This application is based on and claims priority under 35 U.S.C. ยง119 with respect to a Japanese Patent Application 2001-382063, filed on Dec. 14, 2001, the entire content of which is incorporated herein by reference.
This invention generally relates to a vehicle door opening/closing control apparatus. More particularly, this invention pertains to a vehicle door opening/closing control apparatus provided with a controller for controlling an actuator to operate a latch mechanism capable of opening/closing the vehicle door and for switching a controlled condition of the actuator.
A Japanese Patent publication No. 2000-314258 discloses a door lock control device as a vehicle door opening/closing control apparatus. The door lock control device is provided with a latch mechanism capable of switching an opened/closed condition of a vehicle door relative to a vehicle body, an actuator capable of operating the latch mechanism, a controller capable of switching a controlled condition of the actuator between an operable condition and a non-operable condition and, a locking/unlocking switch disposed at an inner side of the vehicle door for operating the controller.
However, there is no description about an indicating unit for indicating the controlled condition of the actuator. According to another conventional door opening/closing control apparatus provided with a mechanical door lock mechanism, a member of the door lock mechanism is utilized as the indicating unit for indicating whether the door has been under a door locked condition or under a door unlocked condition. For example, a door lock knob is utilized for switching the door to be either the door locked condition or the door unlocked condition. Therefore, the door locked/unlocked condition is represented by an operated condition of the door lock knob. An indicate of the door locked/unlocked condition is effective for an occupant to confirm the door to be under the locked or unlocked condition not only when the occupant is opening the vehicle door but also while the vehicle has been driving.
Therefore, according to the aforementioned door lock control device not having the indicating unit for indicating the controlled condition of the actuator, the occupant can not confirm whether or not the actuator has been under the operable condition or under the non-operable condition, i.e. whether or not the door opening/closing control apparatus has been under a locked condition or under an unlocked condition.
Accordingly, the present invention therefore seeks to provide an improved door opening/closing control apparatus provided with an electric door lock device capable of allowing the occupant to confirm whether the controlled condition of the actuator is under the locked condition or under the unlocked condition.
According to an aspect of the present invention, a vehicle door opening/closing control apparatus includes an actuator for switching a vehicle door relative to a vehicle body from a closed condition to an open condition by operating a holding means for holding the vehicle door at the closed condition relative to the vehicle body, a first operating member assembled to an inner side of the vehicle door for operating the actuator by manual operation, a controlling means for controlling the actuator to be in an operable or non-operable condition in response to the manual operation of the first operating member, a second operating member assembled to the inner side of the vehicle door for switching the condition of the actuator to be either the operable or non-operable condition by manual operation of the second operating member, and an indicating means for indicating the controlled condition of the actuator. Therefore, the vehicle door opening/closing control apparatus provided with the indicating means is effective for an occupant to confirm whether the controlled condition of the actuator is either the operable or non-operable condition.
According to another aspect of the present invention, the controlling means operates the indicating means to indicate the controlled condition of the actuator during the second operating member being under operation, and the controlling means further switches the controlled condition of the actuator to be either the operable or non-operable condition when the operation of the second operating member is completed. Therefore, the number of components requisite for the vehicle door opening/closing control apparatus can be effectively reduced.
According to a further aspect of the present invention, the controlling means operates the indicating means to indicate the controlled condition of the actuator by the manual operation of the first operating member, and the controlling means terminates the indication of the controlled condition of the actuator by the indicating means when a predetermined period of time passes since a termination of the operation of the first operating member. Therefore, compared with another indicating means which is always lighted on, the indicating means of the present invention consumes less electric power and can be applicable for saving electric power to be consumed.
According to a further aspect of the present invention, the controlling means controls the controlled condition of the actuator to be either the operable or non-operable condition with reference to a vehicle moving speed. Therefore, the vehicle door opening/closing operation control apparatus of the present invention is effective to restrain the vehicle door from being unnecessarily opened with reference to the vehicle moving speed.
According to a further aspect of the present invention, the indicating means is an indicator assembled to a portion adjacent to an inner side of the vehicle door, the portion extends approximately orthogonal with a vehicle lateral direction, and an upper portion of the portion is sloping in a vehicle outward direction so that the indicator can be effectively visible from an outside of the vehicle body.
