Shunt reactor is an inductance (L) element used in electrical circuits. It usually has a parallel connection and the shunt reactor is used to correct the power factor or reduce harmonics in electrical systems.
The working principle is that the inductance delays the electric current and thus improves the power factor. This helps the reactor to absorb harmonic currents in the circuit and thus protect the electrical system from undesirable effects.
Shunt reactors are used in many electrical applications.
Power Factor Correction is used as a reactor to correct the power factor in systems in industrial facilities, office buildings and large energy users. This can increase energy efficiency and reduce energy costs.
Harmonic Filtering is used to absorb and control harmonics occurring in electrical systems. This prevents negative effects on other devices.
Transformer Protection is used to limit current surges in transformers and protect them.
Electrical Grid Correction can be used to control fluctuations in electrical systems and increase the overall stability of the grid.
Control for Electric Motors can be used to control high current surges in large electric motors and optimize motor performance.
Industrial Processes: Used in industrial production facilities, especially in systems with high power consumption to provide power factor improvement and harmonic control.
These application areas cover the use of shunt reactors in various electrical systems, increasing energy efficiency and optimizing system performance.
• Copper or aluminum winding process according to customer demands
• Thermal protection in overload situations
• Terminal, lug or busbar connection
• Vacuum varnishing method that reduces heat losses, increases efficiency, protects from humidity and enables silent operation
• Air gap, high permeability design
• Class F 155 °C resistant insulation material in windings
• Production under ISO 9001 Quality Management System
• TSE approved, CE marked, in accordance with EN 61558-1, EN 61558-2-20 Standards
SINGLE PHASE SHUNT REACTOR
No |
Product Name | Phase No |
Power (kVAr) |
Volt (VAC) |
Frequency (Hz) |
Flow Irms(A) |
Inductance L(mH) |
Weight (kg) |
Dimensional Values (mm) |
||||
I | L | H | |||||||||||
1 | RVT.SNT.230.0,5 | 1 | 0,5 | 230 | 50 | 2,17 | 336,77 | 2,9 | 94 | 98 | 105 | ||
2 | RVT.SNT.230.1 | 1 | 1 | 230 | 50 | 4,35 | 168,39 | 4,9 | 126 | 122 | 132 | ||
3 | RVT.SNT.230.1,5 | 1 | 1,5 | 230 | 50 | 6,52 | 112,26 | 9,2 | 125 | 152 | 150 | ||
4 | RVT.SNT.230.2 | 1 | 2 | 230 | 50 | 8,7 | 84,19 | 16,9 | 147 | 151 | 157 | ||
5 | RVT.SNT.230.2,5 | 1 | 2,5 | 230 | 50 | 10,87 | 67,35 | 17,1 | 147 | 199 | 190 | ||
6 | RVT.SNT.230.3 | 1 | 3 | 230 | 50 | 13,04 | 56,13 | 17,4 | 147 | 199 | 190 | ||
7 | RVT.SNT.230.3,5 | 1 | 3,5 | 230 | 50 | 15,15 | 48,53 | 19,5 | 150 | 195 | 195 | ||
8 | RVT.SNT.230.5 | 1 | 5 | 230 | 50 | 21,74 | 33,68 | 22,3 | 159 | 192 | 263 | ||
9 | RVT.SNT.230.6,67 | 1 | 6,67 | 230 | 50 | 29 | 25,25 | 22,8 | 167 | 192 | 263 | ||
10 | RVT.SNT.230.7 | 1 | 7 | 230 | 50 | 31 | 23,5 | 22,9 | 167 | 192 | 263 | ||
11 | RVT.SNT.230.7,5 | 1 | 7,5 | 230 | 50 | 32,61 | 22,45 | 23,1 | 167 | 192 | 263 | ||
12 | RVT.SNT.230.10 | 1 | 10 | 230 | 50 | 43,48 | 16,84 | 33 | 170 | 240 | 230 | ||
13 | RVT.SNT.230.15 | 1 | 15 | 230 | 50 | 65,22 | 11,23 | 43 | 180 | 270 | 260 |
THREE PHASE SHUNT REACTOR
No |
Product Name | Phase No |
Power (kVAr) |
Volt (VAC) |
Frequency (Hz) |
Flow Irms(A) |
Inductance L(mH) |
Weight (kg) |
Dimensional Values(mm) | ||||
I | L | H | |||||||||||
1 | RVT.SNT.400.0,5 | 3 | 0,5 | 400 | 50 | 0,7 | 1018,6 | 4 | 80 | 150 | 165 | ||
2 | RVT.SNT.400.1 | 3 | 1 | 400 | 50 | 1,4 | 509,3 | 8 | 90 | 175 | 170 | ||
3 | RVT.SNT.400.1,5 | 3 | 1,5 | 400 | 50 | 2,2 | 339,5 | 10 | 100 | 175 | 170 | ||
4 | RVT.SNT.400.2 | 3 | 2 | 400 | 50 | 2,9 | 252,0 | 11 | 80 | 230 | 220 | ||
5 | RVT.SNT.400.2,5 | 3 | 2,5 | 400 | 50 | 3,6 | 203,7 | 14 | 85 | 230 | 220 | ||
6 | RVT.SNT.400.3 | 3 | 3 | 400 | 50 | 4,4 | 170,5 | 17 | 90 | 230 | 220 | ||
7 | RVT.SNT.400.3,5 | 3 | 3,5 | 400 | 50 | 4,9 | 120,0 | 19 | 90 | 230 | 220 | ||
8 | RVT.SNT.400.5 | 3 | 5 | 400 | 50 | 7,2 | 101,9 | 25 | 137 | 295 | 265 | ||
9 | RVT.SNT.400.7 | 3 | 7 | 400 | 50 | 10,3 | 82,0 | 27,5 | 140 | 295 | 265 | ||
10 | RVT.SNT.400.7,5 | 3 | 7,5 | 400 | 50 | 10,8 | 67,7 | 30 | 141 | 295 | 265 | ||
11 | RVT.SNT.400.10 | 3 | 10 | 400 | 50 | 14,4 | 50,9 | 38 | 174 | 298 | 265 | ||
12 | RVT.SNT.400.12,5 | 3 | 12,5 | 400 | 50 | 18,0 | 40,6 | 48 | 170 | 360 | 325 | ||
13 | RVT.SNT.400.15 | 3 | 15 | 400 | 50 | 21,7 | 34,0 | 55 | 180 | 360 | 325 | ||
14 | RVT.SNT.400.20 | 3 | 20 | 400 | 50 | 28,9 | 25,5 | 72 | 210 | 410 | 375 | ||
15 | RVT.SNT.400.25 | 3 | 25 | 400 | 50 | 36,1 | 20,4 | 95 | 220 | 410 | 375 | ||
16 | RVT.SNT.400.30 | 3 | 30 | 400 | 50 | 43,3 | 17,0 | 105 | 230 | 410 | 375 | ||
17 | RVT.SNT.400.40 | 3 | 40 | 400 | 50 | 57,7 | 12,7 | 120 | 240 | 460 | 425 | ||
18 | RVT.SNT.400.50 | 3 | 50,0 | 400 | 50 | 72,2 | 10,2 | 150 | 250 | 510 | 475 |