Document MMVo0Gg7xyOvqoQoywd1omxpL

MAY/JUNE PLAINTIFF EXHIBIT i E-56 1966 INSULATION DIRECTORY / ENCYCLOPEDIA ISSUE ABBREVIATIONS SYMBOLS CONSTANTS EQUIVALENTS CONVERSION -TABLES ^ , . GLOSSARY FORMULAS ASSOCIATIONS CONCEPTS APPLICATIONS MATERIALS WIRE & CABLE CIRCUITS -- PARTS COMPONENTS TEST INSTRUMENTS PRODUCTION EQUIPMENT . MANUFACTURERS DISTRIBUTORS TRADE NAMES STANDARDS & SPECIFICATIONS NUMBER 6 MKT J--MODtfCT INPOtUATlOH Section 3-19: Wire, Cable and Assemblies (Except Magnet Wire) X New Developments ^ An insulated electrical conductor core, produced by the extrusion of a tube of polyethylene insulation which is simultaneously filled with a sodium conductor, has been made in various types for experimental 15-kv direct buried underground and aerial cables. Samples up to 138-kv have been made. The cables reportedly are more flex ible, lighter in weight, and hold promise of being more economical than conventional cables. Larger cables are expected to weigh 50 per cent less than conventional cables. The sodium metal is inherently so flexible that it can be used in solid form and therefore does not have to be stranded to achieve flexibility, regardless of conductor size. One pound of sodium, costing about 17 cents, will conduct as much elec trical current as 3^ pounds of cop per or 1% pounds of aluminum. However, the insulated sodium con ductor will be approximately 45 per cent larger in diameter than a con ventional insulated copper conductor. Sodium is highly reactive with oxy gen and water but, when encased in the polyethylene insulation, it is said to be handled with ease and safety. Hazards encountered when the insula tion is faulted have been found to be minimal according to tests carried out under actual usage conditions. Since sodium has virtually no mechanical strength, special terminations are re quired to permit the cable to be con nected to equipment. Product and process patent applica tions covering thi< new development have oeen filed by Union Carbide Corp. ^ Epichlorohydrin elastomers for wire and cable jackets and other uses are made in two types, a homopolymer called CHR, and a copolymer. CHC, which is a copolymer of epichloro hydrin with ethylene oxide. Excellent ozone resistance, high impermeability to gases, superior chemical resistance, and low temperature flexibility are some of the features reported. B. F. Goodrich Chemical Co. has introduced the new rubbers under license from Hercules Inc. ^ Polysulfone thermoplastic reported ly provides a tough, abrasion resistant wire insulation that maintains its elec trical and mechanical properties from, --150*' to over 300F for extended periods of time. The material also offers high temperature cut-through resistance as well as fabrication char acteristics that permit thin coatings (down to 1 mil) to be extruded onto wire. Other features claimed include unusually good thermal stability, oxi dation resistance, and self-extinguish ing properties. The resin is supplied by Union Carbide Corp., Plastics Div. 4 Trends noted by various wire pro ducers include continued acceptance of high strength copper allovs. in creasing usage of crosslinked poly ethylene, and growing recognition on the part of suppliers for materials which not only provide improved (, { properties but also which procesreadily. Hudson Wire Co. notes tin in the ultra-fine stranded wire range, where absolute reliability is required it is feasible to use pure silver wires instead of copper wires with protec live coatings of silver or nickel plat ing. This allows for slightly increased conductivity (108%), the elimination of