BACKGROUND OF THE INVENTION
1. Field of the Invention
[0001] The present invention relates to a card with a built-in antenna which is used being
mounted on an electronic apparatus comprising a display screen, in particular, to
the card with a built-in antenna suitable for mounting on a portable information terminal
capable of receiving digital terrestrial television (DTTV) broadcasting.
2. Description of the Related Art
[0002] In general, conventional retractable rod antennas, are used as the antenna device
used in portable television receivers, because the rod antennas with the length of
tens centimeters are suitable for receiving the frequency in VHF band. But a user
must adjust the sensitivity of the rod antenna by modifying the length of the antenna
or changing its angle or direction in response to the received channel (received frequency)
in order to obtain the optimal reception sensitivity of the rod antennas. Also, the
rod antennas have the problem that it has a burdensome projection and easily broken
because they must be extended to use.
[0003] However, in digital terrestrial television broadcasting that is soon to be introduced,
a short rod antenna or a built-in antenna can be used because the lowest frequency
to be received is set to 470 MHz of UHF band. In particular, the built-in antenna
can change easily the antenna resonant frequency by using a variable coil, so thus
it does not need vexatious sensitivity adjustment and it may be used conveniently.
Conventional techniques propose that this kind of built-in antenna be assembled inside
a portable television receiver. The techniques are referred to patent document 1 (the
page 5 and Fig. 6 of Japanese Patent Application Publication No. 2001-339329), for
example.
[0004] However, in digital terrestrial television broadcasting in which the length of the
antenna can be comparatively short, the reception is intended for portable information
terminals such as PDAs (Personal Digital Assistants) and cellular phones as well as
dedicated television receivers. In those cases, it can be assumed that the antenna,
tuner, and etc. for receiving digital terrestrial television broadcasting are provided
inside the body of the apparatus such as PDAs and cellular phones in advance. But
if the antenna and tuner are assembled into the card detachably mounted to the body
of the apparatus to form a card with a built-in antenna. The size or weight of the
apparatus can be reduced without reducing the size of the display screen. Also, the
apparatus can be used for another purpose by attaching another card with a built-in
antenna to the apparatus. Thus, this built-in antenna card adds value because it promotes
the multi-functionality of the apparatus. However, in order to ensure good television
broadcasting reception with a small antenna, the circuit that effectively changes
the resonant frequency of the antenna in response to the received frequency is required.
The card with a built-in antenna comprising said circuit has not yet been proposed.
SUMMARY OF THE INVENTION
[0005] This invention was made in consideration of the aforementioned problems of conventional
techniques, and the object of the present invention is to provide a card with a built-in
antenna in which the resonant frequency of the antenna can be effectively changed
in response to the received frequency, and can be detachable to electronic apparatuses
such as portable information terminals comprising a display screen.
[0006] In order to achieve the above objects, the invention provides a card with a built-in
antenna which is detachably mounted on a electronic apparatus comprising a display
screen capable of displaying image based on a received radio signal, and the card
with a built-in antenna comprises an antenna element protruding from the electronic
apparatus to outside in a mounted state; tuning control means for changing the resonant
frequency of the antenna element in response to a received frequency; and a tuner
to which the received signal of antenna element is input.
[0007] As such, in the card with a built-in antenna comprising the tuning control means
for changing the resonant frequency of the antenna element in response to a received
frequency, the antenna element can be smaller and still have the good reception sensitivity.
Thus, the present invention enables the entire card to be compact in size while securing
the space occupied by tuner, etc.
[0008] In the above card with a built-in antenna, it is preferable that a variable capacitor
element such as a varactor diode be used as the tuning control means. So thus, it
is possible to realize the tuning control for changing the resonant frequency of the
antenna element in response to a received frequency with simple construction. It is
possible to effectively change the additional capacitance of variable capacitor element
by applying the DC bias voltage from the tuner in order to change the additional capacitance
of the antenna element.
[0009] In the above card with a built-in antenna, when the antenna element is a dielectric
antenna in which a radiating electrode is laid on the surface of a dielectric substrate,
the size of the antenna element can be reduced, the stable performance of the antenna
can be obtained, and the assembly performance improve because the modularized antenna
element can be mounted easily.
