Claims
- 1. A variable resistance attenuator of wide frequency bandwidth comprising:
- first transmission line means of substantially uniform characteristic impedance including a signal conductor and a ground conductor forming a lossy transmission line, said signal conductor being of resistance material to provide an attenuation resistance distributed substantially uniformly along the length of said signal conductor, and a plurality of separate shunt resistors of substantially the same resistance connected between said signal conductor and said ground conductor and spaced substantially uniformly along the length of said signal conductor;
- first signal coupling means connected to one end of said signal conductor through a first connection;
- second signal coupling means connected to said signal conductor through a second connection;
- control means for moving said second connection along the attenuation resistance of said signal conductor to vary the attenuation setting; said control means moving the first transmission line means to change the attenuator setting of said second connection while maintaining the same electrical signal path length between said first connection and said second connection.
- 2. An attenuator in accordance with claim 1 in which the second connection includes a fixed contact engaging the attenuation resistance and the first connection includes another fixed contact coupled to said one end of said first line, said first transmission line means being moved relative to said fixed contacts to change the attentuator setting so that the distance between said fixed contacts remains the same for different attenuator settings.
- 3. An attenuator in accordance with claim 2 in which the first signal coupling means includes a second transmission line of substantially uniform characteristic impedance equal to that of said first transmission line means, and including a signal conductor and a ground conductor insulated from each other to provide a non-lossy second line and connected, respectively, to the signal conductor and the ground conductor of the first transmission line.
- 4. An attenuator in accordance with claim 3 in which the second transmission line is formed in two separate sections joined by said first connection, one of said sections being fixed in position and the other of said sections being attached to the first transmission line for movement therewith to change the length of said second line.
- 5. An attenuator in accordance with claim 4 in which said one section of said second line has its signal conductor forming the fixed contact of said first connection which is in engagement with the signal conductor of said other section of said second line.
- 6. An attenuator in accordance with claim 2 in which the first transmission line means is formed by a rotor member of insulating material with the signal conductor forming said attenuation resistance, the ground conductor, and said shunt resistors provided as layers on said rotor member, and in which the fixed contacts are provided on a stator member of insulating material and connected to separate conductive regions on said stator member so that rotation of said rotor member causes the second connection to move along the attenuation resistance of the signal conductor layer.
- 7. An attenuator in accordance with claim 6 in which the first signal coupling means includes a second transmission line of non-lossy type having a substantially uniform characteristic impedance equal to that of the first transmission line means and formed of two separate sections including one section provided on the stator member and another section provided on the rotor member, said one section having a signal conductor forming the fixed contact of said first connection which engages the signal conductor of the other section.
- 8. An attenuator in accordance with claim 7 in which the signal conductor of said other section is provided by a conductive layer of said rotor connected to said one end of the first transmission line means for movement therewith on the rotor member.
- 9. An attenuator in accordance with claim 6 in which the rotor member is an annular plate mounted in a hole in another plate forming the stator member, and the shunt resistor layers extend radially outward from the ground conductor layer to the signal conductor layer which are coated on the same side of said rotor plate.
- 10. An attenuator in accordance with claim 7 which also includes a termination resistor equal to said characteristic impedance provided as a layer on the stator plate between the other end of the signal conductor and the ground conductor.
- 11. A variable resistance attenuator of wide frequency bandwidth comprising:
- first transmission line means of substantially uniform characteristic impedance including signal conductor means and ground conductor means forming a lossy transmission line, said signal conductor means being of resistance material to provide an attenuation resistance distributed along a length of said signal conductor means and separate shunt conductance means connected between said signal conductor means and said ground conductor means and distributed along the length of said signal conductor means in proportion to said attenuation resistance;
- first signal coupling means connected to one end of said signal conductor means through first connection means;
- second signal coupling means connected to said signal conductor means through second connection means;
- control means for moving said second connection means along said attenuation resistance of said signal conductor means to vary the attenuation setting, said control means moving said first transmission line means to change the attenuator setting of said second connection means while maintaining the same electrical signal path between said first connection means and said second connection means.
- 12. A variable resistance attenuator according to claim 11 wherein said separate shunt conductance means comprises a plurality of separate shunt resistance means.
- 13. A variable resistance attenuator of wide frequency bandwidth comprising:
- first transmission line means of substantially uniform characteristic impedance including first signal conductor means and first ground conductor means defining a lossy transmission line, said signal conductor means being of resistance material to provide an attenuation resistance distributed along a length of said signal conductor means and separate shunt conductance means connected between said signal conductor means and said ground conductor means and distributed along the length of said signal conductor means in proportion to said attenuation resistance;
- second transmission line means of substantially uniform characteristic impedance equal to that of said first transmission line means and including second signal conductor means and second ground conductor means defining a non-lossy transmission line; first signal coupling means including first connection means connecting said first signal coupling means to said first signal conductor means;
- second signal coupling means including second connection means connecting said second signal coupling means to said second signal conductor means; and
- control means for moving said first and second transmission line means relative to one another to change the attenuator setting of said first connection means while maintaining the same electrical signal path length between said first and second connection means.
- 14. A variable resistance attenuator according to claim 13 wherein said second signal coupling means defines third transmission line means including third signal conductor means connected to said first signal conductor means and third ground conductor means connected to said first ground conductor means defining another non-lossy transmission line.
- 15. A variable resistance attenuator according to claim 14 wherein said separate shunt conductance means comprises a plurality of separate shunt resistance means. .Iadd. 16. A variable resistance attenuator, comprising:
- transmission line means of substantially uniform characteristic impedance including signal conductor and ground conductor means disposed on a support member and forming a lossy transmission line, said signal conductor means having resistance film material to provide an attenuation resistance distributed along a length of said signal conductor means and defining series resistance means and including shunt resistance means extending away from said series resistance means to provide electrical connection to said ground conductor means;
- means coupled between said transmission line means and an input connector device for electrically connecting said transmission lines means and said input connector device together;
- means coupled between said transmission line means and an output connector device for electrically connecting said transmission line means and said output connector device together; and
- means for moving both said means and said support member relative to one another to change the attenuation value of the attenuator while maintaining the same electrical path length between both said connector devices. .Iaddend.
Parent Case Info
This is a continuation of application Ser. No. 85,678 filed Oct. 30, 1970.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
804,747 |
Nov 1958 |
UK |
Continuations (1)
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Number |
Date |
Country |
Parent |
85678 |
Oct 1970 |
|
Reissues (1)
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Number |
Date |
Country |
Parent |
239375 |
Mar 1972 |
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