Patent classifications
H01B3/301
TRANSPARENT CONDUCTIVE FILM
A transparent conductive film 1 includes, in this order, a transparent substrate 2, a first optical adjustment layer 4, an inorganic layer 5, and a transparent conductive layer 6. The first optical adjustment layer 4 has refraction nC lower than refraction nA of the transparent substrate 2, and thickness TC of 10 nm or more and 35 nm or less. The inorganic layer 5 has refraction nD that is lower than the absolute value |nC1.13| of a value obtained by multiplying the refraction nC of the first optical adjustment layer 4 by 1.13.
INSULATED WIRE, METHOD OF PRODUCING SAME, AND COIL, ROTATING ELECTRICAL MACHINE, AND ELECTRICAL OR ELECTRONIC EQUIPMENT USING INSULATED WIRE
An insulated wire including a conductor and a resin coating layer covering a periphery of the conductor, wherein the conductor is an aluminum conductor surface-treated with CO.sub.2 plasma, and at least a portion of the resin coating layer in contact with the conductor includes at least one kind of a polyaryletherketone resin and a polyphenylene sulfide resin.
INSULATED WIRE AND METHOD OF MANUFACTURING THE SAME
There is provided an insulated wire, comprising: a conductor; and an insulated layer arranged on an outer circumference of the conductor, wherein the insulate layer is made of a resin composition including polyphenylene sulfide resin and silicone rubber, and in a state of 160 C. or more, a mass loss of the insulated layer which is caused by generation of a siloxane gas from the silicone rubber, is less than 1% of the mass of the silicone rubber.
Magnet wire with thermoplastic insulation
Magnet wire including extruded insulation formed from a blend of different polymeric materials is described. A magnet wire may include a conductor and insulation formed around the conductor. The insulation may include at least one layer of extruded insulation formed from a blend of at least three different polymeric materials. A first polymeric material, such as polyetheretherketone, may have a thermal index above 250 C. Second and third polymeric materials, such as polyphenylsulfone and polyethersulfone, may have lower thermal indexes.
INSULATED WIRE, METHOD OF PRODUCING THE INSULATED WIRE, METHOD OF PRODUCING A STATOR FOR A ROTATING ELECTRICAL MACHINE, AND ROTATING ELECTRICAL MACHINE
An insulated wire having a conductor coated with at least one layer of an insulating material, and having at least one layer of a bubble layer in a thickness direction in a coating layer, wherein the insulated wire has a part in which a thickness is small in a length direction or a circumferential direction in an identical coating layer; a method of producing the same; a method of producing a stator for a rotating electrical machine; and the rotating electrical machine.
MAGNET WIRE WITH THERMOPLASTIC INSULATION
Magnet wire including extruded insulation formed from a blend of different polymeric materials is described. A magnet wire may include a conductor and insulation formed around the conductor. The insulation may include base enamel insulation and at least one layer of extruded insulation formed from a blend of at least three different polymeric materials. The enamel insulation may include either filled polyimide or filled polyamideimide. For the blend, a first polymeric material, such as polyetheretherketone, may have a thermal index above 240 C. Second and third polymeric materials, such as polyphenylsulfone and polyethersulfone, may have lower thermal indexes.
INSULATED WIRES
The invention relates to wires, in particular magnet wires, comprising a thermoplastic insulation. In particular it relates to wires comprising a thermoplastic insulation comprising a polyaryletheretherketone composition in the absence of any adhesive layer.