[0010] Furthermore, in the above card with a built-in antenna, it is preferable that the
received frequency be within UHF band, and the tuner receive television signal. This
invention is highly useful as the card with a built-in antenna for receiving digital
terrestrial television broadcasting in which the lowest frequency to be received is
set to 470 MHz. In this case, the portable information terminal which can at least
be used as a television receiver is suitable for the electronic apparatus to mount
the above card with a built-in antenna thereon.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
Fig. 1 is a schematic structure diagram of the card with a built-in antenna according
to the first embodiment of the present invention.
Fig. 2 is a view for illustrating the card illustrated in Fig. 1 mounted on a portable
information terminal.
Fig. 3 is a perspective view of an antenna element embedded in the card illustrated
in Fig. 1.
Fig. 4 is a bottom view of the antenna element illustrated in Fig. 3.
Fig. 5 is a schematic structure diagram of the card with a built-in antenna according
to the second embodiment of the present invention.
Fig. 6 is a perspective view of an antenna element embedded in the card illustrated
in Fig. 5.
Fig. 7 is a bottom view of the antenna element illustrated in Fig. 6.
Fig. 8 is a schematic structure diagram of the card with a built-in antenna according
to the third embodiment of the present invention.
Fig. 9 is a perspective view of an antenna element embedded in the card illustrated
in Fig. 8.
Fig. 10 is a bottom view of the antenna element illustrated in Fig. 9.
DESCRIPTION OF THE PREFERRED EMBODIMENT
[0012] The preferred embodiments of the invention will now be described with reference to
the accompanying drawings. Fig. 1 is a schematic structure diagram of the card with
a built-in antenna according to the first embodiment of the present invention. Fig.
2 is a view for illustrating said card mounted on a portable information terminal.
Fig. 3 is a perspective view of an antenna element embedded in said card. Fig. 4 is
a bottom view of the antenna element illustrated in Fig. 3.
[0013] The card with a built-in antenna 11 illustrated in Fig. 1 is a card type electronic
device for receiving the signal wave (horizontally polarized wave) of digital terrestrial
television broadcasting whose frequency is between 470 MHz and 770 MHz. The card 11
is mounted on the portable information terminal 1 of Fig. 2. The card 11 comprises
a circuit board 14 on which an antenna element 12 and a tuner 13 are mounted and which
is accommodated in an enclosing case 15. A varactor diode 16 and a resistor 17 are
laid on the side of the antenna element 12 (Refer to Fig. 3).
[0014] The antenna element 12 is an inverted F-type dielectric antenna in which a radiating
electrode 19, a earth electrode 20, a feed terminal 21, a control terminal 22, etc
are laid on the surface of a rectangular parallelepiped dielectric substrate 18. The
dielectric substrate 18 is made of the dielectric material such as ceramics, resins,
etc. The electrodes 19, 20 and the terminals 21, 22 are made of a conductive layer
such as a copper film, respectively. On the top surface of the dielectric substrate
18, the radiating electrode 19 has capacitor coupling units C1, C2 at two positions
and matches impedance or adjusts additional capacitance by these capacitor coupling
units C1, C2. On the bottom surface of the dielectric substrate 18, the earth electrode
20 is connected to a ground conductor 23 on the side of the circuit board 14, and
the feed terminal 21 and the control terminal 22 are connected to the tuner 13. A
high frequency feed voltage is supplied to the feed terminal 21, and a DC bias voltage
(control voltage) is applied to the control terminal 22.
[0015] The varactor diode 16 is a variable capacitor element whose capacitance changes in
response to the applied DC bias voltage. One pole of the varactor diode 16 is connected
to the resistor 17, and the other pole is connected to the earth electrode 20. The
resistor 17 for deterring high frequency is connected to the control terminal 22.
The DC bias voltage is applied to the varactor diode 16 through the resistor 17. The
radiating electrode 19 is not affected by the DC bias voltage, because the DC bias
voltage is cut off by the capacitor coupling unit C2.
[0016] The tuner 13 is a tuner for receiving a television signal. The signal (RF signal)
received from the antenna element 12 is input to the tuner 13. The tuner 13 processes
the input signal and outputs this signal as an IF signal to the liquid crystal display
unit 2 of the portable information terminal 1.
