Battery pack
Patent Information
- Application Number
- PCT/KR2025/002867
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-03-07
- Filing Date
- 2025-03-04
- Publication Date
- 2025-10-02
AI Technical Summary
Existing battery packs face challenges in ensuring safety and maximizing space utilization due to venting devices that occupy valuable space within the pack frame, limiting the installation location and number of valve structures.
A venting device is designed to be entirely accommodated within the venting passage of the pack frame, featuring a base plate, an opening/closing cover, and a spring mechanism that switches between closed and open states based on pressure, allowing gas release without occupying the accommodation space.
The solution enhances safety by effectively releasing pressure while maintaining space utilization and energy density by allowing flexible installation without space constraints.
Smart Images

Figure KR2025002867_02102025_PF_FP_ABST
Abstract
Description
battery pack
[0001] The present invention relates to a battery pack, and more particularly, to a battery pack including a venting device.
[0002] This application claims the benefit of priority from Republic of Korea Patent Application No. 10-2024-0032552, filed on March 7, 2024, and all contents of the document in that Republic of Korea Patent Application are incorporated herein by reference.
[0003] Unlike primary batteries, secondary batteries can be charged and discharged multiple times. They are widely used as a power source for various wireless devices, including handsets, laptops, and cordless vacuum cleaners. Recently, improved energy density and economies of scale have dramatically reduced the per-unit manufacturing cost of secondary batteries. Furthermore, as the range of battery electric vehicles (BEVs) has increased to match that of fuel-powered vehicles, the primary use of secondary batteries is shifting from mobile devices to mobility.
[0004] As secondary batteries become increasingly used in mobility, demand for their safety is increasing. Fires and other accidents involving secondary batteries used in mobility vehicles can endanger the lives of drivers, making research into technologies that enhance secondary battery safety essential.
[0005] The technical problem to be solved by the present invention is to provide a battery pack including a venting device.
[0006] In order to solve the above-described problem, the technical idea of the present invention provides a battery pack including: a pack frame having an accommodation space; a battery cell assembly accommodated in the accommodation space of the pack frame and including a battery cell; and a venting device mounted on the pack frame and configured to open and close an internal passage according to a pressure in the accommodation space of the pack frame; wherein the venting device is entirely accommodated within a venting passage of the pack frame provided between an inner wall and an outer wall of the pack frame.
[0007] In exemplary embodiments, the venting device is characterized by including: a base plate mounted on the inner wall of the pack frame and having a passage communicating with a through hole in the inner wall of the pack frame; an opening / closing cover configured to open / close the passage of the base plate; a spring providing a restoring force to the opening / closing cover so that the opening / closing cover closes the passage of the base plate; and a cap body fixed to the base plate and supporting the spring.
[0008] In exemplary embodiments, the opening / closing cover is configured to move between a closed position that closes the passage of the base plate and an open position that opens the passage of the base plate, wherein the closed position of the opening / closing cover is closer to the inner wall than the open position of the opening / closing cover, and wherein the spring is configured to urge the opening / closing cover in a direction from the outer wall toward the inner wall.
[0009] In exemplary embodiments, when the opening / closing cover is in the closed position, the spring is characterized in that it does not penetrate the receiving space of the pack frame.
[0010] In exemplary embodiments, one end of the spring is in contact with the cap body, and the other end of the spring is in contact with the opening / closing cover.
[0011] In exemplary embodiments, the cap body is characterized by including a protrusion supporting the spring.
[0012] In exemplary embodiments, the pack frame further comprises a fastening bolt coupled to the inner wall of the pack frame and including a protrusion protruding from the inner wall of the pack frame in a direction from the inner wall of the pack frame toward the outer wall of the pack frame; and a nut fitted into the protrusion of the fastening bolt; wherein the base plate includes a fastening hole into which the protrusion of the fastening bolt is inserted, and the base plate is characterized in that the nut is fixed to the inner wall of the pack frame by fitting the protrusion of the fastening bolt.
[0013] In exemplary embodiments, the base plate is characterized in that it is in close contact with the surface of the inner wall of the pack frame facing the outer wall of the pack frame.
[0014] In exemplary embodiments, the outer wall of the pack frame is characterized by including a through hole that communicates the venting passage of the pack frame with an external space outside the pack frame.
[0015] In exemplary embodiments, the venting device is characterized in that it is exposed to the outside through the through hole in the outer wall of the pack frame.
