PIN-TYPE PACK MODULE FOR LITHIUM-ION BATTERY

20220102765 · 2022-03-31

    Inventors

    Cpc classification

    International classification

    Abstract

    The disclosure provides a pin-type pack module for a lithium-ion battery. The pin-type pack module for a lithium-ion battery includes a housing including an axial through hole, and at least one integrated circuit device disposed in the axial through hole. When in use, the housing is partially or completely inserted into a central hole of an electrode assembly of the lithium-ion battery. The at least one integrated circuit device includes at least one access terminal and at least one output terminal; and a positive electrode and/or a negative electrode of the electrode assembly is conductively connected to the access terminal, for the polarity separation and power management of the lithium-ion battery.

    Claims

    1. A pin-type pack module for a lithium-ion battery, comprising: a housing comprising an axial through hole, and when in use, the housing being partially or completely inserted into a central hole of an electrode assembly of the lithium-ion battery; and at least one integrated circuit device disposed in the axial through hole, the at least one integrated circuit device comprising at least one access terminal and at least one output terminal; a positive electrode and/or a negative electrode of the electrode assembly being conductively connected to the access terminal, for the polarity separation and power management of the lithium-ion battery.

    2. The module of claim 1, wherein the at least one integrated circuit device comprises a protective part and a connection part.

    3. The module of claim 2, wherein the protective part comprises at least one of the following components: an integrated circuit (IC) chip configured to monitor a voltage across and current through the battery in a closed loop; a metal oxide semiconductor (MOS) switch disposed on a protection circuit board and configured to open and close the closed loop of the battery; a resistor configured for voltage division and current limitation; a capacitor configured to stabilize a voltage; a negative temperature coefficient thermistor (NTC); and a positive temperature coefficient thermistor (PTC).

    4. The module of claim 2, wherein the connection part comprises at least one of the following components: a printed circuit board (PCB), a flexible printed circuit (FPC), a connector, and a nickel tape.

    5. The module of claim 1, wherein the housing is used in combination with a battery housing; the battery housing is hermetically connected to the housing, thereby forming a ring-shaped sealed cavity to accommodate the electrode assembly.

    6. The module of claim 5, wherein the housing has a longitudinal cross section in the shape of “custom-character”, “custom-character”, or “custom-character”.

    7. The module of claim 1, wherein the electrode assembly is a spiral-wound structure comprising a center hole.

    8. The module of claim 1, wherein an insulating part is loaded in the axial through hole to separate the at least one integrated circuit device from the housing.

    9. The module of claim 1, wherein the insulating part comprises an injection hole.

    Description

    BRIEF DESCRIPTION OF THE DRAWINGS

    [0024] FIG. 1 is a first schematic diagram of a pin-type pack module according to one embodiment of the disclosure;

    [0025] FIG. 2 is a second schematic diagram of a pin-type pack module according to one embodiment of the disclosure;

    [0026] FIG. 3 is a third schematic diagram of a pin-type pack module according to one embodiment of the disclosure; and

    [0027] FIG. 4 is a fourth schematic diagram of a pin-type pack module according to one embodiment of the disclosure.

    DETAILED DESCRIPTION

    [0028] To further illustrate the disclosure, embodiments detailing a pin-type pack module are described below. It should be noted that the following embodiments are intended to describe and not to limit the disclosure.

    [0029] Referring to FIG. 1, a pin-type pack module as shown in a first structure 100A comprises a housing 101 comprising an axial through hole. When in use, the housing 101 is partially or fully inserted into a center hole of an electrode assembly of a lithium-ion battery.

    [0030] At least one integrated circuit device 103 is disposed in the axial through hole and configured to perform protection, management, and connection functions, so it is also called a power management unit. The at least one integrated circuit device comprises a FPC 103-1, an IC chip 103-2, a MOS switch 103-3, a resistor 103-4, a capacity 103-5, a NTC 103-6, a PCB 103-7, and two tab adapters 103-8. The at least one integrated circuit device optionally comprises a PTC and a thermal cutoff (TCO) switch.

    [0031] The housing 101 has a longitudinal cross section in the shape of “custom-character”, and correspondingly, the battery housing 300 has a longitudinal cross section in the shape of “U”.

