TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais
TDC... / tda... - Dabartiniai transformatoriai, skirti bendradarbiauti su artimaisiais relais

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Gamintojas: FRER

TDC TDA - Srovės transformatoriai žemės nuotėkio relėms

The TDC and TDA series are current transformers designed for use with [Type A-F Earth Leakage Relays].

They must be installed with all single- or three-phase network conductors (phases and neutral, if present) routed inside the core. The protective conductor (PE or PEN) (for TN-C systems) must be located outside the core. The connection between the transformer and the leakage current relay must be made using the shortest possible length of shielded cable (shield grounded at one end) and routed at a significant distance from power circuits to minimize coupling interference and voltage drops on the resistances of the supply conductors.



Technical data

Parameter Value
Self estinguishing (Thermoplastic material) UL 90-V0
Operating frequency 47-63Hz
Insulation 2,5kV 50Hz, 1 min.
Protection degree IP20
Continuous overload 1000A
Thermal overload (1s) 40kA
Operating temperature 0…+50˚C U.R./R.H. < 90% n.c.
Storage temperature -20…+70˚C
Connections Screw, max 1,6mm2



Code Core Figure A B C D E F G H I kg
TDC032 Closed Figure 1. 0,3
TDC028 Figure 2. 0,1
TDC035 Fig. 3 35 102 73 92 100 - 40 6 28 0,2
TDC060 Fig. 3 60 135 98 116 125 - 55 6 28 0,2
TDC080 Fig. 3 80 154 118 136 146 - 65 6 38 0,4
TDC110 Fig. 3 110 180 148 166 178 - 85 6 28 0,5
TDC160 Fig. 3 160 283 255 265 275 - 130 8,5 45 1,2
TDC210 Fig. 3 210 335 305 310 325 - 155 8,5 45 2,4
TDC350 Figure 5. 3,0
TDC177 Figure 6. 4,7
TDC321 Figure 7. 8,0
TDC471 Figure 8. 19,0
TDA060 Split Fig. 4 60 121 130 110 120 - 56 6,5 28 0,8
TDA110 Fig. 4 110 225 205 220 235 70 105 6,5 40 1,3
TDA160 Fig. 4 160 275 255 265 275 75 130 8,5 45 1,3
TDA210 Fig. 4 210 325 305 310 325 75 155 8,5 45 2,4



Dimensions

Figure 1: TDC032 - Dimensions Figure 2: TDC028 - Dimensions
Figure 3: TDC - Dimensions Figure 4: TDA - Dimensions
TDC Dimensions TDA - Dimensions
Figure 5: TDC350 - Dimensions Figure 6: TDC177 - Dimensions
TDC350 Dimensions TDC177 Dimensions
Figure 7: TDC321 - Dimensions Figure 8: TDC471 - Dimensions
TDC321 Dimensions TDC471 Dimensions

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The TDC and TDA series are current transformers designed for use with [Type A-F Earth Leakage Relays].

They must be installed with all single- or three-phase network conductors (phases and neutral, if present) routed inside the core. The protective conductor (PE or PEN) (for TN-C systems) must be located outside the core. The connection between the transformer and the leakage current relay must be made using the shortest possible length of shielded cable (shield grounded at one end) and routed at a significant distance from power circuits to minimize coupling interference and voltage drops on the resistances of the supply conductors.



Technical data

Parameter Value
Self estinguishing (Thermoplastic material) UL 90-V0
Operating frequency 47-63Hz
Insulation 2,5kV 50Hz, 1 min.
Protection degree IP20
Continuous overload 1000A
Thermal overload (1s) 40kA
Operating temperature 0…+50˚C U.R./R.H. < 90% n.c.
Storage temperature -20…+70˚C
Connections Screw, max 1,6mm2



Code Core Figure A B C D E F G H I kg
TDC032 Closed Figure 1. 0,3
TDC028 Figure 2. 0,1
TDC035 Fig. 3 35 102 73 92 100 - 40 6 28 0,2
TDC060 Fig. 3 60 135 98 116 125 - 55 6 28 0,2
TDC080 Fig. 3 80 154 118 136 146 - 65 6 38 0,4
TDC110 Fig. 3 110 180 148 166 178 - 85 6 28 0,5
TDC160 Fig. 3 160 283 255 265 275 - 130 8,5 45 1,2
TDC210 Fig. 3 210 335 305 310 325 - 155 8,5 45 2,4
TDC350 Figure 5. 3,0
TDC177 Figure 6. 4,7
TDC321 Figure 7. 8,0
TDC471 Figure 8. 19,0
TDA060 Split Fig. 4 60 121 130 110 120 - 56 6,5 28 0,8
TDA110 Fig. 4 110 225 205 220 235 70 105 6,5 40 1,3
TDA160 Fig. 4 160 275 255 265 275 75 130 8,5 45 1,3
TDA210 Fig. 4 210 325 305 310 325 75 155 8,5 45 2,4



Dimensions

Figure 1: TDC032 - Dimensions Figure 2: TDC028 - Dimensions
Figure 3: TDC - Dimensions Figure 4: TDA - Dimensions
TDC Dimensions TDA - Dimensions
Figure 5: TDC350 - Dimensions Figure 6: TDC177 - Dimensions
TDC350 Dimensions TDC177 Dimensions
Figure 7: TDC321 - Dimensions Figure 8: TDC471 - Dimensions
TDC321 Dimensions TDC471 Dimensions

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