BACKGROUND OF THE INVENTION
Field of the Invention
[0001] The present invention relates to an on-vehicle film antenna apparatus, and more particularly
to an on-vehicle film antenna apparatus in which a film antenna to be mounted on a
glass of a vehicle and a signal output cable are electrically connected to each other.
Description of the Related Art
[0002] Conventionally, in a case where a film antenna (particularly, a universal product
to be retrofitted) is mounted on a glass surface of a vehicle, a film antenna-side
electrode (feed portion) and a case-side electrode (feed portion) are attached to
each other using an adhesive material or the like (see e.g. Japanese Utility Model
Registration
No. 3109077).
[0003] Also, in recent years, there have been used an on-vehicle film antenna apparatus
1100 comprised of a socket housing that holds a contact which is to be connected to
a connecting terminal portion of a film antenna in a state of being exposed from a
bottom surface as shown in FIG. 13 (see e.g.
Japanese Unexamined Patent Application Publication No. 2004-82749). The socket housing is to be stuck to a window glass in a state in which the contact
is pressed against the connecting terminal portion of the film antenna. The on-vehicle
film antenna apparatus 1100 further comprised of a plug housing that can be attached
to and detached from the socket housing. There have been also used an on-vehicle film
antenna apparatus 1200 in which an upper case is engaged with a lower case in a state
in which a circuit board to be connected to a signal output cable and an elastic connecting
plate to be connected to the circuit board and a film antenna are interposed between
the upper case and the lower case as shown in FIG. 14 (see e.g.
Japanese Unexamined Patent Application Publications Nos. 2001-185923 and
2005-80074).
[0004] Also, there has been disclosed a method in which a feeding portion of a film antenna
and a feeding portion inside an on-vehicle film antenna apparatus are fastened to
each other by a screw with a conductive washer interposed therebetween and held under
pressure so as to ensure electric connection between them, and a connecting portion
of a case and the feeding portion of the film antenna are fixed in position by inserting
a positioning boss therein so as to reliably position them without resort to visual
check (see e.g.
Japanese Unexamined Patent Application Publication No. 2001-185923).
[0005] However, according to any of the above-mentioned on-vehicle film antennas, the angle
between the connecting case and the film antenna is kept at a fixed angle.
[0006] For this reason, if an on-vehicle film antenna apparatus is desired to be disposed
at a position where it looks good, that is, if a case is desired to be disposed at
such a position that it is in parallel with any of sides which are boundaries between
a glass of a vehicle (FIG. 15A) and an end face of a black ceramic or an interior
material being in contact with the glass (hereinafter referred to as the outer periphery
of the glass) and that a film antenna is substantially horizontal when the glass is
mounted in a vehicle (see FIG. 15C), when the on-vehicle film antenna apparatus fixed
at a fixed angle is mounted in a plurality of types of vehicles, the on-vehicle film
antenna apparatus cannot be disposed at the position at which it looks good in some
vehicles.
[0007] For example, as shown in FIG. 15B, if a case 100b is disposed substantially parallel
with or substantially vertical to one side of the outer periphery of a glass 101 of
a vehicle, a film antenna 100a is not substantially horizontal but inclined (see the
mounted state on the left side in FIG. 15B), and conversely, if a film antenna 100a
is disposed substantially horizontal, a case 100b is not substantially parallel or
substantially vertical to the side of the outer periphery of the glass 101 but inclined
(see the mounted state on the right side in FIG. 15B).
[0008] This problem was solved by manufacturing an on-vehicle film antenna apparatus of
which fixed angle was adjusted according to the type of vehicle on which they were
to be mounted.
[0009] The on-vehicle film antenna apparatus 1100 (FIG. 13), however, has the problem that,
since the film antenna is stuck to the bottom thereof using an adhesive agent or the
like to electrically connect the feeding portion of the film antenna and the contact
with each other, a connection failure will occur due to deterioration of the adhesive
agent or the like.
[0010] On the other hand, since the on-vehicle film antenna apparatus 1200 (FIG. 14) is
configured to have the film antenna sandwiched therein, a connection failure does
not occur unlike the on-vehicle film antenna apparatus 1100. However, much costs are
required due to the use of the above-mentioned washer and components such as nuts
and bolts for screwing, and moreover, a mounting process is complicated since the
on-vehicle film antenna apparatus 1200 has a complicated structure.
[0011] Moreover, there is the problem that the method in which the angle at which the on-vehicle
film antenna apparatus is fixed is adjusted according to the type of vehicle as shown
in FIG. 15B so as to enhance the appearance of the on-vehicle film antenna apparatus
is not universal.
[0012] JP 2001 185 923 A discloses an on-vehicle film antenna apparatus falling within the cops of the preamble
of claim 1 below.
