The present invention relates to a wireless charging device for charging a portable terminal such as a cellphone, a program therefor, and an automobile using it.
With great advancements in functionality of portable terminals such as cellphones, their power consumptions have increased.
As a result, they are now required to be able to be charged at various places such as inside automobiles. Ones capable of what is called wireless charging which does not use a cable are attracting much attention as a recent trend.
A wireless charging device described below has been proposed which satisfies e above requirement is one.
The wireless charging device is equipped with a body case whose top surface is provided with a placement plate, a charging coil which is disposed movably in the body case so as to be opposed to the bottom surface of the placement plate, a driver for moving the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate, and a controller which is connected to the driver and the charging coil.
The charging coil is provided with plural position detection coils for detecting a position of a portable terminal that is put on the top surface of the placement plate (refer to Patent document 1 for example).
Patent document 1: JP-A-2009-247194
In the above conventional example, when a portable terminal is put on the top surface of the placement plate, a position of the portable terminal is detected by the position detection coils and the charging coil is moved to the detected position. Charging can be performed efficiently because it is performed in this state.
More specifically, pulse signals are sent from the position detection coils. Whether or not and at what position a portable terminal has been put on the placement plate are detected on the basis of whether or not echo signals return immediately thereafter from a charging coil incorporated in the portable terminal (in the following description, a charging coil incorporated in a portable terminal will be referred to as a “terminal charging coil”).
However, depending on the position of the charging coil (incorporated in the body case of the wireless charging device) that completed charging, placement of a portable terminal on the top surface of the placement plate may be detected erroneously though no portable terminal has been put on it, causing an erroneous operation to follow.
This phenomenon occurs in the following manner. To detect whether or not and at what position it has been put a portable terminal has been put on the placement plate, as described above the position detection coils send pulse signals. Echo signals also return from the charging coil and are detected erroneously as ones from the terminal charging coil, causing an erroneous operation to follow.
An object of the present invention is to prevent such an erroneous Operation.
To attain the above object, the invention provides a configuration comprising a body case whose top surface is provided with a placement plate; plural position detection coils which are provided in the placement plate and detect a position of a portable terminal that is put on a top surface of the placement plate; a charging coil which is disposed movably in the body case so as to be opposed to a bottom surface of the placement plate; a driver which moves the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate; and a controller which is connected to the driver and the charging coil, wherein after completion of charging of the portable terminal by the charging coil, the controller moves, using the driver, the charging coil to a position where its center deviates from the center of any of the plural position detection coils. The intended object is attained by this configuration.
The invention also provides a configuration comprising a body case whose top surface is provided with a placement plate; plural position detection coils which detect a position of a portable terminal that is put on a top surface of the placement plate; a charging coil which is disposed movably in the body case so as to be opposed to a bottom surface of the placement plate; a driver which moves the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate; and a controller which is connected to the driver and the charging coil, wherein the controller causes the plural position detection coils to send detection pulses, then varies a judgment level for judgment as to whether a portable terminal has been put on the top surface of the placement plate on the basis of echo signals detected by the position detection coils, and thereafter judges whether a portable terminal has been put on the top surface of the placement plate using the judgment level. The intended object is attained by this configuration.
Providing the above-described configuration comprising a body case whose top surface is provided with a placement plate; plural position detection coils which are provided in the placement plate and detect a position of a portable terminal that is put on a top surface of the placement plate; a charging coil which is disposed movably in the body case so as to be opposed to a bottom surface of the placement plate; a driver which moves the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate; and a controller which is connected to the driver and the charging coil, wherein after completion of charging of the portable terminal by the charging coil, the controller moves, using the driver, the charging coil to a position where its center deviates from the center of any of the plural position detection coils, the invention makes it possible to prevent an erroneous operation.
That is, in the invention, since after completion of charging of a portable terminal by the charging coil, the controller moves, using the driver, the charging coil to a position where its center deviates from the center of any of the plural position detection coils, echo signals transmitted from the charging coil in response to pulse signals transmitted from the position detection coils become sufficiently smaller than the judgment level.
