Document rxJmwdEpM5y3xa0YzX0XdnpRV

CONTINENTAL SOME APPLICATIONS: GIVES YOU ENGINEERING TALENT; WE SOLVED MANVMLECTRfCAt' SOOT BLOWERSBOILER ROOMS OPEN HEARTHS STEEL PLANTS AND ELECTRONieWl CABLE1 TURBINE CONTROLS' GLASS PLANTS PROBLEMS. LADLE & MT CRANES RHEOSTATS . DIESEL LOCOMOTIVES. HEAT TREATING,. , I JRd\NFORMERS CEMENT KILNS&' --r A FEW WE HAVT SOLVED:. BALLASTS- APPLIANCES ` - 2000 F Applications MOTORS*4fc- ELECTRICAL HEATING-: Improved Abrasion Resistance- - Low Noise Characteristics Water Tightness SIUCONE RUBBER POWE* AND CONTROL CABLES' HAVE BEEN FtEUtt^l PROVEN- CONTINENTAL'S RESEARCH, OUAUTV CONTROL, ENGINEER***'^ o e Multi Conductor (75 C to 750 F) ING KNOWLEDGE, HAVE PROVED THE VALUE OP SILICONE RUBBER FOE HIGH TEMPERATURES, WET OR DRY INSTALLATIONS^ -. . - . ` RBB 00277 SC-ELEC-00050 WH SHOULD^SPECIFY SILICONE RUBBERfc^&l INSULATED Wl1 CABLE? -because SILICONE RUBBER offers these distinct advantages as an insulation HIGH TEMPERATURE OPERATION MOISTURE RESISTANCE FLEXIBILITY CORONA RESISTANCE OZONE AND SUNLIGHT RESISTANCE RELIABILITY RADIATION RESISTANCE EXCELLENT ELECTRICAL CHARACTERISTICS Silicone Maximum Service Temp., F 500 (+) Tensile Strength, psi Room Temperature 800-1800 Minimum Service Temp., F Static Dynamic -150 -100 Tensile Strength, psi 25OF 400F Abrasion Resistance Oil Resistance 850 Resistance to 150 ppm Ozone at Room Temp. Under Stress 400 Good Elongation %, at Room Temp. Elongation % 2S0F 400F- Good Tear Resistance If/in. at Room Temp. Beyond 2 weeks 100-800 350 200- 40 to 250 RESISTANCE TO Durometer Hardness Range 20-95 Service Life at 308F In Dry 4|lr Continuous ^ TEMPERATURE EXTREMES Heat resistance usually involves the change in physical properties which may result from exposing insulating ma terials to anticipated service operating temperatures over an extended period of time, or to short-time emergency overloads which cause a temperature rise well above normal operating temperatures. The following table may be used as a general guide for rating serviceability of standard silicone elastomers on a times-temperature basis. It is important to recogni*$ that the information shown in the following table appgMeonly to a standard, heatresistant silicone rubber compound designed for use in IPCEA standards. Silicone rubber-compounds having much greater resistance to high temperatures are available and are presently being used in applications of an extremelysevere nature. The foregoing estimate of useful life is based upon CONTINUOUS operation at a conductor temperature as shown. The end-point in the determination of useful life has been- arbitrarily selected as that point in time at which the elongation of the insulation has been reduced to a value so low that the material is no longer able to withstand severe and repeated flexing about a small radius. If the cable is not subjected to continuous operation at high temperature-, or if the application does not involve severe flexing, the useful life will be significantly ex tended. For example, in non-flexing service, useful life at 250F is more than 20 years- The following ARRHENIUS plot wilt serve as an indi cation of anticipated service life for various heat-resis tant grades of silicone rubber insulation. ESTIMATED USEFUL LIFE OF A TYPICAL SILICONE RUBBER Service Temp. Useful Life* 250F 3OOF 400F 500F 10 years 5 years 2 years 3 months The resistance of silicone rubber compounds to ex tremely low temperatures is an important feature. Certain compounds have a brittle point below -150 F. However, of paramount importance is the fact that the flexibility of the rubber is essentially unchanged over the temperature/*"^ ! range from -100 F. to --80 F. No