SUMMARY OF THE INVENTION
[0013] According to the present invention, there is provided an on-vehicle film antenna
apparatus comprising a case that electrically connects an electric connecting portion
of a film antenna to be mounted on a glass of a vehicle and a signal output cable
to each other, wherein the case comprises a first case member, a second case member,
and a case joining unit that joins the first case member and the second case member
in opposed relation to each other when the case is assembled, the first case member
comprises an electrode for electric connection to they electric connecting portion
of the film antenna, and a cable connecting portion for electric connection to the
electrode and for electric connection to the signal output cable, and the second case
member comprises an electrode opposing member at a location opposed to the electrode
when the case is assembled,
characterised in that the first case member and/or the second case member comprise a positioning unit that
rotatably positions the electric connecting portion of the film antenna on the electrode.
[0014] With this arrangement, the film antenna can be rotatably mounted in the case of the
on-vehicle film antenna apparatus while ensuring electric connection between the electrode
inside the case and the film antenna, and the structure of the on-vehicle film antenna
apparatus can be simplified.
[0015] Thus; it is an advantage obtainable with embodiments of the present invention to
provide an on-vehicle film antenna apparatus of which film antenna can be rotatably
mounted in a case of the on-vehicle film antenna apparatus while ensuring electric
connection between an electrode inside the case and the film antenna and which has
a simplified structure.
[0016] Also, the electric connecting portion of the film antenna can be disposed between
the electrode and the electrode opposing member when the case is assembled.
[0017] With this arrangement, the electric connecting portion of the film antenna can be
electrically connected with the electrode and in pressure contact with the electrode,
and further the positioning unit can rotatably position the film antenna in a reliable
manner.
[0018] Also, the electrode opposing member can comprise an elastic member.
[0019] Also, the on-vehicle film antenna apparatus can further comprise an elastic member
disposed between the electrode and the first case member.
[0020] Also, the electrode can comprise a conductive elastic member on a surface that is
electrically connected to the electric connecting portion of the film antenna.
[0021] Also, the case joining unit can be implemented by at least one of a hinge, a latch,
a clipping structure, a screwing structure, adhesion, welding, and adhesive taping.
[0022] Also, a circular through hole can be formed in substantially a central part of the
electric connecting portion of the film antenna, and the positioning unit can comprise
a projection provided above the electrode and/or the electrode opposing member and
comprising a circular outer periphery having substantially the same size as a size
of the through hole, the projection being inserted into the through hole when the
case is assembled.
[0023] Also, the projection can be formed on one of the electrode and the electrode opposing
member, and the positioning unit can comprise a circular concave portion formed in
substantially a central part of the other one of the electrode and the electrode opposing
member and having substantially the same diameter as an outer diameter of the projection,
the projection being inserted into the concave portion when the case is assembled.
[0024] Also, an arc shape can be formed at a part of an outer periphery of the electric
connecting portion of the film antenna, and a through hole having, as a part of a
boundary, an arc with a predetermined radius formed with a center point of the arc
shape at the nucleus is formed in the electric connecting portion of the film antenna,
and the positioning unit can comprise a projection that is inserted into the through
hole and comes into contact with the arc as the part of the boundary when the case
is assembled, and a guide portion that is formed around of the electrode and/or the
electrode opposing member of the case and, at least at two points, comes into contact
with the part of the outer periphery of the electric connecting portion of the film
antenna at which the arc shape is formed, when the case is assembled.
[0025] Also, an arc shape can be formed at a part of an outer periphery of the electric
connecting portion of the film antenna, and the positioning unit can comprise a guide
portion that is formed around of the electrode and/or the electrode opposing member
and, at least at three points, comes into contact with the part of the outer periphery
of the electric connecting portion of the film antenna at which the arc shape is formed,
when the case is assembled.
[0026] Also, an arc shape coming into contact with the part of the outer periphery of the
electric connecting portion of the film antenna at which the arc shape is portion
of the film antenna at which the arc shape is formed can be formed at a part of an
outer periphery of the guide portion.
[0027] The above and other objects, features, and advantage of the invention will become
more apparent from the following detailed description taken in conjunction with the
accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to better understand the present invention, and to show how the same may
be carried into effect, reference will now be made, by way of example only, to the
accompanying drawings, in which:
FIGS, 1A to 1C are views useful in explaining the construction of an on-vehicle film
antenna apparatus according to an embodiment of the present invention, in which FIG.
1A is a perspective view showing a state in which a case is opened,
FIG. 1B is a cross-sectional view showing a first case member, and FIG. 1C is a longitudinal
sectional view showing a state in which the case is closed;
FIG. 2 is a .view showing a first variation of the on-vehicle film antenna apparatus
in FIG. 1;
FIG. 3 is a view showing a second variation of the on-vehicle film antenna apparatus;
FIG. 4 is a view showing a third variation of the on-vehicle film antenna apparatus;
FIG. 5 is a view showing a fourth variation of the on-vehicle film antenna apparatus;
FIG. 6 is a view useful in explaining how a film antenna appearing in FIG. 5 is adjusted
in position through rotation;
FIG. 7 is a view showing a fifth variation of the on-vehicle film antenna apparatus;
FIG. 8 is a view showing a sixth variation of the on-vehicle film antenna apparatus;
FIG. 9 is a view showing a seventh variation of the on-vehicle film antenna apparatus;
FIGS. 10 and 10B are views useful in explaining an eighth variation of the on-vehicle
film antenna apparatus, in which FIG. 10A is a perspective view showing the on-vehicle
film antenna apparatus with its case closed as viewed from below, and FIG. 10B is
a cross-sectional view showing the first case member;
FIG. 11 is a perspective view showing the on-vehicle film antenna apparatus with its
case closed as viewed from above;
FIG. 12 is a view showing a ninth variation of the on-vehicle film antenna apparatus;
FIG. 13 is a view showing the construction of a conventional on-vehicle film antenna
apparatus;
FIG. 14 is a view showing the construction of a variation of the conventional on-vehicle
film antenna apparatus; and
FIGS. 15A to 15C are views useful in explaining how the conventional on-vehicle film
antenna apparatus is mounted on a vehicle, in which FIG. 15A is an overall view showing
a vehicle body on which the on-vehicle film antenna apparatus is mounted,
FIG. 15B is a view showing the on-vehicle film antenna apparatus which is mounted
on a glass surface of the vehicle in a state which it does not look good, and FIG.
