IP Library Granted Patent US 8,937,478
Granted Patent B2
US 8,937,478 · App. 13/068,335 · Granted Jan 20, 2015

Electrostatic occupant detection system

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Quick Facts
Patent No.
US 8,937,478
App. No.
13/068,335
Granted
Jan 20, 2015
Kind
B2
Abstract

An electrostatic occupant detection system includes an electrostatic sensor and an electronic control unit. The electronic control unit is switchable between an occupant determination state in which the electronic control unit outputs a sine wave having a constant amplitude and a diagnosis state in which the electronic control unit maintains a voltage of the electrostatic sensor at a constant level. The electronic control unit gradually changes at least one of an amplitude and a frequency of the sine wave either when the electronic control unit switches from the occupant determination state to the diagnosis state and/or when the electronic control unit switches from the diagnosis state to the occupant determination state.

Claims (61)

1. An electrostatic occupant detection system, comprising:

an electrostatic sensor including an electrode disposed in a vehicle seat; and

an electronic control unit configured to output a sine wave to the electrostatic sensor to have the electrode generate an electric field, the electronic control unit including a current detection resistor connected to the electrostatic sensor, the electronic control unit detecting an electric current or a voltage at the current detection resistor which changes in accordance with the electric field, the electric control unit determining the presence of an occupant based on the electric current or the voltage, wherein

the electronic control unit is switchable between an occupant determination state in which the electronic control unit outputs a sine wave having a constant amplitude and a diagnosis state in which the electronic control unit maintains a direct current DC voltage of the electrostatic sensor at a constant level, and

the electronic control unit gradually changes at least one of an amplitude and a frequency of the sine wave when the electronic control unit switches from the occupant determination state to the diagnosis state or when the electronic control unit switches from the diagnosis state to the occupant determination state.

2. The electrostatic occupant detection system according to claim 1 , wherein

the electronic control unit gradually changes the amplitude of the sine wave when the electronic control unit switches from the occupant determination state to the diagnosis state or when the electronic control unit switches from the diagnosis state to the occupant determination state.

3. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is different from a DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion gradually attenuates the amplitude of the sine wave to zero while increasing or decreasing the DC bias voltage level of the sine wave so that the voltage of the electrostatic sensor becomes the constant level; and

the sine wave amplification portion gradually amplifies the amplitude of the sine wave to the constant amplitude of the sine wave in the occupant determination state while increasing or decreasing the DC bias voltage level of the sine wave so that the voltage of the electrostatic sensor becomes the DC bias voltage level of the sine wave in the occupant determination state.

4. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is lower than the DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion attenuates the amplitude of the sine wave while decreasing the DC bias voltage level of the sine wave by multiplying the sine wave that has the constant amplitude and is output in the occupant determination state by a first output signal that linearly decreases from the DC bias voltage level of the sine wave in the occupant determination state to the constant level of the DC voltage level in the diagnosis state; and

the sine wave amplification portion amplifies the amplitude of the sine wave while increasing the DC bias voltage level of the sine wave by multiplying the sine wave that has the constant amplitude and is output in the occupant determination state by a second output signal that linearly increases from the constant level of the DC voltage level in the diagnosis state to the DC bias voltage level of the sine wave in the occupant determination state.

5. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is equal to the DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion gradually attenuates the amplitude of the sine wave output to the electrostatic sensor from the constant amplitude in the occupant determination state to zero while maintaining the DC bias voltage level of the sine wave; and

the sine wave amplification portion gradually amplifies the amplitude of the sine wave output to the electrostatic sensor to the constant amplitude in the occupant determination state while maintaining the DC bias voltage level of the sine wave.

6. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the voltage of the electrostatic sensor in the diagnosis state is equal to the DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion attenuates the amplitude of the sine wave output to the electrostatic sensor from the constant amplitude in the occupant determination state to zero at a constant attenuation rate while maintaining the DC bias voltage level of the sine wave; and

the sine wave amplification portion amplifies the amplitude of the sine wave output to the electrostatic sensor to the constant amplitude in the occupant determination state at a constant amplification rate while maintaining the DC bias voltage level of the sine wave.

7. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is equal to the DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion attenuates the amplitude of the sine wave output to the electrostatic sensor for an N-period of the sine wave from the constant amplitude in the occupant determination state to zero by 1/N of the constant amplitude per one period, wherein N is a natural number; and

the sine wave amplification portion amplifies the amplitude of the sine wave output to the electrostatic sensor for the N-period of the sine wave from zero to the constant amplitude in the occupant determination state by 1/N of the constant amplitude per one period.

