Power Transformers

Image Part Number Description / PDF Quantity Rfq
166J25

166J25

Hammond Manufacturing

PWR XFMR LAMINATED 25VA CHAS MT

3

161H40

161H40

Hammond Manufacturing

PWR XFMR LAMINATED 24VA TH

10

274BX

274BX

Hammond Manufacturing

PWR XFMR LAMINATED 198VA CHAS MT

3

PHC25AGA

PHC25AGA

Hammond Manufacturing

PWR XFMR LAMINATED 25VA CHAS MT

1

372XP

372XP

Hammond Manufacturing

PWR XFMR LAMINATED 75VA CHAS MT

0

PWDP13017

PWDP13017

Hammond Manufacturing

PWR XFMR LAMINATED CHAS MT

0

PHC25JGA

PHC25JGA

Hammond Manufacturing

PWR XFMR LAMINATED 25VA CHAS MT

50

182E117

182E117

Hammond Manufacturing

XFRMR TOROIDAL 30VA CHAS MOUNT

1

370CX

370CX

Hammond Manufacturing

PWR XFMR LAMINATED 59VA CHAS MT

3

166M12B

166M12B

Hammond Manufacturing

PWR XFMR LAMINATED 37.8VA CHAS

12

160F10

160F10

Hammond Manufacturing

PWR XFMR LAMINATED 4.4VA TH

34

183G36

183G36

Hammond Manufacturing

PWR XFMR LAMINATED 10VA TH

39

182N117

182N117

Hammond Manufacturing

PWR XFMR TORO 500VA CHAS MT

0

272JX

272JX

Hammond Manufacturing

PWR XFMR LAMINATED 236VA CHAS MT

5

1182L240

1182L240

Hammond Manufacturing

PWR XFMR TORO 500VA CHAS MT

3

182F22

182F22

Hammond Manufacturing

PWR XFMR TORO 15VA CHAS MT

0

187B28

187B28

Hammond Manufacturing

PWR XFMR LAMINATED 5.6VA CHAS MT

48

166N24

166N24

Hammond Manufacturing

PWR XFMR LAMINATED 96VA CHAS MT

30

290PX

290PX

Hammond Manufacturing

PWR XFMR LAMINATED CHAS MT

4

164J48

164J48

Hammond Manufacturing

PWR XFMR LAMINATED 36VA TH

23

Power Transformers

1. Overview

Power transformers are static electrical devices that transfer energy between circuits through electromagnetic induction. They enable voltage conversion (step-up/step-down) while maintaining galvanic isolation. These components are fundamental in power distribution systems, renewable energy integration, and industrial equipment, ensuring efficient energy transmission and voltage level adaptation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Distribution TransformersMedium voltage conversion (1kV-36kV), compact designUrban power grids, residential areas
Transmission TransformersHigh voltage (66kV-800kV), grid stability focusSubstations, long-distance power lines
Instrument TransformersMeasurement and protection (CT/VT types)Energy metering, relay protection
Specialty TransformersCustom configurations (furnace, traction, marine)Industrial furnaces, railway systems

3. Structure and Components

Typical construction includes:

  • Core: Grain-oriented silicon steel laminations for magnetic flux path
  • Windings: Primary/secondary copper/aluminum coils with insulation layers
  • Insulation: Mineral oil, synthetic esters, or solid materials (e.g., epoxy)
  • Cooling System: Radiator tanks, fans, or forced-oil circulation
  • Tap Changer: On-load/off-load voltage regulation mechanism
  • Protection: Buchholz relay, pressure relief valves, temperature sensors

4. Key Technical Parameters

ParameterTypical RangeSignificance
Rated Voltage230V-800kVDetermines system compatibility
Power Capacity50kVA-1000MVADefines energy throughput
Voltage Ratio1:1 to 1:20Specifies transformation ratio
Efficiency95%-99.5%Impacts operational costs
Short Circuit Impedance4%-20%Affects fault current limitation
Insulation ClassA (105 C) to C (220 C)Determines thermal endurance

5. Application Areas

Major sectors include:

  • Electricity distribution networks (urban/rural)
  • Renewable energy systems (wind/solar grid-tied inverters)
  • Industrial machinery (CNC, smelters, compressors)
  • Railway traction systems (15kV-25kV conversion)
  • Data centers (HVDC conversion systems)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Siemens EnergyBlue TransformersEnvironmentally friendly synthetic ester insulation
Asea Brown Boveri (ABB)550kV UHV Transformer 500kV DC transmission capability
General Electric (GE)Premier SeriesSmart monitoring with Predictivity analytics
Mitsubishi Electric330MVA Traction TransformerCompact design for Shinkansen trains

7. Selection Guidelines

Key considerations:

  • Voltage levels (primary/secondary requirements)
  • Load profile (continuous vs. intermittent duty)
  • Cooling requirements (ONAN/ONAF/OFAF modes)
  • Environmental conditions (temperature, altitude, seismic zones)
  • Protection features (IP rating, fire resistance)
  • Smart grid compatibility (IoT sensor integration)

Case Study: Wind farm grid connection selected 33/132kV ONAF-cooled transformer with 12% impedance to meet fault ride-through requirements.

8. Industry Trends

Current development directions:

  • Smart transformers with real-time monitoring (IEEE C57.163 compliant)
  • Amorphous metal core adoption (50% core loss reduction)
  • Hydrogen-cooled systems for offshore applications
  • Modular solid-state transformer (SST) prototypes (DOE GRID DATA initiative)
  • Increased demand for 132kV+ mobile transformers in disaster recovery

Market forecasts indicate 6.2% CAGR through 2030, driven by grid modernization and EV charging infrastructure expansion.

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