Claims
- 1. An optical switch being disposed in intermediate positions of optical paths to define a channel of a light signal, characterized in that
said optical switch is constituted of a cell member in whose interior cells are formed, and a waveguide member having fine slits, a gas is filled in said cells of which side walls are formed by piezoelectric/electrostrictive elements or antiferroelectric elements, and a liquid is filled in the fine slits, the cells and the fine slits being communicated to each other via a communicating hole, optical waveguides intersect at the fine slits, and the cells are disposed at the crossing locations, and said side walls are expanded/constricted by applying an electric field to the piezoelectric/electrostrictive elements or antiferroelectric elements which form the side walls of the cells, and a part of the gas stored in each cell is ejected at a corresponding intersection area from said communicating hole into the corresponding fine slit.
- 2. An optical switch according to claim 1, wherein the polarization field of said piezoelectric/electrostrictive elements or antiferroelectric elements is aligned in the same direction as the driving electric field.
- 3. An optical switch according to claim 1, wherein regarding the state of crystal grains in the surfaces of the side walls forming said cell, the crystal grains suffering transgranular fracture are less than 1%.
- 4. A method for manufacturing with a punch and die an optical switch which consists of a cell member inside which cells are formed and a waveguide member having fine slits, wherein said cells, whose side walls are formed by piezoelectric/electrostrictive elements or antiferroelectric elements, are filled with a gas, and said fine slits are filled with a liquid, said cells and said fine slits being communicated to each other via a corresponding communicating hole, wherein optical waveguides are intersected at said fine slits, and said cells are disposed at the intersection areas, characterized in that said method comprises the steps of:
preparing a plurality of green sheets made of piezoelectric/electrostrictive elements or antiferroelectric elements; performing a first substep for machining first slit apertures in a first green sheet with said punch, a second substep for raising said first green sheet in tight contact with a stripper in the state where said punch is not withdrawn from said first slit apertures, and a third substep for raising said punch in such a manner that the front end of said punch is withdrawn slightly from the lowest part of said first green sheet thus raised; performing a fourth substep for machining second slit apertures in a second green sheet with said punch, a fifth substep for raising said second green sheet together with said first green sheet in the state where said punch is not withdrawn from said second slit apertures, and a sixth substep for raising said punch in such a manner that the front end of said punch is withdrawn slightly from said second green sheet thus raised; and subsequently laminating a plurality of green sheets by repeating the fourth substep to the sixth substep, and then forming the piezoelectric/electrostrictive elements or antiferroelectric elements including a plurality of slits.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-108986 |
Apr 2001 |
JP |
|
2001-189718 |
Jun 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of a part of U.S. patent application No. 09/900,742 filed on Jul. 6, 2001, which is pending.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09900742 |
Jul 2001 |
US |
Child |
09915234 |
Jul 2001 |
US |