This prevents an event that whether or not a portable terminal has been put on the top surface of the placement plate or whether or not a portable terminal has been put on somewhere on the top surface of the placement plate is detected erroneously on the basis of echo signals transmitted from the charging coil, causing an erroneous operation to follow.
Furthermore, providing the comprising a body case whose top surface is provided with a placement plate; plural position detection coils which detect a position of a portable terminal that is put on a top surface of the placement plate; a charging coil which is disposed movably in the body case so as to be opposed to a bottom surface of the placement plate; a driver which moves the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate; and a controller which is connected to the driver and the charging coil, wherein the controller causes the plural position detection coils to send detection pulses, then varies a judgment level for judgment as to whether a portable terminal has been put on the top surface of the placement plate on the basis of echo signals detected by the position detection coils, and thereafter judges whether a portable terminal has been put on the top surface of the placement plate using the judgment level, the invention makes it possible to prevent an erroneous operation.
That is, in the invention, since the controller causes the plural position detection coils to send detection pulses, then varies a judgment level for judgment as to whether a portable terminal has been put on the top surface of the placement plate on the basis of echo signals detected by the position detection coils, and thereafter judges whether a portable terminal has been put on the top surface of the placement plate using the judgment level, whether or not a portable terminal has been put on the top surface of the placement plate can be judged without being disturbed by echo signals transmitted from the charging coil, as a result of which an erroneous operation can be prevented.
A first embodiment of the present invention will be hereinafter described with reference to the accompanying drawings.
As shown in
An electronic apparatus 4 for reproducing music and video and displaying a car navigation picture is disposed beside the steering wheel 3.
Furthermore, a wireless charging device 5 is disposed in the rear of the electronic apparatus 4 in the vehicle compartment 2.
As shown in
The individual members and units will be described below in detail.
First, the placement plate 6 will be described.
As shown in
The surface plate 11 and the back plate 13 are made of a synthetic resin and the intermediate plate 12 is made of ceramic. That is, they are formed so as to allow a magnetic flux coming from the charging coil 8 to pass through themselves and go toward a portable terminal 15.
Position detection coil 14 (see
The position detection coils 14, which are the same as the ones used in the above-mentioned Patent document 1 (JP-A-2009-247194), serve to detect at what position on the top surface of the placement plate 6 a portable terminal 15 has been put in a manner shown in
In the embodiment, at what position on the top surface of the placement plate 6 a portable terminal 15 has been put in the manner shown in
Next, the charging coil 8 and neighborhood will be described.
As seen from
As shown in
A gap of 0.3 mm is formed between the bottom surface of the support leg 17 and the top surface of a metal support plate 18 which is disposed under the support leg 17. Therefore, in an ordinary state, the bottom surface of the support leg 17 does not come into contact with the top surface of the support plate 18 while the charging coil 8 is being moved.
In the embodiment, in the above-described configuration, the support leg 17 is disposed under the charging coil 8.
A control board 19 and a bottom plate 20 of the body case 7 are disposed under the support plate 18, and a support body 21 which penetrates through the control board 19 is disposed between the bottom surface of the support plate 18 and the top surface of the bottom plate 20.
Next, the driver will be described.
As shown in
More specifically, a through-hole (not shown) through which the X-axis drive shaft 22 penetrates and a through-hole 24 through which the Y-axis drive shaft 23 penetrates are formed through the holding body 16 so as to be spaced from each other by a prescribed distance in the vertical direction and to cross each other. The X-axis drive shaft 22 and the Y-axis drive shaft 23 penetrate through those through-holes and are thereby engaged with the holding body 16.
The X-axis drive shaft 22 is provided with a worm wheel 25 at a position that is close to one end and gears 26 at the respective ends.
The worm wheel 25 is engaged with a worm 27 which is linked to a motor 28.
The gears 26 at the respective ends are engaged with respective gear plates 29.
Therefore, when the motor 28 is driven, the worm 27 is rotated, whereby the worm wheel 25 is moved in the X-axis direction together with the X-axis drive shaft 23. As a result, the charging coil 8 is moved in the X-axis direction.