[0017] The portable information terminal 1 comprises a slot 3 for detachably mounting the
card with a built-in antenna 11 therein. As shown in Fig. 2, when the card with a
built-in antenna 11 is mounted on the portable information terminal 1, the antenna
element 12 mounted on one side of the card 11 protrudes from the portable information
terminal 1 to outside. When an image is displayed on the liquid crystal display unit
2 by receiving the digital terrestrial television broadcasting, the card 11 is mounted
on the portable information terminal 1 as shown in Fig. 2, and the antenna element
12 operate as the an inverted F-type antenna for receiving broadcasting. In case the
reception of the terrestrial television broadcasting is terminated or the portable
information terminal 1 is used for another purpose by mounting another card therein,
the card with a built-in antenna 11 is taken out from the slot 3.
[0018] The operation of the antenna element 12 will be described in detail. The resonant
frequency of the antenna can be changed in response to the amplitude of the DC bias
voltage (control voltage) applied to the varactor diode 16, because the additional
capacitance of the antenna element 12 effectively changes in response to the capacitance
of varactor diode 16 (variable capacitor element). That is, the resonant frequency
of the antenna element can be tuning-controlled in response to a received frequency,
because the additional capacitance of the antenna element 12 can be effectively changed
by applying the DC bias voltage from the tuner 13 to the varactor diode 16 in order
to change the capacitance of the varactor diode 16. Thus, the image signal received
by the antenna element 12 can be processed by the tuner 13 and be displayed on the
liquid crystal display unit 2 of the portable information terminal 1 by synchronizing
the resonant frequency of the antenna element with the received frequency.
[0019] As such, the card with a built-in antenna 11 according to the first embodiment can
obtain good reception sensitivity by the antenna element 12 with small size, because
it comprises the varactor diode 16 for changing the resonant frequency of the antenna
element in response to a received frequency. Also, this invention enables the entire
card 11 to be compact in size while securing the space occupied by the antenna element
12, the tuner 13, etc. Further, this invention does a credible job of tuning control
of the resonant frequency of the antenna element with a simple construction, because
the method of controlling the capacitance of the varactor diode 16 is very simple.
[0020] In the card with a built-in antenna 11 according to the first embodiment, the antenna
element 12 is a dielectric antenna. Thus, the size of the antenna element 12 can be
easily reduced and the stable performance of the antenna element can be obtained.
Also, the modularized antenna element 12 can be accurately and easily mounted on the
circuit board 14. Further, the good reception sensitivity can be expected even in
a room where the jitter of a polarized wave may occur with ease, because this antenna
element 12 is an inverted F-type antenna which can receive both a vertically polarized
wave and a horizontally polarized wave.
[0021] In the first embodiment, although the varactor diode 16 is attached to the antenna
element 12 as the variable capacitor element, the variable capacitor element may be
directly mounted on the circuit board 14. Also, although the feed terminal 21 and
the control terminal 22 are respectively provided in the antenna element 12 in the
first embodiment, a feed voltage and a DC bias voltage (control voltage) from the
tuner 13 may be superposed and supplied to one terminal provided in the antenna element
12.
[0022] Fig. 5 is a schematic structure diagram of the card with a built-in antenna according
to the second embodiment of the present invention. Fig. 6 is a perspective view of
an antenna element embedded in said card. Fig. 7 is a bottom view of the antenna element
illustrated in Fig. 6. In the Fig. 5 to Fig. 7, the same reference numerals refer
to the same parts as Fig. 1 to Fig. 4.
[0023] The card with a built-in antenna 31 illustrated in Fig. 5 differs from the first
embodiment in that the card 31 comprises a loop type antenna element 32. That is,
the antenna element 32 shown in Fig. 5 to Fig. 7 is a loop type dielectric antenna
comprising a band radiating electrode 19 formed along the side surface of a rectangular
parallelepiped dielectric substrate 18. A capacitor 24 is interposed between the radiating
electrode 19 and the feed terminal 21. The feed terminal 21, a control terminal 22
and an earth terminal 25 are provided on one end side of the bottom surface of the
dielectric substrate 18. The feed terminal 21 and the control terminal 22 are connected
to the tuner 13, and the earth terminal 25 is connected to the ground conductor 23
on the side of the circuit board 14. One pole of the varator diode 16 is connected
to the resistor 17, and the other pole is connected to the earth terminal 25 through
the radiating electrode 19. The resistor 17 for deterring high frequency is connected
to the control terminal 22. The DC bias voltage (control voltage) is applied to the
varactor diode 16 through the resistor 17. As shown in Fig. 5, the ground conductor
23 is absent from the area of the circuit board 14 occupied by the antenna element
32 and the periphery thereof in the side of the circuit board 14, but the basic construction
is same as that of the first embodiment.
