Sight Sound Electronics India Private LimitedNew Delhi, Delhi | Year of Establishment: 1962 |
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| Products1 Core Aluminium XLPE Armoured Power Cables![]() Type No. of cores & cross sectional area Min no. of Wires Thickness of Insulation (Nom.) Nominal Dimension of Armour wire Min. Thickness of Outer Sheath Overall Diameter (Approx.) Approx. Net Wt. of Cable Max. D.C. Resistance at 20C Max. A.C. Resistance at 90C Approx. Reactance at 50 Hz Approx. Capacitance Current Ratings Direct in Ground In Air (sq. mm) (mm) (mm) (mm) (kg/km) ohms/km ohms/km ohms/km mFd/km Amps Amps A2xway 1C x 25 6 1.20 1.40 1.2400 14.000 270 1.2000 1.5400 0.116 0.40 96 98 A2xway 1C x 35 6 1.20 1.40 1.2400 15.000 320 0.8680 1.1100 0.110 0.47 114 121 A2xway 1C x 50 6 1.30 1.40 1.2400 17.000 390 0.6410 0.8200 0.103 0.50 135 150 A2xway 1C x 70 12 1.40 1.40 1.2400 19.000 490 0.4430 0.5670 0.099 0.55 166 187 A2xway 1C x 95 15 1.40 1.60 1.4000 21.000 650 0.3200 0.4100 0.097 0.64 198 230 A2xway 1C x 120 15 1.50 1.60 1.4000 23.000 760 0.2530 0.3250 0.093 0.67 225 268 A2xway 1C x 150 15 1.70 1.60 1.4000 25.000 880 0.2060 0.2650 0.091 0.67 253 309 A2xway 1C x 185 30 1.90 1.60 1.4000 27.000 1050 0.1640 0.2110 0.090 0.67 286 360 A2xway 1C x 240 30 2.00 1.60 1.4000 29.000 1280 0.1250 0.1620 0.086 0.72 332 433 A2xway 1C x 300 30 2.10 1.60 1.5600 32.000 1530 0.1000 0.1300 0.085 0.75 376 501 A2xway 1C x 400 53 2.40 2.00 1.5600 37.000 2000 0.0778 0.1023 0.085 0.75 431 596 A2xway 1C x 500 53 2.60 2.00 1.5600 40.000 2410 0.0605 0.0808 0.083 0.77 490 693 A2xway 1C x 630 53 2.80 2.00 1.7200 45.000 2990 0.0469 0.0648 0.082 0.81 557 814 A2xway 1C x 800 53 3.10 2.00 1.8800 50.000 3730 0.0367 0.0530 0.081 0.88 600 890 A2xway 1C x 1000 53 3.30 2.50 2.0400 56.000 4730 0.0291 0.0444 0.081 0.88 650 1050 2 Core Aluminium XLPE Armoured Power Cables![]() Type No. of cores & cross sectional area (sq. mm) Min no. of Wires Thickness of Insulation (Nom.) (mm) Min. Thickness of inner Sheath (mm) Nominal Dimensions of Armour (mm) Min. Thickness of Outer Sheath (mm) Overall Diameter (Approx.) Approx. Net Wt. of Cable Max. D.C. Resistance at 20C ohms/km Max. A.C. Resistance at 90C ohms/km Approx. Reactance at 50 Hz ohms/km Approx. Capacitance mFd/km Current Ratings Direct in Ground In Air Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (kg/km) Wire Armour (kg/km) Amps Amps A2xfy/A2xwy 2C x 25 6 0.90 0.3 4 x 0.8 1.60 1.40 1.40 19 21 630 840 1.2000 1.5400 0.080 0.20 112 98 A2xfy/A2xwy 2C x 35 6 0.90 0.3 4 x 0.8 1.60 1.40 1.40 21 22 740 970 0.8680 1.1100 0.080 0.23 138 124 A2xfy/A2xwy 2C x 50 6 1.00 0.3 4 x 0.8 1.60 1.40 1.40 23 24 900 1150 0.6410 0.8200 0.078 0.24 169 156 A2xfy/A2xwy 2C x 70 12 1.10 0.3 4 x 0.8 1.60 1.56 1.56 26 27 1140 1430 0.4430 0.5670 0.077 0.26 200 188 A2xfy/A2xwy 2C x 95 15 1.10 0.4 4 x 0.8 2.00 1.56 1.56 28 31 1390 1900 0.3200 0.4100 0.074 0.29 238 231 A2xfy/A2xwy 2C x 120 15 1.20 0.4 4 x 0.8 2.00 1.56 1.56 31 33 1660 2220 0.2530 0.3250 0.072 0.29 262 262 A2xfy/A2xwy 2C x 150 15 1.40 0.4 4 x 0.8 2.00 1.72 1.72 34 36 1930 2550 0.2060 0.2650 0.072 0.29 300 300 A2xfy/A2xwy 2C x 185 30 1.60 0.5 4 x 0.8 2.00 1.72 1.88 37 39 2320 3030 0.1640 0.2110 0.072 0.29 344 344 