The Y-axis drive shaft 23 is provided with a worm wheel 30 at a position that is close to one end and gears 31 at the respective ends.
The worm wheel 30 is engaged with a worm 32 which is linked to a motor 33.
The gears 31 at the respective ends are engaged with respective gear plates 34.
Therefore, when the motor 33 is driven, the worm 32 is rotated, whereby the worm wheel 30 is moved in the Y-axis direction together with the Y-axis drive shaft 23. As a result, the charging coil 8 is moved in the Y-axis direction.
In
As shown in
The charging coil 8 is connected to the controller 10 via a charging coil controller 38, and the position detection coils 14 are connected to the controller 10 via a detection coils controller 39.
With the above-described configuration, in the embodiment when a manipulation for turning off a power switch (not shown) is made (S1 in
That is, in a state that no portable terminal 15 s put on the placement plate 6 of the body case 7 (see
Therefore, there may occur an event that a hand is put on the placement plate 6 inadvertently, in which case a load is imposed on the placement plate 6.
In view of the above, in the embodiment, since as shown in
When such a load is imposed on the placement plate 6, the placement plate 6 is curved downward though slightly. In this state, the charging coil 8 the holding body 16, and the support leg 17 are moved downward, whereby the bottom surface of the support leg 17 comes into contact with the top surface of the sup port plate
As a result, the load is supported by the support plate 18 via the placement plate 6, the charging coil 8, the holding body 16, and the support leg 17. Thus, damaging of the placement plate 6 or the charging coil 8 can be suppressed.
In the embodiment, to increase the strength against a load, the bottom surface of the support plate 18 is supported by the bottom plate 20 of the body case 7 via the support bode 21.
Upon removal of such a load, the placement plate 6 returns upward elastically. And the charging coil 8 and the holding body 16 also return upward because of elastic recovery of the X-axis drive shaft 22 and the Y-axis drive shaft 23. Therefore, the bottom surface of the support leg 17 come to be located over the top surface of the support plate 18 with a gap formed between them.
Therefore, there is no obstruction to a later movement of the charging coil 8.
To charge a portable terminal 15, first, the power switch (not shown turned on (S4 in
In the embodiment even in this state, first, the controller 10 checks whether or not the charging coil 8 is located at point A (S5 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 37, respectively.
If judging that charging coil 8 is not located at point A, the controller 10 moves the charging coil 8 to point A (S6 in
Then the controller 10 detects at what position on the top surface of the placement plate 6 the portable terminal 15 has been put in the manner shown in
Actually, the position where the portable terminal 15 is put is a position of the terminal charging coil (denoted by symbol 15a in
Then the controller 10 moves the charging coil 8 to the detected position of the terminal charging coil (denoted by symbol 15a in
During the charging, the controller 10 judges whether or not necessary to continue the charging (i.e. whether the charging has completed or not S13 in
Upon completion of the charging operation, the controller 10 checks whether or not the charging coil 8 is located at point A (S15 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 37, respectively.
The controller 10 causes an operation illustrated by
That is, the controller 10 moves the charging coil 8 to a corner of the body case 7 by driving the motors 28 and 33 via the X-axis motor controller 36 and the Y-axis motor controller 37.
Switches 41 and 42 exist at the corner. When the charging coil 8 is moved to the corner of the body case 7, the switches 41 and 42 are operated and the controller 10 thereby judges that the charging coil 8 has been moved to an initial position.
In this state, the operation amounts of the motors 28 and 33 of driving by the X-axis motor controller 36 and the Y-axis motor controller 37 are also set to initial values. And a position control is started again from this position.
In the embodiment, as described above, the controller 10 returns the charging coil 8 to point A upon completion of a charging operation. This aspect will be described below in more detail.
As described above, point A is the center of the body case 7. Point A and the position detection coils 14 have the following relationships.
First, the position detection coils 14 will be described.
The position detection coils 14 are disposed on the ceramic intermediate plate 12 which is part of the placement plate 6. More specifically, as shown in
The position detection coils 14A are perpendicular to the position detection coils 14B with the ceramic intermediate plate 12 (which part of the placement plate 6) interposed in between.