8. The electrostatic occupant detection system according to claim 2 , wherein:

the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is different from a DC bias voltage level of the sine wave output in the occupant determination state;

the electronic control unit includes at least one of a diagnosis state transition portion and an occupant determination state transition portion;

the diagnosis state transition portion includes a sine wave attenuation portion and a first direct-current shift control portion;

the sine wave attenuation portion attenuates the amplitude of the sine wave output to the electrostatic sensor for an N-period of the sine wave from the constant amplitude in the occupant determination state to zero by 1/N of the constant amplitude per one period, and N is a natural number;

the first direct-current shift control portion decreases or increases the voltage output to the electrostatic sensor to the constant level of the DC voltage in the diagnosis state by a slew rate control after the sine wave attenuation portion attenuates the amplitude to zero;

the occupant determination state transition portion includes a sine wave amplification portion and a second direct-current shift control portion;

the second direct-current shift control portion decreases or increases the voltage output to the electrostatic sensor to the DC bias voltage level of the sine wave in the occupant determination state by a slew rate control while maintaining the amplitude zero; and

the sine wave amplification portion amplifies the amplitude of the sine wave output to the electrostatic sensor for the N-period of the sine wave from zero to the constant amplitude in the occupant determination state by 1/N of the constant amplitude per one period while maintaining the voltage decreased or increased by the second direct-current shift control portion.

9. An electrostatic occupant detection system, comprising:

an electrostatic sensor including an electrode disposed in a vehicle seat; and

an electronic control unit ECU configured to output a sine wave to the electrostatic sensor to have the electrode generate an electric field, the electronic control unit including a current detection resistor connected to the electrostatic sensor, the electronic control unit detecting an electric current or a voltage at the current detection resistor which changes in accordance with the electric field, the electronic control unit determining the presence of an occupant based on the electric current or the voltage, wherein

the ECU is switchable between an occupant determination state in which the ECU outputs a sine wave having a constant amplitude and a diagnosis state in which the ECU maintains a direct current DC voltage of the electrostatic sensor at a constant level, and

the ECU gradually changes at least one of an amplitude and a frequency of the sine wave when the ECU switches from the occupant determination state to the diagnosis state or when the ECU switches from the diagnosis state to the occupant determination state,

wherein the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is lower than the DC bias voltage level of the sine wave output in the occupant determination state;

the ECU includes at least one of a sine wave attenuation portion and a sine wave amplification portion;

the sine wave attenuation portion attenuates the amplitude of the sine wave while decreasing the DC bias voltage level of the sine wave by multiplying the sine wave that has the constant amplitude and is output in the occupant determination state by a first output signal that linearly decreases from the DC bias voltage level of the sine wave in the occupant determination state to the constant level of the DC voltage level in the diagnosis state; and

the sine wave amplification portion amplifies the amplitude of the sine wave while increasing the DC bias voltage level of the sine wave by multiplying the sine wave that has the constant amplitude and is output in the occupant determination state by a second output signal that linearly increases from the constant level of the DC voltage level in the diagnosis state to the DC bias voltage level of the sine wave in the occupant determination state.

10. An electrostatic occupant detection system, comprising:

an electrostatic sensor including an electrode disposed in a vehicle seat; and

an electronic control unit ECU configured to output a sine wave to the electrostatic sensor to have the electrode generate an electric field, the electronic control unit including a current detection resistor connected to the electrostatic sensor, the electronic control unit detecting an electric current or a voltage at the current detection resistor which changes in accordance with the electric field, the electronic control unit determining the presence of an occupant based on the electric current or the voltage, wherein

the ECU is switchable between an occupant determination state in which the ECU outputs a sine wave having a constant amplitude and a diagnosis state in which the ECU maintains a direct current (DC) voltage of the electrostatic sensor at a constant level, and

the ECU gradually changes at least one of an amplitude and a frequency of the sine wave when the ECU switches from the occupant determination state to the diagnosis state or when the ECU switches from the diagnosis state to the occupant determination state, and

wherein the constant level of the DC voltage of the electrostatic sensor in the diagnosis state is different from a DC bias voltage level of the sine wave output in the occupant determination state;

the ECU includes at least one of a diagnosis state transition portion and an occupant determination state transition portion,

wherein the diagnosis state transition portion includes a sine wave attenuation portion that attenuates the amplitude of the sine wave output to the electrostatic sensor for a N-period of the sine wave from the constant amplitude in the occupant determination state to zero by 1/N of the constant amplitude per one period, and a first direct-current shift control portion that decreases or increases the voltage output to the electrostatic sensor to the constant level of the DC voltage in the diagnosis state with a slew rate control after the sine wave attenuation portion attenuates the amplitude to zero, and N is a natural number;

wherein the occupant determination state transition portion includes a sine wave amplification portion and a second direct-current shift control portion,

wherein the second direct-current shift control portion decreases or increases the voltage output to the electrostatic sensor to the DC bias voltage level of the sine wave in the occupant determination state by a slew rate control while maintaining the amplitude zero; and

the sine wave amplification portion amplifies the amplitude of the sine wave output to the electrostatic sensor for the N-period of the sine wave from zero to the constant amplitude in the occupant determination state by 1/N of the constant amplitude per one period while maintaining the voltage decreased or increased by the second direct-current shift control portion.