any possibility of corrosion, and 15% reduction in tensile strength compared with the equivalent coostruction of silver plated copper. ^ A thermal barrier system for pro tecting communications cable cortf from heat during cable manufacture is based on a foamable latex applied variously to metal or plastic tapes used as shields or wraps for the cable core While the foam has relatively poo* electric strength, it is so effective * thermal barrier that it avoids any hig& temperature requirement for a core wrap placed beneath it. The electrical function is provided by a low-corf plastic tape, such as polvethyleng with no danaer that the heat of extr sion could impair its electric strength The foamable latex coating may Jjf foamed either by a pre-heating prd* ess immediately prior to the extnrsio<| of the jacket or by the heat of extrij sion itself. Test results indicate most desirable form to be a metal BBScoated on both sides with an adherent polyethylene copolymer and with foamable coating on one side, results in a cable with a jacket bond* to the metaJ shield. Supplier is DoJ Chemical Co. 394 Insulation Directory;'Encyclopedia issue, May/June, J966 Metals which are used lor armor provide many different types ol phys ical protection. Properties of typical metals are shown in the table* on other page*. * fillers, l***/a#fas, jarf Jaeketleg Material! As previously defined, a filler is gsed in multi-conductor cables to oc cupy the interstices formed by the assembly of the insulated conductors, Jius forming a cable core of the dejjred shape, usually circular. Fibrous fillers such as jute and cotton, in organic fillers such as asbestos and fiber glass, and plastic fillers such as polyethylene and PVC are commonly used. t Quite naturally, the primary in xiUtiion on a wire or cable is used for insulation purposes. In those cases where the primary insulation is the only covering, it may also be consid ered to be fulfilling jacketing funcdons. Jacketing provides protection against moisture, solvents, acids, alka lies, fungus, chemicals, beat, radia tion, and physical abuse such as abra sion and cutting. Jacketing also holds cable elements together and prevents contact between shielding and ground. ^ The method of applying the in sulation or jacketing material will influence end properties. Application methods include braiding, extruding, taping, and dip coating. Different forms of the same material may be applied by different methods with dif ferent properties resulting. ^JS'early all of the materials used for Rimary insulation and jacketing have Seen described in other sections and egaders should refer to sections 3-1, tt, 3*3, 3-4, 3-7, 3-10, 3-11, 3-12, 13, 3-15, and 3-16 for additional tails. In some cases, information on *agnet wires in section 3-18 would ho apply. It also should be rememered that fibrous materials are often oated or impregnated. Highlights of aportant insulating and jacketing aterials will be briefly mentioned in * discussion that follows with referx*s to the sections in which addial general data may be found-- ace many of these materials are speBy compounded for wires and bles, readers should consult the % manufacturers for specific data. Acrylic--available in fibrous form for yam servings and braids. Acrylic coating and iapragnant also available (mostly for other uses). Other syn thetic fibers find greater use for wire and cable insulation than the acrylics. In general, acrylic* offer desirable physical and electrical properties and good resistance to most chemicals and weathering. For special purpose in sulation, acrylic elastomers can