    [0032] The battery housing 300 and the housing 101 are both an integrated structure, s integrally formed with the housing 101, or both a splicing structure comprising a plurality of parts.

    [0033] Referring to FIG. 4, the positive electrode 201 and the negative electrode 202 of the electrode assembly are conductively connected to the two tab adapters 103-8, respectively, thereby protecting the battery.

    [0034] The electrode assembly 200 further comprises a first transition conductor 204 and a second transition conductor 205 which are connected to the two tab adapters 103-8, respectively. The other end of the first transition conductor 204 is connected to the positive electrode 201 and the other end of the second transition conductor is connected to the negative electrode 202. Alternatively, the two tab adapters 103-8 are respectively connected to two thin copper/aluminum foils rather than to the first transition conductor 204 and the second transition conductor 205.

    [0035] The housing 101 is used in combination with the battery housing 300. The battery housing is hermetically connected to the housing, thereby forming a ring-shaped sealed cavity to accommodate the electrode assembly.

    [0036] Referring to FIG. 2, the pin-type pack module as shown in a second structure 100B comprises a housing having a longitudinal cross section in the shape of “custom-character”, and correspondingly, the battery housing 300 has a longitudinal cross section in the shape of “-”.

    [0037] Referring to FIG. 3, the pin-type pack module as shown in a third structure 100C comprises a housing 101 having a longitudinal cross section in the shape of “custom-character” and correspondingly, the battery housing 300 has a longitudinal cross section in the shape of “custom-character”.

    [0038] An insulating part 102 is disposed in the axial through hole to separate the at least one integrated circuit device 103 from the housing 101. The at least one integrated circuit device 103 penetrates through the insulating part 102.

    [0039] The insulating part 102 is in the shaped of “custom-character”. The upper portion of the insulating part is inserted into the axial through hole and the lower portion of the insulating part is configured to cover the axial through hole, thereby preventing contact of the assembly with the two tab adapters 103-8 and thus preventing a short circuit.

    [0040] The insulating part 102 is in the shape of a cylinder, an “I”, etc.

    [0041] An insulating tape 300-a is disposed inside the bottom end of the battery housing 300 to prevent the short circuit between the battery housing 300 and the two tab adapters 103-8, and to prevent the short circuit occurring among the first transition conductor 204, the second transition conductor 205, and the battery housing 300.

    [0042] The electrode assembly 200 is a spiral-wound structure comprising the center hole and a diaphragm 203. The positive electrode 201, the negative electrode 202, and the diaphragm 203 are spirally-wound around the center hole. The center hole has a diameter greater than 0 but smaller than that of the battery.

    [0043] A liquid injection hole 400 is disposed on the battery housing 300, the housing, or the insulating part.

    [0044] Particularly, the pin-type pack module of the example is applicable to a cylindrical lithium-ion battery.

    [0045] A method for assembling the pin-type pack module having the second structure 100B is detailed as follows:

    [0046] Polypropylene plastic is injected into the housing 101 by injection molding to form the insulating part 102, so that the PCB is fully wrapped. The FPC is partially wrapped and the other part of the FPC is extended out from the upper part of the housing to connect to the interfaces of the electronic components. The two tab adapters 103-8 are partially wrapped and the other parts of the two tab adapters 103-8 are conductively connected to the positive electrode and the negative electrode, respectively. The insulating part 102 is tightly attached to the inner wall of the housing 101.

    [0047] A method for integrating the pin-type pack module and the battery housing of a battery module comprises:

    [0048] The housing 101 of the pin-type pack module 100 is inserted into the center hole of the electrode assembly 200, and the two tab adapters 103-8 are bent outward and then connected to the first transition conductor 204 and the second transition conductor 205, respectively.

    [0049] The pin-type pack module 100 is integrated with the electrode assembly 200 and then is disposed in the battery housing 300 containing the electrolyte. The pin-type pack module 100 is connected to the battery housing 300 through a laser soldering process, thereby forming a ring-shaped cavity to accommodate the electrode assembly 200.

    [0050] It will be obvious to those skilled in the art that changes and modifications may be made, and therefore, the aim in the appended claims is to cover all such changes and modifications.