Abstract:
A vehicle control system is provided to control driving force to improve turning performance in a vehicle having an automatic transmission without causing conflict with a shifting control of the transmission. The vehicle control system comprises: a shifting means that carries out a shifting operation of the transmission based on an execution condition including an execution threshold governed by a vehicle speed and an operating amount of an accelerator performed by a driver; a driving force controlling means that carries out a turning performance improving control for stabilizing a vehicle behavior by controlling a driving force during turning; and a shifting condition correcting means that corrects a value of the operating amount of the accelerator as the execution condition during execution of the turning performance improving control.
Abstract:
A vehicle control system is provided to control driving force to improve turning performance in a vehicle having an automatic transmission without causing conflict with a shifting control of the transmission. The vehicle control system comprises: a shifting means that carries out a shifting operation of the transmission based on an execution condition including an execution threshold governed by a vehicle speed and an operating amount of an accelerator performed by a driver; a driving force controlling means that carries out a turning performance improving control for stabilizing a vehicle behavior by controlling a driving force during turning; and a shifting condition correcting means that corrects a value of the operating amount of the accelerator as the execution condition during execution of the turning performance improving control.
Abstract:
Provided is a detergent composition containing a polyoxyethylene alkyl ether sulfate or an alkyl sulfate which composition is excellent and creamy in foam quality, and excellent in storage stability. The detergent composition contains the following components (A), (B) and (C): (A) a polyoxyethylene alkyl ether sulfate or an alkyl sulfate represented by a general formula (1): R1O(CH2CH2O)nSO3M (1); (B) myristyl alcohol; (C) one or more nonionic surfactants selected from the group consisting of an alkoxylate (C-1) represented by a general formula (2) and a glyceryl ether (C-2) represented by a general formula (3): R2O-(AO)n—R3 (2) wherein the weight ratio of the component (A) to the component (B) is (A)/(B)=91.5/8.5 to 80/20, the weight ratio of the component (A) to the component (C) is (A)/(C)=98/2 to 85/15, the weight ratio of the component (B) to the component (C) is (B)/(C)=90/10 to 30/70, and the content of the component (B) is 1.6 to 14% by weight.
Abstract:
Provided is a skin detergent composition containing a polyoxyethylene alkyl ether sulfate or an alkyl sulfate which composition is high in foam viscosity and creamy in foam quality. The skin detergent composition contains the following components (A), (B) and (C): (A) a polyoxyethylene alkyl ether sulfate or an alkyl sulfate represented by a general formula (1): R1O(CH2CH2O)nSO3M (1); (B) myristyl alcohol; (C) one or more cationic polymers selected from the group consisting of the following (C-1) to (C-4): (C-1) a cationic group-containing copolymer obtained by a radical polymerization including as essential constituent monomers at least one nonionic group-containing vinyl monomer, at least one cationic group-containing vinyl monomer, and at least one crosslinkable vinyl monomer having in the molecule thereof at least two groups selected from a vinyl group, an acryloyl group, a methacryloyl group and an allyl group; (C-2) a cationized cellulose derivative; (C-3) a cationized guar gum derivative; and (C-4) a diallyl quaternary ammonium salt polymer or a diallyl quaternary ammonium salt/acrylamide copolymer, wherein the weight ratio of the component (A) to the component (B) is (A)/(B)=15/0.1 to 15/4, the weight ratio of the component (A) to the component (C) is (A)/(C)=15/0.05 to 15/3, the weight ratio of the component (B) to the component (C) is (B)/(C)=1/0.05 to 1/1, and the content of the component (B) is more than 1 to 14% by weight.
Abstract:
An image forming apparatus is provided. An exposure component is equipped with a plurality of light emitting elements arrayed along a first direction. An output component is equipped with output ends corresponding to each of the light emitting elements and the output component, when correcting an amount of misalignment in the first direction, outputs drive signals of one line corresponding to a line on a most upstream side of drive signals of plural lines from the output ends that have been shifted by a number corresponding to the amount of misalignment in the first direction. A plurality of connecting wires interconnect each of the output ends and each of the light emitting elements. A judging component is connected to each of the connecting wires, and judges whether or not the drive signals are being normally transmitted through the connecting wire that the judging component has selected.
Abstract:
An exposing device includes a plurality of exposing units which forms a latent image, wherein exposing units includes: an exposure light source; a rotating polyhedron that reflects light from the exposure light source; a driving source that rotates the rotating polyhedron; a first detecting unit that detects the number of rotations of the driving source; a second detecting unit that detects the light from the exposure light source at a position; and a control unit that performs a first control of the driving source based on a detection signal of the first detecting unit at a start of the rotation of the rotating polyhedron and thereafter performs a second control of the driving source based on a detection signal of the second detecting unit.
Abstract:
To provide a cleansing composition showing excellent properties during cleansing and rinsing while satisfying foam performance.The hair cleansing composition according to the invention contains the following ingredients (A), (B), (C), and (D) at a weight ratio of Ingredient (A) to Ingredient (B) [(A)/(B)] is of from 0.1 to 1.2 and at a weight ratio of Ingredient (A) to Ingredient (C) [(A)/(C)] of from 0.1 to 1.2: (A) an ether carboxylate surfactant, (B) an ether sulfate surfactant, (C) a betaine amphoteric surfactant, (D) a cationic-group containing copolymer obtained by the copolymerization of a monomer mixture containing three monomers.
Abstract:
A set value output circuit includes a first output unit and a second output unit. The first output unit outputs a signal input to a first input when a first timing signal is input to a second input, and continues to output the signal until a next first timing signal is input. The second output unit outputs the signal input to a third input when the second timing signal is input to a fourth input, and continues to output the signal until a next second timing signal is input. A selection unit inputs a selected timing signal as the second timing signal to the fourth input. A control unit inputs the first timing signal to the second input, so that a set value for an image to be formed next is output during image formation using the signal output from the second output.
Abstract:
An image forming apparatus includes: a latent image forming unit forming a latent image; a transfer body on which a reference index for setting an output start time point of image data is formed; a detecting unit facing the reference index and outputting a detection signal changing in accordance with passing of the reference index; a measuring unit measuring change duration time; and a controller controlling the output start time point with the detection signal. The controller starts a first period during which change of the detection signal is ignored, according to first change of the detection signal, starts a second period after the first period, regards change of the detection signal occurring first in the second period as a reference of the output start time point if the change duration time is longer than a predetermined period, and ignores change of the detection signal after the change occurring first.
Abstract:
A set value output circuit includes a first output unit and a second output unit. The first output unit outputs a signal input to a first input when a first timing signal is input to a second input, and continues to output the signal until a next first timing signal is input. The second output unit outputs the signal input to a third input when the second timing signal is input to a fourth input, and continues to output the signal until a next second timing signal is input. A selection unit inputs a selected timing signal as the second timing signal to the fourth input. A control unit inputs the first timing signal to the second input, so that a set value for an image to be formed next is output during image formation using the signal output from the second output.