IP Library Granted Patent US 11,447,988
Granted Patent B2
US 11,447,988 · App. 16/670,231 · Granted Sep 20, 2022

Turn off the car when pumping the gas in the gas stations

Inventor: Mahender Reddy Kotha (Farmington Hills, MI)
Assignee: Panasonic Automotive Systems Company of America, Division of Panasonic Corporation of North America
E05B81/74B60K15/0406B60W10/06B60K2015/0321B60K2015/0493
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Quick Facts
Patent No.
US 11,447,988
App. No.
16/670,231
Granted
Sep 20, 2022
Kind
B2
Abstract

A motor vehicle includes an engine and a fuel tank having a cap with a first position in which the cap seals the fuel tank and a second position in which the cap does not seal the fuel tank. A sensor detects whether the cap is in the first position or the second position. An electronic processor is communicatively coupled to the engine and to the sensor. The electronic processor turn offs the engine in response to the sensor detecting that the cap is in the second position.

Claims (72)

1. A motor vehicle, comprising:

an engine;

a fuel tank including a cap having a first position in which the cap seals the fuel tank and a second position in which the cap does not seal the fuel tank;

a fuel cap sensor configured to detect whether the cap is in the first position or the second position;

an ignition sensor configured to detect whether an ignition of the engine is ON or OFF; and

an electronic processor communicatively coupled to the ignition sensor and to the fuel cap sensor, the electronic processor being configured to turn off the engine when both the fuel cap sensor detects that the cap is in the second position and the ignition sensor detects that the ignition of the engine is ON.

2. The motor vehicle of claim 1 wherein the cap is screwed onto the fuel tank in the first position and is unscrewed from the fuel tank in the second position.

3. The motor vehicle of claim 1 further comprising a gear sensor configured to detect a gear that the vehicle is in, wherein the electronic processor is configured to turn off the engine when:

the fuel cap sensor detects that the cap is in the second position;

the ignition sensor detects that the ignition of the engine is ON; and

the gear sensor detects that the vehicle is in park gear.

4. The motor vehicle of claim 1 wherein the fuel tank comprises a gasoline tank.

5. The motor vehicle of claim 1 further comprising a pressure sensor configured to detect a pressure level within the fuel tank.

6. A motor vehicle, comprising:

an engine;

an ignition sensor configured to detect whether an ignition of the engine is ON or OFF;

a fuel tank including a cap having a first position in which the cap seals the fuel tank and a second position in which the cap does not seal the fuel tank;

a fuel cap sensor configured to detect whether the cap is in the first position or the second position;

a speedometer; and

an electronic processor communicatively coupled to the ignition sensor, the fuel cap sensor and the speedometer, the electronic processor being configured to turn off the engine when:

the fuel cap sensor detects that the cap is in the second position;

the ignition sensor detects that the ignition of the engine is ON; and

the speedometer detects that a speed of the vehicle is substantially zero.

7. A method of operating an engine of a motor vehicle, the method comprising:

providing a fuel tank including a cap having a first position in which the cap seals the fuel tank and a second position in which the cap does not seal the fuel tank;

detecting whether the cap is in the first position or the second position;

sensing whether an ignition of the engine is ON or OFF; and

turning off the engine when both the cap is in the second position and it is sensed that the ignition of the engine is ON.

8. The method of claim 7 wherein the cap is screwed onto the fuel tank in the first position and is unscrewed from the fuel tank in the second position.

9. The method of claim 7 further comprising ascertaining a gear that the vehicle is in, the engine being turned off when:

the fuel cap is in the second position;

the ignition of the engine is ON; and

the vehicle is in park gear or neutral gear.

10. The method of claim 7 wherein the fuel tank comprises a gasoline tank.

11. The method of claim 7 wherein the detecting step includes sensing a pressure level within the fuel tank.

12. A method of operating an engine of a motor vehicle, the method comprising:

providing a fuel tank including a cap having a first position in which the cap seals the fuel tank and a second position in which the cap does not seal the fuel tank;

detecting whether the cap is in the first position or the second position;

ascertaining a speed of the vehicle; and

turning off the engine when:

the fuel cap is in the second position;

the ignition of the engine is ON; and

the speed of the vehicle is substantially zero.

13. An engine ignition control system for a motor vehicle, the system comprising:

an engine ignition;

an engine ignition sensor configured to detect whether the engine ignition is ON or OFF;

a gas tank cap sensor configured to detect whether a gas tank cap is open or closed;

a gear sensor configured to detect a gear that the vehicle is in; and

an electronic processor communicatively coupled to the engine ignition sensor, to the gear sensor, and to the gas tank cap sensor, the electronic processor being configured to turn off the engine when:

the gas tank cap sensor detects that the gas tank cap is open;

the engine ignition sensor detects that the ignition of the engine is ON; and

the gear sensor detects that the vehicle is in park gear.

14. The system of claim 13 wherein the cap is screwed onto a fuel tank when closed and is unscrewed from the fuel tank when open.

15. The system of claim 13 wherein the gas tank cap sensor comprises a pressure sensor configured to detect a pressure level within a fuel tank.

16. An engine ignition control system for a motor vehicle, the system comprising:

an engine ignition;

an engine ignition sensor configured to detect whether the engine ignition is ON or OFF;

a gas tank cap sensor configured to detect whether a gas tank cap is open or closed;

a speedometer; and

an electronic processor communicatively coupled to the engine ignition sensor, to the speedometer, and to the gas tank cap sensor, the electronic processor being configured to turn off the engine when:

the gas tank cap sensor detects that the cap is open;

the ignition sensor detects that the ignition of the engine is ON; and

the speedometer detects that a speed of the vehicle is substantially zero.

17. An engine ignition control system for a motor vehicle, the system comprising:

an engine ignition;

an engine ignition sensor configured to detect whether the engine ignition is ON or OFF;

a gas tank cap sensor configured to detect whether a gas tank cap is open or closed;

a speedometer; and

an electronic processor communicatively coupled to the engine ignition sensor, to the speedometer, and to the gas tank cap sensor, the electronic processor being configured to turn off the engine when:

the gas tank cap sensor detects that the cap is open;

the ignition sensor detects that the ignition of the engine is ON; and

the speedometer detects that a speed of the vehicle has been substantially zero for a time period of at least thirty seconds.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE SUPPORTIVE DOCUMENTS PREVIOUSLY RECORDED ON REEL 72222 FRAME 267. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 23, 2025
From: PANASONIC CORPORATION OF NORTH AMERICA
To: PANASONIC AUTOMOTIVE SYSTEMS AMERICA, LLC.
Reel/Frame 072930/0871 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2025
From: PANASONIC CORPORATION OF NORTH AMERICA
To: PANASONIC AUTOMOTIVE SYSTEMS AMERICA, LLC
Reel/Frame 072222/0267 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2019
From: KOTHA, MAHENDER REDDY
To: PANASONIC AUTOMOTIVE SYSTEMS COMPANY OF AMERICA, DIVISION OF PANASONIC CORPORATION OF NORTH AMERICA
Reel/Frame 050881/0754 →
Continuity (2)
Provisional Application 62756854 · Nov 7, 2018
Related Publication 20200141160A1 · May 7, 2020