Claims
- 1. A composite antenna device comprising a coaxial line, a balun connected to an inner conductor at one end of said coaxial line, a helical element formed from a pair of wire conductors, one end of said helical element being connected to said balun, the other end of said helical element being aligned facing said balun by winding it symmetrically around the coaxial line using the coaxial line as a center and being connected to an outer conductor at the other end of said coaxial line, an inner conductor connecting terminal connected to the inner conductor at the other end of the said coaxial line and an outer conductor connecting terminal connected to the outer conductor at the other end of the said coaxial line.
- 2. The composite antenna device according to claim 1 wherein one end of the helical element formed by the pair of wire conductors is attached to the balun provided at one end of the coaxial line , its other end is aligned facing said balun by winding it symmetrically around said coaxial line using said coaxial line as a center and is attached to the outer conductor at the other end of said coaxial line, a first wireless circuit is connected to the outer conductor connecting terminal and a second wireless circuit is connected between said outer conductor connecting terminal and inner conductor connecting terminal provided at the other end of said coaxial line.
- 3. The composite antenna device according to claim 1 wherein a phase delay element is provided at that end of the coaxial line which is provided with the balun, an end of the first helical element formed from the pair of wire conductors is connected directly to the balun, an end of a second helical element formed from the pair of wire conductors is connected to said balun through said phase delay element, the other ends of said first and second helical elements are aligned facing said balun and said phase delay element by winding the ends symmetrically around said coaxial line using said coaxial line as a center and are connected to the outer conductor at the other end of said coaxial line, a first wireless circuit is connected to the outer conductor connecting terminal and a second wireless circuit is connected between said outer conductor connecting terminal and inner conductor connecting terminal provided at the other end of said coaxial line.
- 4. The composite antenna device of claim 1 wherein one end of a plurality of helical elements formed from pairs of wire conductors is respectively connected to each of a plurality of baluns provided respectively at one end of a plurality of bundled coaxial lines in which the outer conductors are mutually contacting, the other end of each helical element is aligned facing said baluns by being wound symmetrically around said coaxial lines using said coaxial lines as a center and is connected to the outer conductors at the other end of said coaxial lines, said composite antenna providing a plurality of inner conductor connecting terminals connected to the respective inner conductors and a plurality of outer conductor connecting terminals connected to the respective outer conductors at the other end of each said coaxial line.
- 5. The composite antenna apparatus of claim 4 which provides a first phase delay element at the end to which a first balun of a first coaxial line is attached and a second phase delay element at the end to which a second balun of a second coaxial line is attached, an end of one pair of the two pairs of helical elements constituting a first helical antenna is connected to said first balun through said first phase delay element, the other end is connected to said first balun directly, an end of one pair of the two pairs of helical elements constituting a second helical antenna is connected to said second balun through said second phase delay element, the other end is connected to said second balun directly, the other end of each said helical element is aligned symmetrically facing said balun and phase delay element by winding the end symmetrically around each said coaxial line using the line as a center and is connected to the outer conductor at the other end of each said coaxial line, the first wireless circuit is connected to the outer conductor connecting terminal connected to the outer conductor at the other end of said first and second coaxial lines, the second wireless circuit is connected between said outer conductor connecting terminal and said first inner conductor connecting terminal connected to the inner conductor at the other end of said first coaxial line, the third wireless circuit is connected between said outer conductor connecting terminal and the second outer conductor connecting terminal which is connected to the outer conductor at the other end of said second coaxial line.
- 6. The composite antenna apparatus according to claim 1 wherein a plurality of mutually insulated slidable connectors rotatable around an axis of rotation orthogonal to the directional axis of the coaxial line are disposed at the end of the coaxial line facing the balun, each said slidable connector is connected to either the outer conductor or inner conductor of said coaxial line, slidable connectors connected to the inner conductors of said coaxial lines act as an inner conductor connecting terminal, slidable connectors connected to the outer conductors act as an outer conductor connecting terminal.
- 7. The composite antenna apparatus according to claim 1 wherein the balun is provided at the top end of the coaxial line extendable or storable in the wireless body, an end of the helical element is connected to said balun, the other end is aligned facing said balun by winding the end symmetrically around said coaxial line and is connected to the outer conductor at the lower part of said coaxial line, a sub-antenna element having a connecting terminal is disposed in series being electrically insulated from said coaxial line at the top part of said coaxial line, when said coaxial line is in the stored position, a single wireless circuit is connected to the connecting terminal of said sub-antenna element, when in the extended position, a wireless circuit, connected to the connecting terminal of said sub-antenna element when said coaxial line is stored, is connected to the outer conductor connecting terminal provided at the lower part of said coaxial line, another wireless circuit is connected between the inner conductor connecting terminal provided at the lower end of said coaxial line and the outer conductor connecting terminal, said wireless circuits being switching means.
- 8. The composite antenna apparatus according to claim 7 wherein the sub-antenna element is comprised by a helical conductor formed by helically winding a wire conductor connected to a connecting terminal.
- 9. The composite antenna apparatus according to claim 7 wherein the sub-antenna element is comprised by a bent conductor formed by winding, in a zigzag pattern, a wire conductor connected to a connecting terminal.
Parent Case Info
This application is the national phase under 35 U.S.C. §371 of PCT International Application No. PCT/JP97/04427 which has an International filing date of Dec. 3, 1997 which designated the United States of America.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/JP97/04427 |
|
WO |
00 |
5/19/1999 |
5/19/1999 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO99/28989 |
6/10/1999 |
WO |
A |
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Foreign Referenced Citations (9)
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0521511 A2 |
Jan 1993 |
EP |
63-30006 |
Feb 1988 |
JP |
4134906 |
May 1992 |
JP |
8-65034 |
Mar 1996 |
JP |
8204420 |
Aug 1996 |
JP |
9-18215 |
Jan 1997 |
JP |
9-27710 |
Jan 1997 |
JP |
9107223 |
Apr 1997 |
JP |
9701196 |
Jan 1997 |
WO |