problems will be countered in handling stiff wire or attempting to train it into place during the cold-weather months when silicone , rubber is used. RBB 00278 I RADIATION RESISTANCE Silicone rubber is the only flexible insulating mate rial combining excellent heat resistance with a high level of radiation resistance. In severe flexing ap- fications, silicone rubber insulated- wire can with stand exposure up to 10* rads and stilt retain useful properties. . >r FLAME RESISTANci^fe^ # Self-extinguishing silicone rubber compounds- are available which provide flame-resistant insulation for those applications where this characteristic is de sirable. These compounds are capable of passing the Underwriters' Laboratories vertical flame test and the flame test of specification MIL-W-16878 even when applied to the smallest size conductors and without the necessity for flame-resistant outer pro tective coverings, braids, or lacquers. FIRE RESISTANCE When burned, silicone rubber leaves a non-conduc- tive silicon dioxide ash which is an excellent die lectric and which permits continued operation of the cable for an indefinite period. Cables insulated with organic materials fail within 1-10 minutes exposure to open flame, whereas silicone insulated cables continue to operate for hours, even when subjected to some vibration. - In pre-installation tests on Navy power and control cable, samples are exposed to flame from a 2<* rib bon burner. Samples are positioned directly into the flame and voltage is applied between conductors. The sample is expected to maintain electrical inte grity for at least 3 hours. The internal temperature approximates 1800 F. during the test, but the silicon dioxide is retained by a glass braid and continues to insulate. ^ ELECTRICAL PROPERTIES The electrical properties of silicone compare favorably with or exceed the best organic insulation materials. The outstanding advantage of silicone is that it retains excellent characteristics over a wide temperature and frequency range. DIELECTRIC FATIGUE The extreme resistance of silicone rubber insu lated wire and cable to high voltage ionization permits operation of silicone rubber insulated wire and cable at high voltage and temperature levels without failure. Corona resistance ap proaches that of mica with the added advantage of flexibility. Fatigue life under, continuous stress is high. High temperature organic poly mers exhibit a far more rapid decrease in this characteristic when subjected to voltage for a prolonged period of tima- DIELECTRIC STRENGTH for a typical silicone rub ber insulation is shown below over the tempera ture range 80 F to 50Q F. It will, be noted that the volts/mil electric strength remains essen tially constant, throughout the temperature range under both fast rise (1000 volts/second) and slow rise (2000 Voits/minuteK RBB 00279 DIELECTRIC STRENGTH VPM DlBXCTOIC STRENGTH v*. TEMPERATURE OF A TYPICAL STOCK 600 f-f 1 FAST RISE 500 | | SLOW RISE 400 CHEMICAL RESISTANCE Silicone rubber's resistance to chemicals is parti cularly useful at temperatures which prevent the use of other elastomers. The following table shows the effect of a variety of materials on a general purpose, silicone rubber compound after one week's immer sion at 77F. r~ 300' 100 200 300 400 500 TEMPERATURE. F Material Height Volume Durometei Change Change Change % % Pouts CORONA AND OZONE RESISTANCE Ozone and corona resistance should be distinguished as they affect insulating materials. Corona, the ioni zation of gas which leads to a discharge current of ionized particles, can easily damage and deteriorate electrical insulation. Continued corona discharge, eventually causes electrical