Claims
- 1. A duplexer comprising:a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, a plurality of electrodeless area pairs, each electrodeless area pair including first and second opposed electrodeless areas formed in said first and second electrodes, respectively, to define a respective resonance region therebetween, each electrodeless area of a given pair having the same shape as the other electrodeless area of that pair, each electrodeless area of a given pair being surrounded by a respective cavity including two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c/(2f0)) where f0 is the resonant frequency of said resonance region defined by said pair and c is the velocity of light.
- 2. A communication device comprising:a duplexer which includes a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, a plurality of electrodeless area pairs, each electrodeless area pair including first and second opposed electrodeless areas formed in said first and second electrodes, respectively, to define a respective resonance region therebetween, each electrodeless are of a given pair having the same shape as the other electrodeless area of that pair, each electrodeless area of a given pair being surrounded by a respective cavity including two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c/(2f0) where f0 is the resonant frequency of said resonance region defined by said given pair and c is the velocity of light, each of said transmitting dielectric filter and said receiving dielectric filter further including a respective signal input and a respective signal output; said signal output of said transmitting dielectric filter and said signal input of said receiving dielectric filter being connected to an antenna terminal; said signal input of said transmitting dielectric filter being connected to a transmitter terminal; and said signal output of said receiving dielectric filter being connected to a receiver terminal.
- 3. A communication device comprising:a transmitter; a receiver; and a duplexer which includes a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, a plurality of electrodeless area pairs, each electrodeless area pair including first and second opposed electrodeless areas formed in said first and second electrodes, respectively, to define a respective resonance region therebetween, each electrodeless area of a given pair having the same shape as the other electrodeless area of that pair, each electrodeless area of a given pair being surrounded by a respective cavity including two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c/(2f0) where f0 is the resonant frequency of said resonance region defined by said given pair and c is the velocity of light, each of said transmitting dielectric filter and said receiving dielectric filter further including a respective signal input and a respective signal output; said transmitter being coupled to said signal input of said transmitting dielectric filter, said receiver being coupled to said signal output of said receiving dielectric filter.
- 4. A communication device comprising:a transmitter; a receiver; and a duplexer which includes a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, each electrode including a respective electrodeless area located therein, each said electrodeless area having substantially the same shape as the other of said electrodeless areas and being opposed to the other of said electrodeless areas so as to define a resonance region therebetween, each of said electrodeless areas being surrounded by a respective cavity, each said cavity including two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c/(2f0) where f0 is the resonant frequency of said resonance region and c is the velocity of light, each of said transmitting dielectric filter and said receiving dielectric filter further including a respective signal input and a respective signal output; said transmitter being coupled to said signal input of said transmitting dielectric filter, said receiver being coupled to said signal output of said receiving dielectric filter.
- 5. A duplexer comprising:a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, each electrode including a respective electrodeless area located therein, each said electrodeless area having substantially the same shape as the other of said electrodeless areas and being opposed to the other of said electrodeless areas so as to define a resonance region therebetween, each of said electrodeless areas being surrounded by a respective cavity, each said cavity having at least two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c(2f0) where f0 is the resonant frequency of said resonance region and c is the velocity of light, each of said transmitting dielectric filter and said receiving dielectric filter further including a respective signal input and a respective signal output.
- 6. A communication device comprising:a duplexer which includes a transmitting dielectric filter and a receiving dielectric filter, each of said dielectric filters comprising first and second electrodes disposed on respective first and second opposed principal surfaces of a dielectric plate, each electrode including a respective electrodeless area located therein, each said electrodeless area having substantially the same shape as the other of said electrodeless areas and being opposed to the other of said electrodeless areas so as to define a resonance region therebetween, each of said electrodeless areas being surrounded by a respective cavity, each said cavity including two opposing walls, wherein a respective maximum distance a between said walls satisfies the condition a<c/(2f0) where f0 is the resonant frequency of said resonance region and c is the velocity of light, each of said transmitting dielectric filter and said receiving dielectric filter further including a respective signal input and a respective signal output; said signal output of said transmitting dielectric filter and said signal input of said receiving dielectric filter being connected to an antenna terminal; said signal input of said transmitting dielectric filter being connected to a transmitter terminal; and said signal output of said receiving dielectric filter being connected to a receiver terminal.
- 7. A communication device according to claim 6, further comprising a transmitter and a receiver connected respectively to said transmitter terminal and said receiver terminal.
- 8. A communication device according to claim 7, further comprising an antenna connected to said antenna terminal.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9-129614 |
May 1997 |
JP |
|
10-113296 |
Apr 1998 |
JP |
|
Parent Case Info
This is a continuation of application Ser. No. 09/081,806, filed May 20, 1998, U.S. Pat. No. 6,104,261.
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6016090 |
Iito et al. |
Jan 2000 |
A |
6104261 |
Sonoda et al. |
Aug 2000 |
A |
6184758 |
Ishikawa et al. |
Feb 2001 |
B1 |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/081806 |
May 1998 |
US |
Child |
09/567291 |
|
US |