be used--they provide excellent ozone resistance and good aging properties but chemical resistance is spotty--see section 3-11. Anodic Films--most of the pub licity and possible potential for anodic film insulation (aluminum oxide coat ing on aluminum conductor) is con centrated in the magnet wire appli cation area but some other wire appli cations have been suggested. The coat ing is thin, space-saving, inorganic, and resistant to extreme temperatures (3600F melting point). Although anodic film insulated conductors can be bent and processed without ruptur ing the film, flexibility is limited rela tive to other insulations. Asbestos--fibrous asbestos wire and cable insulation is used in the form of yarn servings, felts, lap, roving, and braid. Asbestos reinforced or combined with other materials also is used. Where space is important, as bestos papers and purified asbestos papers may be used. Commonly, felted asbestos insulated wires and cables are available with all-asbestos insula tion, in combination with varnished cambric (where moisture is a factor), or in combination with a thermo plastic (for switchboard work). The asbestos felt is impregnated with either a flame and heat resisting com pound or a flame, heat, and moisture resisting compound. Suitable for low er voltage work, asbestos provides ex cellent heat and radiation resistance, non-flammability, flexibility, and re sistance to most chemical conditions. It is used for power cable, rheostat wire, apparatus cable, lead wire, range wire, appliance wires and cords, mining cable, and other applications where heat is a problem. See section 3-3. Butyl (IIR-Jsobuiylene-Isoprene) Rubber--a polymer of isobutylene with small amounts of isoprene, this "is an increasingly popular insulation and jacketing material. When properly compounded, butyl rubber is characterised by excellent resistance to oxidation and aging, ex ceptional ozone resistance, and very good electrical properties. Resistance to moisture, physical abuse, and chemicals is also good. Applications include low and high voltage power cables, apparatus and equipment leads, control cables, and various other cables. It is alkali-sensitive and may revert under hot. wet conditions. See section 3-11. Cellulose Acetate -- available in yarn form for wire servings and braids as well as in film form for taped insulation. These materials are characterized by very good electrical properties per unit thickness. They are non-corrosive with moderate to good resistance to chemicals. The film has been used for lead wire insulation. Moisture resistance is good. See sec tions 3-3 and 3-13. Ceramic--ceramic insulations are available in the form of fibrous alumina-silica yarns for servings and braids and also in the form of cost ings. Heat and radiation resistances are excellent. Manufacturers should lie consulted in regard to film flexi bility and uses. Ceramic beads are another form used to provide physical separation. See sections 3-3 and 3-16. Also see mineral insulation below. Chlorosulfonated Polyethylene -- this vulcanizable material has good electrical properties and exceptional resistance to ozone. It has very good resistance to oxidation by sunlight, weather, chemicals, and relatively high temperatures. Although resili ence is generally lower than that of natural and synthetic rubbers at room temperature, it is equal or better at 212F. It is relatively resistant to oils, flame, and moisture. It is being used in some instances for integral insulation jacket applications. See section 3-11. Cotton--cotton is used for servings and braids. Flexibility and