Technical Field
[0001] The present invention relates to a damper opening/closing device, for example, a
damper opening/closing device suitable for opening and closing an air supply port,
an exhaust port, or the like, installed in a container or the like.
Background Art
[0002] As a device that serves to control opening and closing of a damper, for example,
there is the damper opening/closing device disclosed in
JP 2006-187524 A.
[0003] Such a damper opening/closing device is equipped with an opening/closing circuit
unit in which there are formed a charging circuit for accumulating an electric charge
in an electrical power storage means, and a discharging circuit for discharging the
electric charge accumulated in the electrical power storage means, and a relay that
switches to either one of the charging circuit or the discharging circuit, in accordance
with a connected state of the opening/closing circuit unit and an external power source.
[0004] When the opening/closing circuit unit and the external power source are in an electrically
connected energized state, the relay switches to the charging circuit, and an electric
charge is accumulated in the electrical power storage means. Further, when the opening/closing
circuit unit and the external power source are electrically disconnected, the relay
discharges the electric charge that was accumulated in the electrical power storage
means by the discharging circuit, and supplies the electric charge to a solenoid to
drive a plunger of the solenoid, and by a damper opening/closing mechanism being operatively
coupled to the plunger, the damper is changed from an open state into a closed state.
Summary of Invention
[0005] However, in the damper opening/closing device disclosed in
JP 2006-187524 A, it is necessary for the electric charge to be accumulated in the electrical power
storage means during a period in which electrical power is being supplied from the
external power source. Therefore, the charging circuit for accumulating the electric
charge, the electrical power storage means for accumulating the electric charge, and
the discharging circuit for discharging the electric charge from the electrical power
storage means at the time of a power failure are required.
[0006] Further, in the above-described damper opening/closing device, in the case of there
being one electrical power storage means, it becomes impossible for the damper to
be closed if the electrical power storage means has become damaged. This problem is
solved by connecting a plurality of such electrical power storage means in parallel,
but a concern arises in that the circuit system may become complex.
[0007] Further, if the amount of electric charge stored in the electrical power storage
means is small, it is not possible to secure sufficient energy to close the damper,
and there is a concern that the damper cannot be closed.
[0008] The present invention has been devised with the aim of solving the aforementioned
problems, and has the object of providing a damper opening/closing device which, even
in the case that supply of electrical power from an external power source is cut off,
is capable of closing an air supply port or the like without using an electrical power
storage means or the like, and in addition, is capable of being returned to its initial
open state in the case that supply of electrical power from the external power source
is restarted.
[0009] The damper opening/closing device according to the present invention is installed
in an opening used for air conditioning, and comprises an opening/closing lid, a retention
mechanism configured to retain the opening/closing lid and place the opening in an
open state during a period in which supply of electrical power is being carried out,
and to release retention of the opening/closing lid and place the opening in a closed
state when the supply of electrical power is stopped, and a return mechanism configured
to return the opening/closing lid to the state of being retained by the retention
mechanism, in a case that the opening/closing lid is in a closed state during the
period in which the supply of electrical power is being carried out.
[0010] In accordance with the damper opening/closing device according to the present invention,
even in the case that supply of electrical power from the external power source is
cut off, the damper opening/closing device is capable of closing the air supply port
or the like without using an electrical power storage means or the like, and in addition,
is capable of being returned to its initial open state in the case that supply of
electrical power from the external power source is restarted.
Brief Description of Drawings
[0011]
FIG. 1 is a plan view showing a damper opening/closing device according to the present
embodiment as viewed from above;
FIG. 2 is a side view showing the damper opening/closing device according to the present
embodiment as viewed from the direction of the arrow II in FIG. 1;
FIG. 3 is a front view showing the damper opening/closing device according to the
present embodiment as viewed from the direction of the arrow III in FIG. 1;
FIG. 4 is a plan view showing a return mechanism and a retention mechanism as viewed
from above;
FIG. 5A is a front view showing an assembly of a cam plate and a crank plate;
FIG. 5B is a cross-sectional view taken along line VB-VB in FIG. 5A;
FIG. 6 is a wiring diagram showing a part of a circuit system including a rotation
control unit; and
FIG. 7 is a time chart showing operations of the damper opening/closing device according
to the present embodiment.
Description of Embodiments
[0012] Hereinafter, an exemplary embodiment of a damper opening/closing device according
to the present invention will be described with reference to FIGS. 1 to 7.