15C is a view showing the on-vehicle film antenna apparatus which is mounted on a
glass surface of a vehicle in a state in which it looks good.
DETAILED DESCRIPTION
[0029] Embodiments of the present invention will now be described in detail with reference
to the drawings. It should be noted that the relative arrangement of the components,
the numerical expressions and numerical values set forth in these embodiments do not
limit the scope of the present invention unless it is specifically stated otherwise.
[0030] One embodiment of the present invention will now be described in detail with reference
to the drawings.
[0031] FIGS. 1A to 1C are views schematically showing the construction of an on-vehicle
film antenna apparatus according to an embodiment of the present invention.
[0032] As shown in FIG. 1A, the on-vehicle film antenna, apparatus 100 is comprised of a
case 8 that electrically connects a film antenna 7 to be mounted on a glass of a vehicle
and a signal output cable 3 to each other.
[0033] The film antenna 7 is comprised of a resin film 70, an antenna element 71 that is
formed on a surface of the resin film 70 and comprised of a linear conductor, and
an electrode 72 that is disposed on a surface of an end 73 of the resin film 70 and
connected to the antenna element 71. The end 73 of the resin film 70 and the electrode
of the antenna element 71 constitute an electric connecting portion 74 of the film
antenna 7. In the central part of the electric connecting portion 74, a circular through
hole, not shown, is formed.
[0034] Here, the length and shape of the antenna element 71 can be arbitrarily determined
according to purposes. Where a wavelength to be received is λ, and the velocity of
propagation arising from the presence of a glass to which the film antenna 7 is attached
is k, it is preferred that the length of the antenna element 71 is k λ/4.
[0035] The case 8 is, for example, 8 mm wide and 36 mm long and comprised of a first case
member 81 and a second case member 82 that can be opened and closed via latches 84a
and 84b. The film antenna 7 is positioned and fixed between the first case member
81 and the second case member 82. Although in the present embodiment, the two case
members 81 and 82 are connected to each other via a hinge structure 826 and provided
with the latches 84a and 84b, respectively, so that they can be opened and closed,
there is no intention to limit the invention to this, and the case 8 may be arbitrarily
constructed insofar as it can be opened and closed. Thus, the two case members 81
and 82 may be connected to each other using a thin metallic member or a thin resin
member that can freely bend, and the two case member 81 and 82 may be joined to each
other using a hooking structure, a screwing structure, a clipping structure, or the
like, or by adhesion, welding, or adhesive taping without using the latches 84a and
84b. If the first case member 81 and the second case member 82 are joined to each
other by latching, hooking, screwing, or clipping, the case 8 can be opened and closed,
whereby the film antenna 7 can be detachably mounted in the case 8. Moreover, the
case 8 may be simply constructed without using components such as washers, making
it easier to assemble the case 8.
[0036] It should be noted that once the film antenna 7 has been positioned, the first case
member 81 and the second case member 82 may be adhered and fixed to each other so
that they cannot be detached from each other.
[0037] The first case member 81 has therein a cable lead-out groove 812 from which the signal
output cable 3 is led out, and a circuit board 811 (FIG. 1B) that is provided in the
cable lead-out groove 812 and electrically connected to a central conductor and an
external conductor of the signal output cable 3. The circuit board 811 has a role
in electrically connecting the central conductor of the signal output cable 3 to an
electrode 813, described later, disposed on the first case member 81 and electrically
connecting the external conductor of the signal output cable 3 to a grounding structure,
not shown. It should be noted that an amplifier may be mounted on the circuit board
811. In the case 8, the signal output cable 3 may be directly connected to the circuit
substrate 811, or the signal output cable 3 and the circuit board 811 may be electrically
connected to each other via a connector mounted on a connector terminal provided in
place of the cable lead-out groove 812.
[0038] The first case member 81 is comprised of a pin 816 that has a circular outer edge
substantially the same size as the size of the through hole, not shown, formed in
substantially the central part of the electric connecting portion 74 of the film antenna
7 and is a cylindrical projection that can be inserted into the through hole, and
the electrode 813 that is formed around the pin 816. The pin 816 and the electrode
813 are provided on a surface of the first case member 81 which is jointed to the
second case member 82. With this arrangement, the electric connecting portion 74 of
the film antenna 7 can be positioned merely by passing the pin 816 through the through
hole, not shown, of the electric connecting portion 74.
