Claims
- 1. A helical antenna comprising:a cylindrical dielectric core made of insulator, said cylindrical dielectric core having a center axis extending in a longitudinal direction and having an outer peripheral surface; an antenna lead member made of conductor, said antenna lead member being wound around the outer peripheral surface of said cylindrical dielectric core in a helix fashion except for a tip portion of said cylindrical dielectric core; and a resonance frequency adjustment portion made of additional conductor, said resonance frequency adjustment portion being formed on the outer peripheral surface of said cylindrical dielectric core at the tip portion of said cylindrical dielectric core adjacent to said antenna lead member; wherein said resonance frequency adjustment portion comprises the additional conductor which is apart from a tip of said antenna lead member with a primary gap and which comprises a train of conductor segments with subsidiary gaps between adjacent conductor segments, so as to enable a length of an antenna lead to be varied by electrically connecting said antenna lead member with said additional conductor at the primary and the subsidiary gaps.
- 2. The helical antenna as claimed in claim 1, wherein the subsidiary gaps in said resonance frequency adjustment portion are disposed at equal intervals.
- 3. The helical antenna as claimed in claim 1, wherein said antenna lead member and said resonance frequency adjustment portion constitute an antenna pattern film in which said conductor and said additional conductor are printed on a flexible film.
- 4. The helical antenna as claimed in claim 1, wherein said conductor and said additional conductor are made of the same conductive material.
- 5. The helical antenna as claimed in claim 1, wherein solder is provided for electrically connecting said antenna lead member with said additional conductor at the primary gap and for electrically connecting between the conductor segments at the subsidiary gaps.
- 6. The helical antenna as claimed in claim 5, wherein:opposite ends of said antenna lead member and of said additional conductor opposed via the primary gap have enlarged portions each of which is wider than other portions of said antenna lead member and of said additional conductor, opposite ends of said conductor segments opposed via the subsidiary gaps have enlarged portions each of which is wider than other portions of said conductor segments, and each pair of adjacent opposite ends via the primary or subsidiary gap form a land suitable to mount said solder thereon.
- 7. The helical antenna as claimed in claim 6, wherein said lands are substantially circular.
- 8. A helical antenna comprising:a cylindrical dielectric core made of insulator, said cylindrical dielectric core having a center axis extending in a longitudinal direction and an outer peripheral surface; first through N-th antenna lead members each made of conductor where N represents a predetermined positive integer which is not less than two, each of said first through N-th antenna lead members being wound around the outer peripheral surface of said cylindrical dielectric core in a helix fashion except for a tip portion of said cylindrical dielectric core; and first through N-th resonance frequency adjustment portions each made of additional conductor, said first through N-th resonance frequency adjustment portions being formed on the outer peripheral surface of said cylindrical dielectric core at the tip portion of said cylindrical dielectric core adjacent to said first through said N-th antenna lead members, respectively; wherein an n-th resonance frequency adjustment portion comprises the additional conductor which is apart from a tip of an n-th antenna lead member with a primary gap and which comprises a train of conductor segments with subsidiary gaps between adjacent conductor segments, where n represents a variable between 1 and N, so as to enable a length of an antenna lead to be varied by electrically connecting said n-th antenna lead member with said additional conductor of said n-th resonance frequency adjustment portion at the primary and the subsidiary gaps.
- 9. The helical antenna as claimed in claim 8, wherein said first through said N-th antenna lead members are arranged on the outer peripheral surface of said cylindrical dielectric core at equal angle intervals, and said first through said N-th antenna resonance frequency adjustment portions are arranged on the outer peripheral surface of said cylindrical dielectric core at equal angle intervals.
- 10. The helical antenna as claimed in claim 8, wherein the subsidiary gaps in each of said first through said N-th resonance frequency adjustment portions are disposed at equal intervals.
- 11. The helical antenna as claimed in claim 8, wherein said first through said N-th antenna lead members and said first through said N-th resonance frequency adjustment portions constitute an antenna pattern film in which said conductor and said additional conductor are printed on a flexible film.
- 12. The helical antenna as claimed in claim 8, wherein said conductor and said additional conductor are made of the same conductive material.
- 13. The helical antenna as claimed in claim 8, wherein solder is provided for electrically connecting said n-th antenna lead member with said additional conductor of said n-th resonance frequency adjustment portion at the primary gap and for electrically connecting between the conductor segments at the subsidiary gaps.
- 14. The helical antenna as claimed in claim 13, wherein:opposite ends of said n-th antenna lead member and of said additional conductor of said n-th resonance frequency adjustment portion opposed via the primary gap have enlarged portions each of which is wider than other portions of said n-th antenna lead member and of said additional conductor of said n-th resonance frequency adjustment portion, opposite ends of said conductor segments opposed via the subsidiary gaps have enlarged portions each of which is wider than other portions of said conductor segments, and each pair of adjacent opposite ends via the primary or subsidiary gap form a land suitable to mount said solder thereon.
