the changing cable (300), rotates clockwise or counterclockwise in an angle depending on charging status or standby mode.
[0025] The charging cable (300), which is connected to the rotating chamber (200) on one end and has a charging socket (320) on the other end that engages with charging prong directly, is to be locked with the socket holding pocket (320).
[0026] Looking more closely at the rotating chamber (200), as shown in
[0027] The cable guide (210) guides the charging cable (300) out from the fix chamber (100) to the rotating chamber (200).
[0028] The rotating cylinder (220), which is hollow inside and a form of a bottom opened drum, provides enough space for the charging cable (300) to move when the rotating chamber (200) rotates.
[0029] The rotating disk (230), which is opened bottom of the rotating cylinder, rotates the rotating cylinder (220) above.
[0030] The rotating disk (230) has a fan shaped charging cable through hole.
[0031] A fixed cylinder (280) is located under the rotating disk (230) symmetrically.
[0032] The fixed cylinder (280) is attached to the top of the fixed chamber (100) and the charging cable holding bracket (281) is located in between.
[0033] The charging cable holding bracket (281) is in the fixed chamber (100) with enough distance from the rotating chamber (200) so that the charging cable which has rigidity can maintain minimum curvature.
[0034] That is, from the fixed chamber (100), the charging cable (300) gets through the charging cable holding bracket (281), then through the charging cable through hole (231), then guided outside via the cable guide (210). The charging cable through hole (231) provides a space for the moving charging cable when the rotating disk rotates in certain angle. Undescribed lateral holes in the rotating disk (230) are for reducing the weight of the rotating chamber.
[0035] The rotating support module (240) in
[0036] More specifically, the rotating support module (240) includes the center shaft (241) which supports the rotating disk (230) and is installed on the support bracket (245); the main pulley (244) which is fitted outside of the center shaft (241), has gear teeth on outer surface, and receives torque from the power module (250), rotates the rotating disk attached on top; the support bearing (242), fitted between the center shaft (241) and the main pulley (244), which ensures robust rotations of the main pulley (244) which attached to the rotating disk (230); and the bearing cap (243) which binds the support bearing (242) axially and prevents foreign matters entry to prevent decreasing torque and noise.
[0037] The power module (250) installed on the support bracket (245) includes a motor & decelerator (251), the first pulley and the power transfer belt (253).
[0038] The motor & decelerator (251) generates torque to rotate the rotating chamber (200).
[0039] The motor & decelerator (251) is installed via the motor bracket (254) which is under the support bracket (245). The motor bracket (254) can control tension of the power transfer belt (253).
[0040] The first pulley (252) which has gear teeth on outer surface like the main pulley (244) is connected to the motor & decelerator's rotating axis.
[0041] The power transfer belt (253) has gear teeth on inner surface like a timing belt and are connected to the first pulley (252) and the main pulley (244), both of which are having gear teeth on outer surface. This configuration makes power to transfer from the first pulley (252) to the main pulley (244).
[0042] On the other hand, the sensor dog (260) includes the first sensor dog (261) and the second sensor dog (262). The rotation sensor (270) has a rotating direction detecting sensor (271) for detecting the first dog sensor (261), and a reverse rotation detecting sensor (272) for detecting the second dog sensor (262). The rotation sensor (270) detects rotation and produces rotation stop signals.
[0043] In another embodiment of the present invention, charging system for electric vehicle, which is the rotating chamber (200) installed on top of the fixed chamber (100) that rotates in certain angle is provided.
[0044] As shown in
[0045] As shown in
[0046] As shown in
[0047] The internal belt (255) has gear teeth and installed on inner surface of the rotating cylinder (220).
[0048] The second pulley (256), which has gear teeth on outer surface, is connected to the axis of the motor & decelerator (251) and engaged with the internal belt to transfer driving force to the rotating cylinder (220) from the motor & decelerator (251).
[0049] As shown in
[0050] When the clamp piece (257) fix, fasten the rotating cylinder (220) and the internal belt (255), they are engaged in a way that how bolts and nuts are engaged, in which the clamp piece has threads on outer surface; and the rotating cylinder (220) and the internal belt (255) have corresponding threads on inner surface of passing holes.