[0039] It is preferred that the outer diameter of the pin 816 has such a circular outer
edge that it is able to be inserted into the above-mentioned through hole, not shown,
and has substantially the same diameter as the diameter of the through hole (for example,
the diameter of the through hole is slightly larger than the outer diameter of the
pin 816, and a difference in diameter between them is 1 mm or less).
[0040] Since the pin 816 has such an outer diameter, the electric connecting portion 74
of the film antenna can be positioned with little play.
[0041] The second case member 82 is comprised of an electrode opposing member 825 that rotatably
fixes the electric connecting portion 74 positioned as described above when the case
8 has been closed and is provided on a surface of the second case member 82 which
is joined to the first case member 81. Thus, the film antenna 7 can be rotatably mounted
in the case 8 while securing electric connection between the electrode 813 inside
the case 8 and the electrode 72, which is a part of the electric connecting portion
74 of the film antenna 7, to realize a simplified structure.
[0042] Moreover, in substantially the center of the electrode opposing member 825, there
is provided a circular concave portion 822 into which the pin 816 can be inserted
and which has substantially the same diameter as the outer diameter of the pin 816.
Thus, when the case 8 has been closed, the pin 816 is inserted into the concave portion
822 of the electrode opposing member 825, whereby the electric connecting portion
74 can be fixed in a more reliable manner at which it has been positioned.
[0043] Although in the above described embodiment, the pin 816 is provided on the electrode
813 side, and the concave portion 822 is provided on the electrode opposing member
825 side, there is no intention to limit the invention to this, but a concave portion
may be provided on the electrode 813 side, and a pin may be provided on the electrode
opposing member 825 side. Alternatively, pins may be provided on both the electrode
813 side and the electrode opposing member 825 side, and when the case 8 has been
closed, distal ends of the two pins may be brought into contact with each other. In
this case, contacting surfaces of the two pins may be horizontal, oblique, or curved
with respect to the pins, or a convex surface of one of the pins and a concave surface
of the other one of the pins may be in contact with each other. Further, a pin may
be provided on one of the electrode 813 side and the electrode opposing member 825
side, and no pin may be provided on the other one of the electrode 813 side and the
electrode opposing member 825 side, and when the case 8 has been closed, the pin may
be brought into contact with the electrode 813 or the electrode opposing member 825
which is provided with no concave portion.
[0044] As shown in FIG. 1B, the electrode 813 and the circuit board 811 are configured as
an integral unit. Thus, the central conductor of the signal output cable 3 and the
electrode 813 can be electrically connected to each other via the circuit board 811.
[0045] According to the above described arrangement, the case 8 of the on-vehicle film antenna
apparatus 100 is comprised of the first case member 81 and the second case member
82 that can be opened and closed, and the electrode 813 that is connected, via the
circuit board 811, to the central conductor of the signal output cable 3 led into
the first case member 81 is formed around the pin 816 that positions the electric
connecting portion 74 of the film antenna 7. Thus, the electrode 72 of the antenna
element 71, which is a part of the electric connecting portion 74 of the film antenna
7 positioned by the pin 816, and the electrode 813 can be electrically connected to
each other. Moreover, the electrode opposing member 825 of the second case member
82 fixes the positioned electric connecting portion 74 when the case 8 has been closed.
[0046] In this case, it is preferred that the electrode opposing member 825 is comprised
of an elastic member such as a sponge as shown in FIG. 1C, an elastic member 1d is
provided on an underside of the circuit board 811 as shown in FIG. 2, or an elastic
member is provided between the electrodes 813 and 72 as shown in FIG. 3. Thus, when
the electric connecting portion 74 fixes at the position where it has been positioned,
the electrodes 813 and 72 are brought into contact with each other in a pressurized
state via the elastic member, the electrodes 813 and 72 can be electrically connected
with each other in a more reliable manner to prevent a contact failure. It should
be noted that the elastic member should not necessarily be a sponge, but rubber or
the like may be used; preferably, a conductive elastic member is used in a case where
it is provided between the electrodes 813 and 72. Examples of such a conductive elastic
member include conductive rubber.
[0047] In the example illustrated in FIG. 3, a surface of the electrode 813 may be covered
with an elastic member 1e made of conductive rubber, and an elastic member may be
provided on the electric connecting portion 74 of the film antenna 7. This will make
it possible to electrically connect the electrodes 813 and 72 to each other in a pressurized
state via the elastic member le when the electric connecting portion 74 has been positioned
after the case 8 had been closed.
[0048] It should be noted that the arrangement for positioning the film antenna 7 is not
limited to the above described one, but for example, as shown in FIG. 9, an electric
connecting portion 74c of the film antenna 7 may have an outer periphery which is
partially arc-shaped and have an arc-shaped hole 7c formed a predetermined distance
away from the center of the arc-shape, and the first case member 81 may have positioning
means comprised of a cylindrical concave portion 817 that can be inserted into the
arc-shaped hole 7c, and a guide portion 1k formed around the electrode 813, not shown.