strength are good. Treatments are required to provide chemical and fungus resist ance. Heat resistance is limited. See Section 3-19: Wirt & Cable 407 I the application. PVC u probably the ings in weight ami space. ^Rhile gen Hudon Tire Co_ Ossining. N.Y.: Dr. R. B. roos! versatile of the lower cost, con* ventionai temperature wire insula* eral!)' specified for 200CC continuous operation, silicone rubl*cr has been Blodgett. The Okomte Co,, Passaic, NJ.; H. D. Cudriao, Union Carbide Corp* Plas tic* Div,, New York City; M. C Cheney, t tioru in round and ribbon forma. See known to maintain its physical and The Lewis Engineering Co, Naugatuck, section S*10. electrical properties after short time Conn.; B. J. Burkett and C. H. Weber, E. I. du Pont de Nemours & Co. Tnc. A conductive vinyl is used in many exposure at 315eC. Electrical prop Wilmington. DeL: E. J. Merrell. Phelps cases where shielding and mechanical prolection are obtained at the same time. erties remain stable over a range of temperature from extremely low to 250C. ' Dodge Copper Products Corp. Yonkers, N.Y.; W. H. Guthrie, Phillips Petroleum Co. Bartlesville, Okla.; R. S. Kelly. Inter national Wire Product* Corp. Midland Rayon--this is a synthetic used for varn serving and braid applications generally in the same applications One of the most desirable charac teristics of silicone rubber is that when burned it produces an ash. This Park, NJ.; and Walter Koval, Gary R. Squires, D. Binch. and F. T. Clark. Haveg Industries, Inc. Wilmington. Del. and Winooski, Vt. (Super Temp Wire Div.). where cotton can be used. See sec* ash. held in place with fiber glass tion 3*3. braids, will continue to be an insula SBR is a styrene-butadiene co tor. Radiation resistance is superior to polymer synthetic rubber character ized by good electrical properties and other alternative high temperature materials lying within the range of SUPPLIER DIRECTORY LISTING moisture resistance. Ozone resistance, physical properties, and chemical re sistance are generally improved by blending with other materials. In this respect, it should be mentioned that both the synthetic and natural rub 5 x 107 to 1 x 10s roentgens. See sec tion 3-11. Silk--used very little today as yam serving and braid. See section 3-3. Varnished Cloth--tape wraps of varnished cambric for insulation of NOTE: Number* in potenthetes following eoch product cowered in thii tection eorretpond with the number* thown In front ot eoch tupplier pi product! fitted here (thin Indicating which trmi tupply the product concerned). Only company nomet ore fitted here -- tee fort 1. tection *~t, for oddrouet d tupplien. told foce type Indicatet odvertiten -- tee odrerliten' fitting at bock of book for page nwnbert et adrertiiementt. bers are not always used "straight" but can be blended with each other wires and cable offer properties that lie between those of rubber and im Product* Covered la this Sectioa and other products in order to im prove properties. Thus, this discussion pregnated paper. This applies to di electric strength, flexibility, resistance listed Acaerdiae te letaietiea ad Jockettep Materials Used as Wire runs the risk of over-generalization-- wire and cable producers should be consulted for specific information. See section 3-11. Silica--silica fibers produced from melted quartz offer properties similar to fiber glass but even higher heat resistance (above 2000F). They offer possibilities as yarn servings. See sec tion 3-3. Silicone rubber -- silicone rubber extrusions offer retention of good electrical properties, resilience, and flexibility after