A2xfy/A2xwy 2C x 240 30 1.70 0.5 4 x 0.8 2.50 1.88 2.04 41 45 2790 3930 0.1250 0.1620 0.072 0.31 400 406 A2xfy/A2xwy 2C x 300 30 1.80 0.6 4 x 0.8 2.50 2.04 2.20 44 48 3390 4650 0.1000 0.1300 0.071 0.33 444 456 A2xfy/A2xwy 2C x 400 53 2.00 0.6 4 x 0.8 2.50 2.36 2.36 50 54 4230 5600 0.0778 3 Core Aluminium XLPE Armoured Power Cables![]() Type No. of cores & cross sectional area (sq. mm) Min no. of Wires Thickness of Insulation (Nom.) (mm) Min. Thickness of inner Sheath (mm) Nominal Dimensions of Armour (mm) Min. Thickness of Outer Sheath (mm) Overall Diameter (Approx.) Approx. Net Wt. of Cable Max. D.C. Resistance at 20C ohms/km Max. A.C. Resistance at 90C ohms/km Approx. Reactance at 50 Hz ohms/km Approx. Capacitance mFd/km Current Ratings Direct in Ground In Air Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (kg/km) Wire Armour (kg/km) Amps Amps A2xfy/A2xwy 3C x 25 6 0.9 0.3 4 x 0.8 1.6 1.40 1.40 21.3 23 770 980 1.200 1.54 0.08 0.2 94 96 A2xfy/A2xwy 3C x 25 6 0.9 0.3 4 x 0.8 1.6 1.40 1.40 23 25 900 1160 0.868 1.11 0.08 0.23 113 117 A2xfy/A2xwy 3C x 50 6 1.0 0.3 4 x 0.8 1.6 1.40 1.56 26 28 1000 1320 0.641 0.82 0.078 0.24 133 142 A2xfy/A2xwy 3C x 70 12 1.1 0.4 4 x 0.8 2.0 1.56 1.56 30 32 1450 1950 0.443 0.567 0.077 0.26 164 179 A2xfy/A2xwy 3C x 95 15 1.1 0.4 4 x 0.8 2.0 1.56 1.56 32 35 1750 2320 0.320 0.41 0.074 0.29 196 221 A2xfy/A2xwy 3C x 120 15 1.2 0.4 4 x 0.8 2.0 1.56 1.72 36 39 2100 2770 0.253 0.325 0.072 0.29 223 257 A2xfy/A2xwy 3C x 150 15 1.4 0.5 4 x 0.8 2.0 1.72 1.88 39 42 2520 3260 0.206 0.265 0.072 0.29 249 292 A2xfy/A2xwy 3C x 185 30 1.6 0.5 4 x 0.8 2.5 1.88 2.04 44 47 3050 4220 0.164 0.211 0.072 0.29 282 337 A2xfy/A2xwy 3C x 240 30 1.7 0.6 4 x 0.8 2.5 2.04 2.20 49 53 3770 5110 0.125 0.162 0.072 0.31 326 399 A2xfy/A2xwy 3C x 300 30 1.8 0.6 4 x 0.8 2.5 2.20 2.36 54 58 4540 6030 0.100 0.13 0.071 0.33 367 455 A2xfy/A2xwy 3C x 400 53 2.0 0.7 4 x 0.8 3.15 2.52 2.68 60 65 5640 8010 0.0778 0.102 0.07 0.33 418 530 XLPE Aluminium Armoured Core 1 3.5 Core Aluminium XLPE Armoured Power Cables![]() Type No. of cores & cross sectional area (sq. mm) Min no. of Wires Thickness of Insulation (Nom.) (mm) Min. Thickness of inner Sheath (mm) Nominal Dimensions of Armour (mm) Min. Thickness of Outer Sheath (mm) Overall Diameter (Approx.) Approx. Net Wt. of Cable Max. D.C. Resistance at 20C ohms/km Max. A.C. Resistance at 90C ohms/km Approx. Reactance at 50 Hz ohms/km Approx. Capacitance mFd/km Current Ratings Direct in Ground In Air min nom Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (kg/km) Wire Armour (kg/km) Amps Amps A2xfy/A2xwy 3.5C x 25 6/6 0.9 0.7 0.3 4 x 0.8 1.60 1.40 1.40 23 25 870 1110 1.2000 1.5400 0.080 0.20 94 96 A2xfy/A2xwy 3.5C x 25 6/6 0.9 0.7 0.3 4 x 0.8 1.60 1.40 1.40 25 27 1030 1290 0.8680 1.1100 0.080 0.23 113 117 A2xfy/A2xwy 3.5C x 50 6/6 1.0 0.9 0.3 4 x 0.8 1.60 1.40 1.56 28 30 1230 1580 0.6410 0.8200 0.078 0.24 133 142 A2xfy/A2xwy 3.5C x 70 12/6 1.1 0.9 0.4 4 x 0.8 2.00 1.56 1.56 32 34 1610 2170 0.4430 0.56700 0.077 0.26 164 179 A2xfy/A2xwy 3.5C x 95 15/6 1.1 1.0 0.4 4 x 0.8 2.00 1.56 1.56 35 38 2000 2620 0.3200 0.4100 0.074 0.29 196 221 A2xfy/A2xwy 3.5C x 120 15/6 1.2 1.1 0.4 4 x 0.8 2.00 1.72 1.72 39 42 2460 3160 0.2530 0.3250 0.072 0.29 223 