[0049] In this case, by assembling the case 8 in a state in which the concave portion 817
is inserted into the arc-shaped hole 7c, and at least two points of the outer periphery
of the electric connecting portion 74c of the film antenna 7 is in contact with the
guide portion 1k (including a state in which at least two points of the outer periphery
of the electric connecting portion 74c of the film antenna 7 are close to the guide
portion 1k), the film antenna 7 can be positioned while ensuring electric connection
between the electrode 72c of the film antenna 7 and the electrode 813 inside the case
8.
[0050] It should be noted that the hole 7c is not limited to the present embodiment, and
the hole 7c may have any shape insofar as it is partially arc-shaped. Thus, for example,
the hole 7c may be a through hole 816a formed in substantially the center of the electric
connecting portion 74 of the film antenna 7 as shown in FIG. 8. Similarly, the convex
portion 817 is not limited to the present embodiment and may have any shape insofar
as it can be inserted into the hole 7c and has a part that comes into contact with
the above-mentioned arc-shaped portion of the hole 7c when inserted into the hole
7c. Thus, for example, as shown in FIG. 8, the convex portion 817 may be changed to
a semicircular convex portion 817a having an arc-shaped portion that comes into contact
with the arc-shaped portion of the through hole 816a when inserted into the through
hole 816a.
It should be noted that in place of one or both of the convex portion 817 and the
guide portion 1k, one or both of a cylindrical convex portion that can be inserted
into the arc-shaped hole 7c and a guide portion formed around the electrode opposing
member 825 may be provided in the second case member 82. Further, one or both of a
convex portion and a guide portion may be provided in both the first case member 81
and the second case member 82.
[0051] Moreover, as shown in FIG. 4, the electric connecting portion 74a of the film antenna
7 may be configured to have an outer periphery that is partially arc-shaped, and the
first case member 81 may be configured to have positioning means comprised of guide
portions 1h, 1i, 1f, and 1g formed around the electrode 813, not shown.
[0052] In this case, the film antenna 7 is positioned by assembling the case 8 in a state
in which at least three points of the outer periphery of the electric connecting portion
74a of the film antenna 7 are in contact with the guide portions 1h, 1i, 1f, and 1g.
[0053] Further, as shown in FIGS. 5 and 6, if a through hole is formed in substantially
the center of the electric connecting portion 74 of the film antenna 7, the film antenna
7 may be positioned using the pin 816 (FIG. 1A) as well as the above-mentioned guide
portions.
[0054] It should be noted that in place of the guide portions 1h, 1i, 1f, and 1g, the second
case member 2 may have guide portions formed around the electrode opposing member
825. Similarly, in place of the pin 816, the second case member 2 may have a cylindrical
pin that can be inserted into the above-mentioned through hole, and the electrode
opposing member 825 formed around the pin may be provided on the surface of the second
case member 2 which is joined to the first case member 81.
[0055] Further, as shown in FIG. 7, the first case member 81 may have an arc-shaped guide
portion 1j formed around the electrode 813, not shown, with the central part of the
electrode 813 at the nucleus. In this case, the film antenna 7 can be positioned in
a more reliable manner by assembling the case 8 in a state in which a part of the
outer periphery of the electric connecting portion 74 of the film antenna 7 is in
contact with the guide portion 1j.
[0056] In this case as well, in place of the guide member 1j, the second case member 82
may have a guide portion formed around the electrode opposing member 825.
[0057] Although in the present embodiment, the on-vehicle film antenna apparatus 100 is
mounted on the vehicle by fixing the case 8 to the vehicle body or the glass surface,
a fixing method therefor is not limited. Specifically, to fix the case 8 to the glass
surface or the vehicle body, an adsorption method using an adhesive tape, an adhesive
agent, or a sucking disc, or the like is used. Also, the case 8 may be fixed to the
vehicle body using a conductive adhesive agent, or it may be fastened to the vehicle
body by screws.
[0058] Further, to fix the case 8 to the glass surface, there may be provided a copper foil
4 that extends from an underside of the first case member 81 to the vehicle body as
shown in FIG. 10A and disposed between the first case member 81 and the circuit board
811 as shown in FIG. 10B. The copper foil 4 and the external conductor of the signal
output cable 3 are connected to each other via the circuit board 811. Thus, a ground
can be reliably established for the signal output cable 3 by the copper foil 4.
[0059] Further, as shown in FIG. 11, to hide an adhesive surface of the copper foil 4 from
view from the side, an adhesive label 41 may be attached to the mating surface of
the first case member 81 and the second case member 82. In this case, if the adhesive
label 41 is labeled as "CAUTION", a user can be prevented from opening the case 8
by mistake.
[0060] Moreover, as shown in FIG. 12, to prevent the film antenna 7 from bending through
a right angle, a convex portion 83 may be provided on a side of the first case member
81 and directly below the positioned film antenna 7.
[0061] Moreover, the on-vehicle film antenna apparatus 100 according to the present embodiment
is suitably used as a TV antenna, more particularly, a digital TV antenna (with frequencies
470 to 770 MHz). The on-vehicle film antenna apparatus 100 according to the present
embodiment may be mounted at any location insofar as it is on a glass of a vehicle.
