Uninterruptible Power Supply
Uninterruptible Power Supply (UPS)
Customer options: for ease of installation and operation, we manufacture mounting elements adapted to the structural features of the UPS installation site.
Technical features:
- compliance with European and Ukrainian standards
- high reliability and durability
- high performance
- convenient terminal layout
- ease of operation
- ensures the necessary operational safety
- prevents accidental load release upon loss of supply voltage
Table. Main Parameters of Electromagnet Control Station
| Designation | IBP100U3 | IBP150U3 |
| Power supply (two phases used) | three-phase | |
| Supply voltage (input), V ±10% | 380 | |
| Maximum output voltage, V ±5% | 220 | |
| Maximum current, A, ≤ | 100 | 150 |
| Operating time under load (battery) with current, min, ≤ | 20 | |
| Number of batteries, pcs. | 18 | |
| Frequency, Hz | 50 | |
| Duty cycle (ED), % | 75 | |
| Protection rating, IP | 10 | |
| Batteries used | Battery type 12V-55Ah; battery charge current – 5…7 A; U min to enable battery operation – 200 V; U in battery float charge mode 225…230 V | |
| Overall dimensions, A x B x C, approx. mm | 1500x1400x700 | |
| Weight, approx. kg | 370 | 550 |
We will be happy to help you choose an electromagnet control station that best suits your production needs.
We look forward to receiving your inquiries.
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Frequently Asked Questions (FAQ)
The lifting capacity of an electromagnet is the maximum load weight permitted to be lifted and moved by the magnet. It typically equals 0.5 of the breakaway (tear-off) force, providing a safety factor for secure operation.
The lifting capacity depends on the magnitude of the magnetic flux in the core. The flux increases as the magnetomotive force increases and as the magnetic reluctance of the circuit decreases.
Copper coils cost twice as much as aluminum ones; copper has 1.7 times higher conductivity than aluminum; copper density is 3.3 times higher than aluminum; copper’s specific heat capacity is 3 times lower than aluminum’s; copper coils offer more repair cycles and a longer service life than aluminum.
Welded steel housings are simple and cost-effective to produce. The advantages of a cast magnetic core over a welded one include cooling fins, greater operational durability, solid structural integrity, and the complete absence of internal air gaps.
Overheating, lower density of scrap metal, switching to metal stock with larger air gaps, and malfunctions in the control cabinet (voltage converter).
Improper operation (faulty control cabinet, overheating, moisture exposure, overvoltage), coil-to-housing breakdown (ground fault), open-circuit/broken conductors, and inter-turn short circuits within the coil.