[0016] In exemplary embodiments, the pack frame comprises a bottom frame supporting the battery cell assembly and a side frame on the bottom frame, wherein the venting device is mounted on the side frame.
[0017] In exemplary embodiments, the pack frame further comprises a pack lead coupled to the side frame to cover the battery cell assembly accommodated in the pack frame.
[0018] According to exemplary embodiments of the present invention, the venting device is mounted on the pack frame so as not to occupy the space of the pack frame that accommodates the battery cells, thereby improving the space utilization and energy density of the battery pack.
[0019] According to exemplary embodiments of the present invention, the venting device is mounted on the pack frame so as not to occupy a receiving space of the pack frame, so that the venting device can be mounted on various parts of the pack frame without being limited in the installation location and number of valve structures.
[0020] The effects that can be obtained from the exemplary embodiments of the present invention are not limited to the effects mentioned above, and other effects not mentioned can be clearly derived and understood by those skilled in the art to which the exemplary embodiments of the present disclosure pertain from the following description. In other words, unintended effects resulting from practicing the exemplary embodiments of the present disclosure can also be derived by those skilled in the art from the exemplary embodiments of the present disclosure.
[0021] FIG. 1 is a perspective view illustrating a battery pack according to exemplary embodiments of the present invention.
[0022] FIG. 2 is a side view illustrating a portion of a battery pack according to exemplary embodiments of the present invention.
[0023] FIG. 3 is a side view showing a venting device according to exemplary embodiments of the present invention.
[0024] Figure 4 is a cross-sectional view showing a battery pack with the venting device in a closed state.
[0025] Figure 5 is a cross-sectional view showing a battery pack with the venting device in an open state.
[0026] FIGS. 6A and 6B are cross-sectional views showing a method for manufacturing a battery pack according to exemplary embodiments of the present invention.
[0027] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the attached drawings. Prior to this, it should be noted that the terms and words used in this specification and claims should not be construed as limited to their conventional or dictionary meanings. Based on the principle that the inventor can appropriately define the concepts of terms to best explain his or her invention, they should be interpreted in a way that aligns with the technical spirit of the present invention.
[0028] Accordingly, the embodiments described in this specification and the configurations illustrated in the drawings are merely the most preferred embodiments of the present invention and do not represent all of the technical ideas of the present invention. Therefore, it should be understood that there may be various equivalents and modified examples that can replace them at the time of filing this application.
[0029] In addition, when describing the present invention, if it is determined that a detailed description of a related known configuration or function may obscure the gist of the present invention, the detailed description is omitted.
[0030] Since the embodiments of the present invention are provided to more fully explain the present invention to those skilled in the art, the shapes and sizes of components in the drawings may be exaggerated, omitted, or schematically illustrated for clearer explanation. Accordingly, the sizes and proportions of each component do not fully reflect the actual sizes or proportions.
[0031]
[0032] (Example 1)
[0033] FIG. 1 is a perspective view illustrating a battery pack (10) according to exemplary embodiments of the present invention. FIG. 2 is a side view illustrating a portion of a battery pack (10) according to exemplary embodiments of the present invention. FIG. 3 is a side view illustrating a venting device (100) according to exemplary embodiments of the present invention. FIG. 4 and FIG. 5 are cross-sectional views illustrating a portion of a battery pack (10) according to exemplary embodiments of the present invention, wherein FIG. 4 is a cross-sectional view illustrating a battery pack (10) with a venting device (100) in a closed state, and FIG. 5 is a cross-sectional view illustrating a battery pack (10) with a venting device (100) in an open state.
[0034] Referring to FIGS. 1 to 5, a battery pack (10) may include a pack frame (200), a pack lead (310), a battery cell assembly (400), and a venting device (100).
[0035] The pack frame (200) can provide a receiving space (291) in which a battery cell assembly (400) and various electrical components are received. The pack frame (200) can include a bottom frame (210) and a side frame (250). The bottom frame (210) and the side frames (250) can define a receiving space (291).
[0036] The floor frame (210) can support the battery cell assembly (400). The floor frame (210) can generally have a flat shape extending in a first horizontal direction (e.g., X direction) and a second horizontal direction (e.g., Y direction).
