Claims
- 1. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates comprising the steps of
- applying a surface treatment to the transducer bearing surface of a surface acoustic wave substrate for the purpose of producing a specific molecular alignment in liquid crystals applied to the surface,
- fabricating a glass cover plate that is substantially co-extensive with the transducer bearing surface of said substrate,
- applying a gold coat to one surface of said glass cover plate for the purpose of producing a specific molecular alignment in liquid crystals applied to the surface,
- placing said glass cover plate on the treated surface of said substrate, the gold coated glass cover plate surface being adjacent to said treated substrate surface,
- inserting liquid crystal material into the area between said glass cover plate and the substrate surface,
- positioning the substrate-cover plate assembly for viewing under a microscope,
- directing, from a light source, a light beam through said microscope and through said cover plate,
- polarizing the light from said light source,
- polarizing the light received through said microscope,
- applying an electrical potential to the transducers,
- viewing through said microscope the electro-optic effects produced in said liquid crystal by the electric field effects of said applied electrical potential; and
- analyzing said electro-optic effects.
- 2. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates defined in claim 1 wherein said surface treatment is application of a solution made with 5% by weight lecithin dissolved in 95% by weight trichlorethylene said solution being dried before application of liquid crystal material.
- 3. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates defined in claim 2 wherein said liquid crystal material is MBBA liquid crystal.
- 4. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates defined in claim 1 wherein the crystal molecules of said liquid crystal material have a discrete homogeneous alignment.
- 5. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates defined in claim 1 wherein the crystal molecules of said liquid crystal material are aligned normal to the plane of said interdigital transducers.
- 6. The method of testing and analyzing the electrical characteristics of interdigital transducers on surface acoustic wave substrates defined in claim 1 including the step of applying electrical potentials to said film of metallic material.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government for governmental purposes without the payment of any royalty thereon.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3934199 |
Channin |
Jan 1976 |
|
Non-Patent Literature Citations (1)
Entry |
IBM Technical Disclosure Bulletin, "Detecting Short Circuits in Multilayer Printed-Circuit Boards", Delarue et al., vol. 21, No. 3, 8/78. |