As seen from
As shown in
Therefore, in
In this manner, the plural position detection coils 14Aa, 14Ab, 14Ac, 14Ad are arranged regularly in the longitudinal direction of the ceramic intermediate plate 12 which is part of the placement plate 6.
On the other hand, as seen from
As shown in
Therefore in
In this manner, the plural position detection coils 14Ba, 14Bb, 14Bc, 14Bd are arranged regularly in the shorter-axis direction of the ceramic intermediate plate 12 which is part of the placement plate 6.
Next, relationships between the position detection coils 14Ba, 14Bb, 14Bc, 14Bd and point A which is the center of the body case 7 will be described with reference to
Although
In
It is important that as shown in
That is, after completion of charging, the charging coil 8 is moved to position A that does not coincide with the position of any of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd (position A o deviates from the positions of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd) and stands by there (S2 or S7 in
In the embodiment, since whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 is detected (S8 in
Naturally, whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 may be detected (S8 in
The operation will be described in more detail on the basis of the above-described configuration. When the power switch (not shown) is turned on (S4 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 7, respectively.
If judging that charging coil 8 is not located at point A, the controller 10 moves the charging coil 8 to point A (S6 in
Then the controller 10 detects at what position on the top surface of the placement plate 6 a portable terminal 15 has been put in the manner shown in
Actually, the position where a portable terminal 15 is put is a position o the terminal charging coil (denoted by symbol 15a in
The above aspect will be described below in detail with reference to
To detect, using the position detection coils 14, whether or not a portable terminal 15 has been put somewhere on the top surface of the placement plate 6 in the manner shown in
The controller 10 judges whether or not a portable terminal 15 has been put somewhere on the top surface of the placement plate 6 in the manner shown in
Echo signals detected by the position detection coils 14Ba, 14Bb, 14Bc, 14Bd, . . . at this time are stored temporarily in a memory 10a shown in
As is well known, the terminal charging coil (denoted by symbol 15a in
In contrast,
Depending on the type and the state (e.g., the back side is provided with a ever or a seal is stuck to the bask side) of a portable terminal 15, echo signals transmitted from the terminal charging coil 15a of the portable terminal 15 may be small as in the state shown in
However, where the echo signal judgment level is lowered mentioned above, an erroneous operation may occur due to echo signals transmitted from the charging cod 8.
In this situation, it cannot be judged whether the echo signals detected by position detection coils 14Ba, 14Bb, 14Bc, and 14Bd are ones transmitted from the terminal charging coil 15a or ones transmitted from the charging coil 8. This may cause an erroneous operation to follow.
That is, as mentioned above, depending on the placement position on the top surface of the placement plate 6, the type, and the state (e.g., the back side is provided with a cover or a seal is stuck to the bask side) of a portable terminal 15, echo signals transmitted from the terminal charging coil 15a of the portable terminal 15 may be small as in the state shown in
However, where the echo signal judgment level is lowered as mentioned above, when the levels of echo signals transmitted from the charging coil 8 are high as shown in
This is a cause of an erroneous operation. In the embodiment, to prevent such an event, point A where the charging coil 8 stands by after completion of charging is set at a position that does not coincide with the position any of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd (the position deviates from the positions of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd).
As a result, as show in
Therefore, there does not occur an erroneous judgment as to whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 and no erroneous operation will follow.
Once it is judged in the above-described manner that a portable terminal 15 has been put on the top surface of the placement plate 6, the controller 10 operates the detection coils controller 39 to supply pulse signals to the position detection coils 14Aa, 14Ab, 14Ac, 14Ad and the position detection coils 14Ba, 14Bb, 14Bc, 14Bd and thereby determines a position of the terminal charging coil 15a of the portable terminal 15 (S9 in
As soon as a position of the terminal charging coil 15a of the portable terminal 15 is determined (S9 in
Next, a second embodiment of the invention will be described with reference to the drawings. In the second embodiment, part of the drawings that have been used above for the description of the first embodiment will be used again.
As shown in
An electronic apparatus 4 for reproducing music and video and displaying a car navigation picture is disposed beside the steering wheel 3.