- 15. The helical antenna as claimed in claim 14, wherein said lands are substantially circular.
- 16. A method of adjusting a resonance frequency of a helical antenna comprising a cylindrical dielectric core made of insulator, an antenna lead member made of conductor, and a resonance frequency adjustment portion made of additional conductor, said cylindrical dielectric core having a center axis extending a longitudinal direction and an outer peripheral surface, said antenna lead member being wound around the outer peripheral surface of said cylindrical dielectric core in a helix fashion except for a tip portion of said dielectric core, said resonance frequency adjustment portion being formed on the outer peripheral surface of said cylindrical dielectric core at the tip portion of said cylindrical dielectric core adjacent to said antenna lead member, said resonance frequency adjustment portion comprising the additional conductor which is apart from a tip of said antenna lead member with a primary gap and which includes a train of conductor segments with subsidiary gaps between adjacent conductor segments, said method comprising:electrically connecting said antenna lead member with said additional conductor at the primary gap and of electrically connecting between said adjacent conductor segments at the subsidiary gaps in order of being apart from the tip of said antenna lead member so as to vary a length of an antenna lead, thereby adjusting the resonance frequency of said helical antenna.
- 17. A helical antenna comprising:a cylindrical dielectric core made of insulator, said cylindrical dielectric core having a center axis extending in a longitudinal direction and an outer peripheral surface; and an antenna pattern film wound around the outer peripheral surface of said cylindrical dielectric core, said antenna pattern film comprising a flexible insulator film and a conductive pattern printed on said flexible insulator film, said conductive pattern having at least one antenna lead member so as to wind said at least one antenna lead member on the outer peripheral surface of said cylindrical dielectric core in a helix fashion, said at least one antenna lead member being made of conductor, said flexible insulator film being detachably pasted on the outer peripheral surface of said cylindrical dielectric core, said flexible insulator film having a plurality of circumferential perforated circular lines extending along a circumferential direction at a tip portion of said cylindrical dielectric core except for said conductive pattern at equal intervals in the longitudinal direction so as to form belts between adjacent circumferential perforated circular lines.
- 18. The helical antenna as claimed in claim 17, wherein said flexible insulator film further has an additional perforated line extending along a direction parallel to said at least one antenna lead member so as to intersect the plurality of circumferential perforated circular lines.
- 19. A helical antenna comprising:a cylindrical dielectric core made of insulator, said cylindrical dielectric core having a center axis extending in a longitudinal direction and having an outer peripheral surface; an antenna lead member made of conductor, said antenna lead member being wound around the outer peripheral surface of said cylindrical dielectric core in a helix fashion except for a tip portion of said cylindrical dielectric core; and a resonance frequency adjustment portion made of additional conductor, said resonance frequency adjustment portion being formed on the outer peripheral surface of said cylindrical dielectric core at the tip portion of said cylindrical dielectric core adjacent to said antenna lead member; wherein said resonance frequency adjustment portion comprises the additional conductor which is apart from a tip of said antenna lead member with a primary gap and which comprises a train of conductor segments with subsidiary gaps between adjacent conductor segments, so as to enable a length of an antenna lead to be varied by electrically connecting said antenna lead member with said additional conductor at the primary and the subsidiary gaps.
- 20. An antenna unit comprising:a helical antenna comprising a hollow cylindrical member made of insulator and an antenna lead member made of conductor, said hollow cylindrical member having a center axis extending in a longitudinal direction, an outer peripheral surface, and an inner peripheral surface, said antenna lead member being wound around the outer peripheral surface of said hollow cylindrical member in a helix fashion; a main circuit board mounted inside said hollow cylindrical member near one end of said hollow cylindrical member in the longitudinal direction; and a low-noise amplifier mounted on said main circuit board, said low-noise amplifier having an amplifier input terminal connected to an end of said antenna lead member.
- 21. The antenna unit as claimed in claim 20, further comprising a dielectric seat for covering said helical antenna.
- 22. The antenna unit as claimed in claim 20, further comprising a dielectric rod inserted in said helical antenna.
- 23. An antenna unit comprising:a helical antenna comprising a hollow cylindrical member made of insulator and an antenna lead member made of conductor, said hollow cylindrical member having a center axis extending in a longitudinal direction, an outer peripheral surface, and an inner peripheral surface, said antenna lead member being wound around the outer peripheral surface of said hollow cylindrical member in a helix fashion; a main circuit board mounted inside said hollow cylindrical member near one end of said hollow cylindrical member in the longitudinal direction, said main circuit board having a principal surface which extends in parallel with the longitudinal direction; and a low-noise amplifier mounted on the principal surface of said main circuit board, said low-noise amplifier having an amplifier input terminal connected to an end of said antenna lead member.
