Abstract:
An image processing apparatus using a neural network having: an image supplying unit for supplying spatiotemporal data of a predetermined region including a target pixel of an image; and a neural network formed by coupling a plurality of artificial neuron models so as to have at least an input layer, a hidden layer, and an output layer, wherein in the output layer, an input/output converting process is executed by a linear function and data corresponding to a target pixel is outputted from the output layer.
Abstract:
A switch which is superior in current limiting performance. The switch comprises a movable contact element having a pair of movable contacts secured thereto, a pair of fixed contacts individually secured to fixed contact elements for individually contacting with the movable contacts, an electromagnetic driving device including a movable iron core, and a first operating rod secured to the movable iron core. An electromagnet is disposed alongside the electromagnetic driving device and includes a movable iron core, and movement of the movable iron core of the electromagnet is transmitted to the movable contact element by way of a transmitting member and a second operating rod. The first and second operating rods are disposed for movement along a common axial line, and movement of the movable iron core of the electromagnetic driving device is transmitted from the first operating rod to the movable contact element either directly or by way of the second operating rod.
Abstract:
A method of forming a plastic plate includes melt extruding a thermoplastic resin containing a flake-like inorganic filler with an extruder into a former while a back pressure is applied to the extruded thermoplastic resin to thereby form it into a plate like body. The molten resin is extruded from at least one extruder into a channel or channels corresponding to the extruders which are formed in an adapter. The molten resin is fed to a cavity having at least one partition plate, formed in the former which is communicatively connected to the adapter so that a molten resin stream or streams introduced from the channel or channels are respectively divided and developed into at least two plate like bodies, and the plate-like bodies are merged in an overlapping state, followed by heat-bonding them.
Abstract:
A vacuum interrupter in which at least one of a pair of electrodes is provided with first high resistance areas formed passing through from a contact surface to a back side thereof at specified distances from a peripheral edge of the electrode and facing to each other and second high resistance areas extending from ends of the first high resistance areas toward a center of said electrode being not connected to each other, and in which outside parts of the electrode between the first high resistance areas and the peripheral edge is electrically connected to a conductive rod on the back side of the electrode by way of a bridge conductor arranged over the first high resistance areas.
Abstract:
After a three-dimensional antenna pattern (10) is formed by bending a conductive plate, the three-dimensional antenna pattern (10) thus bent is supplied in an injection molding die set as an insert component and a base (20) is formed by injection molding of a resin. With this, a chip antenna (1) comprising the three-dimensional antenna pattern (10) can be formed easier as comparison to a case where the antenna pattern is formed over a plurality of surfaces by printing and the like.
Abstract:
Providing a fluid dynamic bearing device, wherein the outer member comprises a member formed by a pressing process on a plate member, the radial bearing surface and at least the one of the thrust bearing surfaces of the outer member being formed by the pressing process, and wherein at least a part of the inner member, which forms the radial bearing surface and the thrust bearing surfaces of the inner member, is made of a sintered metal.
Abstract:
An optical thin-film vapor deposition apparatus and method are capable of producing an optical thin-film by vapor depositing a vapor deposition substance onto substrates (14) within a vacuum vessel (10). A dome shaped holder (12) is disposed within the vacuum vessel (10) and holds the substrates (14). A drive rotates the dome shaped holder (12). A vapor depositing source (34) is disposed oppositely to the substrates (14). An ion source (38) irradiates ions to the substrates (14). A neutralizer (40) irradiates electrons to the substrates (14). The ion source (38) is disposed at an angle between an axis, along which ions are irradiated from the ion source (38), and a line perpendicular to a surface of each of the substrates (14). The angle is between 8° inclusive and 40° inclusive. A ratio of a distance in a vertical direction between (i) a center of rotational axis of the dome shaped holder (12), and (ii) a center of the ion source (38), relative to a diameter of the dome shaped holder (12), is between 0.5 inclusive and 1.2 inclusive.
Abstract:
Cooling water is pressurized and supplied via a pipe to an electrified atomization head installed in an atomization cooling area. The jetted particles of the cooling water from the electrified atomization head are electrified and atomized. An electrification voltage is applied from a voltage application unit to the electrified atomization head, and the external electric field generated by applying a voltage between a water-side electrode unit and an induction electrode unit is applied to the cooling water in a jetting process so as to electrify the atomization water and facilitate adsorption to people.
Abstract:
An output power of the internal combustion engine (1) is transmitted to a drive wheel via a torque converter (2B) having a pump impeller and a turbine runner. A lockup clutch (2C) directly connects the pump impeller and the turbine runner during a coast running of a vehicle. When the accelerator pedal is slightly depressed during a coast running of a vehicle in a fuel cut-off state, the lockup clutch (2C) disengages. In addition, fuel recovery of the internal combustion engine (1) is suppressed until the engaging pressure of the lockup clutch (2C) decreases, thereby preventing a vehicle speed change caused by an output power increase of the internal combustion engine (1) before the lockup clutch (2C) substantially disengages.
Abstract:
A wide protection range can be ensured by extending the flying distance of fire-extinguishing agent particles electrified and sprayed from a head. A water-based fire-extinguishing agent is pressurized and supplied to an electrification spray head 10 installed in a protection area A via a pipe, the jetted particles of the fire-extinguishing agent are electrified and sprayed from the electrification spray head 10. The electrification spray head mixes and sprays the fire-extinguishing agent having a comparatively small particle size included in a range from 30 μM to 200 μm by a small-particle jetting nozzle 38a and the fire-extinguishing agent having a comparatively-large particle size of 200 μm to 2000 μm by a large-particle jetting nozzle 38b, thereby carrying the group of the fire-extinguishing-agent particles having the small particle size by the air current caused by spraying the group of the fire-extinguishing-agent particles having the large particle size.