Pressure sensor including an integrated position determining member
11243132 · 2022-02-08
Assignee
Inventors
Cpc classification
G01D11/16
PHYSICS
G01L19/148
PHYSICS
International classification
G01D11/16
PHYSICS
Abstract
A pressure sensor includes a sensor element, an inner frame configured to receive at least a portion of the sensor element, and a housing configured to receive the inner frame therein. The inner frame is formed of a metal material and includes a printed circuit board assembly to be electrically connected to the sensor element. The housing is formed of a resin material.
Claims
1. A pressure sensor, comprising: a sensor element; an inner frame configured to receive at least a portion of the sensor element, the inner frame formed of a metal material and including a printed circuit board assembly to be electrically connected to the sensor element, the inner frame having a position determining member disposed on a side of the inner frame and configured to determine a position of the inner frame; and a housing configured to receive the inner frame therein and formed of a resin material, the housing being mechanically coupled to the inner frame.
2. The pressure sensor of claim 1, wherein the inner frame has a locking portion protruding outwardly from a side of an outer circumferential surface of the inner frame.
3. The pressure sensor of claim 2, wherein the housing has a locking hole to be connected to the locking portion.
4. The pressure sensor of claim 3, wherein the locking portion is formed integrally with the inner frame and at least a portion of the locking portion is elastically deformable.
5. The pressure sensor of claim 4, wherein the locking portion is formed by cutting a portion of the outer circumferential surface of the inner frame.
6. The pressure sensor of claim 5, wherein the locking portion is inclined, a distance between the locking portion and the outer circumferential surface of the inner frame increases toward a rear side of the inner frame along a direction in which the inner frame is connected to the housing.
7. The pressure sensor of claim 3, wherein the locking hole extends through the housing.
8. The pressure sensor of claim 7, further comprising a closing member configured to close the locking hole.
9. The pressure sensor of claim 8, wherein the closing member is filled with a silicone or a resin material.
10. The pressure sensor of claim 1, wherein the housing has a receiver in which a protruding portion of the position determining member is received and fixed.
11. The pressure sensor of claim 10, wherein the position determining member is formed to verify whether the inner frame is inserted in the housing.
12. The pressure sensor of claim 10, wherein the position determining member presses and fixes an inner surface of the receiver.
13. The pressure sensor of claim 10, wherein the position determining member is a metal plate coupled to an outer circumferential surface of the inner frame.
14. The pressure sensor of claim 10, wherein the position determining member is formed integrally with an outer circumferential surface of the inner frame.
15. The pressure sensor of claim 14, wherein at least a portion of the position determining member protrudes upward from an upper surface of the inner frame.
16. The pressure sensor of claim 1, wherein the position determining member has a load reducer in a protruding portion in which the position determining member is inserted into the housing.
17. The pressure sensor of claim 16, wherein the housing has a locking hole at a position corresponding to the load reducer, a closing member is provided to close the locking hole.
18. The pressure sensor of claim 17, wherein the closing member fills a hole of the position determining member and the locking hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying Figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(12) Hereinafter, exemplary embodiments will be described in detail with reference to the accompanying drawings. It should be understood, however, that there is no intent to limit this disclosure to the particular example embodiments disclosed. On the contrary, example embodiments are to cover all modifications, equivalents, and alternatives. The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate example embodiments of the disclosure and, together with the description, serve to further the understanding of the technical idea of the disclosure; the disclosure is not limited to the shown embodiments.
(13) The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. As used herein, the singular forms “a,” “an,” and “the,” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises,” “comprising,” “includes,” and/or “including,” when used herein, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
(14) Unless otherwise defined, all terms, including technical and scientific terms, used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure pertains. Terms, such as those defined in commonly used dictionaries, are to be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art, and are not to be interpreted in an idealized or overly formal sense unless expressly so defined herein.
(15) Regarding the reference numerals assigned to the elements in the drawings, it should be noted that the same elements will be designated by the same reference numerals, wherever possible, even though they are shown in different drawings. Also, in the description of embodiments, detailed description of well-known related structures or functions will be omitted when it is deemed that such description will cause ambiguous interpretation of the present disclosure.
(16) A pressure sensor 10 according to an embodiment will be described in detail with reference to
(17) In the following description, the sensor element 11, the inner frame 12, and the housing 13 may be sequentially connected. Along the connection direction, a side corresponding to the sensor element 11 may be referred to as “lower portion” or “lower side” and a side corresponding to the housing 13 may be referred to as “upper portion” or “upper side”.
(18) Various sensor gauges (not shown) may be attached to the sensor element 11 to sense a pressure. An end portion (hereinafter, referred to as “upper end portion”) to which the sensor gauge is attached may be electrically connected to the PCB assembly 121. The PCB assembly 121 and the sensor element 11 may be electrically connected through the inner frame 12, as shown in
(19) A portion of an outer surface of the sensor element 11 may be chamfered so as to be formed into a chamfered portion 114, as shown in
(20) The inner frame 12 may be formed of a metal material, formed in a cylindrical shape to receive an upper portion of the sensor element 11, and include the PCB assembly 121 in an upper portion, as shown in
(21) In an embodiment, a solder paste (not shown) may be provided on a lower surface of the PCB assembly 121 at a portion corresponding to the upper end portion of the inner frame 12, so that the inner frame 12 is soldered and electrically connected to the PCB assembly 121. Also, a lower end portion of the inner frame 12 and the sensor element 11 may be soldered and electrically connected.