257 A2xfy/A2xwy 3.5C x 150 15/6 1.4 1.1 0.5 4 x 0.8 2.00 1.72 1.88 43 46 2840 3670 0.2060 0.2650 0.072 0.29 249 292 A2xfy/A2xwy 3.5C x 185 30/6 1.6 1.1 0.5 4 x 0.8 2.50 1.88 2.04 47 51 3480 4780 0.1640 0.2116 0.072 0.29 282 337 A2xfy/A2xwy 3.5C x 240 30/6 1.7 1.2 0.6 4 x 0.8 2.50 2.04 2.20 53 57 4290 5760 0.1250 0.1620 0.072 0.31 326 399 A2xfy/A2xwy 3.5C x 300 30/6 1.8 1.4 0.6 4 x 0.8 2.50 2.20 2.36 57 61 5170 6790 0.1000 0.1300 0.071 0.33 367 455 4 Core Aluminium XLPE Armoured Power Cables![]() Type No. of cores & cross sectional area (sq. mm) Min no. of Wires Thickness of Insulation (Nom.) (mm) Min. Thickness of inner Sheath (mm) Nominal Dimensions of Armour (mm) Min. Thickness of Outer Sheath (mm) Overall Diameter (Approx.) Approx. Net Wt. of Cable Max. D.C. Resistance at 20C ohms/km Max. A.C. Resistance at 90C ohms/km Approx. Reactance at 50 Hz ohms/km Approx. Capacitance mFd/km Current Ratings Direct in Ground In Air Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (mm) Wire Armour (mm) Strip Armour (kg/km) Wire Armour (kg/km) Amps Amps A2xfy/A2xwy 4C x 16 6 0.7 0.3 4 x 0.8 1.60 1.40 1.40 21 22 - - 1.91 2.45 - - 73 70 A2xfy/A2xwy 4C x 25 6 0.9 0.3 4 x 0.8 1.60 1.40 1.40 24 26 940 1180 1.2 1.54 0.08 0.2 94 96 A2xfy/A2xwy 4C x 35 6 0.9 0.3 4 x 0.8 1.60 1.40 1.40 26 28 1130 1410 0.868 1.11 0.08 0.23 113 117 A2xfy/A2xwy 4C x 50 6 1.0 0.3 4 x 0.8 1.60 1.56 1.56 30 31 1400 1720 0.641 0.82 0.078 0.24 133 142 A2xfy/A2xwy 4C x 70 12 1.1 0.4 4 x 0.8 1.60 1.56 1.56 34 36 1800 2410 0.443 0.567 0.077 0.26 164 179 A2xfy/A2xwy 4C x 95 15 1.1 0.4 4 x 0.8 2.00 1.56 1.72 37 40 2190 2900 0.32 0.41 0.074 0.29 196 221 A2xfy/A2xwy 4C x 120 15 1.2 0.5 4 x 0.8 2.00 1.72 1.88 42 44 2690 3480 0.253 0.325 0.072 0.29 223 257 A2xfy/A2xwy 4C x 150 15 1.4 0.5 4 x 0.8 2.00 1.88 2.04 46 50 3220 4480 0.206 0.265 0.072 0.29 249 292 A2xfy/A2xwy 4C x 185 30 1.6 0.5 4 x 0.8 2.00 2.04 2.20 51 55 3920 5330 0.164 0.211 0.072 0.29 282 337 A2xfy/A2xwy 4C x 240 30 1.7 0.6 4 x 0.8 2.00 2.20 2.36 57 61 4850 6420 0.125 0.162 0.072 0.31 326 399 A2xfy/A2xwy 4C x 300 30 1.8 0.7 4 x 0.8 2.50 2.36 2.52 63 68 5900 8360 0.1 0.13 0.071 0.33 367 455 A2xfy/A2xwy 4C x 400 53 2.0 0.7 4 x 0.8 Elastomeric Cables![]() Working Voltage upto & Insulating 1100 Volts as per IS-9968-par:1/1988 & upto 6.6 KV as per IS:9968 Part-II/81 Type of Insulation Conductor Temp. 0 Maximum Normal Operation Short Circuit a. General Purpose Rubber 60 200 b Heat Resistant Synthetic Rubber i Butyl Rubber 85 220 ii Ethylene Propylene Rubber (EPR) 90 250 c. Silicon Rubber 150 350 Jelly Filled Cables![]() PRESENT PRODUCT RANGE OF PIJF CABLES Polyethylene insulated Jelly Filled (PIJF) Copper Cables with Solid / foam - skin insulation with Customer required pair count. PCM type Copper cables. Self Supporting Aerial Copper Cable. MANUFACTURING CAPACITY OF PIJF CABLES KEI can manufacture over 1.2 million core Kms with the following range : a) Conductor Diameter 0.4mm to 0.9mm b) Pairs 5 pairs to 1200 pairs CHARACTERISTICS OF JELLY FILLED CABLES " Operation in extremely hot and cold weather conditions. " Trouuble free performance even in water conditions. " Highest clarity in communication. " Absence of cross talk. " dermatically hazard free. " Easy