PLAIN-FACE SWITCH AND METHOD FOR ATTACHING THE PLAIN-FACE SWITCH
20170359068 · 2017-12-14
Inventors
Cpc classification
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A plain-face switch according to an embodiment is the mounted-type plain-face switch that is mounted into an opening, it includes a base unit that is provided at the back of the opening, a sensor module that has a flat sensor surface facing the side of the opening and that is supported by the base unit, and a securing unit that secures the base unit to the bottom surface, which is located at the back of the opening, and the securing unit is capable of adjusting the position or the tilt of the sensor module in the depth direction with respect to the opening such that the edge surface of the sensor module at the side of the opening enters a predetermined state with respect to the opening.
Claims
1. A mounted-type plain-face switch that is mounted into an opening, the plain-face switch comprising: a base unit that is provided at back of the opening; a sensor module that has a flat sensor surface facing side of the opening and that is supported by the base unit; and a securing unit that secures the base unit to a bottom surface that is located at the back of the opening, wherein the securing unit is capable of adjusting a position or a tilt of the sensor module in a depth direction with respect to the opening such that an edge surface of the sensor module at side of the opening enters a predetermined state with respect to the opening.
2. The plain-face switch according to claim 1, wherein the securing unit includes an elastic member that is provided between the base unit and the bottom surface and that is attached to the base unit; and a securing member that secures the base unit to the bottom surface.
3. The plain-face switch according to claim 2, wherein the base unit includes a rectangular plane section and leg sections that extend from at least two opposing sides of the plane section toward the bottom surface, the elastic member is provided at least at four corners or a center of the plane section, and the securing member is provided at least on the leg section in neighborhood of the four corners of the plane section.
4. The plain-face switch according to claim 2, wherein the securing member is a thread, and the plain-face switch comprises a packing that is provided to cover a clearance between the sensor module and an edge of the opening.
5. The plain-face switch according to claim 2, wherein the securing member includes a guide pin that is secured to the bottom surface and an adhesive agent that attaches the base unit to the guide pin.
6. The plain-face switch according to claim 2, wherein the elastic member is a coil spring, the base unit includes a protruding section that protrudes toward the bottom surface and that has one end side of the coil spring fitted therewith, and the protruding section is provided with a locking projection that locks the coil spring.
7. The plain-face switch according to claim 1, wherein the sensor module includes a capacitance-type sensor unit.
8. The plain-face switch according to claim 1, wherein the sensor module includes a cover unit that is provided on side of the opening and that is located at the opening; and a sensor main body to which the cover unit is attached.
9. The plain-face switch according to claim 8, wherein the sensor module includes a backlight that is provided between the cover unit and the sensor main body; and an indication unit that is provided between the backlight and the cover unit, and the cover unit is made of a light transmissive material.
10. The plain-face switch according to claim 8, wherein the sensor module includes a backlight that is provided between the cover unit and the sensor main body, and the cover unit is made of a light transmissive material and has an indication printed thereon.
11. The plain-face switch according to claim 8, comprising a switch box to which the sensor main body is attached, wherein the switch box is attached to the base unit at the side of the opening so that the sensor module is supported by the base unit via the switch box.
12. The plain-face switch according to claim 11, comprising a spacer that is attached to the switch box, wherein the sensor main body includes a securing box that is attached to the spacer; a securing plate that is attached to the securing box; and a sensor unit that is attached to the securing plate.
13. The plain-face switch according to claim 1, wherein the securing unit is capable of adjusting a position and a tilt of the sensor module in a depth direction with respect to the opening so that the predetermined state is obtained such that the edge surface of the sensor module at the side of the opening is flush with the opening.
14. A method for attaching a mounted-type plain-face switch that is attachable such that a sensor module is located at an opening, the method comprising: securing a base unit to a bottom surface at back of the opening with a securing unit; supporting the sensor module by the base unit such that a flat sensor surface faces side of the opening; and adjusting a secured state of the base unit by the securing unit so as to adjust a position or a tilt of the sensor module in a depth direction with respect to the opening such that an edge surface of the sensor module at the side of the opening enters a predetermined state with respect to the opening.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0036] A detailed explanation is given below of the configuration (referred to as “embodiment” below) for implementing the present invention with reference to the attached drawings. Furthermore, the same elements are attached with the same number in the entire explanation of embodiments.
