• TBM15-13K5UHI(R)F
  • TBM15-13K5UHI(R)F
  • TBM15-13K5UHI(R)F
  • TBM15-13K5UHI(R)F

TBM15-13K5UHI(R)F

Compact TBM series three-phase low-voltage AC-DC bidirectional power module with 15VDC output, 900A rated current, 13.5kW power, 480VAC 3Ph+PE input, and a space-saving 218 × 86 × 300mm design. Featuring high-frequency isolation, up to 93.5% AC-to-DC efficiency and 92% DC-to-AC efficiency, PF above 0.99, THDi below 5%, CAN communication, intelligent forced-air cooling, and parallel expansion up to 4 units, it is ideal for cell formation and test equipment as well as energy-recyclable power aging applications.

Wiring Mode
3Ph+PE
AC Input Rated Voltage
480VAC
DC Output Rated Voltage
15VDC
DC Output Rated Current
900A
Power Direction
Bidirectional
Expandability
4
Size(W*H*D)
218mm*86mm*300mm
Weight
≤6.5kg
  • TBM15-13K5UHI(R)F
  • TBM15-13K5UHI(R)F

Description

Model: TBM15-13K5UHI(R)F Wiring: 3Ph+PE 480VAC nominal (384–528VAC range)

Key specifications

  • Rated output capacity: 13.5kW (AC→DC)
  • AC input: 480VAC nominal; 384–528VAC range; 50/60Hz ±5Hz
  • DC output: 15VDC, 900A
  • DC→AC rated input capacity: 10.8kW; DC input: 15VDC, 720A

Performance & power quality

  • Peak efficiency: 93.5% @ 480VAC (AC→DC); 92% @ 480VAC (DC→AC)
  • Power factor: 0.99 @ 480VAC (full load, grid THDu ≤2%)
  • THDi: <5% @ 480VAC (full load, grid THDu ≤2%)
  • Isolation: bidirectional high-frequency isolation; soft-switching technology

Integration & scaling

  • Communication: CAN
  • Parallel expansion: up to 4 units connected in parallel
  • Cooling: forced-air cooling with intelligent control
  • Airflow: default front inlet & rear outlet; “R type” rear inlet & front outlet

Applications & compliance

  • Typical uses: cell formation, battery test benches, energy-recycling aging equipment
  • Why it stands out: modular design for scaling, high PF & low THDi, seamless mode switching
  • Compliance targets (per specification): excellent EMC aligned to EN 55032; certification pathway depends on system (UL/CE/TÜV noted in specs)

Confirm the parallel system topology and CAN control strategy during equipment design.

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