long-time beat aging at class 180 temperatures and higher. Excellent ozone resistance, low tem perature flexibility, long life, low moisture absorption, weather resistince, radiation resistance, and corona -esistance are other characteristics, lesistance to some oils, solvents, and trong acids is relatively poor. Airraft wires, nuclear cable, lighting ire, power cable, control cable, shipoard cable, heat and cold appliance ires, lead wires, hook-up wire, ignion cable, fixture wire, and nuclear > ble are uses. In the field of high temperature ires and cables, these advantages eari lunger service life, improved :rformam.-e, safer operation, and sav to moisture and heat, and handling cable connections and terminations. It provides a greater measure of mois ture resistance than paper. In dry lo cations, it may be used without a lead sheath. It can be used for low and moderate voltage cables. See section 3-7. Vinylidene fluoride--this thermo plastic resin, a fluorocarbon, is char acterized by very good mechanical, electrical, and chemical properties. In primary insulation and in jackets for multi-conductor cables, it has per formed successfully at temperatures from --80 to 300F. The material can be easily extruded, or applied as a film, or solution or dispersion coating. PVF; offers excellent resistance to abrasion and cut-through. Radiation crosslinking provides improved heat resistance. Applications include hook up. control, aircraft, lead, and com puter wires and cables. See section 3-10. Acknowledgment The editors are indebted to the follow ing individuals who have reviewed, made suggestions, or contributed information for improving tli section: Lillian Nygren. Wire and Cable Dept., General Electric Co., Bridgeport, Conn.; K. M. Akin, III, Acrylic (7, 29. 55( Anodic Tumj (42) Aaeesto* <3, 7. 9. 13. It. It. 31, 41. 47. S3 66, 77 61. 66. 10) Butyl rubber (2. 7. 1. 10 II 13 18. 2$ 29 30 31 32. 33. 41, 46. S3. 59. 73. 77. 81. 90) ` Ceilulet or foamed dielectric (2 4 9, II IS 19 21. 31. SO. SI. 52. 63. 77. 79, 83, 88) Celluiote acetate (9. 19 29 36 SI 63) Ceramic (I. S. 24. 28. 3$. 43, 57, 62. 65. 94. 96) Chlotowlfoneted polyethylene (9, 13, 18 2S 29 3i, 32. Si. 55. 63'- ' Cotton (7. 9, II. 16. 18. 19, 21. 23. 2S. 29. 36. 47. 50. SS. 64. 6S. 88. 92) Ethylene propylene rubber (4 9 11, 13 18 25 29 30, 31. 41. 46. 59. 73) '' Ethylene vinyl acetate (9. 16 . 21, 29. 31. 51. 54) fiuoroelettomerj (9, 29. 51, 54. 72. 92) Fiuorlneted ethylene propylene (4. 6. 9 I! 13 18 19, 25, 29. 34. 38, 40. SI, 52. 63, 64, 76. 80 81 86 87. 95) Sat filled (7. 29. 59) Glau fiber (3. 6. 7. 9 10. t! IS, 18. 19 2l 23 IS 29. 3i, 34. 36. 38. 39. 50. 51. 58. 64 , 65 . 81 82. 86. 9(, 92) lonomen (29. 51) Mica (13. 17. 19. 30 . 84 86) Mineral (magneiium o*ide) inflated (29 67) Natural ruboer (4. 7. 9, 25. 29. 32 46 S? 77 . 79) Neoprene (2. 4. 7. 9. M 13, 18 2S. 29 3 i 32 33 41. 46. S3. 59. 7C. 73 . 76 . 77 . 79 . 81. 90 . 92) ' Nitriie butadiene (NBR) (9. 25. 2. 46. 73 79. 81) Nitrile butadiene.-ooiyvinyl chloride biend (9, 16 25 . 29. 31 5:. 73'. Nviot (3 4t 7. 8 9 li 13 IS 18. 19 2! 23. 25 29. 31. 32. 33 36 41 45. 46 47 SO, 51 52 54 55 63. e* 76 77 7; 7' 8: 8S 9C C fi'.eo f2i. T S' 72 . 9eoe- (7 le 2: 2* 3C 45 50 7c 771 ro.*a -- ice floe- 1 5 16 2i 2: 25 3i 5 7; 6: 8< . rc. vej-e- fee- . it. 25 2- 5 5 t-. 92 n 7 li 13 It 23 25 3e 47 4 S'. 54 7: 7e $ 8t 9S: Poive-nven* (2 4. 4 7. 8 9 JC M. 13 IS. 16 18 19, 21. 23. 25. 29. 31, 33. 36 40. 4|. 45. 46, 50. 51. S2. 54 , 59 63. 64. 73 76. 77. 78. 79. 81 83, 88 89. 90) Polyethylene, cnemceally crow-linked (2. 7. 9, 13. 18. 19. 21. 25. 2. 3l 32. 