handling and low maintenance. " Rodent and termite proofing. Lift And Conveyor Cable![]() Fine wire strands of Annealed tinned/bare high conductivity E.C. grade copper conductor. Each core insulated with extruded PVC/Rubber compund. All cores laidup and overall sheathed with special type of rubber compound. COMPUTER CABLE![]() Fine wire strands of annealed plain high conductivity electrolytic grade copper conductor. Individual core insulated with extruded polyethylene compound Two such cores twisted together to form a pair screen with aluminium backed mylar tape along with ATC drain wire in continuous contact with aluminium side of aluminium backed mylar tape, all such screened pairs paidup in a common covering of double wounded synthetic film and overall screened with copper wire (mesh type) Aluminium backed mylar tape along with Drain wire then finally jackted with special PVC compound. Technical Data : Conductor Stranding : Click Bending Radius : 10 Dia of Cable Working Voltage : 500V Max. DC Resistance : Click Test Voltage : 1200V Insulation Resistance : 500 Mohmkm Impedance : 75 ohm Approx. Control Cables![]() Solid/Stranded annealed plain high conductivity electrolitic grade copper conductor confirming to IS 8130 1984. Individual core insulated with extruded PVC compound type `A' confirming to IS 5831 1984. All such cores laidup in a common covering of PVC called inner sheath and finally jacketed with extruded PVC type ST-1 confirming to IS 5831 1984. For armouring we used galvanised mild steel round wire or flat strip confirming to IS 3975 1979. Technical Data (For Copper control Cable) Type-YY & YWY/YFY Conductor Stranding : Solid/Stranded (7 Strands) Min. Bending Radius : (For Multi core) 12 Dia of Cable (For Single Core ) 15 Dia of Cable Working Voltage : 650/1100V Conductor Resistance : Click Test Voltage : 3000V Insulation Resistance at 20oC : > 100 M ohm/k SPECIAL HI-TECH CABLES![]() The measurement of temperature is becoming important in many fields of activity. The needs of better techniques and improved accuracy is also constantly present. Extension cables are a convenient and frequently economic way of extending thermocouple circuits from the sensor to the reference unit in the form of wiring cables with similar conductor materials to those of the sensor. Alternatively they may incorporate quite different conductor (alloys) materials which in combination develop similar out puts to be experienced at the thermocouple to extension wire connections, where ever compensating cables are having cheaper alloys of different types in combination match the thermocouple characteristics as closely as possible, but over a limit temperature ranges. An obvious example of the use of compensating cables is with platinum. Metal thermocouple where the cost of the thermocouple materials is high and it is usually an economic necessity to extends the circuits using lower cost compensating cables, however if the temperature of the connecting box is allowed to increase the out put from the compensating wire will be diverge from that of the platinum thermocouple and errors in the temperature determination will increase correspondingly. Another example of the use of compensating