- 24. The antenna unit as claimed in claim 23, wherein said hollow cylindrical member has a pair of grooves in the inner peripheral surface at the end thereof, and said main circuit board is inserted in the grooves of said hollow cylindrical member.
- 25. The antenna unit as claimed in claim 23, further comprising a dielectric seat for covering said helical antenna.
- 26. The antenna unit as claimed in claim 23, further comprising a dielectric rod inserted in said helical antenna.
- 27. An antenna unit comprising:a helical antenna comprising a hollow cylindrical member made of insulator and a plurality of antenna lead members made of conductor, said hollow cylindrical member having a center axis extending in a longitudinal direction, an outer peripheral surface, and an inner peripheral surface, said antenna lead members being wound around the outer peripheral surface of said hollow cylindrical member in a helix fashion; a main circuit board mounted inside said hollow cylindrical member near one end of said hollow cylindrical member in the longitudinal direction, said main circuit board having a principal surface which extends in parallel with the longitudinal direction; a phase shifter supported on said hollow cylindrical member, said phase shifter having a plurality of shifter input terminals connected to ends of said antenna lead members and a shifter output terminal; and a low-noise amplifier mounted on the principal surface of said main circuit board, said low-noise amplifier having an amplifier input terminal connected to the shifter output terminal.
- 28. The antenna unit as claimed in claim 27, wherein said hollow cylindrical member has a pair of grooves in the inner peripheral surface at the end thereof, and said main circuit board is inserted in the grooves of said hollow cylindrical member.
- 29. The antenna unit as claimed in claim 27, further comprising a dielectric seat for covering said helical antenna.
- 30. The antenna unit as claimed in claim 27, further comprising a dielectric rod inserted in said helical antenna.
- 31. An antenna unit comprising:a helical antenna comprising a hollow cylindrical member made of insulator and a plurality of antenna lead members made of conductor, said hollow cylindrical member having a center axis extending in a longitudinal direction, an outer peripheral surface, and an inner peripheral surface, said antenna lead members being wound around the outer peripheral surface of said hollow cylindrical member in a helix fashion; a main circuit board mounted inside said hollow cylindrical member near one end of said hollow cylindrical member in the longitudinal direction, said main circuit board having a principal surface which extends in parallel with the longitudinal direction; a phase shifter mounted on the principal surface of said main circuit board, said phase shifter having a plurality of shifter input terminals connected to ends of said antenna lead members and a shifter output terminal; and a low-noise amplifier mounted on the principal surface of said main circuit board, said low-noise amplifier having an amplifier input terminal connected to the shifter output terminal.
- 32. The antenna unit as claimed in claim 31, wherein said hollow cylindrical member has a pair of grooves in the inner peripheral surface at the end thereof, and said main circuit board is inserted in the grooves of said hollow cylindrical member.
- 33. The antenna unit as claimed in claim 31, further comprising a dielectric seat for covering said helical antenna.
- 34. The antenna unit as claimed in claim 31, further comprising a dielectric rod inserted in said helical antenna.
- 35. An antenna unit comprising:a helical antenna comprising a hollow cylindrical member made of insulator and a plurality of antenna lead members made of conductor, said hollow cylindrical member having a center axis extending in a longitudinal direction, an outer peripheral surface, and an inner peripheral surface, said antenna lead members being wound around the outer peripheral surface of said hollow cylindrical member in a helix fashion; a main circuit board mounted inside said hollow cylindrical member near one end of said hollow cylindrical member in the longitudinal direction, said main circuit board having a main principal surface which extends in parallel with the longitudinal direction; a subsidiary circuit board mounted within said hollow cylindrical member, said subsidiary circuit board having a subsidiary principal surface which extends in parallel with of the main principal surface of said main circuit board; a phase shifter mounted on the subsidiary principal surface of said subsidiary circuit board, said phase shifter having a plurality of shifter input terminals connected to ends of said antenna lead members and a shifter output terminal; and a low-noise amplifier mounted on the main principal surface of said main circuit board, said low-noise amplifier having an amplifier input terminal connected to the shifter output terminal via a connection pin.
- 36. The antenna unit as claimed in claim 35, wherein said hollow cylindrical member has a pair of main grooves and a pair of subsidiary grooves in the inner peripheral surface at the end thereof, and said main circuit board and the subsidiary circuit board are inserted in the main grooves and the subsidiary grooves of said hollow cylindrical member, respectively.
- 37. The antenna unit as claimed in claim 35, further comprising a dielectric seat for covering said helical antenna.
- 38. The antenna unit as claimed in claim 35, further comprising a dielectric rod inserted in said helical antenna.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2000-146698 |
May 2000 |
JP |
|
2000-158058 |
May 2000 |
JP |
|
2000-158414 |
May 2000 |
JP |
|
Parent Case Info
This is a division of application Ser. No. 09/859.246 filed May 17, 2001.
US Referenced Citations (15)