Assignments (29)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040925 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Feb 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V. F/K/A FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 052917/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040928 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Jan 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 052915/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 037486 FRAME 0517. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS. Recorded Dec 10, 2019
From: CITIBANK, N.A.
To: MORGAN STANLEY SENIOR FUNDING, INC.
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From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 051145/0184 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12298143 PREVIOUSLY RECORDED ON REEL 038017 FRAME 0058. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded Oct 22, 2019
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 051030/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12298143 PREVIOUSLY RECORDED ON REEL 042985 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded Oct 22, 2019
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 051029/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12298143 PREVIOUSLY RECORDED ON REEL 039361 FRAME 0212. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded Oct 22, 2019
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 051029/0387 →
RELEASE OF SECURITY INTEREST Recorded Sep 10, 2019
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 050745/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE TO CORRECT THE APPLICATION NO. FROM 13,883,290 TO 13,833,290 PREVIOUSLY RECORDED ON REEL 041703 FRAME 0536. ASSIGNOR(S) HEREBY CONFIRMS THE THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS.. Recorded Feb 20, 2019
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: SHENZHEN XINGUODU TECHNOLOGY CO., LTD.
Reel/Frame 048734/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12681366 PREVIOUSLY RECORDED ON REEL 038017 FRAME 0058. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded May 9, 2017
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 042985/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12681366 PREVIOUSLY RECORDED ON REEL 039361 FRAME 0212. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded May 9, 2017
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 042762/0145 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE PATENTS 8108266 AND 8062324 AND REPLACE THEM WITH 6108266 AND 8060324 PREVIOUSLY RECORDED ON REEL 037518 FRAME 0292. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS. Recorded Feb 1, 2017
From: CITIBANK, N.A.
To: MORGAN STANLEY SENIOR FUNDING, INC.
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CORRECTIVE ASSIGNMENT TO CORRECT THE NATURE OF CONVEYANCE PREVIOUSLY RECORDED AT REEL: 040652 FRAME: 0241. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER AND CHANGE OF NAME. Recorded Jan 5, 2017
From: FREESCALE SEMICONDUCTOR, INC.
To: NXP USA, INC.
Reel/Frame 041260/0850 →
MERGER Recorded Nov 8, 2016
From: FREESCALE SEMICONDUCTOR, INC.
To: NXP USA, INC.
Reel/Frame 040652/0241 →
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 040928/0001 →
RELEASE OF SECURITY INTEREST Recorded Sep 21, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V., F/K/A FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 040925/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 12092129 PREVIOUSLY RECORDED ON REEL 038017 FRAME 0058. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT SUPPLEMENT. Recorded Jul 14, 2016
From: NXP B.V.
To: MORGAN STANLEY SENIOR FUNDING, INC.
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SECURITY AGREEMENT SUPPLEMENT Recorded Mar 7, 2016
From: NXP B.V.
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ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS Recorded Jan 13, 2016
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PATENT RELEASE Recorded Dec 21, 2015
From: CITIBANK, N.A., AS COLLATERAL AGENT
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PATENT RELEASE Recorded Dec 21, 2015
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: FREESCALE SEMICONDUCTOR, INC.
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PATENT RELEASE Recorded Dec 21, 2015
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: FREESCALE SEMICONDUCTOR, INC.
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SECURITY AGREEMENT Recorded Nov 6, 2013
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS NOTES COLLATERAL AGENT
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SECURITY AGREEMENT Recorded Jun 18, 2013
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS NOTES COLLATERAL AGENT
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SECURITY AGREEMENT Recorded Jan 31, 2012
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 027622/0477 →
SECURITY AGREEMENT Recorded Jan 31, 2012
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 027622/0075 →
SECURITY AGREEMENT Recorded Jan 31, 2012
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 027621/0928 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2011
From: SHIMIZU, RYO; AYKROYD, CRAIG M.; PIGOTT, JOHN M.
To: DENSO CORPORATION; FREESCALE SEMICONDUCTOR, INC.
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