IP Library Granted Patent US 9,142,869
Granted Patent B2
US 9,142,869 · App. 13/955,739 · Granted Sep 22, 2015

Differential signal transmission line

Inventor: Fumihito Hirabayashi (Kanagawa, JP)
Assignee: ANRITSU CORPORATION
H01P1/00H01P3/026H03F3/45475H03F3/602
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Quick Facts
Patent No.
US 9,142,869
App. No.
13/955,739
Granted
Sep 22, 2015
Kind
B2
Abstract

A differential terminal 21 a is connected to a branch line 33 a which is provided in the main line close to the differential terminal 21 a in the range from the intersection portion 39 a to a start terminal on the line. A differential terminal 21 b is connected to a branch line 37 a which is provided in the main line close to the differential terminal 21 b in the range from the intersection portion 39 a to an end terminal on the line. A differential terminal 22 a is connected to a branch line 33 b which is provided in the main line close to the differential terminal 22 a in the range from the intersection portion 39 b to the start terminal. A differential terminal 22 b is connected to a branch line 37 b which is provided in the main line close to the differential terminal 22 b in the range from the intersection portion 39 b to the end terminal.

Claims (34)

1. A differential signal transmission line ( 30 , 50 ) that transmits and receives differential signals to and from a pair of differential terminals of each of a plurality of differential circuits ( 21 , 22 , 23 , 24 ) which are formed on the side of a pair of main lines on a substrate, comprising:

the pair of main lines ( 31 , 35 , 51 , 55 ) that are conductors formed on the substrate and propagate the differential signals;

start terminals ( 31 a , 35 a , 51 a , 55 a ) that are one ends of the main lines to or from which the differential signals are input or output;

end terminals ( 31 m , 35 m , 51 m , 55 m ) that are the other ends of the main lines;

termination circuits ( 34 , 38 , 54 , 58 ) that are connected to the end terminals;

a first intersection portion ( 39 a , 39 c , 59 d , 59 b ) arranged on the side of a first differential circuit ( 21 , 23 ) among the plurality of differential circuits and in which the conductors of the pair of main lines intersect each other, with a first insulating portion comprising an insulating layer interposed therebetween;

a first branch line ( 33 a , 33 c , 53 d , 53 b ) that is provided between the first intersection portion and the start terminal on one of the pair of main lines which has a point closest in distance to one differential terminal of the first differential circuit in a range from the first intersection portion to the start terminal and is connected to the one differential terminal of the first differential circuit;

a second branch line ( 37 a , 37 c , 57 d , 57 b ) that is provided between the first intersection portion and the end terminal on the other of the pair of main lines which has a point closest in distance to the other differential terminal of the first differential circuit in a range from the first intersection portion to the end terminal and is connected to the other differential terminal of the first differential circuit;

a second intersection portion ( 39 b , 39 d , 59 c , 59 a ) arranged on the side of a second differential circuit ( 22 , 24 ) different from the first differential circuit among the plurality of differential circuits and in which the conductors of the pair of main lines intersect each other, with a second insulating portion comprising an insulating layer interposed therebetween;

a third branch line ( 33 b , 33 d , 53 c , 53 a ) that is provided between the second intersection portion and the start terminal on one of the pair of main lines which has a point closest in distance to one differential terminal of the second differential circuit in a range from the second intersection portion to the start terminal and is connected to the one differential terminal of the second differential circuit; and

a fourth branch line ( 37 b , 37 d , 57 c , 57 a ) that is provided between the second intersection portion and the end terminal on the other of the pair of main lines which has a point closest in distance to the other differential terminal of the second differential circuit in a range from the second intersection portion to the end terminal and is connected to the other differential terminal of the second differential circuit.

2. The differential signal transmission line according to claim 1 , wherein

the first differential circuit is arranged on one side of the pair of main lines,

the second differential circuit is arranged on the other side of the pair of main lines, and

the conductors of the pair of main lines are connected so as not to intersect each other between the first intersection portion and the second intersection portion.

