摘要:
A handlebars locking apparatus (10) for locking and unlocking of the handlebars (5) on the basis of a code collation is provided. A collation ECU (20) releases a restriction of a rotor (12) latched by a latch (17) by driving a solenoid (15) if an ignition switch is turned OFF while a lock pin (11) is retracted. After releasing the restriction, rotation of the rotor (12) is restricted by the latch (17) and a code collation with a code stored in a portable key (30) is carried out if a lock pin (11) is in a protrusion state after the release of the restriction and the protrusion state is detected by a lock side switch (27). If the code collation is correctly carried out, the protrusion of the lock pin is maintained to lock the handlebars (5). If the code collation is not correctly completed, the restriction of the rotor (12) is released so as to be returned into an unlocked state.
摘要:
A handlebars locking apparatus (10) for locking and unlocking of the handlebars (5) on the basis of a code collation is provided. A collation ECU (20) releases a restriction of a rotor (12) latched by a latch (17) by driving a solenoid (15) if an ignition switch is turned OFF while a lock pin (11) is retracted. After releasing the restriction, rotation of the rotor (12) is restricted by the latch (17) and a code collation with a code stored in a portable key (30) is carried out if a lock pin (11) is in a protrusion state after the release of the restriction and the protrusion state is detected by a lock side switch (27). If the code collation is correctly carried out, the protrusion of the lock pin is maintained to lock the handlebars (5). If the code collation is not correctly completed, the restriction of the rotor (12) is released so as to be returned into an unlocked state.
摘要:
A handlebars locking apparatus (10) for locking and unlocking of the handlebars (5) on the basis of a code collation is provided. A collation ECU (20) releases a restriction of a rotor (12) latched by a latch (17) by driving a solenoid (15) if an ignition switch is turned OFF while a lock pin (11) is retracted. After releasing the restriction, rotation of the rotor (12) is restricted by the latch (17) and a code collation with a code stored in a portable key (30) is carried out if a lock pin (11) is in a protrusion state after the release of the restriction and the protrusion state is detected by a lock side switch (27). If the code collation is correctly carried out, the protrusion of the lock pin is maintained to lock the handlebars (5). If the code collation is not correctly completed, the restriction of the rotor (12) is released so as to be returned into an unlocked state.
摘要:
The problem to be solved by the present invention is to provide a fuel injection controller capable of bringing the fuel injection amount closer to the ideal one. Solving Means We let the throttle opening at P2 be denoted by TH0. Here, P2 is a specific time later than the peak value of an intake pipe internal pressure PB of a previous cycle. In the cycle, P3 is a specific point that is set immediately before the calculation of the injection time shown by a rectangle filled with diagonal lines. We let the throttle opening at P3 be denoted by TH1. The injection amount is corrected based on a variation in correction time (ta0 to ta1). Effect Point P2 is later than point P1 as (f) in Fig. 4 . Therefore, the correction is completely unaffected or only slightly affected by the intake pipe internal pressure, if affected at all, thus ensuring close-to-ideal correction.
摘要:
The problem to be solved by the present invention is to provide a fuel injection controller capable of bringing the fuel injection amount closer to the ideal one. Solving Means We let the throttle opening at P2 be denoted by TH0. Here, P2 is a specific time later than the peak value of an intake pipe internal pressure PB of a previous cycle. In the cycle, P3 is a specific point that is set immediately before the calculation of the injection time shown by a rectangle filled with diagonal lines. We let the throttle opening at P3 be denoted by TH1. The injection amount is corrected based on a variation in correction time (ta0 to ta1). Effect Point P2 is later than point P1 as (f) in Fig. 4 . Therefore, the correction is completely unaffected or only slightly affected by the intake pipe internal pressure, if affected at all, thus ensuring close-to-ideal correction.
摘要:
Problem To provide a light emitting diode lighting circuit which can prevent erroneous lighting caused by the generation of a leak current, and also can reduce the generation of heat due to a resistance connected to the light emitting diode lighting circuit for preventing erroneous lighting. Means for Resolution In a light emitting diode lighting circuit of a saddle-ride type vehicle including a control means which turns on a lamp formed of a light emitting diode mounted on a vehicle, a control means (102) includes: an input port (121) to which a power source voltage is inputted from a power source in response to turning on or off of a manipulation switch (104); an input circuit part (123) which determines a leak state of the manipulation switch (104) based on an input voltage to the input port (121); a control part (124) which controls lighting of a lamp (101) based on a result of the determination by the input circuit part (123); and an erroneous lighting prevention resistance (122) which has one end thereof connected between the manipulation switch (104) and the input circuit part (123) and has the other end thereof grounded, and an intermittent power source switch means (126) which is cyclically turned on or off by the control part (124) is provided between the manipulation switch (104) and the power source.
摘要:
A steering shaft (6) includes a lower end that penetrates through, and projects downwardly from a bracket (8) for supporting an upper end of a front fork tube (10). A steering angle sensor (16) for a flasher canceler is disposed at the lower end of the steering shaft (6). The steering angle sensor (16) is held in position by a holding plate (28) mounted to a lower surface of the bracket (8). A retainer (41) is secured to a stay (40) secured to a portion of a vehicle body frame (7). The retainer (41) is engaged with an engagement portion (32a) of a steering angle sensor shaft (32) of the steering angle sensor (16). Rotation of the steering shaft (6) results in the steering angle sensor (16) shaft of the steering angle sensor being rotated relative to a vehicle body, which detects a steering angle. A flasher canceler control unit (18) is incorporated in a meter unit (46).
摘要:
Fine maneuverability of a motorcycle body is achieved by reducing a load on a handgrip at low speed, and a movement of the motorcycle body is stably maintained at high speed by increasing the load on the handgrip and thereby suppressing deflection of the handgrip. A rotative steering damper is provided coaxially with a steering shaft, and a load of a handgrip is formed by causing a variable valve to generate damping force using rotation of the steering shaft. The damping force is variably controlled in response to motorcycle speed. The damping force is fixed to a minimum value C1 when the damping force is equal to or below first reference speed V1 on a low speed side, fixed to a maximum value C2 when the damping force is equal to or above second reference speed V2 on a high speed side, and variably controlled in response to motorcycle speed and acceleration in an intermediate speed range.