33, 41. 46. 59. 77) Pclyetnylen* Irradiated (3. 29. 33, 41, 51. 63. 65. 85; ' toivelhvlene buicJ.cne (IK 25. 29. 77j Polyimioe film (4. |3. 15 U. 21. 2S. 29, 34, 38. 39. 48. SS. 64. 65. 75. 76. 86. 88. 9S) Section Fire & Cable 411 Polyimidg enamel over F6P or TFE f H, 2S, 27, 34, 3*. 43. 64, 74. II. 17) Polyphenylene oxide (27. $1} Polypropylene (4. S. 7. '5. II. II. 21. 2S. 29. 21. 24. 44. SI. S2, 42. 74. 77. 77. II. M) Ply*ulfoe (4. 17. 21. 2S. 24. SI. 42. 74) Polytetrafluoroethylene (7, (0. II, 13. 14, (I. 17, 20, 2S, 27, 27. 22, 24. 27. 41. 51. S2, 43. 44, 73. 74, 77. 77. 80. II, 14. 17, . 7), 71. 7S) Polytrifluoroc+Horoethylene (7. 10. 18, 2S, 27, 23, 24. 2*. 72. M) Polyurethane rubber (4. 7, 7, 17. 27, 32, 47, SI. 73, 77. II) Polyvinyl chloride (2. 2. 4. I. |, 7, 10. !!. 12. 14. II. 17. 20. 21. 25. 27. 31, 32. 33. 24. 38. 41. 45, 44. SO, SI. 52, S3, 54. 54. 57. 43. 44. 71. 73. 74. 77. 78. 77, W. 81. 82. 83. 84. 87. 88. 90. 72) Polvvinvildena fluoride (3. 4, 20, 2S, 27, 31, 33, 34, 5>. 34) Polyvinylidn fluoride, erot*-liked (3, 27. 23. 67) Rayon (4. 7. II, 18. 2!, 29, 41. 44, SO. 51, 72) Silica fiben (7, 34. 51. 65) Silicone rubber (4, 7. 7. tO. 13. 16. 18, 17. 25. 27. 30. 31. 32. 33. 41, 44, 44. SI. 57, 72. 73. 77. 78, 77, 81. 82. 90. 921 Silk (4, 7. 23. 47, 55) Styrene-butadiene (SIR) (7. 13. 31. 44, 77. 70) Varnished cloth (7, 13. 27. 30. 31, S? 70 77) Ueted According to Appflcottee, FeacHea. Type, er Perm ef Wire Aerial (2. 3. 4. 7, 7. II. 13. IS. 14. 18. I?. 20. 22. 29. 31. 36, 41, 44, 45. 44. 48, 51. S7. 65, 76, 77. 81. 84. 70) Aircraft and missile {3. 4, 5, 6, 7. 7, 10, II. 13. 14. 15. 16, 18. 17. 20. 21, 22, 23. 24, 2S, 27 31. 34. 36. 38. 40. 41. 43. 4S, 44, 48. SO. SI, S2, 54, 55. 63. 44. 65. 64. 67, 73. 75, 76, 77. 78. 77, 80. 81 86. 88. 72, 73, 74. 75. 76) Alloy (not insulated) (23. 24, 37. 42. 46. 47. SS. 78) Aooeratvis (3. 4, 7, II, 13, 15. 16. 18, 19, 20, 21. 22. 27. 31. 34. 4, 51, 54. 55. 57. 63. 64, 69 76, 80, 81, 36. ?0, 95, 96) Appliance (3. 4. 7. 9. 10. II, 13 IS. 16 18 I?. 20. 21, 23. 24. 25. 29, 31. 32, 34, 36. 41, 47, SI, S3. 54. SS, 63. 64, 67, 76. 77. 78. 81. 86. 88, 90. 76) Armored (3. 7, 13. 15. 16. 18. 17. 23. 27, 31. 40. 41. 44. SI. S7. 43 . 77, 77. 83, 84) Automotive (3. 4, 6, 7, 9, 10. 13. IS, 16. 17 18. 21. 23. 25. 32, 41. 45. 44. 47.SO. 51. 55, 63. 74. 7S, 76, 76) 8alloon Insulated (17, 27. 83) Bare (not Insulated) (7. 10. 12, 16. 18. 23, 25, 27. 37. 42. 46, 47, SS. 67, 81) 8uHding (2, 7, 15. 16, 18. 21. 29. 45. 46. 63. 70. 77) Cable terminatlonj (I, 4, 14, 20. 22, 30 32 33. 38. 44. 61, 6S. 64, 67. 79) Clad (not insulated) (3. 16. 20. 27, 37. 84) Coaxial (2. 3. 4. 5. 6, 7. 7, 10. II 13 14 IS 16, 18. 17. 20. 21. 27. 31. 34. 36. 39. 40. 41, 43. 45. 46. SO. SI. 52. 60. 63. 64. 69. 76. 77, 78, 77. 81. 83. 85. 86, 88. 89. 72, 9S) Coiled (3. 4, 7. 7. 10, 16. 20. 23, 29. 41. 47, 79) Communication (3. 4, 6. 7. 8 9 10 II 13 IS 16 17. 18. 19. 20. 21. 22. 23, 29. 31. 33. 34. 36', 38. 40. 41. 43. 45. 46. 48. 50. 51. S4. 59. 63. 64. 65. 69. 71, 76, 77, 78. 79. 81. 83. 86. 88. 92. 93. <7S) Control (2. 3. 4. 7. 8. 9. 10, II, 13. IS. 16 t8. 19. 20. 21. 22. 23, 29, 31, 33, 34, 34. 38. 40. 41, 45. 44, 4. SO. 51, S3. $4, 55, S9, 63. 44. 65. 69. 70, 71. 76, 77 78, 77, 80. 81. 83, 86. 88, 70. 92) Cord sets (3, 7. 7, 10, 16. 20. 29, 33. 41. 46. S3. 60. 63. 78. 90) Delay (40. SI. S2, 55. 76) Direct burial (2, 3. 5. 7. 8. 7. II. 13, IS. 16, 18 17 21, 29. 31. 40. 41. 45. 46. SO, S9, 63. 70, 77. 79. 83. 90. 7S) Electronic (3. 4. 6. 7. 7. 10. II, 13, IS. 16 17. 18 19. 20. 21. 22. 23. 2S. 29. 31. 37, 34. 36. 45. 46. 8. SI. 54 55. 63. M. 67 71. 