[0013] As shown in FIGS. 1 to 3, a damper opening/closing device 10 according to the present
embodiment is installed, for example, in an opening 12 such as an air supply port
installed on the floor surface of a container or the like.
[0014] The damper opening/closing device 10 includes a base platform 16 having a frame portion
14 mounted so as to surround the opening 12 within the floor surface, an opening/closing
lid 18 that is installed to be capable of rotating with respect to the base platform
16 and that opens and closes the opening 12, a retention mechanism 20 fixed to the
base platform 16, and a return mechanism 24.
[0015] In addition to the above-described frame portion 14, the base platform 16 integrally
includes a pedestal 26, which is installed adjacent to one side of the frame portion
14.
[0016] The opening/closing lid 18 is formed, for example, by a metal plate, and with a sufficient
size so as to close the opening 12. In the example shown in FIG. 1, since the opening
12 has a rectangular shape when viewed from above, the opening/closing lid 18 is formed
in a rectangular shape in the same manner as the opening 12. Of course, depending
on the shape of the opening 12, the shape of the opening/closing lid 18 may be a circular
shape, an elliptical shape, a track shape, a polygonal shape, or the like. Moreover,
such a track shape is a shape that is made up from two opposing semicircular portions,
and two parallel straight line portions connecting the two semicircular portions.
Further, a locked metal fixture 27, which is locked and fixed by the retention mechanism
20, is provided on an upper part of the opening/closing lid 18.
[0017] The retention mechanism 20 retains the opening/closing lid 18 and places the opening
12 in the open state during a period in which supply of electrical power from an external
power source or the like is being carried out, and releases retention of the opening/closing
lid 18 when the supply of electrical power is stopped.
[0018] More specifically, as shown in FIGS. 2 and 4, the retention mechanism 20 includes
a motor base 28, and an electromagnetic chuck 30 fixed to a distal end portion of
the motor base 28. The motor base 28 includes, on the base platform 16, two metal
plates (a first metal plate 32A and a second metal plate 32B: see FIG. 4) installed
in an L-shape when viewed from above. Both the first metal plate 32A and the second
metal plate 32B are installed so that plate surfaces thereof extend in a vertical
direction, in other words, so that the plate surfaces are oriented along a horizontal
direction. The first metal plate 32A is installed on the base platform 16, and the
second metal plate 32B is installed from the base platform 16 to a location above
the opening/closing lid 18. However, the second metal plate 32B is not fixed to the
opening/closing lid 18. Further, a part of a lower portion of the second metal plate
32B is removed or cut off, so as not to interfere with an opening operation of the
opening/closing lid 18.
[0019] In addition, a mounting metal fixture 34 used for mounting the electromagnetic chuck
30 and having a U-shaped cross section is attached to the plate surface of the second
metal plate 32B, and the electromagnetic chuck 30 is attached to a distal end portion
of the mounting metal fixture 34. Further, a retaining metal fixture 36 is rotatably
attached by a support shaft 38 to the mounting metal fixture 34. The retaining metal
fixture 36 includes an attracted site 36a facing an attracting surface of the electromagnetic
chuck 30, and a locking site 36b having, for example, an L-shaped cross section, and
integrally provided on a distal end of the attracted site 36a.
[0020] In addition, as shown by the two-dot-dashed line in FIG. 2, in a state in which the
mounting metal fixture 34 is retained (attracted) by the electromagnetic chuck 30,
a portion of the locked metal fixture 27 provided on the upper part of the opening/closing
lid 18 is locked onto the locking site 36b, whereby the opening/closing lid 18 is
retained in the open state. When the supply of electrical power is stopped, and retention
(attraction) by the electromagnetic chuck 30 is released, the retaining metal fixture
36 is rotated about the support shaft 38 by the weight of the opening/closing lid
18, whereby the locked metal fixture 27 of the opening/closing lid 18 is disengaged
from the retaining metal fixture 36. As a result, the opening/closing lid 18 rotates
(falls) about hinges 22, and the opening 12 is placed in a closed state (refer to
the solid line in FIG. 2).
