ELECTRICAL INSULATING MATERIAL

Brand Owner (click to sort) Address Description
NOVABESTOS Raybestos-Manhattan, Inc. Trumbull CT ELECTRICAL INSULATING MATERIAL, IN TAPE AND SHEET FORM COMPOSED PRINCIPALLY OF ASBESTOS;
SAMICA VON ROLL SCHWEIZ AG Passwangstrasse 20 CH-4226 Breitenbach Switzerland ELECTRICAL INSULATING MATERIAL; NAMELY, MICA, MICACEOUS PAPER, AND MICACEOUS CARDBOARD;
SAMICA SAMICA-SOCIETE DES APPLICATIONS DU MICA 8, RUE D'ANJOU PARIS France ELECTRICAL INSULATING MATERIAL; NAMELY, MICA, MICACEOUS PAPER, AND MICACEOUS CARDBOARD;
SURITEX ISOVOLTA AG IZ NÖ-Süd, Straße 3, Objekt 1 2355 Wiener Neudorf - Austria ELECTRICAL INSULATING MATERIAL, PARTICULARLY IN THE FORM OF TAPES;
TEREBEC ELANTAS GMBH Abelstr. 43 46483 Wesel Germany Electrical Insulating Material;Lacquers, Varnishes and Enamels;
TEREBEC Dr. Beck + Co. AG Hamburg D-2000 Germany Electrical Insulating Material;Lacquers, Varnishes and Enamels;
U-WEDJ INSULATION AND WIRES, INCORPORATED P. O. BOX 3349 ST. PAUL 6 MN ELECTRICAL INSULATING MATERIAL.;
UNIVER ISOLA AG Isolastrasse 2 D-52353 Duren Germany ELECTRICAL INSULATING MATERIAL, NAMELY, UNIDIRECTIONAL CROSS-PLIED EPOXY E-GLASS FABRIC LAMINATES IN THE FIELD OF PRINTED CIRCUIT BOARD MANUFACTURING FOR USE IN COMPUTERS, COMMUNICATIONS TECHNOLOGY AND IN ELECTRONIC COMPONENTS IN AUTOMOBILES, AVIATION INSTRUMENTS AND MEASURING AND CONTROL CIRCUITS; BASE MATERIALS FOR CIRCUIT BOARDS, ALL IN THE FORM OF FIBER-REINFORCED PLASTIC PANELS AND PANEL BLANKS COATED WITH COPPER; BASE MATERIALS FOR MULTI-LAYER CIRCUIT BOARDS, ALL IN THE FORM OF THIN FIBER-REINFORCED PLASTIC LAMINATES AND PREPREGS, NAMELY ADHESIVE FILMS, COATED WITH COPPER; BASE MATERIALS FOR THE MANUFACTURE OF CIRCUIT BOARDS PRODUCED BY CROSS-PLYING PREPEGS MADE WITH A STABILIZED UNIDIRECTIONAL GLASS FABRIC HAVING A SPECIFIED GLASS WEIGHT, AND A SPECIFIED RESIN CONTENT;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. A bridging member for electrical terminals provides each of the connecting pins of the bridging member with a sleeve of insulating material, which extends in the axial direction around the connecting pin in such a way that an inner free space is present between the connecting pin and the sleeve of insulating material, whereby the connecting pin possesses a material constriction in the depth of the sleeve of insulating material. The connecting pin can execute equilibrating movements in the free space of the sleeve of insulating material and also can be removed from the sleeve of insulating material by means of a rotational movement.