Thus, the on-vehicle film antenna apparatus 100 according to the present embodiment
may be mounted on any glass of a vehicle such as a front glass, a rear glass, or a
side glass.
[0062] Further, although in the present embodiment, only one film antenna 7 may be detachably
mounted in the case 8, a plurality of film antennas may be detachably mounted in the
case 8. In this case, an antenna system may be of a diversity type.
[0063] While the present invention has been described with reference to exemplary embodiments,
it is to be understood that the invention is not limited to the disclosed exemplary
embodiments. The scope of the following claims is to be accorded the broadest interpretation
within the applicable law.
1. An on-vehicle film antenna apparatus (100) comprising:
a case (8) that electrically connects an electric connecting portion (74) of a film
antenna (7) to be mounted on a glass of a vehicle and a signal output cable (3) to
each other,
wherein said case comprises a first case member (81), a second case member (82), and
a case joining unit (826) that joins said first case member and said second case member
in opposed relation to each other when said case is assembled,
said first case member comprises an electrode (813) for electric connection to the
electric connecting portion of the film antenna, and a cable connecting portion (811)
for electric connection to said electrode and for electric connection to the signal
output cable, and
said second case member comprises an electrode opposing member (825) at a location
opposed to said electrode when said case is assembled, characterise in that:
said first case member and/or said second case member comprise a positioning unit
(816) that rotatably positions the electric connecting portion of the film antenna
on said electrode.
2. An on-vehicle film antenna apparatus according to claim 1, wherein the electric connecting
portion (74) of the film antenna is disposed between said electrode (813) and said
electrode opposing member (825) when said case is assembled.
3. An on-vehicle film antenna apparatus according to claim 1, wherein said electrode
opposing member comprises an elastic member.
4. An on-vehicle film antenna apparatus according to claim 1, further comprising an elastic
member (1d) disposed between said electrode (813) and said first case member (81).
5. An on-vehicle film antenna apparatus according to claim 1, wherein said electrode
comprises a conductive elastic member (1e) on a surface that is electrically connected
to the electric connecting portion of the film antenna.
6. An on-vehicle film antenna apparatus according to claim 1, wherein said case joining
unit ia implemented by at least one of the following: a hinge, a latch, a clipping
structure, a screwing structure, adhesion, welding, and adhesive taping.
7. An on-vehicle film antenna apparatus according to claim 1, wherein a circular through
hole is formed in substantially a central part of the electric connecting portion
of the film antenna, and said positioning unit (816) comprises a projection provided
above said electrode and/or said electrode opposing member and comprising a circular
outer periphery having substantially the same size as a size of the through hole,
said projection being inserted into the through hole when said case is assembled.
8. An on-vehicle film antenna apparatus according to claim 7, wherein said projection
is formed on one of said electrode and said electrode opposing member, and said positioning
unit comprises a circular concave portion (822) formed in substantially a central
part of the other one of said electrode and said electrode opposing member and having
substantially the same diameter as an outer diameter of said projection, said projection
being inserted into said concave portion when said case is assembled.
9. An on-vehicle film antenna apparatus according to claim 1, wherein an arc shape is
formed at a part of an outer periphery of the electric connecting portion of the film
antenna, and a through hole having, as a part of a boundary, an arc with a predetermined
radius formed with a center point of the arc shape at the nucleus is formed in the
electric connecting portion of the film antenna, and
said positioning unit comprises a projection that is inserted into the through hole
and comes into contact with the arc as the part of the boundary when said case is
assembled, and a guide portion (1k) that is formed around of said electrode and/or
said electrode opposing member of said case and, at least at two points, comes into
contract with the part of the outer periphery of the electric connecting portion of
the film antenna at which the arc shape is formed, when said case is assembled.
10. An on-vehicle film antenna apparatus according to claim 1, wherein an arc shape is
formed at a part of an outer periphery of the electric connecting portion of the film
antenna, and said positioning unit comprises a guide portion that is formed around
of said electrode and/or said electrode opposing member and, at least at three points,
comes into contact with the part of the outer periphery of the electric connecting
portion of the film antenna at which the arc shape is formed, when said case is assembled.
11. An on-vehicle film antenna apparatus according to claim 9, wherein an arc shape coming
into contact with the part of the outer periphery of the electric connecting portion
of the film antenna at which the arc shape is formed at a part of an outer periphery
of said guide portion.