First Embodiment
[0037]
[0038] Here, with regard to the XYZ axes that are illustrated in
[0039] If the XYZ axes are illustrated in the subsequent figures, the XYZ axes are described according to the foregoing, and the direction along the X axis is sometimes referred to as the X direction, the direction along the Y axis as the Y direction, and the direction along the Z axis as the Z direction.
[0040]
[0041] As illustrated in
Packing
[0042] The packing 20 covers the clearance between the opening 1a (see
Sensor Module
[0043] As illustrated in
Cover Unit
[0044] The cover unit 31 is provided in the sensor module 30 at the side of the opening 1a (see
[0045] Furthermore, in the cover unit 31, a back surface 31a, which is on the side of the sensor module 30, and a front surface 31b, which is on the opposite side, are flat surfaces, and when the sensor module 30 is positioned on the opening 1a (see
[0046] Here, according to the present embodiment, the front surface 31b of the cover unit 31 is an edge surface of the sensor module 30 at the side of the opening 1a; however, if the cover unit 31 is not provided and the sensor module 30 includes only the sensor main body 32, an edge surface of the sensor main body 32 at the side of the opening 1a is an edge surface of the sensor module 30 at the side of the opening 1a.
[0047] Furthermore, according to the present embodiment, the mark of the switch is illustrated on the front surface 31b of the cover unit 31 such that it is aligned with the position of the sensor of the sensor main body 32 so that it is possible to know where the switch is on the outer wall 1. Here, the mark of the switch may be illustrated on the front surface 31b of the cover unit 31 not only by printing but also by providing concavity and convexity on the front surface 31b of the cover unit 31, for example, by carving. Therefore, the front surface 31b of the cover unit 31 being a flat surface does not mean that there are no concavity and convexity at all on the surface, but it means that the front surface 31b is a flat surface when it is viewed as a whole.
Sensor Main Body
[0048]
[0049] According to the present embodiment, as the capacitance-type sensor unit 33 is used, the sensor surface of the sensor unit 33, which face the side of the opening 1a, is a flat surface. If the finger of a person, or the like, is located close, the sensor unit 33 detects it and performs an operation to turn on or off the switch.
[0050] The used sensor unit 33 according to the present embodiment is based on detection of changes in the capacitance (the line of electric force). More specifically, as illustrated in
[0051] In this state, as illustrated in
[0052] Furthermore, other capacitance-type sensor units may be used; however, in the case of the above-described sensor unit 33 that detects changes in the line of electric force according to the present embodiment, even if the finger 36d is separated from the sensor front surface, the finger 36d may be detected when it is located nearby.
[0053] Therefore, design flexibility of the cover unit 31 may be improved, such as increasing the thickness of the cover unit 31, as compared to a capacitance-type sensor unit for which there is a need to bring the finger 36d close such that the finger 36d is in contact with the sensor front surface.
[0054] Furthermore, it may be detected that the finger 36d is located nearby if there is a space (air layer), or the like, between the cover unit 31 and the sensor front surface. Therefore, it is not necessary to care about the space that is formed between the cover unit 31 and the sensor unit 33 during assembling, and the plain-face switch 10 without the need of severer dimensional management or high assembly accuracy may be configured.
[0055] An explanation of the sensor main body 32 is continued with reference back to
[0056] Furthermore, the securing box 35 is provided with thread fastening holes 35a, 35b on both edges in the X direction. Moreover, undepicted internal thread structures (helical grooves), which correspond to the external thread structure of a thread, are formed on the inner circumferences of the thread fastening holes 35a, 35b.
[0057] Furthermore, thread holes 34a, 34b are provided on both edges of the securing plate 34 in the X direction, and tapered flanges, which receive threads 38a, 38b, are provided on the circumferential edges of the thread holes 34a, 34b.
[0058] Therefore, the securing plate 34 may be secured to the securing box 35 as described below. First, the securing plate 34 with the controller A attached to the back surface of the securing plate 34 is mounted on the securing box 35 such that the controller A is located in the space 37 of the securing box 35.
[0059] Next, as indicated by the dashed-dotted line in
[0060] Furthermore, as illustrated in
[0061] Furthermore, the securing plate 34 is provided with a pair of thread fastening holes 34c, 34d on both edges in the Y direction. Moreover, undepicted internal thread structures (helical grooves), which correspond to the external thread structures of the threads 38c, 38d, are formed on the inner circumferences of the thread fastening holes 34c, 34d.
