Abstract:
The resin composition of the invention comprises as resin components specific aromatic polyamide (A), a specific graft-modified polymer (B), an aliphatic polyamide (C), and plural antioxidants comprising a hindered phenol type antioxidant (D) having a molecular weight of not less than 500 and a TGA 10% weight loss temperature of not lower than 300.degree. C. and a sulfur type antioxidant (E) having a molecular weight of not less than 600 and a TGA 10% weight loss temperature of not lower than 280.degree. C. The connector of the invention has housing formed from the above-mentioned resin composition. The resin composition of the invention shows excellent heat resistance. The connector of the invention is lightweight and is excellent in heat resistance, water resistance and chemical resistance.
Abstract:
A connector comprising a housing comprising a resin composition comprising (A) 100 parts by weight of a 4,6-nylon resin, (B) from 80 to 120 parts by weight of a polyphenylene ether resin modified with an unsaturated organic acid compound, and (C) from 0.1 to 0.4 part by weight of a copper halide.
Abstract:
A connector comprising a housing comprising a resin composition comprising:(A) from 50 to 95 parts by weight of a semi-aromatic polyamide comprising (A1) an adipate of hexamethylenediamine and (A2) a terephthalate of hexamethylenediamine, where the weight ratio of the adipate of hexamethylenediamine (A1) to the terephthalate of hexamethylenediamine (A2) is from 80/20 to 50/50; and(B) from 5 to 50 parts by weight of a modified polyolefin comprising (B1) a polyolefin copolymer comprising (B11) propylene and (B12) ethylene where the molar ratio of propylene (B11) to ethylene (B12) is from 90/10 to 99/1, the polyolefin copolymer (B1) being graft-modified with (B2) from 0.05 to 5 parts by weight of an .alpha.,.beta.-unsaturated carboxylic acid, an anhydride thereof, or a derivative thereof per 100 parts by weight of the polyolefin copolymer (B1).
Abstract:
Disclosed is a thermoplastic resin composition comprising(A) an aromatic polyamide comprisingdicarboxylic acid units comprising 50-100 mol % of units derived from terephthalic acid, and 0-50 mol % of units derived from an aromatic dicarboxylic acid other than terephthalic acid and/or an aliphatic-dicarboxylic acid having 4-20 carbon atoms, anddiamine units derived from an aliphatic diamine and/or an alicyclic diamine,said aromatic polyamide having an intrinsic viscosity of 0.5-3.0 dl/g as measured in conc. sulfuric acid at 30.degree. C. and a melting point of higher than 300.degree. C.,(B) a graft modified .alpha.-olefin polymer, and/or a graft modified aromatic vinyl hydrocarbon/conjugated diene copolymer or hydrogenated product thereof, and(C) an aliphatic polyamide,wherein said thermoplastic resin composition comprises 10-80 parts by weight of the graft modified .alpha.-olefin polymer, and/or the graft modified aromatic vinyl hydrocarbon/conjugated diene copolymer or hydrogenated product thereof (B) and 5-80 parts by weight of the aliphatic polyamide (C), based on 100 parts by weight of the aromatic polyamide (A).
Abstract:
A connector comprising a housing comprising a resin composition comprising (A) from 30 to 90% by weight of an aromatic polyester, (B) from 5 to 40% by weight of a modified polyolefin, and (C) from 5 to 30% by weight of a polyglutarimide having a repeating unit represented by the following formula (1): ##STR1## wherein R.sup.1 and R.sup.2 each represents a hydrogen atom or a lower alkyl group, and R.sup.3 represents a hydrogen atom, an alkyl group, an aryl group, an alkaryl group, or an aralkyl group.
Abstract:
A connector comprising a housing comprising a polybutylene terephthalate resin composition comprising:(A) 100 parts by weight of a polybutylene terephthalate resin having an intrinsic viscosity of from 1.10 to 1.30 dl/g as measured in o-chlorophenol at 25.degree. C.;(B) from 40 to 60 parts by weight of a copolymer of acrylonitrile and styrene;(C) from 10 to 20 parts by weight of a graft copolymer comprising:(C1) from 65 to 75% by weight of copolymer comprising from 75 to 85% by weight of ethylene and from 25 to 15% by weight of glycidyl methacrylate, and(C2) from 25 to 35% by weight of a copolymer of acrylonitrile and styrene;(D) from 0.05 to 0.5 part by weight of a hindered phenol compound represented by formula (I): ##STR1## (E) from 0.05 to 0.5 part by weight of a thioether compound represented by the following formula (II):(R.sub.3 SR.sub.4 COOCH.sub.2).sub.m C(CH.sub.2 OH).sub.4-m (II)wherein the variables are defined in the specification.
Abstract:
According to an embodiment of the present invention, a ratio of a recycled toner in a first developer is detected by an auto toner sensor for recycled toner. The carrying speed of a recycled toner mixer is controlled according to a detection result. Consequently, when recycled toner density in a recycled-toner carrying chamber increases, the recycled toner mixer is rotated at high speed to discharge the recycled toner from the recycled-toner carrying chamber at high speed.
Abstract:
A waterproof packing includes: a core member including an electric wire passing part inside and a contacting part for fitting to a mounting side outside; and thermoplastic adhesive adhering to at least the electric wire passing part and the contacting part, wherein the waterproof packing adheres to an electric wire with the thermoplastic adhesive of the electric wire passing part and the waterproof packing adheres to the mounting side with the thermoplastic adhesive of the contacting part by heating. A waterproof connector includes: the waterproof packing; a connector housing for inserting an electric wire having a terminal therein; and a packing receiving part of the connector housing, wherein the waterproof packing is inserted in the packing receiving part as the mounting side.
Abstract:
A developing unit has first and second partition walls and which divide the inside of a developer reservoir into first to third chambers parallel to the developing roller, and first to third mixers which are disposed in the first to third chambers. The first mixer supplies developer to the developing roller by stirring and carrying from one end side to the other end side. The second mixer feeds by stirring and carrying the toner replenished from a replenish device and developer fed from the first chamber to one end side of the first mixer. The third mixer feeds the toner collected from a collection mechanism to one end side of the first mixer by stirring and carrying at a speed lower than the second mixer.
Abstract:
Internal parameter control signal generating units generate internal parameter control signals for adjusting internal parameters of a semiconductor memory device. Each internal parameter control signal generating unit includes an anti-fuse element formed with a data holding capacitor of a memory cell. The anti-fuse element is blown with application of a high voltage according to a parameter adjustment signal to break down a dielectric film and then, act as a resistance element. The internal parameter control signal generating unit sets a signal level of a corresponding internal parameter control signal in a non-volatile manner according to the presence or absence of a blowing input to the anti-fuse element.