IP Library Granted Patent US 10,727,892
Granted Patent B2
US 10,727,892 · App. 15/668,611 · Granted Jul 28, 2020

Interface circuit

Inventors: Xu Zhang (Chandler, AZ); Ahmad Yazdi (Chandler, AZ); Cornelis Johannes Speelman (Eindhoven, NL)
Assignee: NXP USA, Inc.
H04B1/40G06F13/4086H01F27/28H02H9/045H03K19/0175H04L25/0266
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Quick Facts
Patent No.
US 10,727,892
App. No.
15/668,611
Granted
Jul 28, 2020
Kind
B2
Abstract

One example discloses an interface circuit, including: an inductive coil having a first, second and third terminal; wherein the first terminal is coupled to an external interface port; wherein the second terminal is coupled to a first communication port; wherein the third terminal is coupled to a second communication port; and wherein the inductive coil is configured to attenuate an equivalent capacitance from at least one of the terminals.

Claims (67)

1. An interface circuit, comprising:

an inductive coil having a first, second and third terminal;

wherein the first terminal is coupled to an external interface port;

wherein the second terminal is coupled to a first communication port;

wherein the third terminal is coupled to a second communication port; and

wherein the inductive coil is configured to attenuate an equivalent capacitance from at least one of the terminals.

2. The circuit of claim 1 :

wherein the inductive coil is configured to shield the second communication port from a capacitance at the external interface port and a capacitance at the first communication port.

3. The circuit of claim 1 :

wherein the inductive coil is configured to shield the first communication port from a capacitance at the external interface port and a capacitance at the second communication port.

4. The circuit of claim 1 :

wherein the inductive coil is configured to shield the external interface port from capacitances at the first and second communication ports.

5. The circuit of claim 1 :

wherein the third terminal is a center-tap of the inductive coil.

6. The circuit of claim 1 :

wherein the external interface port is a dual-role port.

7. The circuit of claim 6 :

wherein the first communication port is a transmitter input port; and

wherein the second communication port is a receiver output port.

8. The circuit of claim 6 :

wherein the first communication port is a receiver output port; and

wherein the second communication port is transmitter input port.

9. The circuit of claim 6 :

wherein the first communication port is a first transmitter input port; and

wherein the second communication port is a second transmitter input port.

10. The circuit of claim 6 :

wherein the first communication port is a first receiver output port; and

wherein the second communication port is a receiver output port.

11. The circuit of claim 1 :

further comprising an ESD protection circuit coupled between the first terminal of the inductive coil and the external interface port.

12. The circuit of claim 11 :

wherein the ESD circuit includes a set of ESD diodes.

13. The circuit of claim 1 :

further comprising an ESD protection circuit;

wherein the ESD protection circuit is not coupled between the third terminal of the inductive coil and the second communication port.

14. The circuit of claim 1 :

further comprising an ESD protection circuit;

wherein the ESD protection circuit is not coupled between the second terminal of the inductive coil and the first communication port.

15. The circuit of claim 1 :

further comprising an ESD protection circuit coupled either between the second terminal of the inductive coil and the first communications port, or between the third terminal of the inductive coil and the second communications port.

16. The circuit of claim 1 :

wherein the interface circuit is a communications interface circuit.

17. The circuit of claim 16 :

wherein the communications interface circuit is coupled to at least one of: a high-speed circuit, a USB circuit, a DP compliant circuit, a Thunderbolt compliant circuit, or a PCIe circuit.

18. The circuit of claim 1 :

wherein the inductive coil is configured to extend a bandwidth of at least one of the ports.

19. The circuit of claim 1 :

wherein the inductive coil is configured to reduce a return-loss of at least one of the ports.

20. The circuit of claim 1 , further comprising:

a transmitter coupled to the first communication port; and

a receiver coupled to the second communication port.

21. The circuit of claim 1 , further comprising:

a discrete connection cable coupled to the external interface port.

22. An interface circuit, comprising:

an inductive coil having a first, second and third terminal;

wherein the first terminal is coupled to an external interface port;

wherein the second terminal is coupled to a first communication port;

wherein the third terminal is coupled to a second communication port;

wherein the inductive coil is configured to attenuate an equivalent capacitance from at least one of the terminals; and

wherein the inductive coil is configured to extend a bandwidth of at least one of the ports.

23. An interface circuit, comprising:

an inductive coil having a first, second and third terminal;

wherein the first terminal is coupled to an external interface port;

wherein the second terminal is coupled to a first communication port;

wherein the third terminal is coupled to a second communication port;

wherein the inductive coil is configured to attenuate an equivalent capacitance from at least one of the terminals; and

wherein the inductive coil is configured to reduce a return-loss of at least one of the ports.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2017
From: ZHANG, XU; YAZDI, AHMAD; SPEELMAN, CORNELIS JOHANNES
To: NXP USA, INC.
Reel/Frame 043250/0298 →
Continuity (1)
Related Publication 20190044564A1 · Feb 7, 2019
Cited By (1)
US 12,475,933