[0062] Therefore, by using the threads 38c, 38d, the sensor unit 33 may be secured to the securing plate 34, which is secured to the securing box 35 as described above.
[0063] More specifically, first, the sensor unit 33 is mounted on the securing plate 34, which is secured to the securing box 35.
[0064] Next, as indicated by the dashed-dotted line in
[0065] As described above, when the sensor unit 33, the securing plate 34, and the securing box 35 are assembled, the sensor main body 32 is obtained as illustrated in
Spacer
[0066] The spacer 40 is a component that secures the sensor main body 32 to the switch box 50. According to the present embodiment, as the spacer 40, a pair of spacers 40a, 40b is provided, which corresponds to a pair of thread fastening holes 50a, 50b of the switch box 50, as illustrated in
[0067] Furthermore, undepicted internal thread structures (helical grooves), which correspond to the external thread structures of the threads 42a, 42b, are formed on the inner circumferences of the thread fastening holes 50a, 50b in pair in the switch box 50.
[0068] Therefore, as indicated by the dashed-dotted line in
[0069] Here, each of the spacers 40a, 40b is provided with a pair of thread fastening holes on the top and the bottom as viewed in the drawing. More specifically, the spacer 40a is provided with a pair of thread fastening holes 43a, 43b on the top and the bottom as viewed in the drawing, and the spacer 40b is provided with a pair of thread fastening holes 43c, 43d on the top and the bottom as viewed in the drawing.
[0070] Furthermore, undepicted internal thread structures (helical grooves), which correspond to the external thread structure of the threads 39a, 39b, 39c, and 39d, are formed on the inner circumferences of the thread fastening holes 43a, 43b, 43c, and 43d.
[0071] Furthermore, the sensor main body 32 is provided with thread holes, through which the threads 39a, 39b, 39c, and 39d are inserted, on four corners. Moreover, as it is understood from the illustration of the securing box 35 in
[0072] Therefore, as described above, after the spacers 40a, 40b are secured to the switch box 50, the threads 39a, 39b, 39c, and 39d are inserted into the thread holes on the four corners of the sensor main body 32, and the threads 39a, 39b, 39c, and 39d are engaged with the thread fastening holes 43a, 43b, 43c, and 43d of the spacers 40a, 40b, as indicated by the dashed-dotted line in
Switch box
[0073] As illustrated in
[0074] Therefore, according to the present embodiment, the sensor main body 32 is supported by the base unit 60 via the switch box 50. However, a configuration may be such that the base unit 60 itself is provided with a structure for securing the sensor main body 32 and the sensor main body 32 is directly supported by the base unit 60.
[0075] As the switch box 50 according to the present embodiment, a commercially available switch box, which conforms to the standard of JIS, is used. Therefore, for example, if the existing switch is replaced with the plain-face switch according to the present embodiment, the existing switch box may be reused. Furthermore, with this configuration, the base unit 60 itself may be manufactured in conformity to the typical switch box 50; thus, general versatility of the base unit 60 may be improved.
Base Unit
[0076] As illustrated in
[0077] In
[0078] The right side in the X direction in
[0079] In this way, the switch box 50 is secured to the base unit 60 not only by the holding pieces 62a, 62b and 62c, 62d of the base unit 60 but also by being supported by the switch-box support section 64 at the bottom. As a result, the switch box 50 is secured to the base unit 60 in a more stable manner as compared to the case where it is secured by only the holding pieces 62a, 62b and 62c, 62d.
[0080] Furthermore, as described below in detail, the base unit 60 is a securing unit that is capable of adjusting the position and the tilt of the sensor module 30 in the depth direction with respect to the opening 1a (see
[0081] A detailed explanation is given below of the configuration of the securing unit according to the first embodiment which is capable of adjusting the position and the tilt in the depth direction.
[0082] Here, the present embodiment describes the case where the plain-face switch 10 is secured to the inner wall 2, which is located at the back of the opening 1a; however, the area where the plain-face switch 10 is secured is not necessarily the inner wall 2 and therefore the inner wall 2 is described below as the bottom surface that is located at the back of the opening 1a. Furthermore, as the bottom surface according to the present embodiment is the inner wall 2, the bottom surface (the inner wall 2) is mentioned in the description.