1. Fahrzeugfilmantennenvorrichtung (100) umfassend:
ein Gehäuse (8), das einen elektrischen Verbindungsabschnitt (74) einer an einem Glas
eines Fahrzeugs anzubringenden Filmantenne (7) und ein Signalausgabekabel (3) elektrisch
miteinander verbindet,
wobei das Gehäuse ein erstes Gehäuseelement (81), ein zweites Gehäuseelement (82)
und eine Gehäuseverbindungseinheit (826) umfasst, die das erste Gehäuseelement und
das zweite Gehäuseelement in gegenüberliegender Beziehung zueinander verbindet, wenn
das Gehäuse zusammengesetzt ist,
das erste Gehäuseelement eine Elektrode (813) zur elektrischen Verbindung mit dem
elektrischen Verbindungsabschnitt der Filmantenne und einen Kabelverbindungsabschnitt
(811) zur elektrischen Verbindung mit der Elektrode und zur elektrischen Verbindung
mit dem Signalausgabekabel umfasst, und
das zweite Gehäuseelement ein Elektrodengegenelement (825) an einer Stelle, die der
Elektrode gegenüberliegt, wenn das Gehäuse zusammengesetzt ist, umfasst, dadurch gekennzeichnet, dass:
das erste Gehäuseelement und/oder das zweite Gehäuseelement eine Anordnungseinheit
(816) umfasst, die den elektrischen Verbindungsabschnitt der Filmantenne drehbar an
der Elektrode anordnet.
2. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei welcher der elektrische Verbindungsabschnitt
(74) der Filmantenne zwischen der Elektrode (813) und dem Elektrodengegenelement (825)
angeordnet ist, wenn das Gehäuse zusammengesetzt ist.
3. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der das Elektrodengegenelement
ein elastisches Element umfasst.
4. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, die ferner ein zwischen der Elektrode
(813) und dem ersten Gehäuseelement (81) angeordnetes elastisches Element (1d) umfasst.
5. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der die Elektrode ein leitfähiges
elastisches Element (le) an einer Oberfläche umfasst, die mit dem elektrischen Verbindungsabschnitt
der Filmantenne elektrisch verbunden ist.
6. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der die Gehäuseverbindungseinheit
durch wenigstens eines der Folgenden umgesetzt ist: ein Gelenk, eine Sperre, eine
Klammerstruktur, eine Schraubstruktur, Haftung, Schweißen und Klebeband.
7. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der eine kreisförmige Durchgangsöffnung
im Wesentlichen in einem mittleren Teil des elektrischen Verbindungsabschnitts der
Filmantenne ausgebildet ist und die Anordnungseinheit (816) einen Vorsprung umfasst,
der oberhalb der Elektrode und/oder des Elektrodengegenelements vorgesehen ist und
einen kreisförmigen äußeren Umfang mit im Wesentlichen der gleichen Größe wie eine
Größe der Durchgangsöffnung umfasst, wobei der Vorsprung in die Durchgangsöffnung
eingeführt ist, wenn das Gehäuse zusammengesetzt ist.
8. Fahrzeugfilmantennenvorrichtung nach Anspruch 7, bei welcher der Vorsprung an Einem
der Elektrode und des Elektrodengegenelements ausgebildet ist und die Anordnungseinheit
einen kreisförmigen konkaven Abschnitt (822) umfasst, der im Wesentlichen in einem
mittleren Teil des Anderen der Elektrode und des Elektrodengegenelements ausgebildet
ist und im Wesentlichen den gleichen Durchmesser wie ein äußerer Durchmesser des Vorsprungs
aufweist, wobei der Vorsprung in den konkaven Abschnitt eingeführt ist, wenn das Gehäuse
zusammengesetzt ist.
9. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der eine Bogenform an einem Teil
eines äußeren Umfangs des elektrischen Verbindungsabschnitts der Filmantenne ausgebildet
ist und eine Durchgangsöffnung, die als einen Teil eines Rands einen Bogen mit einem
vorgegebenen Radius aufweist, der mit einem Mittelpunkt der Bogenform an dem Kern
ausgebildet ist, in dem elektrischen Verbindungsabschnitt der Filmantenne ausgebildet
ist, und
die Anordnungseinheit einen Vorsprung, der in die Durchgangsöffnung eingeführt ist
und mit dem Bogen als dem Teil des Rands in Kontakt kommt, wenn das Gehäuse zusammengesetzt
ist, und einen Führungsabschnitt (1k) umfasst, der um die Elektrode und/oder das Elektrodengegenelement
des Gehäuses herum ausgebildet ist und wenigstens an zwei Punkten mit dem Teil des
äußeren Umfangs des elektrischen Verbindungsabschnitts der Filmantenne in Kontakt
kommt, an dem die Bogenform ausgebildet ist, wenn das Gehäuse zusammengesetzt ist.
10. Fahrzeugfilmantennenvorrichtung nach Anspruch 1, bei der eine Bogenform an einem Teil
eines äußeren Umfangs des elektrischen Verbindungsabschnitts der Filmantenne ausgebildet
ist und die Anordnungseinheit einen Führungsabschnitt umfasst, der um die Elektrode
und/oder das Elektrodengegenelement herum ausgebildet ist und wenigstens an drei Punkten
mit dem Teil des äußeren Umfangs des elektrischen Verbindungsabschnitts der Filmantenne
in Kontakt kommt, an dem die Bogenform ausgebildet ist, wenn das Gehäuse zusammengesetzt
ist.
11. Fahrzeugfilmantennenvorrichtung nach Anspruch 9, bei der eine Bogenform mit dem Teil
des äußeren Umfangs des elektrischen Verbindungsabschnitts der Filmantenne, an dem
die Bogenform ausgebildet ist, an einem Teil eines äußeren Umfangs des Führungsabschnitts
in Kontakt kommt.
