Abstract:
A latch device for vehicle LA provided on a door D of a vehicle, including: a latch 20, which meshes with a striker S; a ratchet 30, which regulates rotation of the latch 20; a detecting sensor 200 including a body 201 and terminals 202a and 202b exposed from the body 201, which detects operation of the latch 20 or the ratchet 30; and a main body 40 in which the detecting sensor 200 is arranged, wherein the main body 40 includes a discharging portion 417 formed on a position corresponding to the terminals 202a and 202b of the latch detecting sensor 200, and the terminals 202a and 202b of the detecting sensor 200 are arranged on an upper side of a vehicle than the discharging portion 417 in a state in which the door D is closed.
Abstract:
An imaging device includes a photoelectric conversion element which photoelectrically converts incident light and generates a charge, accumulates and amplifies the charge, and outputs a photocurrent, wherein a level of an output signal when a charge which is accumulated in the photoelectric conversion element is outputted over a saturated amount of accumulable charge includes a level of an output signal of a charge of a photocurrent of DC component which is generated in the photoelectric conversion element and outputted during a readout time when the charge which is accumulated in the photoelectric conversion element is outputted.
Abstract:
When a caliper and an ECU are separately configured in an electro mechanical brake, the number of harness is increased, and therefore, the wiring layout of the harness becomes difficult, and when bending and twisting are applied to the harness, a problem of a breaking of the wiring and the like arises. Further, a voltage drop is caused by the electric resistance of the harness, and moreover, there is a risk of infiltration of noises. The ECU and the caliper are integrated, thereby making the distance between various sensors and control devices short. Further, the frame body of the ECU incorporates an inverter module driving a motor and its control device, thereby simplifying a wiring connection to the motor.
Abstract:
Provided is a construction machine comprising: a heat exchanger with a core surface in an engine room; a top wall covering an air inlet chamber in the engine room and having a first air inlet; a duct including a main wall guiding air in the air inlet chamber to draw it through the core surface and a front wall facing the core surface and having a second air inlet; a cooling fan sucking external air onto the core surface through the second air inlet; and an air cleaner extending horizontally and orthogonally to an air guiding direction by the main wall. At least a part of the air cleaner exists in a vertical region where the second air inlet is formed. The air cleaner directs, toward the second air inlet, an air flow farthest from the duct, out of the air flow drawn downward through the first air inlet.
Abstract:
A vehicle latch device including: a releasing unit that rotates about a support shaft provided on a holding member of an electric actuator and includes a cam pin and an output unit that disengages a latch from a ratchet by rotation of the releasing unit about the support shaft, where a driving force of the electric actuator being input to the cam pin; and a gear member that rotates about the support shaft, connects the electric actuator to the releasing unit, and inputs a driving force of the electric actuator into the input unit. The cam pin is arranged to be superimposed on a plane of rotation of the gear member, and the vehicle latch device further includes a cover member that is attached to the holding member and covers at least the support shaft, the input unit, the electric actuator, and the gear member.
Abstract:
An amplifier includes a first amplifier comprising an N-type field-effect transistor receiving a reference voltage at a gate, a P-type field-effect transistor connected between a drain of the N-type field-effect transistor and a power supply voltage line, and a constant current source connected between a source of the N-type field-effect transistor and a ground, to output a voltage from a connection of the drain of the N-type and P-type field-effect transistors; a second amplifier comprising a resistance and P-type field-effect transistors connected in series between the power supply voltage line and the ground to receive the voltage output from the first amplifier at their gate, and outputting a voltage from a connection of the P-type field-effect transistor and the resistance; and a switch between an output of the first amplifier and the power supply voltage line and comprising an N-type field-effect transistor receiving a reference voltage at a gate.
Abstract:
Provided is a method of varying the gain of an amplifying photoelectric conversion device and a variable gain photoelectric conversion device which are capable of achieving both signal processing under low illuminance and high-current processing under high light intensity, and thereby capable of securing a wide dynamic range. An amplifying photoelectric conversion part includes a photoelectric conversion element and amplification transistors forming a Darlington circuit. The sources and the drains of field-effect transistors are connected to the bases and the emitters of the amplification transistors, respectively. The gates of the field-effect transistors each function as a gain control part.
Abstract:
An infrared sensor includes a MOSFET sensor, and a current source MOSFET which is connected to the MOSFET sensor in series and constitutes a constant current source for driving the MOSFET sensor with a constant current, wherein a terminal between the MOSFET sensor and the current source MOSFET constitutes a sensor output terminal, the MOSFET sensor is disposed on a heat-insulated structure, the current source MOSFET is disposed outside the heat-insulated structure, and the MOSFET sensor and the current source MOSFET are constituted by a same conductivity type MOSFET and operate in a subthreshold region.
Abstract:
The door-opening/closing apparatus includes a door, a driving unit that drives the door to close the door, a door movement detection unit that detects a movement of the door, an electrostatic switch that is mounted on the door for detecting a human's touching the door, and a judgment unit that judges whether the door is attempted to be closed. When the door movement detection unit detects a movement of the door, and when the electrostatic switch senses a human's touching the door, the judgment unit judges that the door is attempted to be closed, and then the driving unit drives to close the door.
Abstract:
A phototransistor includes a first emitter region, a first base region having at least a portion exposed to a light-receiving side, and a first collector region in this order from the light-receiving side in a depth direction. The first collector region includes a second collector region and a third collector region that is in contact with a downstream side of the second collector region in the depth direction and has a resistance lower than that of the second collector region. The phototransistor further includes a first region that is spaced away from the first base region at an outer side of the first base region on a light-receiving side surface thereof, the first region having a conductivity type opposite to that of the first collector region.