Abstract:
A cable connection structure according to the present invention includes a board and a cable to be connected to the board via a connecting electrode, the board includes at least two protruding parts constituting a groove part in which a conducting body of the cable is arranged on the connecting electrode, the protruding parts include a fixed protruding part which does not fuse in soldering the conducting body onto the connecting electrode, and an extending direction of the conducting body arranged in the groove part is not aligned with an extending direction of the cable.
Abstract:
A pad main body of a shoulder pad includes an elastic pad part comprising two side walls provided to face each other, and a bottom wall provided between these side walls to form a U-shape along with the side walls; and a rib provided on the inside of the U shape of the pad part, from one of the two side walls to the other.
Abstract:
A tracking circuit includes a plurality of phase sections each corresponding to different phases of a despreading code. Each of the phase sections includes a correlator for producing a correlation value between a reception signal and a corresponding phase of the spreading code and a power calculator calculates a power value from the correlation value. A comparator compares power values received from the phase sections to produce a comparison result. A controller selectively activates the plurality of phase sections based on the comparison result, allowing power consumption to be reduced.
Abstract:
A pad main body of a shoulder pad includes an elastic pad part comprising two side walls provided to face each other, and a bottom wall provided between these side walls to form a U-shape along with the side walls; and a rib provided on the inside of the U shape of the pad part, from one of the two side walls to the other.
Abstract:
An electronic device includes a battery capacity computing unit configured to compute the current full-charge capacity of a currently inserted battery apparatus having secondary cells. The battery capacity computing unit acquires at least information on the full-charge capacity of the battery apparatus in a brand-new state and information on the battery charge/discharge cycle count from the battery apparatus, retains a correction coefficient used when computing the current full-charge capacity of the battery apparatus, and calculates the current full-charge capacity of the battery apparatus using the information on the full-charge capacity of the battery apparatus in a brand-new state, the information on the battery charge/discharge cycle count, and the correction coefficient.
Abstract:
A cable connection structure includes a cable that has an outer skin and at least one conducting wire, and a substrate to which the cable is connected at a main surface side having a hard wiring, wherein the substrate includes, at the main surface side, a first flat section having flatness and a second flat section having flatness thinner than the first flat section via a level difference surface from the first flat section and an end part of the outer skin is arranged on the second flat section and at least one of the conducting wire is connected to a connecting electrode formed on the second flat section.
Abstract:
An electronic device includes a battery capacity computing unit configured to compute a current full-charge capacity of a currently inserted battery apparatus having secondary cells. The battery capacity computing unit acquires at least information on a full-charge capacity of the battery apparatus in a brand-new state and information on the battery charge/discharge cycle count from the battery apparatus, retains a correction coefficient used when computing the current full-charge capacity of the battery apparatus, and calculates the current full-charge capacity of the battery apparatus using the information on the full-charge capacity of the battery apparatus in a brand-new state, the information on the battery charge/discharge cycle count, and the correction coefficient.
Abstract:
A method of welding structural steel containing, by mass %, Cr: 1.5 to 3.5%, Mo: 0.5 to 1.5%, and V: 0.15 to 0.5%. It comprises preheating joint of the structural steel to be welded at temperatures of 150 to 250 degrees Celsius; multilayer welding the joint end portions; keeping the interpass temperature of the joint end portions during the multilayer welding at 150 to 350 degrees Celsius; then after welding completion, performing DHT by heat treating the weld zone before cooling down below 150 degrees Celsius under the conditions that the temperature is 250 to 340 degrees Celsius and that the treatment time is 5 to 10 hours.
Abstract:
A cable connection structure includes a cable and a substrate that includes a connection electrode to which the cable is connected. The substrate includes two or more protrusions that form a groove in which a conductor part of the cable is arranged. The height of the protrusions is greater than the diameter of the conductor part of the cable.