CURRENT DETECTION DEVICE
20180120359 ยท 2018-05-03
Assignee
Inventors
Cpc classification
G01R1/203
PHYSICS
H01C1/14
ELECTRICITY
International classification
G01R19/00
PHYSICS
H01C1/14
ELECTRICITY
Abstract
Provided is a current detection device that enables to eliminate the influence of vibration that is applied to a bus bar, which is configured as a shunt resistor and measures current with high accuracy and high reliability. The current detection device is provided with a first wiring member and a second wiring member consisting of a conductive metal material, and a resistor body consisting of a metal material having a lower temperature coefficient of resistance than those wiring members and is joined between the first wiring member and the second wiring member, wherein a connection portion for making a connection to another wiring member or device is formed at an end of the first wiring member and second wiring member, the end being an opposite side from a joint with the resistor body, and a fixing member is provided between the connection portion and the joint with the resistor body.
Claims
1. A shunt type current detection device comprising: a first wiring member and a second wiring member those consisting of a conductive metal material; a resistor body consisting of a metal material having a lower temperature coefficient of resistance than those wiring members and the resistor body joined between the first wiring member and the second wiring member; connection portions for making a connection to another wiring member or device formed respectively in the first wiring member and in the second wiring member; and a fixing member formed between any one of connection portions formed in the first and second wiring members and a joint with the resistor body.
2. The current detection device of claim 1, wherein the fixing member is formed nearer to the joint with the resistor body than intermediate between the connection portion and the joint with the resistor body.
3. The current detection device of claim 1, wherein the fixing member includes a through hole or a recess formed in the wiring member.
4. The current detection device of claim 1, wherein the wiring member includes a narrow width portion, where width of the wiring member is narrow at a portion.
5. A mounting structure of a current detection device comprising: a current detection device including a first wiring member and a second wiring member, a resistor body joined between the first wiring member and the second wiring member, a connection portion, and a fixing member; wherein the connection portion of the current detection device is connected to another wiring member or a device, and the fixing member of the current detection device is fixed onto a fixing portion of a housing to be mounted.
6. The mounting structure of claim 5, wherein the connection portion is provided for connecting the connection portion of the current detection device to another wiring member or a device by a screw fastening with a bolt and a nut via a through hole, the connection portion is provided with a positioning portion near the connection portion, and an object member to be connected is positioned by the positioning portion.
7. A connecting method of a current detection device comprising: connecting a connection portion of the current detection device to another wiring member or a device by screw fastening with a bolt and a nut via a through hole; positioning an object member to be connected to the current detection device by a positioning portion near the connection portion; and fixing a fixing member onto a fixing portion provided on a housing to be mounted.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
[0013] Embodiments of the present invention will be described below with referring to
[0014]
[0015] The first wiring member 11 and the second wiring member 12 consist of strip-shaped or rod-shaped highly conductive metal material, such as Cu, Cu system alloy, or Al etc. The resistor body 13 consists of metal resistor alloy material such as CuMn system alloy, CuNi system alloy, or NiCr system alloy, which has much lower temperature coefficient of resistance than metal material such as Cu etc. Both end faces of resistor body 13 are abutted and welded onto end faces of wiring member 11 and wiring member 12, where the joint between resistor body 13 and terminal members 11,12 is formed. Electron beam welding, laser beam welding, brazing and soldering, etc. can be used for the welding. An end portion of resistor body and an end portion of wiring member may be overlapped and pressure-welded to form the joint.
[0016] Voltage detection terminals 14,15 are provided on wiring members 11,12 at vicinity of resistor body 13. The current flowing through wiring members 11,12 passes through resistor body 13 and generates a voltage difference between both ends of the resistor body. The voltage difference is detected by voltage detection terminals 14,15.
[0017] The wiring member carries out the function of electrode (terminal) of shunt resistor while carrying out the function of bus bar, then, bus bar function and shunt resistor function is combined. Then, connection part where a large current flows becomes unnecessary, and number of parts can be decreased. And, it becomes possible to measure a current flowing through a bus bar with high accuracy and high reliability.