Furthermore, a wireless charging device 5 is disposed in the rear of the electronic apparatus 4 in the vehicle compartment 2.
As shown in
The individual member's and units will be described below in detail.
First, the placement plate 6 will be described.
As shown in
The surface plate 11 and the back plate 13 are made of a synthetic resin and the intermediate plate 12 is made of ceramic. That is, they are formed so as to allow a magnetic flux coming from the charging coil 8 to pass through themselves and go toward a portable terminal 15.
Position detection coils 14 (see
The position detection coils 14, which are the same as the ones used in the above-mentioned Patent document 1 (JP-A-2009-247194), serve to detect at what position on the top surface of the placement plate 6a portable terminal 16 has been put in a manner shown in
In the embodiment, at what position on the top surface of the placement plate 6 a portable terminal 15 has been put in the manner shown in
Next, the charging coil 8 and its neighborhood will be described.
As seen from
As shown in
A gap of 0.3 mm is formed between the bottom surface of the support leg 17 and the top surface of a metal support plate 18 which is disposed under the support leg 17. Therefore, in an ordinary state, the bottom surface of the support leg 17 does not come into contact with the top surface of the support plate 18 while the charging coil 8 is being moved.
In the embodiment, in the above-described configuration, the support leg 17 is disposed under the charging coil 8.
A control board 19 and a bottom plate 20 of the body case 7 are disposed under the support plate 18, and a support body 21 which penetrates through the control board 19 is disposed between the bottom surface of the support plate 18 and the top surface of the bottom plate 20.
Next, the driver 9 will be described.
As shown in
More specifically, a through-hole (not shown) through which the X-axis drive shaft 22 penetrates and a through-hole 24 through which the Y-axis drive shaft 23 penetrates are formed through the holding body 16 so as to be spaced from each other by a prescribed distance in the vertical direction and to cross each other. The X-axis drive shaft 22 and the Y-axis drive shaft 23 penetrate through those through-holes and are thereby engaged with the holding body 16.
The X-axis drive shaft 22 is provided with a worm wheel 25 at a position that is close to one end and gears 26 at the respective ends.
The worm wheel 25 is engaged with a worm 27 which is linked to a motor 28.
The gears 26 at the respective ends are engaged with respective gear plates 29.
Therefore, when the motor 28 is driven, the worn 27 is rotated, whereby the worm wheel 25 is moved in the X-axis direction together with the X-axis drive shaft 23. As a result, the charging coil 8 is moved in the X-axis direction.
The Y-axis drive shaft 23 is provided with a worm wheel 30 at a position that is close to one end and gears 31 at the respective ends.
The worm wheel 30 is engaged with a worm 32 which is linked to a motor 33.
The gears 31 at the respective ends are engaged with respective gear plates 34.
Therefore, when the motor 33 is driven, the worm 32 is rotated, whereby the worm wheel 30 is moved in the Y-axis direction together with the Y-axis drive shaft 23. As a result, the charging coil 8 is moved in the Y-axis direction.
In
As shown in
The charging coil 8 is connected to the controller 10 via a charging coil controller 38, and the position detection coils 14 are connected to the controller 10 via a detection coils controller 39.
With the above-described configuration, in the embodiment, when a manipulation for turning off a power switch (not shown) is made (S1 in
That is, in a state that no portable terminal 15 is put on the placement plate 6 of the body case 7 (see
Therefore, there may occur an event that a hand is put on the placement plate 6 inadvertently, in which case a load is imposed on the placement plate 6.
In view of the above, in the embodiment, since as shown in
When such a load is imposed on the placement plate 6, the placement plate 6 is curved downward though slightly. In this state, the charging coil 8, the holding body 16, and the support leg 17 are moved downward, whereby the bottom surface of the support leg 17 comes into contact with the top surface of the support plate 18.
As a result, the load is supported by the support plate 18 via the placement plate 6, the charging coil 8, the holding body 16, and the support leg 17. Thus, damaging of the placement plate 6 or the charging coil 8 can be suppressed.