[0083] As illustrated in
[0084] Here, the four corners do not mean the absolute edges but they mean the positions that are offset to four corner sides with reference to the center of the plane section 61 so as to receive the plane section 61 in a well-balanced manner when it is received. Furthermore, although coil springs are used as the elastic members 70a, 70b, 70c, and 70d according to the present embodiment, there is not necessarily limitation on coil springs.
[0085] Furthermore, the lengths of the used elastic members 70a, 70b, 70c, and 70d, i.e., coil springs, are longer than the lengths of the leg sections 63a, 63b of the base unit 60 in a state where they are fully stretched without any loads being applied.
[0086]
[0087] In
[0088] Furthermore, the protruding section 72d is provided with a locking projection 73d that is formed to be slightly larger than the inner diameter of the elastic member 70d (coil spring) to lock the elastic member 70d (coil spring).
[0089] Thus, the elastic member 70d (coil spring) is pushed over the locking projection 73d and the elastic member 70d (coil spring) is locked, whereby the elastic member 70d is prevented from being pulled out of the protruding section 72d. Furthermore, the other elastic members 70a, 70b, and 70c are secured to the plane section 61 of the base unit 60 with the protruding sections that have the same structure.
[0090] In this manner, during an operation to install the plain-face switch 10, the elastic members 70a, 70b, 70c, 70d are prevented from being separated from the base unit 60, whereby the operating efficiency of the operation to install the plain-face switch 10 may be improved.
[0091] Furthermore, as illustrated in
[0092] Specifically, the bent section 65a is provided with thread holes 66a, 66c, the bent section 65b is provided with thread holes 66b, 66d, and the thread holes 66a, 66b, 66c, and 66d are provided on the leg sections 63a, 63b such that they conform to the neighborhoods of the four corners of the plane section 61.
[0093] Furthermore, threads are used as securing members for securing the base unit 60 to the bottom surface (the inner wall 2), and the threads are screwed into the bottom surface (the inner wall 2) through the thread holes 66a, 66b, 66c, and 66d so that the base unit 60 is secured to the bottom surface (the inner wall 2).
[0094] Here, as described above, the used elastic members 70a, 70b, 70c, and 70d are longer than the lengths of the leg sections 63a, 63b of the base unit 60 in a state where they are fully stretched without any loads being applied, although the secured state is described in detail later.
[0095] Therefore, without screwing the threads until a state is such that the bent section 65a of the leg section 63a and the bent section 65b of the leg section 63b are brought into contact with the bottom surface (the inner wall 2), a state is obtained such that the base unit 60 is fixed due to the biasing forces of the elastic members 70a, 70b, 70c, and 70d that are provided between the bottom surface (the inner wall 2) and the base unit 60 (the plane section 61).
[0096] In this way, as the securing unit is made up of the elastic members 70a, 70b, 70c, and 70d and the securing member (thread), the base unit 60 may be fixed in a state (floating state) where it is separated from the bottom surface (the inner wall 2) and, by changing the screwing degree of each thread, the position and the tilt in the depth direction may be changed.
[0097] Furthermore, changes in the position and the tilt in the depth direction mean changes in the position and the tilt of the sensor module 30, supported by the base unit 60, in the depth direction. That is, the securing unit, including the elastic members 70a, 70b, 70c, and 70d and the threads as securing members, according to the present embodiment is the securing unit that is capable of adjusting the position and the tilt of the sensor module 30 in the depth direction with respect to the opening 1a such that, for example, a predetermined state is obtained such that the edge surface of the sensor module 30 at the side of the opening 1a is flush with the opening 1a or a predetermined state is obtained such that it is tilted with respect to the opening 1a.
