Abstract:
An input connector assembly, which is for detecting residual current and adapted for connecting power sources to electric equipment of electric vehicles, includes a wire terminal block, lock and release mechanisms, a residual current sensor, and a support holder. The wire terminal block has wire terminals for receiving electrical wires. The lock and release mechanisms are connected to the wire terminal block for fixing electrical wires to conductors in the wire terminals. The residual current sensor is adapted to be mounted to a flat surface. The support holder is designed to be placed above the residual current sensor and to be connected to the flat surface. The support holder is further adapted for supporting the wire terminal block in a position above the residual current sensor. Conducting connection pins run from the conductors in the wire terminals through openings in the residual current sensor to the flat surface.
Abstract:
The disclosure relates to an apparatus including a multi-part housing to be assembled around two lines and conducting a power current generated by a solar module, and an electric circuitry arranged within the housing. The apparatus further includes connection devices for connecting the electric circuitry to the two lines such that at least one component of the electric circuitry is connected in parallel to the solar module. The connection devices include insulation displacement terminals which electrically contact the two lines, and at least one cutting blade made of an electrically insulating material cutting through at least one of the two lines in assembling the multi-part housing.
Abstract:
The invention relates to a terminal with a housing, with at least two clamp contacts to produce an electronic connection to electric contacts and with connection elements for producing an electric connection to an electronic sub-assembly arranged outside the electrical terminal block, with the electrical terminal block comprising an electronic sub-assembly and with the clamp contacts being connected via the electronic sub-assembly to connection elements as well as an electrical terminal block-circuit board arrangement with an electronic sub-assembly in the form of a circuit board and with a terminal electrically connected to the electronic sub-assembly.
Abstract:
The invention relates to an electric contact module, particularly electric test module, for an electric unit, preferably an electric distribution unit such as an electric voltage or power distribution unit or an installation of an electrical substation of an urban electrical power system, having a casing having first electrical contact means electrically connectable by/to a first electric unit, and a slider having second electrical contact means electrically connectable by/to a second electric unit. The slider may be provided in a plurality of positions in relation to the casing. Locking recesses 132 and locking protrusions 232 may be used to set the positions of the slider. Furthermore, an electric contact box is disclosed having one or a plurality of electric contact modules according to the invention, wherein the electric contact box preferably comprises two, three or five electric contact modules or an integer multiple thereof.
Abstract:
A terminal box is provided with a plurality of terminal plates (10) electrically connected to a solar cell module, bypass diodes (20) each electrically connected to two corresponding ones of the respective terminal plates (10), and a housing (31) having the respective terminal plates (10) and bypass diodes (20) arranged inside. The respective terminal plates (10) and bypass diodes (20) are mold-covered by a resin portion (30), whereby the housing (31) is integrally formed. The resin portion (30) of the housing (31) includes a thinner portion (15) deposited and having an outer shape in conformity with that of the bypass diodes (20).
Abstract:
An apparatus includes a housing and a cover. The housing can include a surface to receive a terminal block to transmit power to an electrical component. A shroud to be inserted within the electrical component can extend away from the housing surface. The cover can have an end for hingedly attaching to the housing. Another cover end can be configured to releasably lock to the housing. The housing and the cover can have notches. The cover is pivotable relative to the housing between a closed position and an open position. In the closed position, the cover and the housing together form an enclosure for the terminal block, and the notches of the housing and the cover cooperatively define passageways configured to receive external wires to connect to the terminal block.
Abstract:
In one embodiment, an apparatus includes a housing and a cover. The housing can include a surface to receive a terminal block to transmit power to an electrical component. A shroud to be inserted within the electrical component can extend away from the housing surface. The cover can have an end for hingedly attaching to the housing. Another cover end can be configured to releasably lock to the housing. The housing and the cover can have notches. The cover is pivotable relative to the housing between a closed position and an open position. In the closed position, the cover and the housing together form an enclosure for the terminal block, and the notches of the housing and the cover cooperatively define passageways configured to receive external wires to connect to the terminal block.
Abstract:
The present invention provides an electric connection box capable of reducing cost and capable of constituting small-sized formation by devising a structure of engaging a cover. The electric connection box including an electronic device and connected to a wire harness so as to electrically connect the electronic device and the wire harness includes a synthetic resin member including a mold stripping hole used for molding the synthetic resin member, and a cover including a engaging portion engaged with the hole.
Abstract:
An electric connection box include a power supply lead frame, a plurality of external connection terminals, a housing member having connector housing portions formed integrally at its outer peripheral portion and also having the lead frame and the external connection terminals insert molded therein, a plurality of transistors mounted in a bare chip condition on an upper surface of the lead frame, a circuit board mounted within the housing member, and bonding wires connecting the transistors, the external connection terminals and the circuit board to each other. Upper surfaces of bonding wire connection portions of the external connection terminals, upper surfaces of output terminal pad portions and control terminal pad portions formed on upper surfaces of the transistors, and an upper surface of a circuit pattern on the circuit board are disposed generally at the same height, thereby enhancing the efficiency of a bonding operation.
Abstract:
A solar cell module connector includes an insulating box (2). The insulating box includes a solar cell module lead line connection zone (8) and an output cable connection zone (12) disposed on opposite sides of an diode zone (10), with partitions (4, 6) disposed therebetween, respectively. Heat sinks (14) are disposed in the diode zone, with their first ends located in said solar cell module lead line connection zone and with their second ends located in said output cable connection zone. Connection terminals (26) are connected to the respective ones of the first ends of the heat sinks and extend through the partition (4) into the solar cell module lead line connection zone. Connection terminals (30) are connected to the second ends of the heat sinks disposed at the opposite, first and second outermost locations and extend through the partition (6) into the output cable connection zone. Anodes of chip-type diodes (18) are connected to the respective heat sinks expect one of the two outermost heat sinks, with their cathodes connected to the respective ones of the heat sinks adjacent on the first outermost location side.