failure. The fact that corona discharge in air is known to ' generate ozone, and that corona attack of elastomers produces surface cracking, does not necessarily mean that ozone attack is the only factor involved. Evidence indicates that corona damage can occur in the absence of oxygen. Ftuoro-carbon materials, such as TFE resins, have good ozone resistance but degrade rapidly when subjected to corona. Silicone rubber is outstanding in its resistance to both ozone and corona conditions. To determine the resistance of silicone rubber in sulated wire to high voltage gradients, samples of tt20 AWG wire with 3/64 inch wall of insulation have been subjected to a 10.000 volt potential while wrapped in helical form {outer surface elongated 25%) and placed in an oven at 250 C. for 100 hours. There were no signs of stress cracking or corona erosion at the con clusion of this tesU. Under these conditions organic rubber insulations failed within a few minutes even when the test was conducted at room temperature. FUNGUS RESISTANCE Properly cured silicone rubber will not support the growth of fungus. Samples of silicone rubber have been successfully tested against the two major military specifications for fungus resistance: Mll-F-8261, Fun gus, Resistance Tests, Aeronautical and Associated Materials, General Specification For; and MIL-3-5272A, Environmental Testing, Aeronautical and Associated Equipment, General Specification For. The fungi in cluded in these tests were: Aspergillus Niger, Asper gillus Flavus, Trichodema T-1. Chaetomium Globosum, Penicillium Luteum, Memnoniella Echinata. ACIDS Nitric cone. Nitric 7% Sulfuric cone. Sulfuric 10% Acetic cone. Acetic S% Hydrochloric cone. Hydrochloric 10% Hydrochloric 3% +10 +10 -30 <1 <1 -2 Disintegrates <1 <1 -2 +2 +3 -4 +4 +4 -8 + 1 +1 -6 +2 +4 -4 <1 <1 -2 BASES Sodium Hydroxide 20% <1 <1 -2 Sodium Hydroxide 1% <1 <1 -4 Ammonium Hydroxide cone. +2 +2 -4 Ammonium Hydroxide 10% +3 +2 -6 SALTS Sodium Chloride 10% Sodium Carbonate 2% SOLVENTS Ethyl Alcohol Acetone Tolusene Gasoline, Regular Gasoline, Aviation Mineral Spirits Carbon Tetrachloride <1 <1 -2 <1 <1 -0 +5 +6 +75 +65 + 60 + 65 +130 +6 +15 +120 4-130 +110 +110 +110 -10 -15 -30 -25 -30 -30 -25 HYDRAULIC FLUIDS Hollingshead H-2 Hollingsheads H-2' Skydrol Skydrol1 PRL3161 PRL3161' OILS Castor Oil Lard Oil Unseed Oil Mineral Oil ASTM #1 Oil? ASTM #3 Oil ? Silicon Oil SF96 <100)J Silicone Oil 42,000 cstk.2 +4 +9 +4 +7 +5 +9 <1 <1 <1 +5 +3 +20 +25 +9 +5 M2 +4 +8 +7 +9 <1 <1 <1 +6 +5 +31 +35 +10 -10 -15 -8 -10 -8 -15 -4 -4 -2 -6 -6 -20 -25 -12 OTHER Water Hydrogen Peroxide 3% Pyranol 1476 <1 <1 <1 <1 <1 <1 +4 +4 -8 `70 hours @ 212 F. '70 hours 300 F. RBB 00280 REPRESENTATIVE COMPOUND DATA for wire & cable. (CWC TYPE CC2101) RESISTANCE TO WEATHERING Silicone rubber resists the deteriorating effects of sunlight, ozone, and gases which cause weathering. Inherently water repellent, silicone rubber is not af fected by moist operating conditions. Very dry con ditions and low humidity will not leach, dry out. or affect silicone rubber in any way, at any temperature extreme found in nature. Silicone rubber also has good resistance to de teriorating agents found in rain water: chloride, sul fate. nitrate, and hydrogen ions. Surface water which may have leeched minerals, acids, bases, and stats from the soil normally has no detrimental effect on silicone rubber. Silicone rubber wilt effectively re sist the concentrations oFsuch materials found in surface water. . INERTNESS An inert material, silicone rubber is odorless and tasteless. Because it is extremely stable and con tains no sulphur or other acid producing chemicals, it does not cause staining, corrosion, or deteriora tion of other materials with which it comes in con tact. TYWCAt VALUES.