[0021] The hinges 22 are attached between the opening/closing lid 18 and portions of the
frame portion 14 of the base platform 16 where the pedestal 26 is provided. Consequently,
at first, the opening/closing lid 18 is retained by the retention mechanism 20 in
a state of being oriented obliquely upward with the hinges 22 serving as a fulcrum
or point of rotation. When the retention by the retention mechanism 20 is released,
the opening/closing lid 18 falls downward due to its own weight, and at this time,
the opening/closing lid 18 rotates downward about the hinges 22, and closes the opening
12. Moreover, in the example shown in FIG. 1, a case is shown in which the hinges
22 are attached on both left and right sides of a long side of the opening/closing
lid 18 that are adjacent to a portion where the pedestal 26 of the frame portion 14
is provided. Of course, the positions where the hinges 22 are attached and the number
of the hinges 22 may be appropriately set in accordance with the shape of the opening/closing
lid 18.
[0022] As shown in FIG. 2, when the supply of electrical power is restarted, the return
mechanism 24 lifts the opening/closing lid 18 upward, and causes the opening/closing
lid 18 to be returned to the state of being retained by the retention mechanism 20.
Further, during the supply of electrical power, even if the retention by the electromagnetic
chuck 30 is released and the opening/closing lid 18 is placed in the closed state,
the opening/closing lid 18 is lifted upward, and the opening/closing lid 18 is returned
to the state of being retained by the retention mechanism 20.
[0023] More specifically, as shown in FIGS. 1 and 3, the return mechanism 24 includes a
motor 40, an arm 42 that rotates the opening/closing lid 18 upward accompanying rotation
of the motor 40, a rotation control unit 44 that controls rotational driving of the
motor 40 (see FIG. 6), and a transmission mechanism 46 that transmits a rotational
force of the motor 40 to the arm 42 (see FIGS. 2, 5A, and 5B) .
[0024] Further, as shown in FIG. 1, the return mechanism 24 includes a handle 48 provided
on an upper surface of the opening/closing lid 18, and a hinge pin 50 provided on
the handle 48. The handle 48 is formed by, for example, opposing two L-shaped metal
plates 52a and 52b (see FIG. 3) that extend from a side on which the hinges 22 are
attached toward a side opposing to that side. The hinge pin 50 is connected between
the two metal plates 52a and 52b.
[0025] The motor 40 is installed on the pedestal 26 in a manner so that an output shaft
54 (rotary shaft) of the motor 40 penetrates through the second metal plate 32B (see
FIG. 5B) of the motor base 28.
[0026] As shown in FIGS. 5A and 5B, the transmission mechanism 46 includes a cam plate 56
attached to the output shaft 54 of the motor 40 that penetrates through the second
metal plate 32B. The cam plate 56 includes a cam surface 56a formed by an outwardly
bulging portion of a disk-shaped peripheral surface thereof.
[0027] As shown in FIG. 6, the rotation control unit 44 includes a damper internal circuit
64 connected between a power supply line 60 and a ground line 62, and a first switch
66A and a second switch 66B connected respectively between the power supply line 60
and the damper internal circuit 64. The first switch 66A includes, for example, a
normally open type make contact 68a (a-contact), and is turned on when supply of electrical
power from the external power source or the like is started. Consequently, electrical
power is supplied to the damper internal circuit 64 through the power supply line
60. On the other hand, the second switch 66B includes, for example, a normally closed
type break contact 68b (b-contact), and normally, electrical power from the external
power source or the like is supplied to the damper internal circuit 64 through the
power supply line 60.
[0028] The damper internal circuit 64 includes, for example, four contacts (first through
fourth contacts 70a to 70d). The first switch 66A is connected between the power supply
line 60 and the first contact 70a, and the second switch 66B is connected between
the power supply line 60 and the second contact 70b. The third contact 70c and the
fourth contact 70d are connected to the ground line 62.
[0029] Further, the damper internal circuit 64 includes the motor 40 connected between the
first contact 70a and the third contact 70c, a first limit switch 74A and a second
limit switch 74B connected in parallel between the first contact 70a and the motor
40, and the electromagnetic chuck 30 connected between the second contact 70b and
the fourth contact 70d.
[0030] The first limit switch 74A includes, for example, a normally closed type first break
contact 78a, and the second limit switch 74B includes, for example, a normally closed
type second break contact 78b. Accordingly, as can be understood from FIG. 6, the
motor 40 is rotationally driven when at least one of the first break contact 78a and
the second break contact 78b is placed in an on state.
