Isolation Transformers and Autotransformers, Step Up, Step Down

Image Part Number Description / PDF Quantity Rfq
DT661H14S

DT661H14S

SolaHD

14KVA 460D-230Y SCR DRIVE

0

XF-A0200B

XF-A0200B

Amgis

AUTO TRANSFORMER, 230V:115V 50/6

0

DT631H118S

DT631H118S

SolaHD

118KVA 575D-230Y SCR DRIVE

0

DT651H75S

DT651H75S

SolaHD

75KVA 460D-460Y SCR DRIVE

0

DT631H175S

DT631H175S

SolaHD

175KVA 575D-230Y SCR DRIVE

0

E84H112S

E84H112S

SolaHD

112.5KVA 208D-480Y

0

ES5HB37S

ES5HB37S

SolaHD

37KVA 240X480-120/240 1P 80C

0

E2HF75S

E2HF75S

SolaHD

75KVA 480D-208Y 115C

0

DT661H11S

DT661H11S

SolaHD

11KVA 460D-230Y SCR DRIVE

0

XF-A0700B

XF-A0700B

Amgis

AUTO TRANSFORMER, 230V:115V 50/6

0

DT661H275S

DT661H275S

SolaHD

275KVA 460D-230Y SCR DRIVE

0

DT661H51S

DT661H51S

SolaHD

51KVA 460D-230Y SCR DRIVE

0

DT651H63S

DT651H63S

SolaHD

63KVA 460D-460Y SCR DRIVE

0

DT631F7.5S

DT631F7.5S

SolaHD

7.5KVA 575D-230Y SCR DRIVE

0

E2H15

E2H15

SolaHD

15KVA 480D-208Y NO ESS

0

E85H45S

E85H45S

SolaHD

45KVA 240D-480Y

0

HS22B250

HS22B250

SolaHD

0.250KVA 240X480-24/48 BB

0

E2H500S

E2H500S

SolaHD

500KVA 480D-208Y

0

E85H15S

E85H15S

SolaHD

15KVA 240D-480Y

0

E85H30S

E85H30S

SolaHD

30KVA 240D-480Y

0

Isolation Transformers and Autotransformers, Step Up, Step Down

1. Overview

Transformers are static electrical devices that transfer energy between circuits through electromagnetic induction. Isolation transformers provide galvanic separation between primary and secondary circuits, while autotransformers share a common winding. Step-up/down transformers adjust voltage levels (increasing/decreasing respectively) for power transmission, distribution, and equipment compatibility. These devices are critical in power systems, industrial machinery, renewable energy, and electronic applications.

2. Main Types and Functional Classification

TypeFunctionalityApplications
Isolation TransformerSeparates primary/secondary circuits for safety and noise reductionHospitals, data centers, laboratory equipment
AutotransformerSingle winding with shared magnetic and electrical pathVoltage regulation in industrial motors, railway systems
Step-Up TransformerIncreases voltage (N2>N1) for long-distance transmissionPower plants, grid substations
Step-Down TransformerDecreases voltage (N2<N1) for end-use compatibilityHousehold appliances, distribution networks

3. Structure and Components

Typical construction includes:

  • Core: Silicon steel laminations to reduce eddy current losses
  • Windings: Copper/aluminum coils with insulation layers (primary/secondary for isolation transformers, single tapped winding for autotransformers)
  • Insulation: Mineral oil, epoxy resin, or air-based dielectric systems
  • Enclosure: Metal housing with cooling vents or radiators
  • Terminals: Safety-rated connectors for input/output connections

4. Key Technical Specifications

ParameterSignificanceTypical Range
Turns RatioDetermines voltage transformation ratio0.1:1 to 10:1
Power RatingDefines maximum VA/kVA capacity50 VA - 100 MVA
Insulation ClassSpecifies thermal and dielectric withstand capabilityClass I/II, 150-220 C
EfficiencyEnergy conversion ratio ( = Pout/Pin)95-99% (large units)
Frequency RangeOperational frequency compatibility50/60 Hz, 400 Hz (aviation)

5. Application Areas

  • Energy: Grid transmission (step-up), distribution networks (step-down)
  • Healthcare: Isolation transformers for patient-connected medical devices
  • Manufacturing: Autotransformers for motor starting and voltage control
  • Electronics: PCB-mounted step-down transformers for AC-DC conversion
  • Renewables: Step-up transformers in solar inverters and wind turbines

6. Leading Manufacturers and Products

ManufacturerKey Products
ABBRESIBLOC dry-type transformers, 3-phase isolation units
SiemensSiempreGuard encapsulated transformers
General ElectricStep-up transformers for wind energy (110MVA/132kV)
Delta ElectronicsAutotransformers for servo motor control systems

7. Selection Guidelines

Key considerations:

  • Voltage and current requirements (including tolerance margins)
  • Isolation necessity (double insulation vs. autotransformer cost-benefit analysis)
  • Environmental factors (temperature, humidity, altitude)
  • Compliance standards (UL 5085, IEC 61558, IEEE C57.12.00)
  • Space constraints (dry-type vs. oil-immersed units)
  • Short-circuit protection requirements
Example: For medical imaging equipment, select a Class I isolation transformer with reinforced insulation and leakage current <10 A.

8. Industry Trends

Emerging developments include:

  • High-frequency transformers for compact converter systems (SiC/GaN inverters)
  • Smart transformers with integrated IoT sensors for predictive maintenance
  • Biodegradable ester-based insulation fluids
  • Amorphous core designs reducing no-load losses by 60-70%
  • Modular transformer arrays for renewable energy microgrids

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