*- COMPOUND CC210Y Color CV/HAV (on wiro) Tonsil* Strength, pot Elongation, % Press Cure 10 Min,/275F (Slabs) Hardness. Shore A Tonsil* Strength, psi Elongation, % Oven Cura 1 Hr./300F (Slabs) Hardness, Shore A Toneile Strength, psi Elongation, % Tear Strength, Die B. psi Oven Cur* 24 Hi*./300F (Slabs) Hardness. Shore A Tensile Strength, pei Elongation, % Tear Strength. Die B, pi White 1100 300 56i5 1050 42S 62*5 1075 375 100 645 1050 350 90 PHYSICAL PROPERTIES AFTER HEAT AGING Hear Aging 24 Hrs./480F (Slabs) Hear A Hardness. Shore A Tensile Strength, pei Elongation. % Heat Aging 96 Hr*./48QF ($taba| Hardness, Shore A Tensile Strength, psi Elongation, K Heat Aging 60 Days/41QF (Slabs) Hardness. Shore A Tensile Strength, psi Elongation, % 67-5 900 240 68*5 750 190 72:5 750 125 ELECTRICAL PROPERTIES' Volume Itoiittivtty# ohm*cm IR(K> Value Electric Strength, volts/mtl Dielectric Constant. BO cps Power Factor, 60 epe 4 x t0'$ >4000 650 3.3 0.002 WATER ABSORPTION2 70 Hrs, in H 9 at 212F Hardness Change, Points Volisne Change. % Weight Change, % 168 Hr*, in H 0 at 168F Hardness Change, Points Volume Change % Weight Change, % Corrected Water Absorption, mg/in 2 Water Extractable*. mg/in2 ACCELERATED WATER ABSORPTION Elsctrical Method3 Increase in Capacitance. Max. % 1 to 14 days7 to 14 days Stability Factory 14 days in 7SC water Gravimetric Method Water Absorption, mg/in 2 +3 -1-1 0 +2 0 0 +6 +3 <2.0 <1.0 <1.0 <10.0 RBB 00281 sw SILICONE RUBBI GLASS BRAIDS MOTOR LEAD WIRE 600 VOLT 150C~200C U.L APPROVED IN SIZES #*-#4/0 AWG STYLE #3125 # 3126 200C STYLE #3127 #312* 150C insulation, glass braid or braid*, high temperature silicone varnish. USES--For hazardous location motor* where exposed to tempera* tvro* not exceeding 200C (or 150C depending on stranding) or internal wiring of appliance* where exposed to temperatures not exceeding 200C (or 150 depending on stranding). ^ APPROVED BY--Underwriters Laboratories Inc, in four styles. i 5 L 4 BONDED GLASS MAID SILICON! BUUIK STRANDED CONDUCTOR t Sit* AWG 8 6 4 2 1 1/0 2/0 3/0 4/0 8 6 4 2 1 1/0 2/0 3/0 4/0 TABLE SRG-S600 U.L STYLE 3125 600 VOLTS 200C *iiw--w-v**n- -^ 19/.0295 19/.0372 I9/.0469 19/.059! limWIw Well--*4H 4 4 4 4 SIM 1re14 Wen--Mil* 10 10 10 10 Wiln4 0.0. Indw* .299 .337 .386 .447 AiRpod^ H*C 115 154 205 280 TABLE SRGG-S600 U.L STYLE 3126 600 VOLTS 200*0 19/.0664 5 20 .539 325 19/.0745 5 20 .580 385 19/.0837 5 20 .626 450 19/.0940 5 20 .667 520 19/. 1055 5 20 .735 600 "r- TABLE SRG-X600 I. U.L STYLE 3127 600 VOLTS 1S0*C I33/.0111 4 10 .317 115 133/.014 4 10 .362 154 133/.0177 4 10 .421 205 133/.0223 4 10 .490 280 TABLE SRGG-X600 U.L STYLE 3128 600 VOLTS lSO'C 259/.0I8 5 20 .585 325 259/.0202 5 20 .631 385 259/.0227 5 20 .684 450 259/.0255 5 20 .743 520 259/.0286 5 20 .808 600 1 w*ieie tk*./M ft. 90 140 210 300 405 485 625 765 895 90 140 210 300 410 490 630 770 900 i RBB 00282 0 * '=K'S- Tinned coppar, axtifl^^iilkon* rubbor, 9km braid. USB--For hazardousfoEotion motor* whara axposad to tompofoturas not oxcaodmg 200C intarmittantly (15QC normal). APPROVAL--For u> at I50C normal or 200C AIEE Intarmittant Sarvica. coNMKiot . ouooNt tuun ONDEB gum tMUD TABLE SPG-X600 Sit* AWG 22 20 18 16 U 12 10 5>tm4 7/.010 lo/.oio 16/.010 26/.010 41/.010 65/.010 I05/.010 OASS H IAIEE INTBtMITTENT SEXVICE) limrfatiaa Watt in *4lit Vahaia atinf 600 VOLTS Ncminoi India* O.O. 200 C Awporihi we 2 600 2 600 2 600 2 600 2 600 2 600 2 600 .107 .115 .125 .137 .155 .178 .224 8 16 24 30 40 55 75 W#I*M In LWM H. 8 9 12 16 22 32 62 RBB 00283 B Tirmod Coppor,* pxtntdod Silicon* rubber, gloss braid Application---tn *1ctrical