The present invention relates to a control circuit board incorporated in a robot control device and a robot control device comprising the board, particularly to a control circuit board comprising a function to prevent loss of control function due to a single failure of an element configuring a control circuit, and a robot control device comprising the board.
In a multi-axis robot or the like which is used as an industrial robot, it is needed to emergently stop the robot so as to ensure safety in an emergency such as when a person and an obstacle gets in a working area and when operation failure occurs. IEC60204-1 and ISO10218-1 standards specify a plurality of stop patterns according to risk and working conditions (such as holding condition of objects) with regard to emergency stop of a robot.
As described above, it is extremely important to ensure safety of an industrial robot whose operation needs to be stopped in an emergency. Therefore, a robot control device is devised so as to prevent loss of control function due to a single failure of an element configuring a control circuit of a robot (Patent Document 1).
However, it is needed to increase the number and kinds of elements to be implemented to a board in order to devise a control circuit of a robot control device for preventing loss of its safety function, which causes problems of enlargement of the board and increase of development/production cost.
The present invention is made considering the above-mentioned problems of the conventional technologies, and its object is to provide a control circuit board capable of surely preventing loss of control function while suppressing enlargement of the board and increase of development/production cost, and a robot control device comprising the board.
In order to achieve the objects above, a first aspect of the present invention is a control circuit board incorporated in a robot control device, comprising: a board member; and a first element and a second element provided to each surface of the board member respectively, wherein the first element and the second element respectively have a first edge portion and a third edge portion which are opposite to each other and a second edge portion and a fourth edge portion which are opposite to each other, wherein a plurality of signal input pins are provided to the first edge portion, a plurality of signal output pins are provided to the third edge portion, a plurality of between-element communication input pins are provided to the second edge portion, and a plurality of between-element communication output pins are provided to the fourth edge portion, and wherein a common signal is input to the first element and the second element, and a communication is performed between the first element and the second element.
A second aspect of the present invention is that, in the first aspect, an arrangement regarding a pin function of the plurality of between-element communication input pins and the plurality of between-element communication output pins is common between the first element and the second element.
A third aspect of the present invention is that, in the first or second aspect, an arrangement regarding a pin function of the plurality of signal input pins and the plurality of signal output pins is common between the first element and the second element.
A fourth aspect of the present invention is that, in the first or second aspect, an arrangement regarding a pin function of the plurality of signal input pins and the plurality of signal output pins is inverted between the first element and the second element.
A fifth aspect of the present invention is that, in any one of the first to fourth aspects, the first to fourth edge portions of the first element and the first to fourth edge portions of the second element are arranged opposite to each other while sandwiching the board member.
A sixth aspect of the present invention is that, in any one of the first to fifth aspects, the first element and the second element are programmable logical devices, respectively.
A seventh aspect is a robot control device for controlling an operation of a robot, wherein the control circuit board according to any one of the first to sixth aspects is incorporated thereto.
According to the present invention, a control circuit board capable of surely preventing loss of control function while suppressing enlargement of the board and increase of development/production cost, and a robot control device comprising the board can be provided.
Hereunder, a robot control device comprising a control circuit board according to one embodiment of the present invention will be described referring to the drawings.
As illustrated in
As illustrated in
The front surface-side element 5 and the rear surface-side element 6 are configured by a programmable logic device respectively, and preferably configured by CPLD (Complex Programmable Logic Device).
In the control circuit board 1 according to this embodiment, the front surface-side element 5 and the rear surface-side element 6 have common specifications. Thus, all arrangements regarding pin function of a plurality of pins 7, 8 arranged at respective edge portions of the elements are common between the front surface-side element 5 and the rear surface-side element 6.
As illustrated in
In the control circuit board 1 according to this embodiment, the between-element communication input pin A1 of one element 5 (6) and the between-element communication output pin B1 of the other element 6 (5) communicate with each other. Similarly, the between-element communication input pin A2 of one element 5 (6) and the between-element communication output pin B2 of the other element 6 (5) communicate with each other, the between-element communication input pin A3 of one element 5 (6) and the between-element communication output pin B3 of the other element 6 (5) communicate with each other, and the between-element communication input pin A4 of one element 5 (6) and the between-element communication output pin B4 of the other element 6 (5) communicate with each other.
Note that, although
As illustrated in
Note that, in this embodiment, the both elements are arranged so that the front surface-side element 5 and the rear surface-side element 6 overlap with each other completely when viewed from a direction (board perpendicular line direction) perpendicular to the front surface (rear surface) of the board member 4. Note that, however, the arrangement of the both elements 5, 6 is not limited to this, and the both elements do not necessarily need to overlap with each other completely when viewed from the board perpendicular line direction.
As illustrated in
As illustrated in
As illustrated in
Additionally, in the control circuit board 1 according to this embodiment, since pins connected by the pattern 13 are arranged opposite to each other while sandwiching the board member 4 therebetween, the length of the pattern for connecting the pins can be shortest. For example, as illustrated in
As illustrated in
The signal output from the external signal output pins O1 to O5 is, for example, an input signal for generating a signal for emergency stop and operation permission of the robot 2.
In the control circuit board 1 according to this embodiment, communication is performed between the front surface-side element 5 and the rear surface-side element 6, as stated above. When abnormality occurs in one element 5 (6), the other element 6 (5) detects the abnormality, and the operation of the robot 2 is stopped while it is in operation and it cannot start operation while it is stationary. Thereby, loss of control function due to a single failure of an element configuring a control circuit can be prevented.
Additionally, in the control circuit board 1 according to this embodiment, the first edge portion 9 where the external signal input pins I1 to I5 are arranged in the front surface-side element 5 and the first edge portion 9 where the external signal input pins I1 to I5 are arranged in the rear surface-side element 6 are arranged opposite to each other, as illustrated in
Thus, as illustrated in
Additionally, in the control circuit board 1 according to this embodiment, since the front surface-side element 5 and the rear surface-side element 6 can use an element having a common specification, development/production cost can be reduced.
As a variation of the embodiment above, as illustrated in
In this case, as illustrated in
Accordingly, in this example, the pattern can be further simplified in each of the external signal input side and the external signal output side. Thereby, the pattern area in the control circuit board 1 can be further reduced.
Number | Date | Country | Kind |
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2014-222881 | Oct 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2015/080627 | 10/29/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2016/068264 | 5/6/2016 | WO | A |
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20160089781 | Yamazaki | Mar 2016 | A1 |
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Number | Date | Country | |
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20170318679 A1 | Nov 2017 | US |