The foregoing and additional features and characteristics of the present invention will become more apparent from the following detailed description considered with reference to the accompanying drawing figures wherein:
FIGS. 7(a), (b), and (c) illustrate an operated condition of an operating member of the operating portion shown in
As illustrated in
Each device connected to the controller 4 for each vehicle door 20 according to embodiments of the present invention is described hereinbelow with reference to
As seen especially in
The controller 4 is further connected to an indicator 8 (an indicating means) disposed on the switch operating portion 22 for each vehicle door 20. The indicator 8 indicates the controlled condition of the actuator 3 being either at the locked condition or at the unlocked condition by lighting on/off a well-known light emitting diode (LED) as a light emitting element. For example, when the actuator 3 has been at the operable condition, the indicator 8 is lighted at red. When the actuator 3 has been at the non-operable condition, the indicator 8 is lighted at green. The light emitting element of the indicator 8 is not limited only to the LED. A method for indicating the controlled condition of the actuator 3 is not limited only to a method in the form of a color as described above and can be applied as an indicating method in the form of a lighting time period or an indicating method in the form of the number of lighting times per unit of time. The indicator 8 is usually lighted off and is lighted on for indicating the condition of the actuator 3 in accordance with any signal which is described later. Therefore, compared with another indicator which is always lighted on, the indicator 8 of the embodiments of the present invention consumes less electric power and can be applicable for saving electric power to be consumed. Further, the indicator 8 according to the embodiments of the present invention indicates the controlled condition of the actuator 3 in the form of the color of the lighted-on LED, i.e. in the form of a light. Alternatively, the indicator 8 can indicate the controlled condition of the actuator 8 in the form of a sound.
The aforementioned lock switch 7 further functions for allowing the indicator 8 to indicate the controlled condition of the actuator 3. That is, the lock switch 7 functions in two ways in accordance with an operated stroke thereof; one is for switching the controlled condition of the actuator 3 to be either the non-operable condition (i.e. the locked condition) or the operable condition (i.e. the unlocked condition), and the other one is for allowing the indicator to indicate the controlled condition of the actuator 3. Details about the lock switch 7 are described later.
The controller 4 is further connected to a pole switch 9 for detecting the operated condition of the latch mechanism, i.e. for detecting whether the vehicle door 20 has been opened or closed. The pole switch 9 includes a half latch switch 9a (a half latch SW) and a full latch switch 9b (a full latch SW). With reference to a graph illustrated in
The controller 4 is further connected to a vehicle speed sensor (not shown). The vehicle speed sensor is structured as is commonly known and detects a vehicle speed by utilizing a speedometer cable, by utilizing a hall element, by optically detecting a rotational speed of a vehicle wheel, or some other methods. Further, the controller 4 houses a time counter 11 therein.
As seen especially in
The switch operating portion 22 possesses an approximately rectangular parallelepiped as an outer shape and possesses corner portions being smoothly worked. The switch operating portion 22 is provided with the latch switch 5, the lock switch 7 and the indicator 8. The switch operating portion 22 possesses a front surface portion 22e approximately orthogonal with the vehicle longitudinal direction, an upper surface portion 22f approximately orthogonal with the vehicle vertical direction, and a side surface portion 22g approximately orthogonal with a vehicle lateral direction. The latch switch 5 is assembled to the front surface portion 22e and is pushed with a stroke at right angles with the front surface portion 22e. An operated surface 51 of the latch switch 5 projects in the vehicle forward direction by the stroke from the front surface portion 22e. The stroke is small so that the operated surface 51 is arranged approximately parallel with the front surface portion 22e and in the approximately same surface as the front surface portion 22e.
The side surface portion 22g defines a recessed portion 22h at an upper portion of the side surface portion 22g and at a vehicle rearward side thereof and another recessed portion 22i at a lower portion of the side surface portion 22g. The recessed portion 22h retracts in a vehicle outward direction. The recessed portion 22i retracts in the vehicle outward direction and extends in the vehicle longitudinal direction.
Further, the upper portion of the side surface portion 22g (an upper portion in
Next, a method for operating the lock switch 7 is described with reference to FIG. 7. When a switch portion 7a of the lock switch 7 is pushed to a half pushed position (b), the lock switch 7 transmits a signal to the controller 4, which allows the indicator 8 to indicate the controlled condition of the actuator 3. When the switch portion 7a is further pushed from the half pushed position (b) to a fully pushed position (c), the lock switch 7 transmits a signal to the controller 4, which switches the controlled condition of the actuator 3 to be either the locked condition or the unlocked condition. Hereinafter, the half pushed position (b) represents a position with an approximately half stroke of a stroke from a non-operated position (a) to the fully pushed position (c). As described above, the lock switch 7 functions in the two ways in accordance with the operated stroke of the switch portion 7a, one is for allowing the indicator 8 to indicate the controlled condition of the actuator 3 and the other one is for switching the controlled condition of the actuator 3 to be either the locked condition or the unlocked condition. Therefore, the number of switches can be effectively reduced and an operational performance can be effectively improved.