or *t*ctronk circuit at a maximum tamparatur* of 200C and whoro a high dogroo of flexibility i* r*quir*d< "Available also with sitvor plotod and nickol dad coppor conductor. ft SILICONE RUBBER STRANDED CONDUCTOR TYPE F PLAIN si UWOJ ,siraMM* 24 7 .055 24 19 .055 22 7 .061 22 19 .061 20 7 .069 20 19 .069 18 7 .079 18 19 .079 16 19 .088 14 19 .118 12 19 .137 TYPE FF PLAIN 24 7 24 19 22 7 22 19 20 7 20 19 18 7 18 19 16 19 14 19 12 19 10 37 8 133 6 133 4 133 2 133 1 259 1/0 259 2/0 259 4/0 259 .086 .086 .095 .095 .103 .103 .111 .111 .123 .163 .182 .204 .298 .342 .398 .467 .542 .588 .644 .768 stranded CONDUCTOR SILICONE RUBBER 600 VOLTS Wt. In Lbt. M Ft, 3 3 4 4 5 5 7 7 10 16 25 1000 VOLTS 5 5 6 6 8 8 11 11 13 22 31 44 79 114 176 254 336 405 504 770 200C Sis* tAwa.) 24 24 . 22 22 20 20 18 18 16 14 12 200C 24 24 22 22 20 20 18 18 16 14 12 10 8 6 4 2 1 1/0 2/0 4/0 EONOEO CLASS IRAID TYPE F GLASS BRAIDED Wi-- Nilwl O.D. W*tM in Lk*. IhdMl M ft 7 .067 4 19 .067 4 7 .073 5 19 .073 5 7 .081 '7 19 .081 7 7 .091 9 19 .091 9 19 .100 12 19 .132 19 19 _____ dll____ 28 TYPE FF GLASS BRAIDED 7 .098 6 19 .098 6 7 .107 8 19 .107 8 7 .115 9 19 .115 9 7 .123 12 19 .123 12 19 .146 16 19 .175 25 19 .194 37 37 .216 52 133 .318 87 133 .362 130 133 .418 194 133 .487 277 259 .566 362 259 .612 451 259 .668 535 259 .792 823 1 Continental "Wire & Cable RBB 00284 CONDUCTOR--Nickel Chromium Alloy APPUCATlONs-To heotr pipe* to prevent freezing, or to maintain proper viscosity of liquid* being stored, or in transit through pipe*. Soil heating, roof defrosting, food display case defrosting. ELECTRICAL DATA--# 19 Nickel Chromium Conductor Resistance--0.32 ohms per foot Out fut-55 ft. length at 120 volts = 500 watts 110 ft. length at 240 volts = 500 watts I SILICONE RUBBER* ^ HEATING CABLE 2004C RATED 10 WATTS PER FOOT TEMPERATURE IS OPERATING VALUE i #1* AWO K3ISTANCE CONDUCTOR c ewe Vm 6 InwlRtlm Glass Yarn, .047 Silicone Rubber, Glass Braid 8 .030Silicone Rubber, Tinned Copper Braid Shield, Silicone Rubber Jocket - 8*A Same os Type 8 above but without Silicon* Jacket- 9 Silicone Rubber, Insulation, Tinned Copper Wrap Shield, .015" FEP Jacket *S* hoartnp chl to* Nf oHwr typ cmwhr NtNRttt CmL S) awq 19 16 12 19 19 19 16 12 CenS. IHm .036 .051 .081 .036 .036 .036 .051 .081 Dime fowl. .041 .056 .086 .098 .098 .070 .091 .131 Noainat Dia*trr .146 .161 .191 .164 .132 .110 .135 .181 c Continental W\re & Cable RBB 00285 -JwW SR<T ** SILICONE RUBBER GUSS BRAID APPLIANCE and FIXTURE WIRE 300 AND 600 VOLT SERVICE AVAILABLE SIZE5: 22 to 4/0 AWG inclusive 150C-200C Tinned copper*, nkkel, or rtkkeL-pkrted iron (SRG-S600 only), * traded silkon* rubber, glass braid. . USES--Silicon* Rubber imulotion it recommended for radio, and electronic wiring a* well a* for appliance* where moittgr*. cold and/or heat may be prerent. 'Standard construction. APPROVED BY--Underwriter* Laboratories Inc. All items approved as appliance wiring materials. SF and SFF types approved as fixture wire. (Tinned, Nickel Plated, Silver Plated Copper, or Nickel con ductors.) Also approved by Canadian Standards Association for equipment wiring. MAXIMUM OPERATING TEMPERATURES--(UU 1J0C with copper conductor strand size less than 0.015". 200DC with copper conductor strand size 0.015" and larger. 200C with nickel conductor strand size 0.010" and larger. c t U/l Styl* # SFF-1 BONDIO GLASS BRAID SILICONE IUSMI INSULATION STRANDED CONDUCTOR CONSTRUCTION SPECIFICATIONS TABLE SRG-X300 CLASS B 300 VOLTS 150C C$A Typ# Designation SEWF-1 SEWF-1 SEWF-1 SEWF-1 5i AWG 22 20 18 16 e. . 