3. The differential signal transmission line according to claim 2 , wherein a pair of signal input differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

4. The differential signal transmission line according to claim 2 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal output differential terminals of the second differential circuit.

5. The differential signal transmission line according to claim 2 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

6. The differential signal transmission line according to claim 2 , wherein the pair of main lines are formed such that, among a plurality of line-surrounded portions ( 45 a - 45 h , 65 a - 65 h ) which are partitioned by the first and second intersection portions ( 39 a - 39 d ) in a region surrounded by the pair of main lines, the sum of the areas of the odd-numbered line-surrounded portions from the start terminal is equal to the sum of the areas of the even-numbered line-surrounded portions from the start terminal.

7. The differential signal transmission line according to claim 2 , wherein the first and second branch lines or the third and fourth branch lines also serve as a pair of differential terminals of the differential circuit.

8. The differential signal transmission line according to claim 1 , wherein

the first differential circuit and the second differential circuit are arranged on one side of the pair of main lines, and

an intermediate intersection portion ( 40 a - 40 c , 60 a - 60 c ) in which the conductors of the pair of main lines intersect each other with an intermediate intersection insulating portion comprising an insulating layer interposed therebetween is provided between the first intersection portion and the second intersection portion.

9. The differential signal transmission line according to claim 8 , wherein a pair of signal input differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

10. The differential signal transmission line according to claim 8 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal output differential terminals of the second differential circuit.

11. The differential signal transmission line according to claim 8 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

12. The differential signal transmission line according to claim 8 , wherein the pair of main lines are formed such that, among a plurality of line-surrounded portions ( 45 a - 45 h , 65 a - 65 h ) which are partitioned by the first and second intersection portions and the intermediate intersection portion ( 40 a - 40 c ) provided between the first and second intersection portions in a region surrounded by the pair of main lines, the sum of the areas of the odd-numbered line-surrounded portions from the start terminal is equal to the sum of the areas of the even-numbered line-surrounded portions from the start terminal.

13. The differential signal transmission line according to claim 8 , wherein the first and second branch lines or the third and fourth branch lines also serve as a pair of differential terminals of the differential circuit.

14. The differential signal transmission line according to claim 1 , wherein a pair of signal input differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

15. The differential signal transmission line according to claim 1 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal output differential terminals of the second differential circuit.

16. The differential signal transmission line according to claim 1 , wherein a pair of signal output differential terminals of the first differential circuit are connected to a pair of signal input differential terminals of the second differential circuit.

17. The differential signal transmission line according to claim 1 , wherein the pair of main lines are formed such that, among a plurality of line-surrounded portions ( 45 a - 45 h , 65 a - 65 h ) which are partitioned by the first and second intersection portions ( 39 a - 39 d ) or the first and second intersection portions and the intermediate intersection portion ( 40 a - 40 c ) provided between the first and second intersection portions in a region surrounded by the pair of main lines, the sum of the areas of the odd-numbered line-surrounded portions from the start terminal is equal to the sum of the areas of the even-numbered line-surrounded portions from the start terminal.

18. The differential signal transmission line according to claim 1 , wherein the first and second branch lines or the third and fourth branch lines also serve as a pair of differential terminals of the differential circuit.

19. The differential signal transmission line according to claim 1 , wherein differential signal transmission line is a balanced line type in which the pair of main lines are electromagnetically coupled each other, a micro strip type in which a reference conductor facing the pair of main lines, a coplanar type in which a reference conductor formed on the side of the pair of main lines, or a combination thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2013
From: HIRABAYASHI, FUMIHITO
To: ANRITSU CORPORATION
Reel/Frame 030916/0373 →
Priority Claims (2)
JP 2012-172588 · Aug 3, 2012 · national
JP 2013-122556 · Jun 11, 2013 · national
Continuity (1)
Related Publication 20140035701A1 · Feb 6, 2014