IP Library Granted Patent US 8,860,620
Granted Patent B2
US 8,860,620 · App. 13/431,867 · Granted Oct 14, 2014

Electromagnetic wave radiation coaxial cable and communication system using the same

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Quick Facts
Patent No.
US 8,860,620
App. No.
13/431,867
Granted
Oct 14, 2014
Kind
B2
Abstract

An electromagnetic wave radiation coaxial cable and a communication system using the same. The electromagnetic wave radiation coaxial cable includes an inner conductor which is formed of a conductor and extends along a cable axis, an insulator covering the inner conductor, and an outer conductor spirally wound around the insulator in a single winding at a predetermined pitch to provide a gap from which a part of the insulator is exposed. Following formula is established: ɛ r - 1 < λ P < ɛ r + 1 when λ is a wavelength of a radio frequency signal to be transmitted or received, ∈ r is a relative dielectric constant of the insulator at the wavelength λ, and P is a winding pitch of the outer conductor along the direction of the cable axis.

Claims (52)

1. An electromagnetic wave radiation coaxial cable, comprising:

an inner conductor comprising a conductor and extending along a cable axis;

an insulator covering the inner conductor; and

an outer conductor spirally wound around the insulator in a single winding at a predetermined pitch to form a gap consisting essentially of a single spiral groove from which a part of the insulator is exposed,

wherein a formula is established as:

ɛ

r

-

1

<

λ

P

<

ɛ

r

+

1

wherein λ is a wavelength of a radio frequency signal to be transmitted or received, ∈r is a relative dielectric constant of the insulator at the wavelength λ, and P is a winding pitch of the outer conductor along a direction of the cable axis, and

wherein the electromagnetic wave radiation coaxial cable is configured to radiate a circular polarized electromagnetic wave when the radio frequency signal is applied to the inner conductor.

2. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein an occupation ratio of the outer conductor at a surface of the insulator is 50% or more.

3. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein a width of the gap in a direction perpendicular to side edges of the outer conductor when the gap is projected on a plane including the cable axis is 0.5 mm or more.

4. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein the outer conductor comprises a metal foil or a plurality of conductor wires.

5. The electromagnetic wave radiation coaxial cable according to claim 1 , a frequency of the radio frequency signal is within a range from 800 MHz to 2400 MHz.

6. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein the single spiral groove continuously extends from an edge of the insulator to another edge of the insulator along the cable axis.

7. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein the single spiral groove continuously extends along the cable axis on an entirety of the insulator.

8. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein the relative dielectric constant of the insulator is in a range from 1.0 to 3.0.

9. The electromagnetic wave radiation coaxial cable according to claim 1 , wherein a ratio of a width of the outer conductor to the winding pitch of the outer conductor is at least 50%.

10. A communication system, comprising:

an electromagnetic wave radiation coaxial cable as an antenna, the electromagnetic wave radiation coaxial cable comprising an inner conductor comprising a conductor and extending along a cable axis, an insulator covering the inner conductor, and an outer conductor spirally wound around the insulator in a single winding at a predetermined pitch to form a gap consisting essentially of a single spiral groove from which a part of the insulator is exposed,

wherein a formula is established as:

ɛ

r

-

1

<

λ

P

<

ɛ

r

+

1

wherein λ is a wavelength of a radio frequency signal to be transmitted or received, ∈r is a relative dielectric constant of the insulator at the wavelength λ, and P is a winding pitch of the outer conductor along a direction of the cable axis,

wherein the electromagnetic wave radiation coaxial cable is configured to radiate a circular polarized electromagnetic wave when the radio frequency signal is applied to the inner conductor.

11. The communication system according to claim 10 , wherein an occupation ratio of the outer conductor at a surface of the insulator is 50% or more.

12. The communication system according to claim 10 , wherein a width of the gap in a direction perpendicular to side edges of the outer conductor when the gap is projected on a plane including the cable axis is 0.5 mm or more.

13. The communication system according to claim 10 , wherein the outer conductor comprises a metal foil or a plurality of conductor wires.

14. The communication system according to claim 10 , a frequency of the radio frequency signal is within a range from 800 MHz to 2400 MHz.

15. The communication system according to claim 10 , wherein the single spiral groove continuously extends from an edge of the insulator to another edge of the insulator along the cable axis.

16. The communication system according to claim 10 , wherein the single spiral groove continuously extends along the cable axis on an entirety of the insulator.

17. The communication system according to claim 10 , wherein the relative dielectric constant of the insulator is in a range from 1.0 to 3.0.

18. The communication system according to claim 10 , wherein a ratio of a width of the outer conductor to the winding pitch of the outer conductor is at least 50%.

Assignments (2)
MERGER Recorded Feb 15, 2014
From: HITACHI CABLE, LTD.
To: HITACHI METALS, LTD.
Reel/Frame 032268/0297 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2012
From: KITANO, NOBUAKI
To: HITACHI CABLE LTD.
Reel/Frame 028054/0843 →