[0037] The side frame (250) may be disposed on an edge of the bottom frame (210) and may extend continuously along the edge of the bottom frame (210) to surround the battery cell assembly (400). For example, the side frame (250) may include a first segment and a second segment that are opposed in a first horizontal direction (e.g., an X-direction), and a third segment and a fourth segment that are opposed in a second horizontal direction (e.g., a Y-direction). The first segment of the side frame (250) may be at the front of the battery pack (10), and the second segment of the side frame (250) may be at the rear of the battery pack (10).
[0038] The side frame (250) and the bottom frame (210) of the pack frame (200) may each include an inner wall (261) and an outer wall (263). The inner wall (261) may define an accommodation space (291) of the pack frame (200). The outer wall (263) constitutes the exterior of the pack frame (200) and may be exposed to an external space (ES) outside the pack frame (200). The inner wall (261) and the outer wall (263) may be spaced apart from each other, and a space may be provided between the inner wall (261) and the outer wall (263). A venting passage (265) may be provided between the inner wall (261) and the outer wall (263) of the pack frame (200). The venting passage (265) guides the flow of gas within the pack frame (200) and may include a mounting space in which a venting device (100) is mounted.
[0039] A pack lid (310) may be coupled to the pack frame (200) to cover a battery cell assembly (400) accommodated in the pack frame (200). The pack lid (310) may cover the accommodation space (291) of the pack frame (200) so that the accommodation space (291) of the pack frame (200) is sealed. The pack lid (310) may be coupled to the top of the side frame (250). The pack lid (310) may generally have a flat shape extending in a first horizontal direction (e.g., X direction) and a second horizontal direction (e.g., Y direction).
[0040] A battery cell assembly (400) may be provided within a receiving space (291) of a pack frame (200). The battery cell assembly (400) may correspond to a battery module or a cell-to-pack structure. The battery pack (10) may include one or a plurality of battery cell assemblies (400). In exemplary embodiments, the battery pack (10) may include a plurality of battery cell assemblies (400) arranged in a first horizontal direction (e.g., X-direction) and / or a second horizontal direction (e.g., Y-direction).
[0041] A battery cell assembly (400) may include a plurality of battery cells. Each battery cell is a basic unit of a lithium ion battery, i.e., a secondary battery. Each battery cell may include an electrode assembly, an electrolyte, and a cell case. The electrode assembly built into the cell case may include a positive electrode, a negative electrode, and a separator interposed between the positive electrode and the negative electrode. The electrode assembly may be either a jelly-roll type or a stack type depending on the assembly form. A jelly-roll type electrode assembly may include a winding structure of a positive electrode, a negative electrode, and a separator interposed therebetween. A stack type electrode assembly may include a plurality of sequentially stacked positive electrodes, a plurality of negative electrodes, and a plurality of separators interposed therebetween. The positive electrode may include a positive electrode current collector and a positive electrode active material. The negative electrode may include a negative electrode current collector and an negative electrode active material.
[0042] Multiple battery cells may be connected in series and / or parallel. For example, multiple battery cells may be connected in series with each other. For example, multiple battery cells may also be connected in parallel with each other. For example, when a set of two or more battery cells connected in parallel is defined as a bank, one bank consisting of two or more battery cells connected in parallel with each other and another bank consisting of two or more battery cells connected in parallel with each other may be connected in series.
[0043] The individual battery cells may be pouch-type, cylindrical, or prismatic. The electrode assembly of a pouch-type battery cell is housed in a pouch cell case containing an aluminum laminate sheet. The electrode assembly of a cylindrical battery cell is housed in a cylindrical metal can. The electrode assembly of a prismatic battery cell is housed in a prismatic metal can.
[0044] The venting device (100) can be mounted on the pack frame (200). In FIG. 1, the venting device (100) is illustrated as being mounted on the first segment of the side frame (250) at the front of the side frame (250). However, this is not limited to the venting device (100), and the venting device (100) can be mounted on at least one of the segments of the side frame (250), and can also be mounted on the bottom frame (210).
[0045] The venting device (100) may be configured to open and close the internal passage depending on the pressure in the receiving space (291) of the pack frame (200). The venting device (100) may be configured to switch between a closed state and an open state depending on the pressure in the receiving space (291) of the pack frame (200).
[0046] In a closed state of the venting device (100), the venting device (100) can block the flow of gas between the external space (ES) and the receiving space (291) of the pack frame (200) by closing the passage between the external space (ES) and the receiving space (291) of the pack frame (200). In an open state of the venting device (100), the venting device (100) can open the passage between the external space (ES) and the receiving space (291) of the pack frame (200) by allowing the flow of gas between the external space (ES) and the receiving space (291) of the pack frame (200).