[0098] With reference to
[0099] If the bottom surface (the inner wall 2) is a material, such as wood, which may be processed relatively easily, the thread hole 2a does not need to be provided with an internal thread structure (helical groove) on its inner circumference, and a hole only has to be formed as an opening, through which a thread starts to be inserted. Furthermore, for example, in a case where the existing switch is replaced with the plain-face switch 10, as there is the opening 1a of the outer wall 1, illustrated in
[0100] Next, as indicated by the thick arrow in
[0101] More specifically, the thread holes 66a, 66b, 66c, and 66d (see
[0102]
[0103] After the securing step to secure the base unit 60 is finished, the supporting step is then performed to cause the base unit 60 to support the sensor module 30, as illustrated in
[0104] More specifically, as described above, after the step is performed to attach the sensor main body 32 to the switch box 50, the step is performed to attach the switch box 50 to the base unit 60, as indicated by the thick arrow in
[0105]
[0106] As illustrated in
[0107] Furthermore, as illustrated in
[0108] Therefore, next, an adjustment step is performed to adjust the secured state of the securing member (the thread 2b) such that the sensor module 30 is in a predetermined state. More specifically, for example, the screwing degree of the thread 2b, which is a securing member, with respect to the bottom surface (the inner wall 2) is adjusted by using a driver, or the like, so that the cover unit 31, including the flat surface that is located at the opening 1a for the sensor module 30, becomes flush with the opening 1a (the outer wall 1) as in the state of
[0109] That is, the adjustment step is a step at which the secured state of the base unit 60 is adjusted by the securing unit, which includes the elastic members 70a, 70b, 70c, 70d and the securing member (the thread 2b), more specifically, the secured state (the screwing degree with respect to the bottom surface (the inner wall 2)) of the securing member (the thread 2b) is adjusted such that the position and the tilt of the sensor module 30 in the depth direction with respect to the opening 1a is adjusted so that the edge surface (the front surface 31b of the cover unit 31 according to the present embodiment) of the sensor module 30 at the side of the opening 1a is in a predetermined state (the state of being flush according to the present embodiment) with respect to the opening 1a.
[0110] Furthermore, the present embodiment illustrates a case where the predetermined state is that the sensor module 30 is flush with the opening 1a (the outer wall 1); however, for example, in a case where the installation area of the plain-face switch 10 is near the floor of a room, if it is slightly tilted upward, the operability of the switch is likely to be improved. In this case, the predetermined state may be a state of being slightly tilted upward.
[0111] Furthermore, to obtain flushness, or the like, it is considered that adjustment of the tilt is typically accompanied; however, if there is a need for only adjustment of the depth or conversely if there is a need for only adjustment of the tilt, only the needed adjustment has to be performed, and therefore the adjustment step is sometimes the step to adjust the position or the tilt in the depth direction.
[0112] In this way, after the predetermined state is obtained, finally, the packing 20 is attached such that the clearance between the sensor module 30 and the opening 1a is covered, as illustrated in
[0113] As described above, with the mounted-type plain-face switch 10 according to the present embodiment, the plain-face switch 10 may be easily secured such that it is flush with the opening 1a, and the design may be improved. Furthermore, the plain-face switch 10 may be easily secured such that it is tilted with respect to the opening 1a.
[0114] In the case that is stated in the above description, the plain-face switch 10 is provided on a wall of a house, a conference room, or the like; however, the plain-face switch 10 may be provided on furniture, such as desk or shelf. As for the type of usage of the switch, it may be used as a light switch and it may be also used as a switch for other devices for air conditioning, or the like.
[0115] In the plain-face switch 10 according to the first embodiment, the base unit 60 is in the state (floating state) where it is separated from the bottom surface (the inner wall 2) even in the mounted state. Therefore, to prevent the entire plain-face switch 10 from being moved due to the movement of the base unit 60 when the plain-face switch 10 is pushed, it is preferable that the elastic members 70a, 70b, 70c, 70d have such an elastic force that the base unit 60 is immovable even when the plain-face switch 10 is pushed.
Second Embodiment
[0116] According to the first embodiment, the thread 2b is used as the securing member for securing the base unit 60 to the bottom surface (the inner wall 2); however, as described below in specific, a second embodiment is different in that, instead of the thread 2b, the configuration of the securing member includes a guide pin, which is provided on the bottom surface (the inner wall 2), and an adhesive agent, and it is the same as the first embodiment in other aspects.
[0117] A specific explanation is given below of the configuration of the securing member, which includes the guide pin and the adhesive agent, by stating the different aspect from the attachment method according to the first embodiment.
[0118] First, in the same manner as in the first embodiment, illustrated in
[0119] Then, the guide pins 2c are inserted into guide pin holes that are provided in the same manner as the thread holes 66a, 66b, 66c, and 66d (see
[0120] Then, at the same steps as those in the first embodiment, the sensor module 30 is supported by the base unit 60. The state where attachment of the sensor module 30 is finished, i.e., the state that is equivalent to
[0121] Next, the adjustment step is performed to adjust the secured state of the securing member such that the sensor module 30 enters a predetermined state; however, according to the second embodiment, instead of adjusting the secured state of the securing member (the thread 2b) as explained in the first embodiment, the adjustment step is changed as illustrated in
[0122] Specifically, as illustrated in
[0123] That is, a change is made so that adjustment of the secured state of the securing member is conducted such that, although the screwing degree of the thread 2b, which is a securing member, with respect to the bottom surface (the inner wall 2) is adjusted according to the first embodiment, the edge surface (the front surface 31b of the cover unit 31 according to the present embodiment) of the sensor module 30 at the side of the opening 1a is retained at the predetermined state (the state of being flush according to the present embodiment) with respect to the opening 1a while the adhesive agent becomes hardened according to the second embodiment.