In the embodiment, to increase the strength against a load, the bottom surface of the support plate 18 is supported by the bottom plate 20 of the body case 7 via the support body 21.
Upon removal of such a load, the placement plate 6 returns upward elastically. And the charging coil 8 and the holding body 16 also return upward because of elastic recovery of the X-axis drive shaft 22 and the Y-axis drive shaft 23. Therefore, the bottom surface of the support leg 17 come to be located over the top surface of he support plate 18 with a gap formed between them.
Therefore, there is no obstruction to a later movement of the charging coil 8.
To charge a portable terminal 15, first, the power switch (not shown) is turned on (S4 in
In the embodiment, even in this state, first, the controller 10 checks whether or not the charging coil 8 is located at point A (S5 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 37, respectively.
If judging that charging coil 8 is not located at point A, the controller 10 moves the charging coil 8 to point A (S6 in
Then the controller 10 detects at what position on the top surface of the placement plate 6 the portable terminal 15 has been put in the manner shown in
Actually, the position where the portable terminal 15 is put is a position of the terminal charging coil (denoted by symbol 15a in
Then the controller 10 moves the charging coil 8 to the detected position of the terminal charging coil (denoted by symbol 15a in
During the charging, the controller 10 judges whether or not it is necessary to continue the charging (i.e., whether the charging has completed or not; S13 in
Upon completion of the charging operation, the controller 10 checks whether or not the charging coil 8 is located at point A (S15 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 37, respectively.
The controller 10 causes an operation illustrated by
That is, the controller 10 moves the charging coil 8 to a corner of the body case 7 by driving the motors 28 and 33 via the X-axis motor controller 36 and the Y-axis motor controller 37.
Switches 41 and 42 exist at the corner. When the charging coil 8 is moved to the corner of the body case 7, the switches 41 and 42 are operated and the controller 10 thereby judges that the charging coil 8 has been moved to an initial position.
In this state, the operation amounts of the motors 28 and 33 of driving by the X-axis motor controller 36 and the Y-axis motor controller 37 are also set to initial values. And a position control is started again from this position.
In the embodiment, as described above, the controller 10 returns the charging coil 8 to point A upon completion of a charging operation. This aspect will be described below in more detail.
As described above, point A is the center of the body case 7. Point A and the position detection coils 14 have the following relationships.
First, the position detection Is 14 will be described.
The position detection coils 14 are disposed on the ceramic intermediate plate 12 which is part of the placement plate 6. More specifically, as shown in
The position detection coils 14A are perpendicular to the position detection coils 14B with the ceramic intermediate plate 12 (which is part of the placement plate 6) interposed in between.
As seen from
As shown in
Therefore, in
In this manner, the plural position detection coils 14Aa, 14Ab, 14Ac, 14Ad are arranged regularly in the longitudinal direction of the ceramic intermediate plate 12 which is part of the placement plate 6.
On the other hand, as seen from
As shown in
Therefore, in
In this manner, the plural position detection coils 14Ba, 14Bb, 14Bc, 14Bd are arranged regularly in the shorter-axis direction of the ceramic intermediate plate 12 which is part of the placement plate 6.
Next, relationships between the position detection coils 14Ba, 14Bb, 14Bc, 14Bd and point A which is the center of the body 7 will be described with reference to
Although
In
It is assumed that the charging coil 8 is standing by at the position that coincides with the center of the placement plate 6. With this setting, there are two cases, that is, a case shown in
To detect whether or not a portable terminal 15 has been put on the placement plate 6 (S8 in
This will be explained below. Where the charging coil 8 is standing by in a state that its center does not coincide with the position of any of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd (see
However, in the state of
In contrast, where the charging coil 8 is standing by in a state that its center coincides with the position of one of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd (see
In the case of
That is, even where the charging coil 8 is standing by at point A which is the center of the placement plate 6, the magnitudes of echo signals transmitted from the charging coil 8 vary depending on the relationships between its position and the positions of the center lines a, b, c, and d of the position detection coils 14Ba, 14Bb, 14Bc, and 14Bd.