[0031] Further, as shown in FIG. 2, the first limit switch 74A is attached, for example,
between the mounting metal fixture 34 and the opening/closing lid 18. Preferably,
the first limit switch 74A is attached at a position where the first break contact
78a of the first limit switch 74A becomes placed in the off state by the opening/closing
lid 18, at a stage when the opening/closing lid 18 transitions to the open state.
Of course, the first limit switch 74A may be attached at a position where the first
break contact 78a thereof becomes placed in the off state, at a stage when the opening/closing
lid 18 is fully opened.
[0032] The second limit switch 74B, for example, is attached to a surface of the second
metal plate 32B of the motor base 28, the surface facing the arm 42, above the cam
plate 56. Preferably, the second limit switch 74B is attached at a position where
the second break contact 78b is placed in the off state by the cam surface 56a of
the cam plate 56. In an initial state, specifically, in a state in which the arm 42
is in an initial position, as shown in FIG. 2, a pin 80a of a crank plate 80 is in
an upper limit position, and the cam surface 56a of the cam plate 56 presses the second
break contact 78b of the second limit switch 74B, whereby the second break contact
78b becomes placed in the off state. Moreover, the upper limit position refers to
a position from which the pin 80a is incapable of being moved upward any further.
[0033] Accordingly, when the cam plate 56 is rotated due to rotation of the motor 40, the
second break contact 78b becomes placed in the off state over a period of time during
which the cam surface 56a presses the second break contact 78b of the second limit
switch 74B. When the cam surface 56a separates away from the second break contact
78b, the second break contact 78b is placed in the on state.
[0034] As shown in FIGS. 2, 5A, and 5B, the transmission mechanism 46 includes the crank
plate 80, which is disposed on an outer side of the cam plate 56 and is attached to
the output shaft 54 of the motor 40. The crank plate 80 is provided with, on the surface
thereof that is opposite to the cam plate 56 side and at an eccentric position, the
pin 80a which projects outwardly.
[0035] As shown in FIGS. 1 and 2, the arm 42 is constituted by an elongate metal fixture
having an L-shaped cross section and extending from the base platform 16 side toward
the opening/closing lid 18 side. As shown in FIG. 2, the arm 42 includes a rotary
shaft 82 provided in a central portion thereof, and an elongate hole 84 which is provided
on the base platform 16 side, and through which the pin 80a of the crank plate 80
is inserted. The elongate hole 84 is formed so that a major axis thereof lies along
the longitudinal direction of the arm 42.
[0036] When the crank plate 80 is rotated in one direction (in a counterclockwise direction
when viewed from the output shaft 54 of the motor 40) by rotational driving of the
motor 40, the pin 80a of the crank plate 80 slides along the elongate hole 84 of the
arm 42 while rotating. Consequently, the arm 42 rotates in a counterclockwise direction
about the rotary shaft 82, and the hinge pin 50 of the handle 48 is hooked on a distal
end portion 42a (see FIG. 1) on the opening/closing lid 18 side, and is lifted upward.
As a result, the opening/closing lid 18 is rotated upward about the hinges 22, and
is retained in the open state by the electromagnetic chuck 30.
[0037] In this instance, operations of the damper opening/closing device 10 according to
the present embodiment will be described with reference to the time chart shown in
FIG. 7.
[0038] First, at time t1, when supply of electrical power to the power supply line 60 from
the external power source or the like is carried out, the first switch 66A is placed
in the on state, and electrical power is supplied to the motor 40, together with electrical
power being supplied to the electromagnetic chuck 30 via the second switch 66B. For
example, as shown in FIG. 2, by electrical power being supplied to the motor 40 (see
FIG. 3), the cam plate 56 and the crank plate 80 are rotated in a counterclockwise
direction, and along therewith, the cam surface 56a of the cam plate 56 separates
away from the second break contact 78b of the second limit switch 74B, and the second
limit switch 74B becomes placed in the on state (at time t2). Further, the arm 42
is also rotated in a counterclockwise direction about the rotary shaft 82, and gradually
lifts the opening/closing lid 18 upward (refer to the two-dot-dashed line in FIG.
2). Consequently, the opening/closing lid 18 rotates upward about the hinges 22.