[0047] When the pressure in the accommodation space (291) of the pack frame (200) is lower than or equal to a preset reference value, the venting device (100) is in a closed state, and when the pressure in the accommodation space (291) of the pack frame (200) exceeds the preset reference value, the venting device (100) may be in an open state. When the pressure in the accommodation space (291) of the pack frame (200) exceeds the preset reference value, the venting device (100) is in an open state, and the pressure in the accommodation space (291) of the pack frame (200) may be reduced as the gas in the accommodation space (291) of the pack frame (200) is released to the external space (ES). When the pressure in the accommodation space (291) of the pack frame (200) is reduced and the pressure in the accommodation space (291) of the pack frame (200) becomes lower than or equal to a preset reference value, the venting device (100) may be switched from an open state to a closed state.
[0048] The venting device (100) may be installed within a venting passage (265) provided between the inner wall (261) and the outer wall (263) of the pack frame (200). In exemplary embodiments, the venting device (100) may be mounted to the pack frame (200) so that its entirety is accommodated within the venting passage (265) of the pack frame (200). In exemplary embodiments, the venting device (100) may be provided entirely between the inner wall (261) and the outer wall (263) of the pack frame (200). In exemplary embodiments, components of the venting device (100) may be mounted to the pack frame (200) so as not to penetrate within the accommodation space (291) of the pack frame (200). When the venting device (100) is mounted on the side frame (250), the thickness of the venting device (100) in the thickness direction of the side frame (250) may be smaller than the thickness of the side frame (250). When the venting device (100) is mounted on the floor frame (210), the thickness of the venting device (100) in the thickness direction of the floor frame (210) may be smaller than the thickness of the floor frame (210).
[0049] The inner wall (261) of the pack frame (200) may include a through hole (2611) communicating with the receiving space (291) of the pack frame (200). The outer wall (263) of the pack frame (200) may include a through hole (2631) communicating with the external space (ES). The venting passage (265) of the pack frame (200) may communicate with the external space (ES) through the through hole (2631) of the outer wall (263). The venting device (100) may be exposed to the outside of the battery pack (10) through the through hole (2631) of the outer wall (263) of the pack frame (200).
[0050] The venting device (100) may include a base plate (110), an opening / closing cover (120), a spring (130), and a cap body (140).
[0051] The base plate (110) can be mounted on the inner wall (261) of the pack frame (200). The base plate (110) can be in close contact with the outer surface of the inner wall (261) of the pack frame (200) facing the outer wall (263). The base plate (110) can include a passage (111) that communicates with a through hole (2611) of the inner wall (261) of the pack frame (200). The passage (111) of the base plate (110) can communicate with the receiving space (291) of the pack frame (200) through the through hole (2611) of the inner wall (261) of the pack frame (200). A sealing ring can be arranged between the inner walls (261) of the pack frame (200) to prevent gas leakage.
[0052] The opening / closing cover (120) can open and close the passage (111) of the base plate (110). The opening / closing cover (120) can be switched between a closed position that closes the passage (111) of the base plate (110) and an open position that opens the passage (111) of the base plate (110) depending on the pressure of the receiving space (291) of the pack frame (200). In the closed state of the venting device (100), the opening / closing cover (120) can be in the closed position. In the open state of the venting device (100), the opening / closing cover (120) can be in the open position. The opening / closing cover (120) can be configured to move linearly between the open position and the closed position. The closed position of the opening / closing cover (120) can be closer to the inner wall (261) than the open position of the opening / closing cover (120).
[0053] When the opening / closing cover (120) is in the closed position, the opening / closing cover (120) can close the passage (111) of the base plate (110) to the external space (ES) so that the passage (111) of the base plate (110) does not communicate with the external space (ES). When the opening / closing cover (120) is in the closed position, the gas flow between the receiving space (291) of the pack frame (200) and the external space (ES) can be blocked.
[0054] When the opening / closing cover (120) is in the open position, the opening / closing cover (120) can open the passage (111) of the base plate (110) to the external space (ES) so that the passage (111) of the base plate (110) is in communication with the external space (ES). When the opening / closing cover (120) is in the open position, gas can flow from the receiving space (291) of the pack frame (200) to the external space (ES) through the passage (111) of the base plate (110).