5,f0M 7/.010 I0/.010 16/.010 26/.010 Insulation' Wall in 64ths 1 l 1 1 Voltago Rating 300 300 300 300 fneKotO.D. .075 .083 .093 .105 Ampacity 30'C 8 16 24 30 Wight im Lb*/M ` 5 7 9 12 3040 3060 SFF-2 (3070) SFF-2 (3070) SFf-2 (3070) 3070 3127 3127 3127 3127 TABLE SRG-X600 SEWF-2 SEWF-2 SEWF-2 SEWF-2 SEWF-2 SEWF-2 SEWF-2 T-- 22 20 18 16 M 92 10 8 6 4 2 1 I/O 2/0 3/0 4/0 - 7/.010 10/.0I0 16/.010 26/.010 41/.010 65/.010 105/.010 133/.0111 133/.0140 133/.0177 133/.0223 259/.0180 259/.0102 259/.0227 259/.0255 259/.0286 2 2 2 2 2 2 3 4 4 4 4 5 5 5 5 5 600 VOLTS 600 600 600 600 600 600 600 600 600 600 600 600 600 600 600 600 .107 .115 .125 .137 .155 .178 .224 .317 .362 .421 .490 .568 .614 .668 .727 .798 200C 8 16 24 30 40 55 75 115 154 205 280 325 385 450 520 600 8 9 12 16 22 32 62 90 140 205 300 400 480 620 760 890 TABLE SRG-S600 SF-2 SF-2(3071) SF-2 (3071) 3074 3075 3075 3075 3075 3075 SEW-2 SEW-2 IS 16 14 12 10 8 6 4 2 CLASS H 7/.0153 7/.0192 7/.0242 19/.0185 19/.0234 191.0295 I9/.0372 19/.0469 19/.0591 2 2 2 2 3 4 4 4 4 600 VOLTS 600 .123 600 .135 600 .150 600 .169 600 .227 600 .299 600 .337 600 .386 600 .447 200C 24 30 40 55 75 115 154 205 210 12 16 22 32 52 90 140 205 300 RBB 00286 Tinned copper or nickel' conductor (alto nickel plated iron style 31341, silicone rubber, no outer coveting. USES--For high temperature applications where flexibility is re quired, such as internal wiring of appliance* where totally enclosed and where exposed to temperature* not to exceed 150C. SR BRAIDLESS SILICONE RUBBER' APPLIANCE WIRE 600 VOLT SERVICE AVAILABLE SIZES IB to 12 inclusive UL STYLE 3134 150eC UL STYLE 3135 200 C STRAMDtO CONDUCT! SUtCONt U t TABLE SR-600 Sis* Awa 18 16 U 12 Strondtay Solid Solid Solid Solid UL STYLE 3135 tnu4ati*n Wall in 44Hm 2 2 2 2 Nominal O.D. (lnchat> .105 .116 .129 .146 600 VOLTS Ampacity 24 30 40 55 Wt. In lbs. in ft. 10 14 21 29 TABLE SR-S600 18 7/.0152 16 7/.019214 7/.024?12 7/.0305 UL STYLE 3135 2 .111 2 .123 2 .138 2 .157 600 VOLTS 24 11 30 15 40 22 55 31 TABLE SR-X600 UL STYLE 3134 18 16/.010 16 26./.010 14 41/.010 12 65/.010 2 2 2 2 .113 .125 .143 .166 NOTE; Larger AWG sixes of unbraided constructions per IPCEA S-19-81 Spec, are available. 600 VOLTS 24 ii 30 15 40 22 55 31 200C Standard Pack tH, par tpaaH 500 500 500 500 200 C 500 500 500 500 150aC 500 500 500 500 -7 ' RBB 00287 SILICONS RUBBER (% POWER * v ASBESTOS Bl N.E.C. TYPE SA 600V SERVICE AVAILABLE SIZES: 14 AW6 to 2000 MCM Inclusive 90C U/L <125C SPECIAL APPLICATION! ----- -* - - . -" " -. - %<- * .T` Tinned copper, silicone robber, block asbestos braid, (lowo and moisture resistant finish. USES--For power circuits in wot or dry locations, exposed or in conduit, to withstand constant high temperatures. Maximum operating temperature 90CC U2SC special applications). APPROVED BY--Underwriters Laboratories, Inc. I J TABLE SA-S600 SINGLE CONDUCTOR 600 VOLTS AWG at MCM** *1nwlaHn Walt Sfrandtof . in MHm 14 7 12 7 10 7 87 67 47 27 1 19 1/0 19 2/0 19 3/0 19 4/0 19 250 37 350 37 500 37 3 3 3 4 4 4 4 5 5 5 5 5 d 6 6 MINIMUM AVEBAG&.WAII THICKNESS U/L APPROVAf|gtg900 MCM In MliS 40 40 40 45 45 45 45 45 45 45 45 45 45 45 45 ,Apprm. O-D. in Inch**. .251 .270 .294 .369 .409 .456 .516 .591 .632 .679 .730 .786 .870 .989 1.118 TABLE SA-X600 SINGLE CONDUCTOR 600 VOLTS Awpadtittf 27 35 48 62 82 no 146 166 192 219 252 293 324 395 484 8 133 4 45 6 133 4 45 4 133 4 45 2 133 4 45 1 259 5 45 1/0 259 5 45 2/0 259 5 45 3/0 259 5 45 4/0 259 5 45 rBased upon 3 cables in conduit--40C Ambient, t Three insulated conductors per conduit (N.E.C.) .388 .435 .491 .560 .635 .681 .737 .795 .861 62 87 110 146 166 192 219 252 293 Appin. Ship. i Wl. M F**H 42 55 73 115 160 230 336 425 525 635 780 975 1150 1560 2150 115 160 230 336 425 525 635 780 975 RBB 0028& finned copper, silicon* robber, block asbestos braid, flam* andmoisture