Claims
- 1. A dielectric waveguide comprising:
- first and second electrically conductive plates;
- a dielectric strip mounted on said first electrically conductive plate and located between said first and second electrically conductive plates, said dielectric strip having a first surface substantially normal to and extending linearly along said first electrically conductive plate; and
- a wave absorber disposed on said first electrically conductive plate substantially adjacent and having a side surface parallel to said first surface of said dielectric strip, said wave absorber having a tapered surface normal to said first electrically conductive plate, said tapered surface extending from said side surface to an input end of said wave absorber, so as to define an acute angle for the tapered surface which approaches said first surface of said dielectric strip.
- 2. The dielectric waveguide of claim 1, wherein said side surface of said wave absorber is coupled to said first surface of said dielectric strip, whereby said wave absorber provides a termination for eliminating reflections of input electromagnetic waves applied to the dielectric waveguide.
- 3. The dielectric waveguide of claim 1, wherein said side surface of said wave absorber is parallel to and spaced apart from said first surface of said dielectric strip, whereby said wave absorber provides an attenuator for attenuating a power of input electromagnetic waves applied to the dielectric waveguide.
- 4. The dielectric waveguide of claim 1, wherein said wave absorber has a second tapered surface normal to said first and second electrically conductive plates, said second tapered surface extending from said side surface to an output end of said wave absorber, so as to define an acute angle for the second tapered surface which approaches said first surface of said dielectric strip.
- 5. A dielectric waveguide comprising:
- a pair of parallel flat metallic plates spaced from each other;
- a dielectric strip sandwiched between said parallel flat metallic plates, said dielectric strip having a first surface substantially normal to and extending linearly along said plates; and
- a wave absorber sandwiched between said parallel flat metallic plates and being substantially adjacent to and having a side surface parallel to said first surface of said dielectric strip, said wave absorber having a tapered surface normal to said plates, said tapered surface extending from said side surface to an input end of said wave absorber, so as to define an acute angle for the tapered surface which approaches said first surface of said dielectric strip.
- 6. The dielectric waveguide of claim 5, wherein said side surface of said wave absorber is coupled to said first surface of said dielectric strip, whereby said wave absorber provides a termination for eliminating reflections of input electromagnetic waves applied to the dielectric waveguide.
- 7. The dielectric waveguide of claim 5, wherein said side surface of said wave absorber is parallel to and spaced apart from said first surface of said dielectric strip, whereby said wave absorber provides an attenuator for attenuating a power of input electromagnetic waves applied to the dielectric waveguide.
- 8. The dielectric waveguide of claim 5, wherein said wave absorber has a second tapered surface normal to said electrically conductive plates, said second tapered surface extending from said side surface to an output end of said wave absorber, so as to define an acute angle for the second tapered surface which approaches said first surface of said dielectric strip.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-239930 |
Jul 1992 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 08/096,682, filed on Jul. 23, 1993, now abandoned, and which designated the U.S.
US Referenced Citations (5)
Foreign Referenced Citations (3)
Number |
Date |
Country |
493179 |
Jul 1992 |
EPX |
3-270401 |
Dec 1991 |
JPX |
1631632 |
Feb 1991 |
SUX |
Non-Patent Literature Citations (1)
Entry |
Millimeter Wave Integrated Circuits Using Nonradiative Dielectric Waveguide, Journal of Institute of Elec. & Comm. Eng. of Japan, C-1, vol. J73-C-1, No. 3, pp. 87-94 (Mar. 1990). |
Continuations (1)
|
Number |
Date |
Country |
Parent |
96682 |
Jul 1993 |
|