73, 76, 77, 78, 77, 80. 81. 33. Sa 37. 9l. 72. 95, 76) future 4 7, !0. t1. 13, IS. 16 18. 17, 21. 23 2S 27 31. Is 4$. 5. 43 44 6? 77 73. 81 26 3o 70 76) Ha-net!** and assembles (4, 9 13 16 20 22 26 27 :2 33. 36 38 *0 44 4S. *9 60 63 65 66 o7. 67 73 76. 73 79 90 81, 72. 73 7S) Heati-g (S. 7. 13. 17. 17, 21. 23. 2S, 27. 31 45. 47, 55. M. 67. 76. 77. 78, 86. 88) High e-'oerature (3. S. 6, 7. 7. 10. II. 13 14 IS 16. 17. 18. 17. 20. 21, 23. 24. 2S. 27, 31. 34 36. 40 41. *4 4$, 47. 51. SS. S7. 63. 64. 6S 67 69 73. 76 77. 73 . 77 31. 86. 88. 70. 71. 72. 74, 9S. 96) M .jh (2. 3 6, 7. 9 '0 'I I). 14 !5 :6. t7 13, 17 20. 21. 23 25. 27. 31. 32. 33 36 37 0 <3 44. 45, 46, 50. SI. 57, 63. 64. 45, 70 73 77 78 79 31, 36. 70. 9S) Hook-up (2. 3. 4. 6. 7. 9. 10. II. 13. IS. 16. II. 20. 21. 23. 2$. 27. 31. 34. 36, 31, 37, i. 44. 4S. SO Si S2. SJTS4TO. 64. 67, 71, 76. 77. 78. 79. 10. II. 82. >6. It. II, 72, TS) ignition (3, 7, 7. 10, 13, IS, 16. II. 23. 25, 29. 32. 41. 4$, 47. II, 95) Laminated (7. 22. 31, 38. S4, S9. 79. *0. 9$) Leed covered (2. 7. 13. II. 29. 3l, 46. Sf, 70. 77) Lighting (2, 7. U, 16. ll. 19. 23, 25, 29. 31. 36. 45. 46. St. 63, 76. 77, II) Line (7. IS. 16, 18. 20. 29. 46. 63. 77. 81) Machine tool (2. 3, 4. 7. 10. II. IS. 16. II, 21. 2S. 29. 31. 36, 41. 4$, 46 48, SI. S). S7, 63. 64, 77, 78, 8$)--------- Mining (2. 3. 7, II, 13 14. IS. 16. ft. 21. 29 31 41. 44. 59. 63. 64. 70 77. 90) Motor (oed (7, 9. II. 13. IS. 16. 18. 19. 21. 2S. 29 31. 34. 36, 41. 46, SI, 59. 63. 64. 76. 77, 78 81 86 70) Multi-conductor (2, 3. 4. S. 4, 7 7. 10. 13 14 IS, 16. 18, 17, 20. 21, 22. 25. 27. 31. 32. 33. 34, 36. 38. 37. 40. 41, 4S. 46, 48, SO, SI. S2, S3. $4, S7, 40, 63. 64. 6$, 49, 70. 71. 73. 76. 77. 78. 77, 80, 81, 83, 84, 70. 71, 72. 75) Plated or coated (not insulated) (6. 12. 16. 18 2S. 29, 37. 40. 42. SS. 81, 84) Power (2. 3, 6, 7, 10. 13. IS. 14. 18. 20 21. 2S. 27, 31. 33, 38. 41. 4S 46. $7, 70, 74. 77. 77, 81 83 86 70) . Radm aaJ television (2. 3. 4, 6. 7, 7, 10. 11, 13. IS 14. 17, 18, 17. 20. 21. 23. 25. 27, 31. 34. 36. 38. 40. 45.-SO. 5tr92. S4, 60, 43, 64. 67. 71. 76. 78, 79, 81, 86. 72. 94. 76) Resistance (3, 4, 5. 7, 10. 13. 14. 17. 17, 23. 24, 2S. 31. 32. 37. 38. 47. 51. 55. 64. 76. 78. 86) Ribbon (flat) (3. 4. It, 22. 23. 27, 32, 34. 36. 38, 46. 48, 54. 63. 47. 74. 77, 80, 84. 95) Service (2. 7, 10. IS, 16. 18. 20, 29. 31. 46. 63. 70, 77) Service entrance (2, 7, 16. IB. 27. 31. 36. 63. 70. 77) Shielded (3. 4. 6. 7, 7. 10, tl, 13. IS. 14, 18. i7. 20 21. 22, 24, 2S. 29. 31. 34. 34, 38. 40. 45. 46, 50. 51. S2. S6. S9, 64, 6S. 69. 70. 73. 76. 77 , 79, 81. 86, 88. 90. 91. 92. 93, 95) Shipboard (3. 7. 10. 13. 14. IS, 16. 18. 19 21. 22. 29 31. 33. 34. 40. 45. SI, 59. 63. 64. 69. 73. 76. 77. 79) Signal (2. 3, 4. 5. 7. 10. II, 13. 15. 16. 18. 19. 20. 21. 22. 23. 25. 29, 31, 34, 38. 40. 45. 46. 48, SI. S7 63, 64. 73. 74, 77. 79. 81. 83. 86. 70. 9S) Submarine (4. 7. 14. IS, 14. 22. 23, 27, 31. 13 38 40 4S. SI. S9. 63. 64, 69. 73. 77, 79. 83, 7S) Switchboard (3. 4. 7. 9. II. 13. IS. 16. 18. 19. 21, 29. 31, 38. 40. 4$. 50. 51, 63. 64. 77, 83. 88) Telephone (3. 4, 4. 7. 8. 9. 10. M. 14. 18. 21 23. 29. 36. 38, 41. 45. 46. SO, S4. $9. 63. 77. 81. 83. 88) Thermocouple (4. S. 13. 16, 19. 23. 2S, 31. 34, 39 41 45. 47. 51, 56. 65. 67. 49. 76. 77. 81. 94) Tinsel (not insulated) (14, 29, 37) Underground (2. 3. 7. 13. 14. IS. 16. 18. 29, 30, 31 33. 45. 46. 59, 70. 77, 83 . 