resistant finidfa'.. ;? ^j^USE$~For power circuits-iiKenkor dry locations, exposed or its conduit, to withstand constlink high temperatures.' Maximum operating temperature 125C_ SPECIFICATIONS--Cables listed below conform to IPCEA specifica tion S-19-81. SLACK ASBESTOS (SAID-FLAMS ANO mOISTUSE SESiStANT FINISH SILICONE SUSSES STSANDED CONDUCTO* SlUCONr RUBBE POWER CABLB ASBESTOS BRaTd 600 and SKV SERVICE AVAILABLE SIZES: 14 AWG to 500 MCM Indusive 125C 200C TYPES Available on special order TABLE SRA-S600 SINGLE CONDUCTOR 600 VOLTS AWOvt MCM u 12 10 8 6 4 2 1 1/0 2/0 0 3/0 4/0 250 350 500 SifoirfMy 7 7 7 7 7 7 7 19 19 19 19 19 37 37 37 InHitatiM Wall in 3 3 3 4 4 4 4 5 5 5 5 5 6 6 6 Alb ifi m MILS 40 ~ 40 40 45 45 45 45 45 45 45 45 45 45 45 45 A^nt, O.O, in tMtm .251 .270 .294 .369 .406 .453 .513 .588 .629 .676 .727 .783 .867 .986 1.115 AiipEii>iirt 27 35 48 62 82 110 146 166 192 219 252 293 324 395 484 ApproIt* Ship. Wt. IM. M too* 43 56 74 115 160 230 336 . 425 525 635 780 975 1150 1560 2150 TABLE SRA-X600 SINGLE CONDUCTOR 600 VOLTS 8 133 4 45 .388 6 133 4 45 .432 4 133 4 45 .488 2 133 4 45 .557 1 259 5 45 .632 1/0 259 5 45 .678 2/0 259 - :' 5 45 .734 3/0 259 f- 5 45 .792 4/0 259 5 45 .858 62 82 110 146 166 192 219 252 293 TABLE SRA-S5000 SINGLE CONDUCTOR 5 KV GROUNDED NEUTRAL 8 19 10 6 19 10 4 19 10 2 19 10 1 19 10 1/0 19 10 2/0 19 10 3/0 19 10 4/0 19 10 250 37 11 350 37 11 500 37 11 45 45 45 45 45 45 45 45 45 45 45 45 tBased upon 3 cables in conduit -- 40 C Ambient. XThree insulated conductors per conduit (N.E.C.) .560 .600 .650 .710 .750 .790 .840 .890 .950 1.020 1.130 1.260 62 82 110 146 166 192 219 25* 293 324 395 484 115 160 230 336 425 525 635 780 975 210 270 340 470 550 645 780 940 1130 1330 1750 2370 RBB 00289 SILICONE RUBBER^ AIRCRAFT WIRE -" TO MIL - W - 8777B & MS 2547! 600V 200C WIRE--Electrical, silicone insulated, copper, 600 volt, 200C CONSTRUCTION: Stranded silver plated conductor; silicone insula tion; a glass and dacron braid impregnated with a high temperature lacquer; dacron outer braid and high temperature lacquer. FEATURES: Capable of operation from -- 65eF. to 400CF. Flame resistant. Resistant to aircraft hydraulic fluids, lubricants and fuels. Free stripping. DACRON BRAID SlllCONE RUBBER CONDUCTOR TABLE MIL-W-8777B A MS-25471 WJr* Six* Strand 22 19/.0063 20 19/.008 18 19/.010 16 19/.0113 14 T9/.0142 12 19/.0179 10 49/.0142 8 133/.0113 6 "'r~ " 133/.0I42 4 " 133/.0I79 2 665/.010 1 817/.010 0 1045/.010 00 1330/.010 600 VOLTS Ap^rt*. Co4. Ota*. .0315 .040 .050 .0565 .071 .0895 .128 .167 .213 .268 .325 .371 .420 .486 Nofflwl O.D. (inch) .085 .095 .110 .125 .143 .163 .193 .248 .303 .360 .425 .460 .535 .585 200 C Mciinun N*t Wt. IbcVM Ft. .58 7.8 10.8 13.5 20.0 29.0 45.0 72.0 107.0 165.0 262.0 317.0 390.0 500.0 13 0> RBB 00290 Modern silicon* rubber insulated and jacketed coble* are for use in power circuits in wet or dry locations, exposed or in conduit, and to withstand continuous high temperature. Maximum recommended operating temperature is 200s C. HE SrtAMMO CONDUCTOt 'silicon* turn* INSUUTION silicone tuute Mcxr USES: SRGS multi-conductor cables are designed specifically to operate control and signal circuits in continuous vel^ high temperoture environments found in steel mills, boiler rooms, glass and cement plant* and power stations. THU combination of silicone rubber and glass used in SRGS cables afford excellent resistance to heat; moisture, abrasioit^ Done, ozone and corrosive atmospheres while maintaining excellent flexibility. FIRE PROOFNESS: An outstanding characteristic of this cable is the ability to maintain circuit integrity during and after exposure to direct flame. CONSTRUCTION: Stranded