[0124] Even if the flat plate 80 is removed after the adhesive agent 3a is hardened, part (the cover unit 31) of the sensor module 30 does not protrude from the opening 1a again, and the task of attaching the plain-face switch 10 according to the second embodiment is finished.
[0125] As described above, in the case of the second embodiment, as there is no need for the task of adjusting the screwing degree of the thread 2b by inserting the driver as in the first embodiment, the size of the opening 1a may be equal to the size of the sensor module 30, more specifically, the size of the cover unit 31. Therefore, it is not necessary to cover the clearance with the packing 20 as in the first embodiment.
[0126] Furthermore, if the size of the opening 1a is equal to the outer shape of the cover unit 31, the task of inserting the base unit 60 to the back of the opening 1a through the opening 1a may be performed such that the base unit 60 is tilted with respect to the opening 1a so that the bent section 65a (see
[0127] The present invention has been explained above on the basis of the embodiments; however, the present invention is not limited to the embodiments, and various modifications may be made without departing from the scope thereof. The above-described embodiment illustrates a case where the cover unit 31 is provided with the mark (indication) of the switch; however, there is no limitation on the mark of the switch being provided on the cover unit 31 itself, and the position of the switch may be indicated by using other methods.
[0128] For example, according to a modification of the sensor module 30, illustrated in
[0129] More specifically, the cover unit 31 is made of a light transmissive material and the indication of the indication unit 88 is projected onto the cover unit 31 by the backlight 87 so that the mark of the switch, or the like, may be indicated. As the indication unit 88, it is possible to use a transparent plate, on which the mark of the switch is depicted, or a liquid crystal device that displays the mark of the switch. Furthermore, as the backlight 87, it is possible to use the one that includes a light guide plate 85 and a light source 86 that emits light to the light guide plate 85 as used in liquid crystal devices, or the like.
[0130] In the case of this configuration, if the back surface 31a of the cover unit 31 at the side of the sensor main body 32 is provided with a half mirror (not illustrated), the mark of the switch may be indicated only when the backlight 87 is turned on.
[0131] Furthermore, if only part of the wallpaper, corresponding to the plain-face switch 10, is optically transmissive to such a degree that when the backlight 87 is turned on, the mark of the switch emerges, it is possible to develop a design of the wall such that the presence of the plain-face switch 10 is not visible at the normal time. In this case, for example, in conjunction with a human sensor, or the like, the backlight 87 may be turned on so that the mark of the switch is indicated only when someone is approaching.
[0132] Furthermore, without the provision of the half mirror, the indication may be directly printed on the cover unit 31, which is formed with a light transmissive material, so that the indication is lighted up by the backlight 87. Especially at the night, or the like, the indication by only printing is hard to be visible; however, the above lighting-up allows the configuration to instantly know where the switch is located. Furthermore, the present embodiment describes the case where the mark of the switch is indicated; however, changes may be appropriately made as to what kind of mark is indicated, and there is no limitation on the mark of the switch.
[0133] Furthermore, in the case of the first embodiment, too, as illustrated in
[0134] Furthermore, the first embodiment and the second embodiment describe the configuration where the elastic members 70a, 70b, 70c, 70d are provided at the four corners of the back surface of the plane section 61 of the base unit 60; however, there is no limitation on this configuration.
[0135] For example, the configuration may be the modification that is illustrated in
[0136] As illustrated in
[0137] Furthermore, the base unit 60′ is provided with protruding sections 72′ that abut the inner circumference of the elastic member 70′, arranged at substantially 90°. More specifically, the four protruding sections 72′, protruding from the plane section 61 toward the side of the undepicted bottom surface (the inner wall 2), are provided at two areas located away in the X direction and at two areas located away in the Y direction, and the four protruding sections 72′ are provided such that they are located at the positions with the same distance with reference (origin) to the center of the plane section 61.
