Abstract:
A case for storing a battery which supplies drive power for a headphone includes a case body to which the battery is stored and which is capable of being inserted to an insertion hole formed at a headphone chassis and a lock pawl which is capable of being locked with a lock hole formed at the headphone chassis, while a positive terminal which is connected to a positive electrode of the battery stored in the case body and a negative terminal which is connected to a negative electrode of the battery stored in the case body are arranged, and then, a leading terminal which is connected to either the positive electrode or the negative electrode is arranged at the case body and the leading terminal is connected to either the positive terminal or the negative terminal.
Abstract:
A case for storing a battery which supplies drive power for a headphone includes a case body to which the battery is stored and which is capable of being inserted to an insertion hole formed at a headphone chassis and a lock pawl which is capable of being locked with a lock hole formed at the headphone chassis, while a positive terminal which is connected to a positive electrode of the battery stored in the case body and a negative terminal which is connected to a negative electrode of the battery stored in the case body are arranged, and then, a leading terminal which is connected to either the positive electrode or the negative electrode is arranged at the case body and the leading terminal is connected to either the positive terminal or the negative terminal.
Abstract:
A starting power securing structure of an electric power supply device includes a built-in battery that is mounted on the electric power supply device, an operation control portion that is mounted on the electric power supply device and controls the operation of the electric power invert portion, and a discharging control portion that is provided in the electric vehicle and controls the discharging of the driving battery, wherein the driving battery, the operation control portion and the first connection plug are electrically connected, and the electric power of the built-in battery is supplied to the operation control portion and the first connection plug, whereby the electric power is supplied to the discharging control portion via the first connection plug while the electric power invert portion can be operated, and electricity can be transmitted from the electric vehicle to the electric power supply device.
Abstract:
A starting power securing structure of an electric power supply device includes a built-in battery that is mounted on the electric power supply device, an operation control portion that is mounted on the electric power supply device and controls the operation of the electric power invert portion, and a discharging control portion that is provided in the electric vehicle and controls the discharging of the driving battery, wherein the driving battery, the operation control portion and the first connection plug are electrically connected, and the electric power of the built-in battery is supplied to the operation control portion and the first connection plug, whereby the electric power is supplied to the discharging control portion via the first connection plug while the electric power invert portion can be operated, and electricity can be transmitted from the electric vehicle to the electric power supply device.
Abstract:
A battery positioning structure reliably positions battery modules on a vehicle chassis even when battery modules have different sizes and heights. The battery positioning structure includes a bracket having at opposite ends not only check plates which are configured to be positioned on a body of the electric vehicle but also locks at opposite side edges of the bracket, the bracket being configured to be attached to outer surfaces of the battery modules and to unite the battery modules, and bands configured to extend across the bracket, and linked to the locks at opposite ends of the bracket. The battery modules and the bracket are positioned on the body of the electric vehicle.
Abstract:
A battery positioning structure reliably positions battery modules on a vehicle chassis even when battery modules have different sizes and heights. The battery positioning structure includes a bracket having at opposite ends not only check plates which are configured to be positioned on a body of the electric vehicle but also locks at opposite side edges of the bracket, the bracket being configured to be attached to outer surfaces of the battery modules and to unite the battery modules, and bands configured to extend across the bracket, and linked to the locks at opposite ends of the bracket. The battery modules and the bracket are positioned on the body of the electric vehicle.
Abstract:
A monoclonal antibody reactive with a C-terminal half of human lymphotoxin, and fragments thereof; a hybridoma cell line producing a monoclonal antibody reactive with a C-terminal half of human lymphotoxin; a process for the production of a monoclonal antibody reactive with a C-terminal half of human lymphotoxin, comprising the steps of culturing the above-mentioned hybridoma in a medium to secrete the antibody, and recovering the antibody from the culture supernatant; a process for the production of a monoclonal antibody reactive with a C-terminal half of human lymphotoxin, comprising the steps of inoculating a hybridoma to a mammal, obtaining ascites from the mammal, and recovering the monoclonal antibody from the ascites; a process for the production of a hybridoma cell line producing a monoclonal antibody reactive with a C-terminal half of human lymphotoxin, comprising the step of immunizing a mammal with a conjugate of zinc and a purified recombinant human lymphotoxin, obtaining spleen cells from the immunized mammal, fusing the spleen cells with myeloma cells, and cloning a hybridoma producing the monoclonal antibody; an adsorbent for lymphotoxin comprising a solid carrier and the above-mentioned monoclonal antibody or fragment of the antibody, wherein the monoclonal antibody is bonded to the surface of the solid carrier; a process for the purification of lymphotoxin comprising the steps of placing a material containing lymphotoxin in contact with the above-mentioned adsorbent to adsorb the lymphotoxin to the adsorbent, and eluting the adsorbed lymphotoxin with an eluent; and an assay method or assay kit for lymphotoxin using the above-mentioned monoclonal antibody or fragment thereof.
Abstract:
A secondary battery module includes a row of cells arranged with a gap therebetween, a lid covering one side of the cell row, inner ribs formed on the inner surface of the lid and each determining the gap between the adjacent cells, an outer rim extending along the outer periphery of the lid and cooperating with the corresponding inner ribs to hold the cells located at the opposite ends of the cell row, and a plurality of busbars used to electrically connect the cells in series. The cells and the lid are mechanically connected together by means of the busbars.
Abstract:
An electricity accumulator which is capable of equalizing the voltages of a plurality of electricity accumulating devices such as batteries in an inexpensive and simple construction and quickly even in a state which is not a fully charged state. Dissipation of electrical energy is prevented. The electricity device includes a plurality connected in series. There is a capacitor connectable in parallel with at least two of the electricity accumulating devices. A connection switching device switches selectively a first connection mode in which the capacitor is connected to a first electricity accumulating device so that the capacitor is charged or discharged through the first electricity accumulating device and a second connection mode in which the capacitor is connected to a second electricity accumulating device.
Abstract:
The present invention relates to a fishing game device. The device comprises line take-up means rotatable forward and reverse; a fishing rod, to a distal end of which is fixed a fishing line fed from the line take-up means; a simulated reel attached to a side opposite to the distal end of the fishing rod and including a handle to be rotated by a player and a brake mechanism for applying a load braking force to the movement of the handle; and control means for controlling a magnitude of the load braking force of the braking mechanism in accordance with the rotational state of the line take-up means.