IP Library Granted Patent US 10,186,815
Granted Patent B2
US 10,186,815 · App. 15/359,897 · Granted Jan 22, 2019

Method of and device for protecting USB type-C interface chip when CC pins thereof being at high voltage

Inventors: Yu Shen (Tianjin, CN); Xiaolong Chen (Tianjin, CN)
Assignee: INTERNATIONAL GREEN CHIP (TIANJIN) CO., LTD.
H01R13/6666H01R13/6683H01R13/713H01R24/60H02H3/20H01R2107/00H02H3/023
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Quick Facts
Patent No.
US 10,186,815
App. No.
15/359,897
Granted
Jan 22, 2019
Kind
B2
Abstract

A USB Type-C interface chip having a CC pin. In an embodiment, the chip includes an internal unit coupled through a signal path to the CC pin; a high voltage detection unit coupled in the signal path, for detecting a voltage at the CC pin and comparing the detected voltage and a reference voltage; a high voltage protection unit for protecting, in response to the comparison result of the high voltage detection unit the internal unit from high voltage possibly present at the port of the chip.

Claims (21)

1. A USB Type-C interface chip having a CC pin, comprising:

an internal unit coupled through a signal path to the CC pin;

a high voltage detection unit coupled in the signal path, for detecting a voltage at the CC pin and comparing the detected voltage and a reference voltage;

a high voltage protection unit for protecting, in response to the comparison result of the high voltage detection unit, the internal unit from high voltage possibly present at the CC pin;

a charging identification unit for providing an equivalent circuit structure that can be identified by a charging equipment externally connected to the CC pin when a USB Type-C interface chip is in dead battery condition; and

a logic control unit for performing enabling or disabling of the high voltage protection unit and the high voltage detection unit according to the comparison result.

2. The USB Type-C interface chip as claimed in claim 1 , wherein the high voltage protection unit is a switch connected in series in the signal path, which blocks a high voltage at the CC pin in response to the comparison of the high voltage detection unit.

3. The USB Type-C interface chip as claimed in claim 1 , wherein the high voltage protection unit is a switch connected in parallel in the signal path, which short-circuits a high voltage at CC pin in response to the comparison of the high voltage detection unit.

4. The USB Type-C interface chip as claimed in claim 1 , wherein the internal unit can provide a first equivalent resistor; the charging identification unit can provide a second equivalent resistor or a third equivalent resistor; and the logic control unit performs, in response to the voltage at the CC pin and configuration of the internal unit to represent one of the first, second and third equivalent resistors at the CC pin for external equipment to identify sourcing mode or sinking mode of the chip.

5. The USB Type-C interface chip as claimed in claim 1 , wherein the charging identification unit comprises: a first resistor, a second resistor, a first capacitor, a second switch, and a third switch, wherein

the first resistor is connected in series to the second switch and then is connected between the CC pin and the ground, the third switch is connected in series to the second resistor and then is connected between the CC pin and the ground, the first capacitor is in parallel connection with the second switch; and the control terminal of the third switch is connected to a joint between the first resistor and the second switch.

6. The USB Type-C interface chip as claimed in claim 1 , wherein the logic control unit is capable of receiving a control signal generated by a system of USB Type-C interface chip and generating a first enabling signal and a second enabling signal according to the control signal and the comparison result, wherein the first enabling signal is used for controlling enabling and disabling of the high voltage detection unit, and the second enabling signal is used for controlling enabling and disabling of the charging identification unit.

7. The USB Type-C interface chip as claimed in claim 1 , wherein when the chip is detected to enter into high-voltage protection, the charge-identification unit will be temporarily enforced to confirm real status of the equipment externally connected to the chip port; if the voltage of the chip terminal then goes down to be within a threshold allowed by the high-voltage detection unit, the internal unit will be configured as a structure of a particular resistor being pulled down to ground; and the high voltage detection unit is shut down to disable blocking of the protection unit, and the charge identification unit is shut down for the chip to return back to a regular work status.

8. A USB Type-C interface chip having a CC pin, comprising:

an internal unit coupled through a signal path to the CC pin;

a high voltage protection unit having specific characteristics, coupled in the signal path, said specific characteristics enabling the high voltage protection unit to block the internal unit from high voltage possibly present at the CC pin;

a charging identification unit for providing an equivalent circuit structure that can be identified by a charging equipment externally connected to the CC pin when the USB Type-C interface chip is in dead battery condition; and

a logic control unit for performing enabling or disabling of the high voltage protection unit according to a comparison result.

9. The USB Type-C interface chip as claimed in claim 8 , wherein the high voltage protection unit is a high voltage NMOS transistor, a high voltage PMOS transistor or high voltage transmission gate.

10. The USB Type-C interface chip as claimed in claim 8 , wherein the charging identification unit comprises: a first resistor, a second resistor, a first capacitor, a second switch, and a third switch, wherein

the first resistor is connected in series to the second switch and then is connected between the CC pin and the ground, the third switch is connected in series to the second resistor and then is connected between the CC pin and the ground, the first capacitor is in parallel connection with the second switch; and the control terminal of the third switch is connected to the joint between the first resistor and the second switch.

Assignments (4)
CHANGE OF NAME Recorded Apr 5, 2021
From: BEIJING WEIHAO INTEGRATED CIRCUIT DESIGN CO., LTD
To: BEIJING WILL HIGHSPEED IC DESIGN CO., LTD
Reel/Frame 055821/0557 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2020
From: INTERNATIONAL GREEN CHIP (TIANJIN) CO., LTD
To: BEIJING WEIHAO INTEGRATED CIRCUIT DESIGN CO., LTD
Reel/Frame 054579/0248 →
CORRECTIVE ASSIGNMENT TO CORRECT THE STREET ADDRESS OF THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 040680 FRAME 0814. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF THE ASSIGNORS INTEREST. Recorded Jan 24, 2017
From: SHEN, YU; CHEN, XIAOLONG
To: INTERNATIONAL GREEN CHIP (TIANJIN) CO., LTD.
Reel/Frame 041464/0855 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2016
From: SHEN, YU; CHEN, XIAOLONG
To: INTERNATIONAL GREEN CHIP (TIANJIN) CO., LTD.
Reel/Frame 040680/0814 →
Priority Claims (1)
CN 2015 1 0844625 · Nov 26, 2015 · national
Continuity (1)
Related Publication 20170155214A1 · Jun 1, 2017