[0138] Furthermore, the distance between the protruding sections 72′ at two areas, located away in the X direction, is a distance that nearly equals the inner diameter of the elastic member 70′, which is a coil spring. The distance between the protruding sections 72′ at two areas, located away in the Y direction, is also a distance that nearly equals the inner diameter of the elastic member 70′.
[0139] Furthermore, the inner circumference of the elastic member 70′ abuts the four protruding sections 72′, and the elastic member 70′ is attached to the base unit 60′ such that the elastic member 70′ is engaged with the protruding section 72′; thus, in the same manner as described in the first embodiment, the elastic member 70′ is prevented from being separated from the base unit 60′ when the task of attaching the plain-face switch 10 is performed.
[0140] The length of the used elastic member 70′ is also longer than the lengths of the leg sections 63a, 63b of the base unit 60′ in a state where it is fully stretched without any loads being applied. Therefore, the base unit 60′ may be fixed in the state (floating state) where it is separated from the undepicted bottom surface (the inner wall 2) in the same manner as the base unit 60 according to the first embodiment, and by adjusting the screwing degree of the threads 2b (not illustrated), which are screwed into the undepicted bottom surface (the inner wall 2) through the thread holes 66a, 66b, 66c, and 66d, with respect to the bottom surface (the inner wall 2), the position and the tilt in the depth direction may be changed.
[0141] Thus, according to the modification that is illustrated in
[0142] Thus, the present invention is not limited to specific embodiments, it includes various changes made, and it is obvious to a person skilled in the art from the description in claims.
[0143] According to the present invention, it is possible to provide a mounted-type plain-face switch that is attachable such that the sensor module is located at the opening and that may be easily provided such that the sensor module is flush with the opening or may be provided such that it is tilted with respect to the opening, and a method for attaching the plain-face switch.
[0144] Furthermore, as explained in detail in the embodiments, or the like, the detailed explanation of the invention also describes the invention related to a method for attaching a plain-face switch as noted below.
Note 1
[0145] A method for attaching a mounted-type plain-face switch that is attachable such that a sensor module is located at an opening, the method comprising:
[0146] securing a base unit to a bottom surface at back of the opening with a securing unit;
[0147] supporting the sensor module by the base unit such that a flat sensor surface faces side of the opening; and
[0148] adjusting a secured state of the base unit by the securing unit so as to adjust a position or a tilt of the sensor module in a depth direction with respect to the opening such that an edge surface of the sensor module at the side of the opening enters a predetermined state with respect to the opening.
Note 2
[0149] The attachment method according to note 1, wherein the predetermined state is a state where the edge surface of the sensor module at the side of the opening is flush with the opening.
Note 3
[0150] The attachment method according to note 1 or 2, wherein
[0151] the securing unit includes an elastic member, which is provided between the base unit and the bottom surface, and a securing member that secures the base unit to the bottom surface, and
[0152] the adjusting is adjusting a secured state of the securing member to obtain the predetermined state.
Note 4
[0153] The attachment method according to note 3, wherein
[0154] the base unit includes a rectangular plane section and leg sections that extend from at least two opposing sides of the plane section toward the bottom surface,
[0155] the elastic member is provided at least at four corners or a center of the plane section,
[0156] the securing member is provided at least on the leg section in neighborhood of the four corners of the plane section, and
[0157] the adjusting the secured state of the securing member is adjusting the secured state of each securing member to obtain the predetermined state.
Note 5
[0158] The attachment method according to note 3 or 4, wherein
[0159] the securing member is a thread, and
[0160] the adjusting the secured state of the securing member is adjusting a screwing degree of the thread with respect to the bottom surface.
Note 6
[0161] The attachment method according to note 3 or 4, wherein
[0162] the securing member includes a guide pin that is secured to the bottom surface and an adhesive agent that attaches the base unit to the guide pin, and
[0163] the adjusting the secured state of the securing member is conducted such that the adhesive agent becomes hardened while the edge surface of the sensor module at the side of the opening is retained at a predetermined state with respect to the opening.
Note 7
[0164] The attachment method according to any one of notes 1 to 6, wherein
[0165] the sensor module includes a sensor main body and a cover unit that is attached to the sensor main body at the side of the opening, and
[0166] the supporting includes [0167] attaching the sensor main body to a switch box; and [0168] attaching the switch box to the base unit.