[0039] In addition, accompanying rotation of the cam plate 56 and the crank plate 80, the
pin 80a of the crank plate 80 arrives, for example, at a lower limit position, or
alternatively in the vicinity thereof, and at a stage (for example, at time t3) at
which the opening/closing lid 18 is fully opened, the opening/closing lid 18 is retained
by the electromagnetic chuck 30. Moreover, the lower limit position refers to a position
from which the pin 80a is incapable of being moved downward any further. Further,
at this time, in accordance with the first break contact 78a being pressed by the
opening/closing lid 18, the first limit switch 74A becomes placed in the off state.
At this stage, since electrical power is being supplied to the motor 40 via the second
limit switch 74B, the cam plate 56 and the crank plate 80 continue to rotate in the
counterclockwise direction.
[0040] Thereafter, accompanying rotation of the cam plate 56 and the crank plate 80, the
cam surface 56a of the cam plate 56 presses the second break contact 78b of the second
limit switch 74B, whereby the second break contact 78b becomes placed in the off state
(at time t4), and supply of electrical power to the motor 40 is stopped. At this time,
since the pin 80a arrives at the upper limit position, or alternatively in the vicinity
thereof and the cam plate 56 and the crank plate 80 stop rotating, the arm 42 is returned
to the initial state (refer to the solid line in FIG. 2).
[0041] If the retention of the opening/closing lid 18 by the electromagnetic chuck 30 is
released and the opening/closing lid 18 becomes placed in the closed state due to
its own weight, since the first break contact 78a of the first limit switch 74A is
placed in the on state (at time t5), rotational driving of the motor 40 is started
(restarted) again, the operations at the times t2 to t4 are repeated, and the opening/closing
lid 18 is returned to the open state. Such a returning operation is based on priority
being given to driving of the opening/closing lid 18 to be opened, because basically,
it is necessary for the opening/closing lid 18 to be maintained open (in a state of
supplying air) at all times.
[0042] In contrast thereto, at the time of an emergency (at a time when a combustible gas
is detected or the like), the opening/closing lid 18 is placed in the closed state
by stopping the supply of electrical power to the power supply line 60. More specifically,
for example, at time t6, in the case that a combustible gas is detected, the supply
of electrical power to the power supply line 60 from the external power source or
the like is stopped. Consequently, the supply of electrical power to the electromagnetic
chuck 30 and the motor 40 is stopped, and the opening/closing lid 18 becomes placed
in the closed state.
[0043] In this manner, in the damper opening/closing device 10 according to the present
embodiment, the opening/closing lid 18 is retained by the retention mechanism 20 in
a state of being oriented obliquely upward with the hinges 22 serving as a fulcrum
or point of rotation, whereby the opening 12 can be placed in the open state. Even
if the retention by the electromagnetic chuck 30 is released and the opening/closing
lid 18 is placed in the closed state, the opening/closing lid 18 is driven by the
return mechanism 24, and the opening/closing lid 18 can be returned to the state of
being retained by the retention mechanism 20. In particular, when the opening/closing
lid 18 is retained in the open state by the retention mechanism 20, the arm 42 is
returned to the initial position. Therefore, the opening/closing lid 18 can be smoothly
returned to the open state by the return mechanism 24.
[0044] On the other hand, at the time of an emergency or the like, when the supply of electrical
power to the retention mechanism 20 is stopped, the retention by the retention mechanism
20 is released, and the opening/closing lid 18 falls downward due to its own weight.
At this time, the opening/closing lid 18 rotates downward about the hinges 22, and
closes the opening 12. More specifically, the opening 12 can be placed in the closed
state. Even if the supply of electrical power from the external power source is cut
off, the opening 12 can be closed without using an electrical means such as an electrical
power storage means or the like, and consumption of electrical power (standby power
or the like) can be reduced.
[0045] In the case that the supply of electrical power from the external power source is
restarted, the opening/closing lid 18 is retained again by the retention mechanism
20 in a state of being oriented obliquely upward with the hinges 22 serving as a fulcrum
or point of rotation, whereby the opening 12 can be placed in the open state.
[0046] Further, according to the present embodiment, there are included the crank plate
80 which is rotated by driving of the motor 40, and rotates the arm 42 in a direction
to open the opening/closing lid 18, and the cam plate 56 which is rotated together
with the crank plate 80 by driving of the motor 40. The cam plate 56 includes the
cam surface 56a that places the second break contact 78b in an off state based on
the arm 42 being returned to the initial position.