[0055] The cap body (140) can be fixed to the base plate (110). The cap body (140) can contact one end of the spring (130) and support one end of the spring (130). The cap body (140) can include a support portion that supports one end of the spring (130) and a connection portion that extends between the support portion and the base plate (110). The support portion of the cap body (140) can include a protrusion that supports the spring (130). The connection portion of the cap body (140) can be fastened to the base plate (110) via a bolt (150). By fastening the connection portion of the cap body (140) to the base plate (110) via the bolt (150), the cap body (140) can be fixed to the base plate (110).
[0056] The spring (130) can provide a restoring force to the opening / closing cover (120) in a direction from the open position to the closed position of the opening / closing cover (120). For example, the spring (130) can be configured to press the opening / closing cover (120) in a direction from the outer wall (263) toward the inner wall (261). The spring (130) can be provided between the cap body (140) and the opening / closing cover (120). The cap body (140) can support one end of the spring (130), and the opening / closing cover (120) can support the other end of the spring (130). In exemplary embodiments, the spring (130) can be a coil spring. The spring (130) can be mounted to the cap body (140) such that a portion of the spring (130) is wound around a protrusion (141) of the cap body (140).
[0057] As illustrated in FIG. 4, when the pressure in the receiving space (291) of the pack frame (200) is below a predetermined reference value, the opening / closing cover (120) can be fixed in a closed position by being pressed by the spring (130). When the opening / closing cover (120) is in the closed position, components of the venting device (100), such as the opening / closing cover (120) and the spring (130), do not penetrate into the receiving space (291) of the pack frame (200).
[0058] As illustrated in FIG. 5, when the pressure in the receiving space (291) of the pack frame (200) exceeds a predetermined reference value, the opening / closing cover (120) can gradually move from the closed position toward the open position or from the inner wall (261) toward the outer wall (263). When the opening / closing cover (120) is positioned in the open position, the venting gas (VG) can be discharged to the external space (ES) through the passage (111) of the base plate (110), the gap between the opening / closing cover (120) and the base plate (110), the passage between the inner wall (261) and the outer wall (263), and the through hole (2631) of the outer wall (263).
[0059] The pack frame (200) may include a fastening bolt (320) for fastening the venting device (100). The fastening bolt (320) may be coupled to the inner wall (261) of the pack frame (200) and may include a protrusion protruding from the inner wall (261) of the pack frame (200) in a direction from the inner wall (261) of the pack frame (200) toward the outer wall (263). The fastening bolt (320) may be a clinching bolt coupled to the inner wall (261) of the pack frame (200) in a self-clinching manner. The protrusion of the fastening bolt (320) may be inserted into a fastening hole (113 of FIG. 6A) of the base plate (110). The battery pack (10) may further include a nut (330) fitted into the protrusion of the fastening bolt (320). The inner surface of the nut (330) may be provided with screw threads that engage with the screw threads provided on the outer surface of the protrusion of the fastening bolt (320). The base plate (110) of the venting device (100) may be fixed to the inner wall (261) of the pack frame (200) by the nut (330) being fitted into the protrusion of the fastening bolt (320).
[0060] In the battery pack according to the comparative example, a portion of the valve structure mounted on the pack frame is configured to penetrate the receiving space of the pack frame. In this case, the space occupied by the valve structure within the receiving space of the pack frame cannot be used for battery cells, which reduces the space utilization of the battery pack. Furthermore, to minimize the space occupied by the valve structure within the receiving space of the pack frame, there were restrictions on the installation location and number of valve structures.
[0061] According to exemplary embodiments of the present invention, the venting device (100) is mounted on the pack frame (200) so as not to occupy the accommodation space (291) of the pack frame (200) that accommodates the battery cell, thereby improving the space utilization and energy density of the battery pack (10).
[0062] According to exemplary embodiments of the present invention, the venting device (100) is mounted on the pack frame (200) so as not to occupy the receiving space (291) of the pack frame (200), so that the venting device (100) can be mounted on various parts of the pack frame (200) without being limited to the installation position and number of valve structures.
[0063]
[0064] (Example 2)
[0065] FIGS. 6A and 6B are cross-sectional views showing a method for manufacturing a battery pack (10) according to exemplary embodiments of the present invention.
[0066] Referring to Fig. 6a, a fastening bolt (320) is fastened to the inner wall (261) of the pack frame (200). The fastening bolt (320) may be fastened to the inner wall (261) of the pack frame (200) in a self-clinching manner. The fastening bolt (320) may have a protrusion protruding from the inner wall (261) in a direction from the inner wall (261) toward the outer wall (263).