tinned copper conductors insulated with 3/64"* wall high dielectric grade silicone rubber and colored glass braid for circuit identification. NEMA Control Cable Color Code for Multi-Conductor Cables is used throughout. Individual conductors are cabled with asbestos Alters where necessary to effect a round cross section, wrapped with mylar binder tape and finished with a flame, moisture, and abrasion resistant silicone rubber jacket. Alt cables are available with galvanized steel or aluminum armor braid overall. SRGS-C600 cables follow tPCEA Spec S-19-81 for materials of construction and electrical performance. TABLE SRGS-C600 Number of Conductor* 2 3 4 5 6 7 8 9 to It t2 19 Approx. #14 AWO (19} NomtnoJ 0,0. .375 .394 .430 47a .511 . JC59*"-' .63*m .68V' .631 .702 .817 Weight' Pounds T,000 66 93 119 143 169 192 231 259 289 309 333 512 Number of Conductor* 2 3 4 5 6 7 8 9 10 11 12 Appro*. #12 AWG [19> Nominal 0.0. Wflight Pounds 1,000 .543 .574 .625 .677 .747.747 .815 .923 .992 .992 1.023 140 180 230 248 330 360 427 450 .590 .620 .690 'Except #14 which is 2/64" Number of Conductors 2 3 4 5 6 7 3 9 10 11 12 Number of Conductors 2 3 4 5 6 '7 8 9 Approx. #14 AWO 09} Nominal 0.0. .471 .499 .579 .635 .689 .489 .751 .812 .917 .917 .944 Weight Pounds 1x000 102 153 212 257 302 343 389 433 510 551 592 Approx. #9 AWG 09} Nominal 0.0. W*jght Pounds 1.000 .619 .656 .716 .788 .903 .903 .984 1.042 201 280 350 440 530 580 720 780 RBB 00291 I SRGi CONTROi SILICONE RUN ASBESTOS BRAN* 600 VOLTS 125C SIZES #12 and #9 (ADDITIONAL SIZES AVAILABLE ON BEQUEST) fJ*V. fr-' ;et.r Modem silicone rubber insulated cabin are far use i*r power circuits irt wof or dry location*, exposed or in conduit, and to withstand continuant high temperature. Maximum recommended operatin^^temperatvre it 125C. In power cable design an asbestos braid, saturated with Bam* and moisture retardant compound, is com monly used to provide a durable covering with heat resistant prop erties compatible with the insulation. For 200C rated cables see type SRGS-C600. SlUCONt INSUUTION - -v Ca&UCKM USES: SftGA multi-conductor cablet are designed specifically to operate control and signal circuits in continuous frgh temperature environments found in steel mills, boiler rooms, glass and cement plants and power stations. The dpmbination of silicone rubber, glass and asbestos as used in SEGA cables afford excellent resistance to heat, moisture, ait, grease, abrasion,, home, ozone and corrosive atmospheres while maintaining good flexibility. FIRE PROOFNESS: An outstanding characteristic of this table is the ability to maintain circuit integrity during and after exposure to direct flame. CONSTRUCTION: Stranded conductors #12 (191 and #9 (19) tinned copper insulated with 3/64" wall high dielectric grade silicone rubber and colored glass braid for circuit identification. NEMA Control Cable Color Code for Multi-Conductor Cables is used throughout. Individual conductors are cabled with asbestos fillers where necessary to effect a round cross-section, wrapped with mylar binder tape and finished with a flame and moisture resistant asbestos braid. All cables are available with galvanized steel or aluminum armor braid overall. TABLE SRGA-C600. APPROX$Zfc #12 AWG (19) APPROX. SIZE #9 AWG (19) Number of Conductor* 2 3 4 5 6 7 8 9 10 11 12 Noeinet 0.0. .499 .518 .580 .641 .702 .702 .769 .837 .90S .905 .933 Weight Round* 1,000 141 182 231 248 331 365 427 452 592 620 690 FOR SINGLE CONDUCTOR SEE TABLE SRA-S600, SRA-X600. Number of Conductor* 2 3 4 5 6 7 8 9 10 11 12 Nominal O.D, .573 .607 .669" .741 .813 .813 .893 .973 1.053 1.053 1.087 Wnijhf Sounds 1.000 204 283 354 437 52* 576 71J 774 856 908 975 RBB 00292