ENERGY STORAGE DEVICE
20180012707 ยท 2018-01-11
Inventors
Cpc classification
H01G11/10
ELECTRICITY
H01G4/40
ELECTRICITY
H01G11/08
ELECTRICITY
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
Y02E60/10
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
Y02E60/13
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
H01G11/76
ELECTRICITY
International classification
Abstract
An energy storage device includes: an external terminal having any one of positive and negative polarities and including a protrusion and a first terminal; a case having a polarity opposite to the external terminal and including an extension; a substrate disposed to surround an outer circumference of the protrusion of the external terminal through a hole formed at a center thereof; and a connection member located at an upper surface of the substrate and coupled to the first terminal of the external terminal, wherein the first terminal and the substrate are connected by means of the connection member, and the extension is connected to the substrate. Since positive and negative electrodes of the energy storage device are electrically connected to a substrate having a cell balancing function without a harness or any other member, it is possible to improve the economic feasibility and productivity of the energy storage device module.
Claims
1. An energy storage device comprising: an external terminal having any one of positive and negative polarities and including a protrusion and a first terminal; a case having a polarity opposite to the external terminal and including an extension; a substrate disposed to surround an outer circumference of the protrusion of the external terminal through a hole formed at a center thereof; and a connection member located at an upper surface of the substrate and coupled to the first terminal of the external terminal, wherein the first terminal and the substrate are connected by means of the connection member, and the extension is connected to the substrate.
2. The energy storage device according to claim 1, further comprising a support member located between the substrate and the external terminal to support the substrate.
3. The energy storage device according to claim 1, further comprising an insulation member installed between an upper surface of the external terminal and the extension to prevent the external terminal and the extension from being electrically connected.
4. The energy storage device according to claim 1, wherein the substrate includes a cell balancing circuit for controlling a voltage of the energy storage device.
5. The energy storage device according to claim 1, wherein the connection member is connected to the first terminal to provide any one of a negative current and a positive current to the substrate, and wherein the extension provides a current with a polarity different from the connection member to the substrate.
6. The energy storage device according to claim 5, wherein the extension presses a part of an upper surface of the external terminal to fix the external terminal to the inside of the case.
7. The energy storage device according to claim 1, wherein the case further includes a second terminal, and wherein the connection member connects the first terminal of any one energy storage device and the second terminal of another energy storage device.
8. The energy storage device according to claim 1, wherein the hole formed at the center of the substrate has a diameter greater than a diameter of the protrusion and smaller than a diameter of the connection member.
9. The energy storage device according to claim 1, wherein the energy storage device is a high capacitance storage device.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE INVENTION
[0029] Hereinafter, preferred embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. Prior to the description, it should be understood that the terms used in the specification and the appended claims should not be construed as limited to general and dictionary meanings, but interpreted based on the meanings and concepts corresponding to technical aspects of the present disclosure on the basis of the principle that the inventor is allowed to define terms appropriately for the best explanation. Therefore, the description proposed herein is just a preferable example for the purpose of illustrations only, not intended to limit the scope of the disclosure, so it should be understood that other equivalents and modifications could be made thereto without departing from the scope of the disclosure.
[0030] In the drawings, each component or a specific portion of each component is depicted in an exaggerated, excluded or simplified state for the convenience of understanding and clarity. Therefore, the size of each component may not fully reflect an actual size. Also, any explanation of the prior art known to relate to the present invention may be omitted if it is regarded to render the subject matter of the present invention vague.
[0031]
[0032] Referring to
[0033] The energy storage device 10 is a device in which electric energy is stored, and may adopt a high capacitance storage device or various other devices. Hereinafter, the energy storage device module 1 according to an embodiment of the present disclosure will be described based on a case where the energy storage device 10 is a high capacitance storage device, for convenience in explanation.
[0034] The number of energy storage devices 10 is not particularly limited, and at least two energy storage devices 10 may be provided. If a plurality of energy storage devices 10 are provided, as shown in
[0035] The energy storage device 10 includes a bare cell 11 composed of an anode, a cathode, a separator and an electrolyte, a first internal terminal 12 coupled to one side of the bare cell 11 and electrically connected to a negative electrode of the bare cell 11, a second internal terminal 13 coupled to the other side of the bare cell 11 and electrically connected to a positive electrode of the bare cell 11, an external terminal 14 electrically connected to the first internal terminal 12 and coupled to the outer side of the first internal terminal 12 so that at least a portion of the external terminal 14 is exposed out of the case 30, and a case 30 electrically connected to the second internal terminal 13. The external terminal 14 includes a protrusion 15 protruding from an upper surface thereof, and a first terminal 16 provided at an upper surface of the of the protrusion 15, having a thread formed along an outer circumference thereof and connecting any energy storage device to another energy storage device.