[0051] In particular, considering length of the clamp piece (257), fastening region with the internal belt (255) is located above the region in which the second pulley is engaged.
[0052] On the other hand, the fixed cylinder (280) is located inside of the rotating cylinder (220) in order to engage the internal belt (255) and the second pulley (256), and the fixed cylinder has open space in the region corresponding to the internal belt (255).
[0053] The inner space of the fixed cylinder (280) and the rotating cylinder (220) is empty for the charging cable's free movement.
[0054] This embodiment can ensure a much larger space than the previous embodiment described, which allows larger rotation angle when needed. This let the charging cable's pulling and lifting larger which strengthen the purpose of the invention.
[0055] The charging location detecting sensor (284) and the standby location detecting sensor (285), located on the fan shaped extended bracket (259) in the lower ring bracket (283) of the fixed cylinder (280), and a third sensor dog (263), installed on the second pulley (256), enable detection of rotating direction for charging and/or stand-by and production of stop signal was enabled
[0056] The present invention, charging system for electric vehicle described above has configuration that after certain operations at the touch screen (110) and the charging socket is disengaged from the socket holding pocket (130), the charging socket lock sensor (131) is activated; and without further signal or action, the power module (250) triggers the rotating chamber's (200) rotation.
[0057] When the rotating chamber (200) rotates a certain angle, the third sensor dog (263) installed on the second pulley (256) moves to the charging location detecting sensor (284) position, the Motor & decelerator (251) stops upon signal by the charging location detecting sensor (284) and rotates in the direction of charging; then stops continues operation for charging.
[0058] When the charging is completed and the driver mounts the charging socket (320) to the socket holding pocket (130), the charging socket lock sensor (131) triggers the rotating chamber (200) to reverse-rotate in certain angle, then the third sensor dog (263) is detected by the standby location detecting sensor. Then, the system becomes standby mode by stopping rotation.
[0059] Above description is only exemplary of the present invention, it should be understood by those of ordinary skill in the art that the above description of the present invention is exemplary, and the exemplary embodiments disclosed herein can be easily modified into other specific forms without departing from the technical spirit or essential features of the present invention. Therefore, the exemplary embodiments described above should be interpreted as illustrative and not limited in any aspect. The scope of the present invention should be interpreted by the following claims, technologies within the scope should be interpreted within the present invention.
REFERENCE NUMBER
[0060] 100: Fixed chamber
[0061] 110: Touch screen
[0062] 120: Charging status indicator
[0063] 130: Socket holding pocket
[0064] 131: Charging socket lock sensor
[0065] 200: Rotating chamber
[0066] 210: Cable guide
[0067] 220: Rotating cylinder
[0068] 221: Upper Ring bracket
[0069] 230: Rotating disk
[0070] 231: Charging cable through hole
[0071] 240: Rotating support module
[0072] 241: Center shaft
[0073] 242: Support bearing
[0074] 243: Bearing cap
[0075] 244: Main pulley
[0076] 245: Support bracket
[0077] 250: Power module
[0078] 251: Motor & Decelerator
[0079] 252: 1.sup.st pulley
[0080] 253: Power transfer belt
[0081] 254: Motor bracket
[0082] 255: Internal belt
[0083] 256: 2.sup.nd pulley
[0084] 257: Clamp piece
[0085] 258: Motor bracket
[0086] 259: Extended bracket
[0087] 260: Sensor dog
[0088] 261: 1.sup.st sensor dog
[0089] 262: 2.sup.nd sensor dog
[0090] 263: 3.sup.rd sensor dog
[0091] 270: Rotation sensor
[0092] 271: Rotating direction detecting sensor
[0093] 272: Reverse rotation detecting sensor
[0094] 280: Fixed cylinder
[0095] 281: Charging cable holding bracket
[0096] 282: Rotation guide bearing
[0097] 283: Lower ring bracket
[0098] 284: Charging location detecting sensor
[0099] 285: Stand by location detecting sensor
[0100] 300: Charging cable
[0101] 320: Charging socket