[0024] As such, in the card with a built-in antenna 31 according to the second embodiment,
the radiating pattern of the horizontally polarized wave is non-directional because
a loop type antenna is used as the antenna element 32. Thus, even if the portable
information terminal comprising the card with a built-in antenna 31 facing any direction,
it can receive the digital terrestrial television broadcasting signal with the same
reception sensitivity. Also, if the loop type antenna element 32 is used, it is hard
for the antenna element 32 to be affected by a human body.
[0025] Fig. 8 is a schematic structure diagram of the card with a built-in antenna according
to the third embodiment of the present invention. Fig. 9 is a perspective view of
an antenna element embedded in the card. Fig. 10 is a bottom view of the antenna element
illustrated in Fig. 9. In the Fig. 8 to Fig. 10, the same reference numerals refer
to the same parts as Fig. 5 to Fig. 7.
[0026] The antenna element 42 of the card with a built-in antenna 41 illustrated in Fig.
8 is a slightly different loop type antenna from that of the second embodiment. In
the antenna element 42 of Fig. 8 to Fig. 10, a long thin radiating electrode 19 is
spirally laid along the side surface of the rectangular parallelepiped dielectric
substrate 18. Also, the varactor diode 16 and the resistor 17 mounted on the top surface
of the dielectric substrate 18 are respectively connected to the feed terminal 21
and the control terminal 22 through via holes 26, 27 that penetrate the dielectric
substrate 18. Since one end of the radiating electrode 19 which is spirally extended
is connected to the varactor diode 16 on the top surface of the dielectric substrate
18, it is also connected to the feed terminal 21 through the via hole 26. Further,
the other end of the radiating electrode 19 is connected to the earth terminal 25
on the bottom surface of the dielectric substrate 18. Also, the basic construction
of the circuit board 14 is same as that of the second embodiment.
[0027] As such, in the card with a built-in antenna 41 according to the third embodiment,
it is possible to lengthen the antenna without enlarging the dielectric substrate
18, because the radiating electrode 19 of the antenna element 42 is spirally laid.
Thus, the small antenna can receive a signal with a long wavelength. Also, like the
second embodiment, the radiating pattern of the horizontally polarized wave is non-directional
because the antenna element 42 is a loop type antenna. Thus, even if the portable
information terminal faces any direction, it can receive the digital terrestrial television
broadcasting signal with the same reception sensitivity. Also, it is hard for the
antenna element 42 to be affected by a human body.
[0028] In the second and third embodiments, although the varactor diode 16 is attached to
the antenna element 32 (42) as the variable capacitor element, the variable capacitor
element may be directly mounted on the circuit board 14. Also, although the feed terminal
21 and the control terminal 22 are respectively provided on the antenna element 32
(42) in the second and third embodiments, a feed voltage and a DC bias voltage (control
voltage) from the tuner 13 may be superposed and supplied to one terminal provided
on the antenna element 32 (42).
[0029] The present invention according to the aforementioned embodiments has effects as
follows.
[0030] The present invention relates to the card with a built-in antenna comprising the
tuning control means for changing the resonant frequency of the antenna element in
response to a received frequency and enables the small antenna element with the good
reception sensitivity. Thus, the present invention enables the entire card to be compact
in size while securing the space occupied by tuner, etc. Hence, if the card with a
built-in antenna is detachably mounted on a portable information terminal comprising
a display screen, it is very useful as the card with a built-in antenna for receiving
digital terrestrial television broadcasting.
[0031] Further, if the variable capacitor element such as a varactor diode is used as the
tuning control means, the additional capacitance of the antenna element can be effectively
changed by applying the DC bias voltage from the tuner to the variable capacitor element
in order to change the capacitance thereof. Thus, the present invention can realize
a tuning control for changing the resonant frequency of the antenna element in response
to a received frequency with simple configuration.
[0032] While the present invention has been described in particular embodiments, it should
be appreciated that the present invention should not be construed as limited by such
embodiments, but rather construed according to the following claims.