However, in the state of
However, in the state of
As described above, the position detection coils 14Ba, 14Bb, 14Bc, 14Bd which detect whether or not a portable terminal 15 has been put on the placement plate 6 detect echo signals that are transmitted from the charging coil 8 and the terminal charging coil 15a. And their detection levels depending on the positional relationships between the charging coil 8 or the terminal charging coil 15a and the position detection coils 14Ba, 14Bb, 14Bc, 14Bd.
Therefore, whether or not a portable terminal 15 has been put on the placement plate 6 may be detected erroneously if a judgment is made without taking echo signals transmitted from the charging coil 8 into consideration.
Naturally, whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 may be detected (S8 in
The operation will be described in more detail on the basis of the above-described configuration. When the power switch (not shown) is turned on (S4 in
This check can be made on the basis of drive amounts of the motors 28 and 33 that are stored in the X-axis motor controller 36 and the Y-axis motor controller 37, respectively.
If judging that charging coil 8 is not located at point A, the controller 10 moves the charging coil 8 to point A (S6 in
Then the controller 10 detects at what position on the top surface of the placement plate 6 a portable terminal 15 has been put in the manner shown in
Actually, the position where a portable terminal 15 is put is a position of the terminal charging coil (denoted by symbol 15a in
The above aspect will be described below in detail with reference to
At this time, an echo signal detected by the position detection coils 14Ba, 14Bb, 14Bc, 14Bd are, for example, as shown in
In
More specifically, in
That is, from
In
In
That is, from
In
By comparing
The following description will be made on the basis of the above explanation. In the embodiment, when the power switch (not shown) is turned on, the controller 10 controls the motors 28 and 29 to move the charging coil 8 to point A which coincides with the center of the placement plate 6 (S4-S7 in
In this state, the position detection coils 14Ba 14Bb, 14Bc, 14Bd send 1 MHz pulse signals sequentially (S91 in
Then Echo signals that are detected by the position detection coils 14Ba 14Bb, 14Bc, 14Bd sequentially are then stored in a memory 10a shown in
Symbol J1 shown in
In the case of
Therefore in the embodiment, to determine, through calculation, from which portion echo signals that are larger than the judgment level J1 can be detected, the controller 10 again causes the position detection coils 14Ba, 14Bb, 14Bc, 14Bd to send 1 MHz pulse signals sequentially (S91 in
However, since the controller 10 knows the position of the charging coil 8, actually it is detected whether the terminal charging coil 15a is in the state of
If, as result, it is judged that the terminal charging coil 15a is in the state of
In the case of
Subsequently, the controller 10 operates the detection coils controller 39 to supply pulse signals to the position detection coils 14Aa, 14Ab, 14Ac, 14Ad and position detection coils 14Ba 14Bb, 14Bc, 14Bd and thereby determines a position of the terminal charging coil 15a of the portable terminal 15 (S9 in
As soon as a position of the terminal charging coil 15a of the portable terminal 15 is determined, the controller 10 moves the charging coil 8 to the detected position of the terminal charging coil 15a of the portable terminal 15 by driving the motors 28 and 33 via the X-axis motor controller 36 and the Y-axis motor controller 37 (S10 in
In the case of
As a result, it is judged that no portable terminal 15 is put on the top surface of the placement plate 6 in the manner shown in
If detecting at the above-described step S91 shown in
Subsequently, the controller 10 judges at what position on the top surface of the placement plate 6 the portable terminal 15 is put in the manner shown in
In the case of
Subsequently, the controller 10 operates the detection coils controller 39 to supply pulse signals to the position detection coils 14Aa, 14Ab, 14Ac, 14Ad and position detection coils 14Ba, 14Bb, 14Bc, 14Bd and thereby determines a position of the terminal charging coil 15a of the portable terminal 15 (S9 in
As soon as a position of the terminal charging coil 15a of the portable terminal 15 is determined, the controller 10 moves the charging coil 8 to the detected position of the terminal charging coil 15a of the portable terminal 15 by driving the motors 28 and 33 via the X-axis motor controller 36 and the Y-axis motor controller 37 (S10 in
As described above, in the embodiment, the controller 10 supplies detection pulses to the plural position detection coils 14Ba, 14Bb, 14Bc, 14Bd and varies, between J1 and J2, the judgment level for judgment as to whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 on the basis of echo signals detected by the position detection coils 14Ba, 14Bb, 14Bc, 14Bd.