[0018] The connection portion 20 is provided at both ends of wiring members 11,12 of both sides of resistor body 13. According to connection portion 20, by using through hole 18 and screw fastening with bolt 20a and nut 20b etc., the current detection device 10 configured as a shunt resistor can be connected to another bus bar etc. such as wiring members 16,17, battery terminals, and equipment such as a motor etc. Further, connection portion 20 may be formed by welding etc.
[0019] The positioning portion 21 is provided near the connection portion 20. Acceding to positioning portion 21, by inserting bolt 21a into through holes in wiring members 12 and 17, screw fastening bolt 21a with nut 21b, through holes of wiring members 12,17 are positioned. When forming a connection of wiring members 12 and 17 by inserting bolt 20a into through holes 18 and screw fastening with nut 20b, rotation of one wiring member to another wiring member is stopped, then wiring members 12 and 17 are exactly positioned on the same line, screw fastened with bolt 20a and nut 20b, and connected.
[0020] The wiring member 11 is longer than the wiring member 12. A fixing member 22 for fixing the current detection device 10, which is configured as a shunt resistor, onto a housing 23 etc. is provided between the connection portion 20 formed in the current detection device 10 and the joint with resistor body 13. The fixing member 22 fixes long size first wiring member 11 onto fixing portion 23 of a housing etc. by screw fastening etc. at intermediate position (two bent portion in
[0021] The fixing member 22 is preferably formed nearer to the joint with the resistor body 13 than intermediate between the connection portion 20 and the joint with the resistor body 13. In the embodiment 1, there are two fixing members 22. One of two fixing members 22, which is nearer to the joint with the resistor body 13, is corresponding to above mentioned preferable position. As a result, the influence of the vibration to the joint with the resistor body 13 can be excluded better. For example, in case of the connecting portion 20 connected to equipment such as a motor, by forming fixing member 20 nearer to the joint with the resistor body 13 than intermediate between the connection portion 20 and the joint with the resistor body 13, the influence of the vibration by the motor etc. can be excluded more easily.
[0022] In the current detection device 10 that resistor body 13 is joined between wiring members 11,12 to have a bus bar function as a whole, an end face of wiring members (electrodes) and an end face of resistor body is abutted and welded, and the joint is formed by welding. In case of abutted welding, the joint is small in area, and strength of the joint is insufficient. If the fixing member 22 is not provided, when long current detection device 10, in which connection portions 20 are fixed at both ends, vibrates, then the joint is influenced by the vibration, and compression force and tensile force are applied to the joint. Then, there is a possibility that error voltage can be caused.
[0023] The current detection device of embodiment 1 is provided with two fixing members 22, which fixes intermediate position of first wiring member 11 onto fixing portion 23 of housing etc. to be mounted (at two bent portions in
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[0027] By nut 22d being fixed on wiring member 12 beforehand, the wiring member 12 can be easily fixed on fixing portion 23a. Then, generation of error voltage is prevented, and current can be measured with high accuracy and high reliability, as well as above embodiments.
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[0029] The narrow width portion 24 is a stress relaxation area, where cuts are formed from both sides of the wiring member so as to make the width substantially narrower, and to make the wiring member easy to be bent. As a result, effect for absorbing vibration can be expected. By disposing fixing member 22 at out side of narrow width portion 24, influence of vibration to joint with resistor body 13 can be further decreased. Then, generation of error voltage is prevented, and current can be measured with high accuracy and high reliability, as well as above embodiments.
[0030] Although embodiments of the invention have been explained, however the invention is not limited to above embodiments, and various changes and modifications may be made within scope of the technical concept of the invention.
INDUSTRIAL APPLICABILITY
[0031] The invention can be suitably used for current detection devices configured as a bus bar, which measures current with high accuracy and high reliability.