1. Appareil d'antenne film intégré à un véhicule (100) comprenant :
un boîtier (8) qui connecte électriquement entre eux une partie de connexion électrique
(74) d'une antenne film (7) devant être montée sur la vitre d'un véhicule et un câble
de sortie de signal (3),
dans lequel ledit boîtier comprend un premier élément de boîtier (81), un second élément
de boîtier (82) et une unité de raccordement de boîtier (826) qui raccorde ledit premier
élément de boîtier et ledit second élément de boîtier en les plaçant l'un face à l'autre
lorsque ledit boîtier est assemblé,
ledit premier élément de boîtier comprend une électrode (813) pour établir une connexion
électrique avec la partie de connexion électrique de l'antenne film et une partie
de connexion de câble (811) pour établir une connexion électrique avec ladite électrode
et pour établir une connexion électrique avec le câble de sortie de signal ; et ledit
second élément de boîtier comprend un élément opposé à l'électrode (825) disposé à
un emplacement opposé à l'emplacement de ladite électrode lorsque ledit boîtier est
assemblé, caractérisé en ce que :
ledit premier élément de boîtier et/ou ledit second élément de boîtier comprennent
une unité de positionnement (816) qui place de façon rotative la partie de connexion
électrique de l'antenne film sur ladite électrode.
2. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
la partie de connexion électrique (74) de l'antenne film est disposée entre ladite
électrode (813) et ledit élément opposé à l'électrode (825) lorsque ledit boîtier
est assemblé.
3. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
ledit élément opposé à l'électrode comprend un élément élastique.
4. Appareil d'antenne film intégré à un véhicule selon la revendication 1, comprenant
en outre un élément élastique (102) disposé entre ladite électrode (813) et ledit
premier élément de boîtier (81).
5. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
ladite électrode comprend un élément élastique conducteur (10) sur une surface qui
est électriquement connectée à la partie de connexion électrique de l'antenne film.
6. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
ladite unité de raccordement de boîtier est mise en oeuvre par au moins un des éléments
suivants : charnière, verrou, structure de découpage, structure de vissage, adhérence,
soudage et bande adhésive.
7. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
un trou débouchant circulaire est formé sensiblement dans une partie centrale de la
partie de connexion électrique de l'antenne film et ladite unité de positionnement
(816) comprend une saillie disposée au-dessus de ladite électrode et/ou ledit élément
opposé à l'électrode et comprenant une périphérie extérieure circulaire ayant sensiblement
la même taille que celle du trou débouchant, ladite saillie étant insérée dans le
trou débouchant lorsque ledit boîtier est assemblé.
8. Appareil d'antenne film intégré à un véhicule selon la revendication 7, dans lequel
ladite saillie est formée soit sur ladite électrode soit sur ledit élément opposé
à l'électrode, et ladite unité de positionnement comprend une partie concave circulaire
(822) formée sensiblement dans une partie centrale de l'autre élément parmi ladite
électrode et ledit élément opposé à l'électrode et ayant sensiblement le même diamètre
que le diamètre extérieur de ladite saillie, ladite saillie étant insérée dans ladite
partie concave lorsque ledit boîtier est assemblé.
9. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
une forme décrivant un arc est formée sur une partie de la périphérie extérieure de
la partie de connexion électrique de l'antenne film, et un trou débouchant pourvu,
comme élément d'une frontière, d'un arc avec un rayon prédéterminé formé avec un point
central de la forme décrivant un arc au niveau du noyau, est formé dans la partie
de connexion électrique de l'antenne film, et
ladite unité de positionnement comprend une saillie qui est insérée dans le trou débouchant
et qui vient en contact avec l'arc comme partie de la frontière lorsque ledit boîtier
est assemblé, et une partie de guidage (1k) qui est formée autour de ladite électrode
et/ou ledit élément opposé à l'électrode dudit boîtier et qui, au moins au niveau
de deux points, vient en contact avec la partie de la périphérie extérieure de la
partie de connexion électrique de l'antenne film au niveau de laquelle la forme décrivant
un arc est formée, lorsque ledit boîtier est assemblé.
10. Appareil d'antenne film intégré à un véhicule selon la revendication 1, dans lequel
une forme décrivant un arc est formée sur une partie de la périphérie extérieure de
la partie de connexion électrique de l'antenne film, et ladite unité de positionnement
comprend une partie de guidage qui est formée autour de ladite électrode et/ou ledit
élément opposé à l'électrode et qui, au moins au niveau de trois points, vient en
contact avec la partie de la périphérie extérieure de la partie de connexion électrique
de l'antenne film au niveau de laquelle la forme décrivant un arc est formée, lorsque
ledit boîtier est assemblé.
11. Appareil d'antenne film intégré à un véhicule selon la revendication 9, dans lequel
une forme décrivant un arc vient en contact avec la partie de la périphérie extérieure
de la partie de connexion électrique de l'antenne film au niveau de laquelle la forme
décrivant un arc est formée sur une partie de la périphérie extérieure de ladite partie
de guidage.