[0036] Since the first internal terminal 12 is electrically connected to the negative electrode of the bare cell 11, the first internal terminal 12 as well as the external terminal 14 and the first terminal 16 electrically connected to the first internal terminal 12 have a negative polarity, respectively. Also, since the second internal terminal 13 is electrically connected to the positive electrode of the bare cell 11, the second internal terminal 13 and the case 30 electrically connected to the second internal terminal 13 have a positive polarity. The case 30 includes the second terminal 33 protruding from a lower surface thereof to form a thread along an outer circumference and connecting adjacent energy storage devices 10. At least a portion of the case 30 is made of a conductive material, and the case 30 is forms an appearance of the energy storage device 10. Also, the case 30 is installed to surround at least a portion of the energy storage device 10. Therefore, if the substrate 30 is connected to external terminal 14, the substrate 20 receives a negative current from the external terminal 14, and if the substrate 20 is connected to the case 30, the substrate 20 receives a positive current from the case 30.
[0037]
[0038] The case 30 is at least partially made of a conductive material and is installed to surround at least a portion of the energy storage device 10 to form an appearance of the energy storage device 10. As shown in
[0039] As shown in
[0040] Since the case body 31 is electrically connected to the second internal terminal 13 having a positive polarity, the case body 31, the extension 32 extending from the case body 31, and the second terminal 33 protruding from the case body 31 have a positive polarity, respectively. Therefore, a positive current flows at the case 30.
[0041] The second terminal 33 is formed to protrude from the lower portion of the case body 31 and has a positive polarity. The second terminal 33 is connected to the first terminal 16 of another energy storage device 10 by means of the connection member 50. As shown in
[0042] In the present disclosure, it is described that the external terminal 14 has a negative polarity and the case 300 has a positive polarity. However, it is also possible that the external terminal 14 has a positive polarity and the case 300 has a negative polarity, opposite to the above.
[0043] As shown in
[0044] The insulation member 40 is disposed between the extension 32 and the external terminal 14 to prevent the electrical connection between the extension 32 and the external terminal 14. As the extension 32 is provided as above, the substrate 20 is connected to the positive electrode through the extension 32 having a positive polarity. If so, the substrate 20 may be connected to the positive electrode of the energy storage device 10 without any harness and connector member, thereby reducing the cost required for preparing the harness and connector member. Accordingly, the energy storage device module 1 according to the embodiment of the present disclosure may have enhanced market competitiveness and enhanced productivity since a manufacturing process for connecting the harness and the connector member to the substrate may be excluded.
[0045]
[0046] As shown in
[0047] The substrate 20 is installed to surround the outer circumference of the protrusion 15 of the external terminal 14. The lower surface of the substrate 20 is contacted and supported by a center 35 of the extension 32 and electrically connected to the case 30 with a positive polarity. The upper surface of the substrate 20 contacts the lower surface of the connection member 50 and is electrically connected to the first terminal 16 having a negative polarity.
[0048] A hole 22 having a diameter (l.sub.4) greater than the diameter (l.sub.1) of the protrusion 15 of the external terminal 14 is formed at the center of the substrate 20 so that the substrate 20 is installed to surround the outer circumference of the protrusion 15 of the external terminal 14. In addition, the hole 22 is formed to be smaller than the diameter (l.sub.5) of the connection member 50 so that the substrate 20 may contact the connection member 50.
[0049] The substrate 20 is formed to have a diameter smaller than the diameter of the energy storage device 10 in order to avoid any interference with an adjacent energy storage device when the energy storage device 10 is modularized. Here, the modularization of the energy storage device 10 means that a plurality of energy storages 10 are electrically connected.
[0050] A support member 60 may be positioned between the substrate 20 and the external terminal 14 to support the center of the substrate 20 in order to prevent the center of the substrate 20 from bending toward the energy storage device 10. As shown in
[0051] Next, the connection member 50 is made of a conductive material and electrically connects any one energy storage device 10a to another energy storage device 10b. As shown in
[0052] Also, the connection member 50 has a diameter greater than the diameter (l.sub.1) of the hole 22 of the substrate 20. Thus, as shown in
[0053]
[0054] A basic configuration of an energy storage module 2 according to this embodiment of the present disclosure is identical to that of the energy storage device module 10 according to the former embodiment of the present disclosure described above, but the energy storage module 2 according to this embodiment differs from the energy storage module 1 according to the former embodiment of the present disclosure in view of the arrangement and connection way of the energy storage device 10. Hereinafter, the same components as those of the energy storage device module 1 according to the former embodiment of the present disclosure will be described using the same reference numerals for convenience of explanation.
[0055] As shown in
[0056] In order to electrically connect the first terminal 16 of any one energy storage device 10a and the second terminal 33 of another energy storage device 10b, as shown in
[0057] As shown in
[0058] In addition, as shown in
[0059] The present disclosure has been described in detail. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the disclosure, are given by way of illustration only, since various changes and modifications within the scope of the disclosure will become apparent to those skilled in the art from this detailed description.