Claims
- 1. A phase transition detector for a phase shift keying (PSK) signal comprising a dual channel, surface acoustic wave (SAW), differential delay line, each channel of said SAW delay line including an input transducer and an output transducer, each channel having a given delay which is different from that of the other channel so as to provide a predetermined differential delay (T) therebetween, multiplier means coupled to the output transducer of each channel for detecting the phase transitions in an input PSK signal, and filter means coupled to the output of said multiplier means for filtering out all higher order, harmonic terms, said predetermined differential delay (T) being equal to t.sub.c /2, where t.sub.c is the reciprocal of the chip rate (f.sub.c) of said input PSK signal.
- 2. A phase transition detector as defined in claim 1 wherein said input transducer is common to each channel.
- 3. A phase transition detector as defined in claim 2 wherein the output transducers are respectively placed on opposite sides of said input transducer.
- 4. A phase transition detector as defined in claim 1 wherein each channel has a separate and distinct input transducer.
- 5. A phase transition detector as defined in claim 4 including a power splitter means for splitting an input PSK signal delivered thereto into two signals of substantially equal power, and means for coupling each of said two signals to a respective input transducer.
- 6. A surface acoustic wave (SAW) device having a bank of dual channel SAW differential delay lines for use in detecting the phase transitions in a plurality of PSK input signals of different chip rates, said SAW device comprising a piezoelectric substrate and a finished surface thereon, a pair of input transducers deposited on said surface at or near the middle of said SAW device, and a plurality of output transducers also placed on said surface, said output transducers being positioned at spaced predetermined distances from one or the other of said input transducers, each channel including an input and a spaced output transducer, each channel having a given delay which is different from that of the other channel of a dual channel delay line so as to provide a selected differential delay therebetween, said differential delay (T) being equal to t.sub.c /2, where t.sub.c is the reciprocal of the chip rate (f.sub.c) of an input PSK signal.
- 7. A phase transition detector for a plurality of phase shift keying (PSK) input signals of different chip rates comprising a bank of dual channel SAW differential delay lines, each channel of the dual channel delay lines having an input transducer and an output transducer, each channel having a given delay which is different from that of the other channel of a dual channel delay line so as to provide a selected differential delay therebetween, each differential delay (T) being equal to t.sub.c /2, where t.sub.c is the reciprocal of the chip rate (f.sub.c) of a respective PSK input signal, a plurality of multiplier means each respectively coupled to the output transducers of a dual channel delay line, each multiplier means serving to detect the phase transitions in a given PSK input signal, and a plurality of low pass filter means each respectively coupled to the output of a multiplier means for filtering out all higher order, harmonic terms.
Government Interests
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to me of any royalties thereon.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4054841 |
Henaff et al. |
Oct 1977 |
|
4583047 |
LeGoffepouse Henaff et al. |
Apr 1986 |
|
Non-Patent Literature Citations (1)
Entry |
"Synchronous Delay-Line Detector Provides Wideband Performance" by J. F. z, Microwaves and RF, Nov. 1982, pp. 71, 74-75, 79. |