Then the controller 10 judges whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 using the judgment level J1 or J2. Therefore, the controller 10 can judge whether or not a portable terminal 15 has been put on the top surface of the placement plate 6 without being disturbed by echo signals transmitted from the charging coil 8, as a result of which an erroneous operation can be prevented.
Although the invention has been described in detail by referring to the particular embodiments, it is apparent to those skilled in the art that various changes and modifications are possible without departing from the spirit and scope of the invention.
The present application is based on Japanese Patent Application Nos. 2012-175717 and 2012-175718 both filed on Aug. 8, 2012, the disclosures of which are incorporated herein by reference.
As described above, in the invention, since after completion of charging of a portable terminal by the charging coil, the controller moves, using the driver, the charging coil to a position where its center deviates from the center of any of the plural position detection coils, echo signals transmitted from the charging coil in response to pulse signals transmitted from the position detection coils become sufficiently smaller than the judgment level.
This prevents an event that whether or not a portable terminal has been put on the top surface of the placement plate or whether or not a portable terminal has been put on somewhere on the top surface of the placement plate is detected erroneously on the basis of echo signals transmitted from the charging coil, causing an erroneous operation to follow.
It is therefore expected that the in Mention can be utilized for vehicular and home wireless charging devices.
Furthermore, providing the comprising a body case whose top surface is provided with a placement plate; plural position detection coils which detect a position of a portable terminal that is put on a top surface of the placement plate; a charging coil which is disposed movably in the body case so as to be opposed to a bottom surface of the placement plate; a driver which moves the charging coil in such a manner that it is kept opposed to the bottom surface of the placement plate; and a controller which is connected to the driver and the charging coil, wherein the controller causes the plural position detection coils to send detection pulses, then varies a judgment level for judgment as to whether a portable terminal has been put on the top surface of the placement plate on the basis of echo signals detected by the position detection coils, and thereafter judges whether a portable terminal has been put on the top surface of the placement plate using the judgment level, the invention makes it possible to prevent an erroneous operation.
That is, in the invention, the controller causes the plural position detection coils to send detection pulses and then varies a judgment level for judgment as to whether a portable terminal has been put on the top surface of the placement plate on the basis of echo signals detected by the position detection coils.
Subsequently, the controller judges whether a portable terminal has been put on the top surface of the placement plate using the judgment level. Therefore, whether or not a portable terminal has been put on the top surface of the placement plate can be judged without being disturbed by echo signals transmitted from the charging coil, as a result of which an erroneous operation can be prevented.
It is therefore expected that the invention can utilized for vehicular and home wireless charging devices.
1: Automobile
2: Vehicle compartment
3: Steering wheel
4: Electronic apparatus
5: Wireless charging device
6: Placement plate
7: Body case
8: Charging coil
9: Driver
10: Controller
10
a: Memory
11: Surface plate
12: Intermediate plate
13: Back plate
14: Position detection coil
14Aa, 14Ab, 14Ac, 14Ad, 14Ba, 14Bb, 14Bc, 14Bd: Poston detection coil
15: Portable terminal
15
a: Terminal charging coil
16: Holding body
17: Support leg
18: Support plate
19: Control board
20: Bottom plate
21: Support body
22: X-axis drive shaft
23: Y-axis drive shaft
24: Through-hole
25: Worm wheel
26: Gear
27: Worm
28: Motor
29: Gear plate
30: Worm wheel
31: Gear
32: Worm
33: Motor
34: Gear plate
35: Flexible wiring board
36: X-axis motor controller
37: Y-axis motor controller
38: Charging coil controller
39: Detection coils controller
41: Switch
42: Switch
Number | Date | Country | Kind |
---|---|---|---|
2012-175717 | Aug 2012 | JP | national |
2012-175718 | Aug 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2013/004755 | 8/6/2013 | WO | 00 |