The indicator 8 is assembled to the side surface portion 22g and possesses an approximately elliptical shape. As described above, the upper portion of the side surface portion 22g is slightly sloping in the vehicle outward direction. Therefore, the light of the indicator 8 can be visible from the outside of the vehicle via a window 25 (shown in
Next, a series of process for controlling opening/closing the vehicle door 20 by the controller 4 according to the first embodiment of the present invention is described with reference to flow charts illustrated in
As explained especially by the flow chart illustrated in
At step S11, the controller 4 judges whether the signal for allowing the indicator 8 to indicate the controlled condition of the actuator 3 in response to the operation of the lock switch 7 is on or off. When the signal is on, the process proceeds to step S26 so that an output flag of the indicator 8 is turned on. On the other hand, when the signal is off, the process proceeds to step S15. Meanwhile, at step S12, the controller 4 judges the controlled condition of the actuator 3. When the actuator 3 is judged to be at the locked condition at step S12, the process proceeds to step S13 so as to switch the condition of the actuator 3 to the unlocked condition. On the other hand, when the actuator 3 is judged to be at the unlocked condition at step S12, the process proceeds to step S14 so as to switch the condition of the actuator 3 to the locked condition. The process then proceeds to step S26 from steps S13 and S14 so that the output flag of the indicator 8 is turned on. Hereinafter, the process from step S10 to step S14 is referred to as a door lock/unlock process.
As explained especially by the flow chart illustrated in
As described above, it is preferable for the following case that the output flag of the indicator 8 is turned on when the vehicle door 20 has been already switched from the open condition to the closed condition. As described above, the indicator 8 is visible from the outside of the vehicle. Therefore, when a user is closing the vehicle door 20 without using a key while the vehicle door 20 has been at the locked condition, the vehicle door 20 can be confirmed to be at the door locked condition.
As explained especially by the flow chart illustrated in
The controller 4 judges at step S23 (a period of time judging means) whether or not the time counter 11 counts a period of time over a predetermined period of time. Hereinafter, the time counter 11 counts an elapsed time after finishing a pushing operation of the latch switch 5 or the lock switch 7. The counted period of time is incremented by a predetermined period of time of the door opening/closing control. When the counted period of time does not exceed the predetermined period of time at step S23, the series of process is terminated. On the other hand, when the counted period of time exceeds the predetermined period of time at step S23, the process proceeds to step S24 so that the output flag of the indicator 8 is turned off. The series of process is then terminated. As aforementioned, the indicate by the indicator 8 is terminated corresponding to the counted period of time by the time counter 11. Therefore, the indicator 8 according to the first embodiment of the present invention can effectively save electric power to be consumed comparing with another indicator which always keep indicating the condition of the actuator 3.
As explained especially by the flow chart in
The process from step S29 proceeds to step S30 so as to judge whether the operational flag of the actuator 3 is on or off. When the operational flag of the actuator 3 is judged to be off at step S30, the series of process is terminated. On the other hand, when the operational flag of the actuator 3 is judged to be on at step S30, the process proceeds to step S31 (an actuator operating means) so as to operate the actuator 3. The latch mechanism is hence released from being engaged with the striker and the series of process is terminated.
As described at step S15 and step S25 through step S31, when the latch switch 5 is operated by the occupant while the actuator 3 has been at the locked condition, the occupant can be acknowledged by the indicator 8 being lighted on at green that the latch mechanism can not be operated due to the actuator 3 being at the locked condition. Therefore, the occupant can be acknowledged that the latch mechanism can not operated due to a malfunction thereof.
Next, a series of process for controlling opening/closing the vehicle door 20 by the controller 4 according to the second embodiment of the present invention is described with reference to flow charts illustrated in
As explained especially by the flow chart illustrated in
As explained especially by the flow chart illustrated in
According to the second embodiment of the present invention, the vehicle door 20 can not be effectively opened when the vehicle speed measured by the vehicle speed sensor is substantially equal to the prescribed value or greater than that even if at least either the latch switch 5 or the latch switch 6 is operated. Therefore, the door opening/closing control apparatus according to the second embodiment of the present invention improves security.
The principles, preferred embodiments and mode of operation of the present invention have been described in the foregoing specification. However, the invention which is intended to be protected is not to be construed as limited to the particular embodiments disclosed. Further, the embodiments described herein are to be regarded as illustrative rather than restrictive. Variations and changes may be made by others, and equivalents employed, without departing from the spirit of the present invention. Accordingly, it is expressly intended that all such variations, changes and equivalents which fall within the spirit and scope of the present invention as defined in the claims, be embraced thereby.
Number | Date | Country | Kind |
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2001-382063 | Dec 2001 | JP | national |
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Number | Date | Country |
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0 959 205 | Nov 1999 | EP |
1 288 403 | Mar 2003 | EP |
2 783 547 | Mar 2000 | FR |
3-139450 | Jun 1991 | JP |
2000-314258 | Nov 2000 | JP |
WO 0039422 | Jul 2000 | WO |
Number | Date | Country | |
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20030122426 A1 | Jul 2003 | US |