cables is where the output of 'K' type thermocouples is closely matched at low temperatures by the combinations of Cu/Cu-Ni alloys. As one conductor is already copper the number of reference junctions is halved, an advantage with large multi-thermocouple schemes. The loop resistance of this cables is also same what less than with the equivalents 'K' type thermocouple alloys. Extension cables are produced usually in a convenient form for carrying over long distances e.g. as wire cables or multi-core cables, with extension cables this mismatch errors arising from high connecting box temperature are likely to be less than with compensating cables. Lan Cable![]() One of the most important decision when installing an office network system is the selection of the right cabling system. In India the cables of choice for Local Area Network (LAN) are high performance Unshielded Twisted Pair (UTP) cables. However, there are still some applications in which Shielded Twisted Pair (STP) cables are utlised. For instance in many installations require the use of Fiol Twisted Pair (FTP) cables, which includes a polyethylene insulated pair shielding and overall shielding. Industry standards have been established to determine the transmission performace of such cables. Heat Proof Security Cables![]() Stranded high conductivity electrolytic grade annealed plain/nickel silver plated copper conductor, core insulated with fused & sintered PTFE (with various workng voltage grade - like E-600V and EE-100 Volts). Other constructions are similar as in PVC cables, but in these cable armouring will be of S.S. wire mesh, instead of round wire and flat strip. Technical Data : Conductor Stranding : Fine wire Bending Radius : 10 DIA of single core 8 DIA of Multicore Working Voltage : E-600V, EE-1000V Test Voltage : 3000V Insulation Resistance : > 103 Mohm Km Max. DC Resistance : Click Temperature Range : 75oC to 260oC. High Tension Xple Cables![]() Mitushi is one of the largest manufacturer of variety of cables and an established name in India as well as abroad. Mitushi wires and cables are most preffered with numerous installations throughout the country. The range of products includes the Power Cables, HT XLPE, LT XLPE and PVC Cables, Instrumentation cables, Telecommunication Cables (PUF), Auto Cables, Housewires and flexibles. Mitushi XLPE Cables upto 132 kV are manufactured at its modern manufacturing set up at Daman. Technological Upgradation and Polymer revolution has replaced the conventional paper insulated cables and thermoplastic insulated cables with crosslinked polythene (XLPE) having better electrical, mechanical and thermal properties with reduced cable weight and dimensions. Worldwide acceptable trends are adopted by Mitushi in manufacturing of Extra High Voltage Cables upto 132kV. For Over two decades Mitushi's aim is to manufacture cables of high quality and to provide customer satisfaction that is unparalled in the industry. ADVANTAGES OF Mitushi XLPE CABLES Higher Electrical Strength Retention Higher Short Circuit Rating Better Electrical, Mechanical and Thermal Properties Easy Joining & Termination Other products & services we offer
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