Attachment structure of temperature sensor
11320317 ยท 2022-05-03
Assignee
Inventors
Cpc classification
G01K2205/00
PHYSICS
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
G01K1/14
PHYSICS
H01M2220/20
ELECTRICITY
International classification
G01K1/00
PHYSICS
G01K1/14
PHYSICS
H01M50/20
ELECTRICITY
H01M10/48
ELECTRICITY
Abstract
An attachment structure of temperature sensor includes: a temperature sensor for attached to a single battery and detecting a temperature of the single battery; a temperature measuring element provided in the temperature sensor and detecting the temperature of the single battery; a sensor body provided in the temperature sensor and integrally formed with the temperature measuring element; a housing holding case provided with the single battery, having a engagement part engageable with the temperature sensor, the housing holding case for housing the temperature sensor; an elastic part having an arm shape, projected from the sensor body, and engageable with the engagement part; and a flat part provided in the elastic part, and pressing a pressing surface of an attachment tool against the elastic part when the temperature sensor is housed in the housing holding case.
Claims
1. An attachment structure of temperature sensor, comprising: a temperature sensor configured to be attached to a single battery and to detect a temperature of the single battery; a temperature measuring element provided in the temperature sensor and configured to detect the temperature of the single battery; a sensor body provided in the temperature sensor and integrally formed with the temperature measuring element; a housing holding case provided with the single battery, having an engagement part engageable with the temperature sensor, the housing holding case configured to house the temperature sensor; and an elastic part having an arm shape, projected from the sensor body, and engageable with the engagement part, the elastic part including a raised part extending upward from a base of the elastic part and being provided on a lateral side of the sensory body, a U-shaped part formed continuously with the raised part, and a horizontal flat part formed integrally with the U-shaped part and the raised part and provided in a center of the elastic part between the raised part and the U-shaped part, wherein the flat part provided in the elastic part is configured to press a pressing surface of an attachment tool against the elastic part when the temperature sensor is housed in the housing holding case.
2. The attachment structure of claim 1, wherein when the temperature sensor is housed in the housing holding case by pressing the pressing surface of the attachment tool against the flat part, a side of a tip end part of the elastic part is made to flexurally deform inward toward the flat part.
3. The attachment structure of claim 1, further comprising a cable part connected to the temperature measuring element, wherein: the cable part includes a lead frame connected to the temperature measuring element, a cable whose core cable is connected to the lead frame, and a shrink tube covering the lead frame and the core cable; and the cable part is formed by being bent in an L shape, and when the temperature sensor is housed in the housing holding case by the attachment tool, the cable part is separated away from the pressing surface of the attachment tool.
4. The attachment structure of claim 1, wherein the engagement part is projected on an inner side of a peripheral wall part of the housing holding case, and a tip end part of the elastic part is engaged with the engagement part.
5. The attachment structure of claim 1, wherein the elastic part is provided on each of lateral sides of the sensor body, and the flat part is provided at a center of the elastic part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) Hereinafter, an embodiment is described on the basis of the drawings.
(9) As illustrated in
(10) As illustrated in
(11) As illustrated in
(12) As illustrated in
(13) As illustrated in
(14) The cable part 16 is formed by being bent in an L shape. When the sensor body 12 is housed and assembled in the housing holding case 20, the cable part 16 is separated away from the pressing surfaces 41a of the attachment tool 40.
(15) As illustrated in
(16) As illustrated in
(17) With the attachment structure 10 of the temperature sensor 11 according to the embodiment, as illustrated in
(18) Further, when the flat parts 15 of the pair of elastic parts 14 are respectively pressed by the pair of pressing surfaces 41a of the attachment tool 40, the cable part 16 extended from the upper side of the sensor body 12 is separated from the pair of pressing surfaces 41a of the attachment tool 40 by being bent in the L shape. Accordingly, when the temperature sensor 11 is housed and assembled in the housing holding case 20, the cable part 16 does not interfere with the assembling, allowing the attachment tool 40 to be easily pressed. Still further, the temperature sensor 11 can be thinned and downsized.
(19) Then, as illustrated in
(20) As described above, by providing the flat parts 15 to be pressed by the pressing surfaces 41a of the attachment tool 40 at the center of each of the arm-shaped elastic parts 14 of the sensor body 12, the temperature sensor 11 can be stably pressed when being housed and assembled in the housing holding case 20, improving assembling workability.
(21) Note that in the embodiment, the PTC thermistor is used as the temperature measuring element, however, a negative temperature coefficient (NTC) thermistor or critical temperature resistor (CTR) thermistor can be used as the temperature measuring element.