(22) The inner frame 12, as shown in
(23) The locking portion 123, as shown in
(24) Two locking portion 123 may be formed at positions facing each other on the outer circumferential surface 122, as shown in
(25) The position determining member 124, as shown in
(26) The position determining member 124 may be provided on the outer circumferential surface 122 of the inner frame 12, as shown in
(27) The position determining member 124 may align a position when the inner frame 12 is inserted to the housing 13. In addition, the position determining member 124 may function as an insertion sensor that senses whether the inner frame 12 is inserted in the housing 13 based on a state in which the protrusion 242 is inserted in the receiver 134 of the housing 13. The position determining member 124 is formed to verify whether the inner frame 12 is inserted in the housing 13. In the state in which the protrusion 242 is inserted in the receiver 134, the position determining member 124 may function to fix the inner frame 12 and the housing 13.
(28) When the inner frame 12 is inserted to the housing 13, the protrusion 242 of the position determining member 124 may be inserted into the receiver 134 as shown in
(29) In the position determining member 124, as shown in
(30) When an unexpected load is applied from an outside of the housing 13, the load may be distributed around the load reducer 244. As such, the load reducer 244 may prevent an external load from being delivered from the sensor element 11 through the position determining member 124. Here, the external load may refer to, for example, a load or a pressure/stress generated by a torsional load or an external vibration occurring when the housing 13 is vertically twisted with respect to the inner frame 12.
(31) The housing 13 may be formed with a resin material and form an appearance of the pressure sensor 10 by accommodating the sensor element 11 and the inner frame 12, as shown in
(32) The housing 13, as shown in
(33) The housing 13 may function as a holder for holding and supporting the connection terminal 14 and as a cover for internal components. The housing 13 may support the connection terminal 14 to be elastically deformable and movable such that the connection terminal 14 is stable connected to the PCB assembly 121. For example, the connection terminal 14 may penetrate an upper surface of the housing 13, as shown in
(34) A number and an arrangement of connection terminals 14 may be determined based on a circuit pattern of the PCB assembly 121. Although three connection terminal 14 are shown in the embodiment of
(35) The locking hole 133 into which the locking portion 123 is fit may be formed along an outer circumferential surface of the housing 13, as shown in
(36) In the shown embodiment, the housing 13 may be formed with the resin material to simplify a structure of the housing 13, simplify a manufacturing process, and reduce costs. Because the housing 13 is formed integrally with the connection terminal 14, the structure may be simplified.
(37) An assembling process of assembling the pressure sensor 10 will now be described in greater detail.
(38) First, the upper end portion of the inner frame 12 and a portion corresponding thereto may be soldered and coupled to each other.
(39) A portion of the sensor element 11 may be inserted into the lower end portion of the inner frame 12, and then the lower end portion of the inner frame 12 and the portion of the sensor element 11 corresponding thereto may be soldered and coupled to each other.
(40) Thereafter, an assembly in which the inner frame 12, the PCB assembly 121, and the sensor element 11 are connected may be inserted into the housing 13.
(41) After aligning positions of the inner frame 12 and the housing 13 using the position determining member 124, the inner frame 12 may be inserted so that the protrusion 242 of the position determining member 124 is inserted into the receiver 134 located inside the housing 13, as shown in
(42) When the inner frame 12 is inserted in the housing 13, the housing 13 may accommodate both the inner frame 12 and the sensor element 11, as shown in
(43) Because the inner frame 12 having the metal material and the housing 13 having the resin material are mechanically coupled, it is easy to be assembled, disassembled, and processed. The housing 13 may function as a cover that forms the appearance of the pressure sensor 10 and protect the PCB assembly 121 and as a terminal guide that fixes the connection terminal 14. The pressure sensor 10 may reduce a number of components and reduce a production and assembly process of the pressure sensor 10 when compared to the typical pressure sensor. In addition, because the housing 13 is formed with the resin material, the structure and the manufacturing process of the housing 13 may be simplified. The inner frame 12 formed with the metal material may be electrically connected to the PCB assembly 121 and the sensor element 11, thereby functioning as a ground. Also, because the inner frame 12 is formed integrally with the PCB assembly 121, the PCB assembly 121 may be stably supported.
(44) In another embodiment, shown in
(45) As shown in
(46) As shown in
(47) The housing 13 may have a shape of a container for accommodating the sensor element 11 and the inner frame 12, as shown in
(48) In the housing 13, the locking hole 133 may be formed at a position corresponding to the locking portion 123 to penetrate the housing 13, as shown in
(49) The closing member 15, shown in
(50) As shown in
(51) In the shown embodiments, the closing member 15 may fill holes (the locking hole 133 and the second locking hole 135) formed in the housing 13 and include the resin material for adhering and fixing the housing 13, thereby firmly fixing the inner frame 12 to the housing 13. In addition, the closing member 15 may close the hole of the housing 13 to effectively prevent external moisture or foreign substances from entering the pressure sensor 10 from the outside of the housing 13.
(52) While this disclosure includes specific examples, it will be apparent to one of ordinary skill in the art that various changes in form and details may be made in these examples without departing from the spirit and scope of the claims and their equivalents. The examples described herein are to be considered in a descriptive sense only, and not for purposes of limitation. Descriptions of features or aspects in each example are to be considered as being applicable to similar features or aspects in other examples. Suitable results may be achieved if the described techniques are performed in a different order, and/or if components in a described system, architecture, device, or circuit are combined in a different manner, and/or replaced or supplemented by other components or their equivalents.
(53) Therefore, the scope of the disclosure is defined not by the detailed description, but by the claims and their equivalents, and all variations within the scope of the claims and their equivalents are to be construed as being included in the disclosure.