[0067] Referring to FIG. 6b and FIG. 4, the venting device (100) is assembled to the pack frame (200). Assembling the venting device (100) to the pack frame (200) may include introducing the venting device (100) into the venting passage (265) of the pack frame (200) through the through hole (2631) of the outer wall (263), positioning the venting device (100) so that the fastening hole (113) of the base plate (110) of the venting device (100) is inserted into the protrusion of the fastening bolt (320), and inserting a nut (330) into the protrusion of the fastening bolt (320) to secure the base plate (110) of the venting device (100) to the inner wall (261) of the pack frame (200).
[0068] According to exemplary embodiments of the present invention, the assembly work of the venting device (100) for assembling the venting device (100) to the pack frame (200) can be performed on the outside of the pack frame (200). In this case, it is unnecessary to secure a space for assembling the venting device (100) in the receiving space (291) of the pack frame (200), and the assembly work of the venting device (100) can be performed in a state where the pack lid (310) is coupled to the pack frame (200). Since the assembly work of the venting device (100) can be performed in a state where the pack lid (310) is coupled to the pack frame (200), the assembly of the venting device (100) can be performed in the EOL (end-of-line) test stage.
[0069]
[0070] The present invention has been described in more detail through drawings and examples. However, the configurations described in the drawings or examples described in this specification are merely embodiments of the present invention and do not represent all of the technical ideas of the present invention. Therefore, it should be understood that various equivalents and modified examples may exist as of the time of this application.
Claims
1. Pack frame with storage space; A battery cell assembly accommodated in the accommodation space of the pack frame and including a battery cell; and A venting device mounted on the pack frame and configured to open and close an internal passage according to the pressure of the receiving space of the pack frame; Including, A battery pack characterized in that the venting device is entirely accommodated within a venting passage of the pack frame provided between the inner wall and the outer wall of the pack frame.
2. In paragraph 1, The above venting device, A base plate mounted on the inner wall of the pack frame and having a passage communicating with a through hole of the inner wall of the pack frame; An opening / closing cover configured to open / close the passage of the base plate; a spring providing a restoring force to the opening / closing cover so that the opening / closing cover closes the passage of the base plate; and A cap body fixed to the base plate and supporting the spring; A battery pack comprising:
3. In paragraph 2, The above opening / closing cover is configured to move between a closed position that closes the passage of the base plate and an open position that opens the passage of the base plate, The closed position of the above opening / closing cover is closer to the inner wall than the open position of the above opening / closing cover, A battery pack characterized in that the spring is configured to press the opening / closing cover in a direction from the outer wall toward the inner wall.
4. In paragraph 3, A battery pack characterized in that when the opening / closing cover is in the closed position, the spring does not penetrate into the receiving space of the pack frame.
5. In paragraph 2, A battery pack characterized in that one end of the spring contacts the cap body and the other end of the spring contacts the opening / closing cover.
6. In paragraph 2, A battery pack characterized in that the cap body includes a protrusion supporting the spring.
7. In paragraph 2, A fastening bolt coupled to the inner wall of the pack frame and including a protrusion protruding from the inner wall of the pack frame in a direction from the inner wall of the pack frame toward the outer wall of the pack frame; and A nut fitted into the protrusion of the above fastening bolt; Including more, The above base plate includes a fastening hole into which the protrusion of the above fastening bolt is inserted, A battery pack characterized in that the base plate is fixed to the inner wall of the pack frame by the nut being fitted into the protrusion of the fastening bolt.
8. In paragraph 7, A battery pack characterized in that the base plate is in close contact with the surface of the inner wall of the pack frame facing the outer wall of the pack frame.
9. In paragraph 1, A battery pack characterized in that the outer wall of the pack frame includes a through hole that connects the venting passage of the pack frame with an external space outside the pack frame.
10. In paragraph 9, A battery pack characterized in that the venting device is exposed to the outside through the through hole of the outer wall of the pack frame.
11. In paragraph 1, The pack frame includes a bottom frame supporting the battery cell assembly and a side frame on the bottom frame, A battery pack characterized in that the venting device is mounted on the side frame.
12. In paragraph 11, A battery pack further comprising a pack lead coupled to the side frame to cover the battery cell assembly accommodated in the pack frame.