[0047] By rotating the crank plate 80 together with the cam plate 56 by the motor 40, it
is possible to perform, by the single motor 40, the operation of rotating the arm
42 in the direction to open the opening/closing lid 18 by the crank plate 80, and
the operation of placing the second break contact 78b in the off state by the cam
surface 56a of the cam plate 56 based on the arm 42 being returned to its initial
position, and it is possible to effectively simplify the structure and reduce the
number of component parts.
[0048] The above-described embodiment can be summarized in the following manner.
- [1] The damper opening/closing device 10 is a damper opening/closing device installed
in the opening 12 used for air conditioning, and comprises the opening/closing lid
18, the retention mechanism 20 that retains the opening/closing lid 18 and places
the opening 12 in the open state during a period in which supply of electrical power
is being carried out, and releases retention of the opening/closing lid 18 and places
the opening 12 in a closed state when the supply of electrical power is stopped, and
the return mechanism 24 that returns the opening/closing lid 18 to the state of being
retained by the retention mechanism 20, in the case that the opening/closing lid 18
is in the closed state during the period in which supply of electrical power is being
carried out.
In accordance with these features, initially, during the period in which electrical
power is being supplied, the retention mechanism 20 retains the opening/closing lid
18 and places the opening 12 in the open state. When the supply of electrical power
is stopped, the retention mechanism 20 releases the retention of the opening/closing
lid 18, and thereby places the opening 12 in the closed state. In this manner, even
if the supply of electrical power from the external power source is cut off, the opening
12 can be closed without using an electrical means such as an electrical power storage
means or the like, and consumption of electrical power (standby power or the like)
can be reduced. Additionally, even if the retention by the retention mechanism 20
is released and the opening/closing lid 18 is placed in the closed state during the
period in which supply of electrical power is being carried out, it is possible for
the opening/closing lid 18 to be returned to the state of being retained by the retention
mechanism 20, by the return mechanism 24.
- [2] In the present embodiment, the retention mechanism 20 may be the electromagnetic
chuck 30 that electromagnetically retains the opening/closing lid 18. The opening/closing
lid 18 can be retained in the open state by supplying electrical power thereto.
- [3] In the present invention, movement of the opening/closing lid 18 when retention
of the opening/closing lid 18 by the retention mechanism 20 is released takes place
due to the weight of the opening/closing lid 18. In accordance with this feature,
even if the supply of electrical power from the external power source is cut off,
the air supply port or the like can be closed by the opening/closing lid 18 without
using an electrical power storage means or the like.
- [4] In the present embodiment, the return mechanism 24 includes the first contact
70a and the second contact 70b, the motor 40 which is rotationally driven based on
at least one of the first contact 70a and the second contact 70b being placed in an
on state, and the arm 42 that rotates in a direction to open the opening/closing lid
18 from the initial position as the motor 40 is rotationally driven. The first contact
70a is placed in the off state based on the open state of the opening/closing lid
18, and the second contact 70b is placed in the off state based on the arm 42 being
returned to the initial position. In accordance with these features, when the opening/closing
lid 18 is retained in the open state by the retention mechanism 20, the arm 42 is
returned to the initial position. Therefore, the opening/closing lid 18 can be smoothly
returned to the open state by the return mechanism 24.
- [5] In the present embodiment, the open state of the opening/closing lid 18 is a state
in which the opening/closing lid 18 is retained by the retention mechanism 20, and
the second contact 70b is placed in the off state based on the arm 42 being returned
to the initial position, after the first contact 70a has been placed in the off state.
- [6] In the present embodiment, there are further included the crank plate 80 which
is rotated by driving of the motor 40, and rotates the arm 42 in the direction to
open the opening/closing lid 18, and the cam plate 56 that is rotated together with
the crank plate 80 by driving of the motor 40, and the cam plate 56 includes the cam
surface 56a that places the second contact 70b in the off state based on the arm 42
being returned to the initial position.
[0049] The crank plate 80 and the cam plate 56 are rotated together by the motor 40. Consequently,
it is possible to perform, by a single motor, the operation of rotating the arm 42
in the direction to open the opening/closing lid 18 by the crank plate 80, and the
operation of placing the second contact 70b in the off state by the cam surface 56a
of the cam plate 56 based on the arm 42 being returned to its initial position, and
it is possible to effectively simplify the structure and reduce the number of component
parts.
[0050] Moreover, the damper opening/closing device according to the present invention is
not limited to the above-described embodiment, and it is a matter of course that various
configurations could be adopted therein without departing from the essence and gist
of the present invention.