Claims
- 1. A fluidic gainblock for amplifying an AC pressure signal comprising:
- a plurality of staged laminar proportional amplifiers interconnected such that the outputs of each stage are connected to the inputs of each succeeding stage through a "T" junction interposed between said interconnected laminar proportional amplifiers;
- a fluidic supply source connected to the input supply ports of said plurality of laminar proportional amplifiers.
- 2. The device of claim 1 wherein the outputs of each stage are connected to the inputs of each succeeding stage through the horizontal branch of said "T" junction interposed between said interconnected laminar proportional amplifiers.
- 3. The device of claim 1 wherein the outputs of each stage are connected to the horizontal branch of said "T" junction and the inputs of each succeeding stage are connected to the vertical branch of said "T" junction.
- 4. A fluidic gainblock for amplifying an AC pressure signal comprising:
- a first, second, and third laminar proportional amplifier each having a first input port, a second input port, a supply port, a first output port and a second output port;
- a fluidic supply source connected to said supply port of each of said laminar proportional amplifiers.
- an AC pressure signal source injected into said first input port of said first laminar proportional amplifier;
- a variable resistor and a fixed volume tank connected to said second input port of said first laminar proportional amplifier;
- a first, second, third, fourth, fifth and six "T" junction each having a horizontal branch and a vertical branch;
- said first output port of said first laminar proportional amplifier connected to said horizontal branch of said first "T" junction and said first input port of said second laminar proportional amplifier connected to said vertical branch of said first "T" junction;
- said second output port of said first laminar proportional amplifier connected to said horizontal branch of said second "T" junction and said second input port of said second laminar proportional amplifier connected to said vertical branch of said second "T" junction;
- said first output port of said second laminar proportional amplifier connected to said horizontal branch of said third "T" junction and said first input port of said third laminar proportional amplifier connected to said vertical branch of said third "T" junction;
- said second output port of said second laminar proportional amplifier connected to said horizontal branch of said fourth "T" junction and said second input port of said third laminar proportional amplifier connected to said vertical branch of said fourth "T" junction;
- said first output port of said third laminar proportional amplifier connected to said horizontal branch of said fifth "T" junction and said second output port of said third laminar proportional amplifier connected to said horizontal branch of said sixth "T" junction;
- an AC pressure output signal at said vertical branch of said fifth "T" junction.
- 5. A method for the reduction of DC bias and interconnection flow noise in staged laminar proportional amplifier gainblocks used to amplify AC acoustic signals comprising:
- interconnecting a plurality of laminar proportional amplifiers thereby forming a staged gainblock;
- means provided between stages for said DC bias to exit said gainblock and said AC acoustic signal to continue on to the next stage of said gainblock.
- 6. The method of claim 5 wherein said means provided between stages for said DC bias to exit said gainblock and said AC acoustic signal to continue on to the next stage of said gainblock is a "T" junction.
RIGHTS OF THE GOVERNMENT
The invention described herein may be manufactured, used and licensed by or for the United States Government for Governmental Purposes without payment to me of any royalty thereon.
US Referenced Citations (5)
Foreign Referenced Citations (2)
Number |
Date |
Country |
835154 |
Feb 1970 |
CAX |
1236565 |
Jun 1971 |
GBX |