90) Suppliers of Preeedia^ Products 1--Advec Products, Inc.. Subsidiary of GTI Corp. 2--Alcoa. Rome Cable Oiv. 3-- Alpha Wire A--Amereee Corp.. Gevitt Wire & Cable Co. Oiv. S--American-Standard. Aero Research Instrument Oeot. ^Amohenol Corp., Amphenol Cable Oiv. 7-- ANACONDA WIRE ANO CAILE CO. 8-- Ansonia Wire A Cable Co. 9-- 1ELDEN MANUFACTURING CO. 10-- Birnbech Radio Co.. Inc. 11-- 8RANO-REX OIV., AMERICAN ENKA CORP. 12-- Camden Wire Co.. Inc. IJ--Cerro Corp., Rockbestos WVe & Cable Co. Div. 14-- Chemolast Inc. 15-- Chester Cable Coro., Subsid'a-r o` Tennessee Co-o. l^--Coieman CaWe 5 Wire Co. 17--Co v-blj Tec-nical CfO- a V'cj D IS--Ce'.r.-en-j- Coccer & S-ee. Herfieid W r 4 Cab'e Div. 17--Continental Wire Coro. si 20-- Oeburn Electronics & Cable Coro. 21-- Dielectric Materials Co. 22-- Digital Sensor*. Inc. 23-- Driver-Harris Co. 24--Ouramie Products Inc., Kewecki Chemical Co. Oiv. 75 -- Pll'4 Carp . Tl.n P/*..|.-,'i' Co & Cable Wii* 26--Eiectrovert Inc., Eleetro-Mecnanical Oiv. ji.d Components Equipment Div. 27-- Eflflo Corp. 28-- Prenehtown Po'ceia< Co. 29-- GENERAL CAtLE CORP. 30-- General Electric Co., Intuleimg Materiel*] Dept. 31 6--oral PoctrTc Wire 8 Cable . 32- ^Gentrel Motors Coo.. Packard Electric 33-- General Refer Corp., General Reliance Dtv*< >4--Haveg Industrie*. Inc,, Heveg/Super Tew wire Div. 3S--HEANY INDUSTRIAL CERAMIC CORP. 3*--Holvose wire and Cable Corp. 37-- HUDSON WIRE CO. 38-- Hygnes Aircrew Co.. Applied Techniques Oeot.. CIU lab. 37--into Electronic Products. Inc. 40--International Silver Co. Times Wire & Cable Oiv. 41-- lntemetionel Teleohone 6 Telegraph Corp,? ITT Wire 4 Cable Oiv. -8 42-- INTERNATIONAL WIRE PRODUCTS CORP.2 43-- isoiantita Manufacturing Corp. 44--Ja-8ar Silicone Corp. j_R| *S--Judd Wire Manufacturing Coro. 4^-Kaiser Alum-num 8 Chemical Sales Inc. Electrical Products Div. 47-- The Kantbal Corp. 48-- Kent Coro.. ACI Div. 47--Krafelt Co. ``,~t 3d 50-- lent Electric Manufacturing Co. 51-- l. Frank Martel 4 Son* -7 52-- Microdot Inc.. Connector/Cable Products Drew 53-- Miller Electric Co. 54--3M CO. 55-- Molecu Wire Corp.. Subsidiary of Superior]? Tub* Co. vk 56-- Samuel Moore 4 Co.. DeKoron/Synfies OIt-JE 5?--National Beryliia Corp. 58--New Plastic Corp.. Nuple Manufacturing C*s 57-- The Okonite Co, Subsidiary of Ling-Teme^-^ Vouqht. Inc. 60--Paraplegic* Manufacturing Co, Inc. '4Dr> Cable Assemblies -- Wire Harnesses Complete Sub-Contract Manufacturing Facilities > ` Free Utcrotur* on request - Dept. ID 4 PARAPLEGICS MANUFACTURING CO. - 384 North Yerk Meed, lensenvllle, III. * 6<--Permali, Inc. 62-- Permoluster. Inc. 63-- Phalo Corp, Transitron Electronic Corp. 6^--Philadelphia Insulated Wire Co. 68--Phy*ical Sciences Corp. i^The Pyle-National Co, Connector Oiv. 67-- Pyrometer Co. of America, Inc. 68-- AAY8ESTOS-MANHATTAN, INC, ASI TEXTILE DIY. 69-- Rayehem Corp. 70-- REYNOLDS METALS CO. 71-- Rockland Insulated Wire & Cable Co, 1 72-- Ronihor Reiss Corp., Synthetic Product* 0 73--Rutherford Research Products Co. 74-- St. Marys Caroon Co. 75-- -G. T. Sebieldahl Co, Electrical Product* 76--Simples Wire 4 Cable Co, Hitemp Wire* D.v. 77-- Simplex Wire 4 Cable Co, Power aad Drv. 78-- The Singer Co, Wirekreit Climate Co* Oiv. ' 79-- South 8av Caele Corp. 88--Soectra-St.- o Carp. 81--Standard w>e end Cable Co. 32-- SUFIEX CORP. 33--S.oe-- or Cat's Co-D. 34--Svl-an 9 ;. ? :$--Tf r* Zft. 3a--Tntc ? '";. s-*3 W r Ca o- Cer.isie Cc-o. 37--t-e.--a; w-e j; America. In;. - 98--"hermetic* Inc. 87--United-Cerr In;, Cinch Mar.j'ac'wring Co Oiv. 90--Western Insulated Wire Co. ?i--Wirecraft Product* Inc. 92--Wireonic* P-oouct* Co. ,3--The Z!ooe'tu;*q Co. <4 1 .................. . .. ...................... . A , 9S--W. L. GORE 4 ASSOCIATES inC 36--Maryland Lava Co, Inc. -312 Insulation Directory/Encyclopedia Issue, May/]une, 1966