Abstract:
A connector includes a housing, a cavity formed in the housing, a terminal to which a cable is connected and which is inserted into the cavity from a rear end side of the housing, and a nut held at a front end portion of the housing, wherein the terminal has a plate-like connection portion extended in an insertion direction to the cavity and an insertion hole formed in the connection portion, and the connection portion, which is inserted into the cavity and protruded from a front end portion of the housing, is bent and arranged along a front end surface of the housing, whereby the insertion hole is communicated with an internal thread of the nut.
Abstract:
It is an object to provide a connector to which a fuse can be detachably attached and that can reduce components or improve reliability and improve a shield performance. The connector includes first and second bus bars 11 and 21, a fuse 31 that electrically conducts and connects the first and second bus bars 11 and 21 to each other so as to be fused and a housing 41 that accommodates the first and second bus bars 11 and 21 and the fuse 31. The first and second bus bars 21 include tabs 12 and 22 for a device inserted into the device 3 and connected to a circuit in the device 3. The housing 41 has a hood part 43 that covers the peripheries of the tabs 12 and 22 for the device and is fitted to a connector attaching hole 6 of the device 3 and the fuse 31 is attached to an accommodating space 45 in the hood part 43.
Abstract:
The present invention provides a method including measuring a wavefront aberration of the optical system to be measured on a measurement surface, measuring a pupil transmittance distribution of the optical system determining a pupil function of the optical system based on the wavefront aberration and the pupil transmittance distribution, and performing imaging computation using the pupil function to obtain a light intensity distribution formed on an image plane of the optical system, and calculating a flare, generated in the optical system, from the light intensity distribution.
Abstract:
The present invention provides a photomask defect testing method, a photomask manufacturing method and a semiconductor integrated circuit manufacturing method. In the photomask defect testing method, reference data is created from corrected photomask design data that is corrected on the basis of an exposure transfer pattern, and sensor data is created by measuring the shape of the photomask based on the corrected photomask design data. Furthermore, first non-testing region data indicating non-testing regions including pattern portions having a predetermined width or less and pattern spaces having a predetermined value or less is extracted from the corrected photomask design data, the extracted first non-testing region data is stored so as to be included in the corrected photomask design data, the non-testing regions indicated by the first non-testing region data is excluded, and the reference data is compared with the sensor data, whereby defects on the photomask are detected.
Abstract:
An electrostatic discharge protection device according to the present invention is provided at an input or an output of a semiconductor integrated circuit for protecting an internal circuit of the semiconductor integrated circuit from an electrostatic surge flowing into or out of the semiconductor integrated circuit. The electrostatic discharge protection device includes: a thyristor; and a trigger diode for triggering the thyristor with a low voltage. The trigger diode includes: an n-type cathode high impurity concentration region; a p-type anode high impurity concentration region; and an insulator section for electrically insulating a silicide layer formed on a surface of the n-type cathode high impurity concentration region from another silicide layer formed on a surface of the p-type anode high impurity concentration region.
Abstract:
It is an object to provide a connector to which a fuse can be detachably attached and that can reduce components or improve reliability and improve a shield performance. The connector includes first and second bus bars 11 and 21, a fuse 31 that electrically conducts and connects the first and second bus bars 11 and 21 to each other so as to be fused and a housing 41 that accommodates the first and second bus bars 11 and 21 and the fuse 31. The first and second bus bars 21 include tabs 12 and 22 for a device inserted into the device 3 and connected to a circuit in the device 3. The housing 41 has a hood part 43 that covers the peripheries of the tabs 12 and 22 for the device and is fitted to a connector attaching hole 6 of the device 3 and the fuse 31 is attached to an accommodating space 45 in the hood part 43.
Abstract:
A connector 10 includes a terminal 5 having an electric connecting portion 52 connected with a mating member 9 at one end of the terminal 5 so as to be placed on the mating member 9 and fastened by a bolt 11 and a nut 12 and a wire connecting portion 55 joined with a terminal end of the electric wire 6 at the other end of the terminal 5, and a connector housing 4 having a terminal receiving section 41, and a water seal plug 1 arranged around the electric wire 6 to seal watertightly the terminal receiving section 41. The water seal plug 1 includes integrally a rubber water seal member 3 and a resin member 2 made of synthetic resin. The water seal member 3 includes a cylindrical main body 30 and an outer lip 31 abutting on an inner surface of the terminal receiving section 41, and a plurality of inner lips 32a, 32b, 32c abutting on an outer surface of the electric wire 6. A first inner lip 32a at the nearest position to the terminal 5 is formed to have a lower projecting height then that of the second inner lip 32b and the third inner lip 32c.
Abstract:
A connector 10 includes a terminal 5 having an electric connecting portion 52 connected with a mating member 9 at one end of the terminal 5 so as to be placed on the mating member 9 and fastened by a bolt 11 and a nut 12 and a wire connecting portion 55 joined with a terminal end of the electric wire 6 at the other end of the terminal 5, and a connector housing 4 having a terminal receiving section 41, and a water seal plug 1 arranged around the electric wire 6 to seal watertightly the terminal receiving section 41. The water seal plug 1 includes integrally a rubber water seal member 3 and a resin member 2 made of synthetic resin. The water seal member 3 includes a cylindrical main body 30 and an outer lip 31 abutting on an inner surface of the terminal receiving section 41, and a plurality of inner lips 32a, 32b, 32c abutting on an outer surface of the electric wire 6. A first inner lip 32a at the nearest position to the terminal 5 is formed to have a lower projecting height then that of the second inner lip 32b and the third inner lip 32c.
Abstract:
There is provided a method of manufacturing a shielded connector which includes: a terminal-attached wire; a housing containing the terminal of the terminal-attached wire; a shielded shell integrated to the housing; a knitted conductor mounted to the wire; and a shield ring interposing the knitted conductor between the shield ring and the shielded shell so that the knitted conductor is electrically connected to the shielded shell. The method includes: inserting, into the shielded shell, a single core having a stepped portion formed in a opposed drawing direction; bringing a contact portion formed at the shielded shell into contact with the core; covering the shield ring on the shielded shell via the knitted conductor; and calking the shield ring, the knitted conductor, and the shielded shell from outer side of the shield ring to form, on the shielded shell, a calk-deformed portion contained into the stepped portion of the core.
Abstract:
An inner housing is molded integrally with terminals such that portions of the inner housing fill respectively in through holes which are formed respectively in the terminals, and extend in a direction perpendicular to a direction of fitting and removing of a connector. The inner housing is disposed in a connector housing.