Transformer Kits

Image Part Number Description / PDF Quantity Rfq
CST206K

CST206K

Triad Magnetics

KIT CRNT SENSE TRANSF CST206 SER

8

0199000024

0199000024

Fair-Rite Products Corp.

RFID KIT #24

1

B82801X0002

B82801X0002

TDK EPCOS

SMT CURRENT SENSE TRANSFORMERS K

2

CST306K

CST306K

Triad Magnetics

KIT CRNT SENSE TRANSF CST306 SER

7

PH9400NLKIT

PH9400NLKIT

PulseLarsen Antenna

HIGH ISOLATION GDT KIT

0

4AMPS-CSTNLKIT

4AMPS-CSTNLKIT

PulseLarsen Antenna

4 AMPS CURRENT SENSE TRANS NPB

0

B82801X 4

B82801X 4

TDK EPCOS

SMT CURRENT SENSE TRANSFORMERS K

2

TEL-NOTEKIT-2

TEL-NOTEKIT-2

J.W. Miller / Bourns

TELNOTE DESIGN KIT - EXPOSED POW

0

GDE25K

GDE25K

Triad Magnetics

KIT TRANSF GATE DRIVE GDE25 KIT

4

749196

749196

Würth Elektronik Midcom

FLEXIBLE TRANSFORMER FOR DC/DC C

0

PH9085NLKIT

PH9085NLKIT

PulseLarsen Antenna

ISOLATION TRANSFORMER KIT

0

PH9385NLKIT

PH9385NLKIT

PulseLarsen Antenna

HIGH ISOLATION TRANSFORMER KIT

0

10AMPS-CSTKIT

10AMPS-CSTKIT

PulseLarsen Antenna

10 AMPS CURRENT SENSE TRAN PBC

0

PH9185NLKIT

PH9185NLKIT

PulseLarsen Antenna

HIGH ISOLATION TRANSFORMER KIT

0

UKIT-007AE

UKIT-007AE

PulseLarsen Antenna

KIT NETWORK AUTOMOTIVE

18

B82801X0003

B82801X0003

TDK EPCOS

SMT CURRENT SENSE TRANSFORMERS K

2

749010

749010

Würth Elektronik Midcom

DESIGN KIT WE-LAN

0

35AMPS-CSTNLKIT

35AMPS-CSTNLKIT

PulseLarsen Antenna

TRANSISTOR CURR SENSE 35A

0

0199000029

0199000029

Fair-Rite Products Corp.

RF POWER ROD KIT #29

0

749119

749119

Würth Elektronik Midcom

POWER OVER ETHERNET TRANSFORMER

0

Transformer Kits

1. Overview

KitsTransformer Kits refer to modular systems containing transformers and associated components, designed for power conversion, voltage regulation, and signal isolation in electrical circuits. These kits integrate core electromagnetic principles to enable efficient energy transfer between circuits without direct electrical connection. Their importance spans modern power systems, industrial automation, renewable energy integration, and electronic device design.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Power Transformer KitsHigh-efficiency AC voltage conversionGrid substations, industrial HVAC systems
Isolation Transformer KitsGalvanic separation for safetyMedical equipment, industrial control panels
Electronic Transformer KitsCompact PCB-mountable designsSwitch-mode power supplies, LED drivers
Instrumentation Transformer KitsPrecision voltage/current measurementGrid metering, test equipment

3. Structure and Components

Typical KitsTransformer Kits consist of:

  • Ferrite or silicon steel core for magnetic flux control
  • Primary/secondary copper windings with insulation layers
  • Dielectric housing (ABS/PC materials)
  • Terminal blocks (screw/clamp types)
  • Thermal protection devices (for high-power models)

4. Key Technical Specifications

ParameterImportance
Rated Power (VA/kVA)Determines maximum load capacity
Turns Ratio Accuracy ( %)Impacts voltage regulation precision
Operating Frequency (Hz)Defines application compatibility
Efficiency (>%)Energy loss and thermal performance
Insulation Class (F/H)Safety and dielectric strength
Temperature Rise ( C)Lifespan and reliability indicator

5. Application Fields

Major industries include:

  • Power Generation: Grid transformers, solar inverters
  • Manufacturing: CNC machine controls, robotic systems
  • Telecommunications: DSL signal isolation, PoE systems
  • Transportation: EV charging stations, rail traction systems

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
ABBRESIBLOC Dry-type Transformer Kit
SiemensSICAM Transformer Monitoring Kit
TE ConnectivityHammond Power Solutions Kits
Schneider ElectricPowerLogic Transformer Protection Kit

7. Selection Recommendations

Key considerations:

  • Match rated power to 1.25 maximum load requirements
  • Select insulation class based on environmental temperature (Class F for >100 C)
  • Verify compliance with regional standards (IEC 60076, UL 1561)
  • Assess cooling requirements (air/oil-immersed options)
  • Compare no-load losses for energy-efficient systems

8. Industry Trends Analysis

Emerging developments:

  • Adoption of amorphous metal cores for 50% reduced no-load losses
  • Integration with IoT sensors for condition monitoring
  • Miniaturization through planar transformer technology
  • Increased demand for wide-bandgap semiconductor-compatible designs
  • Growth in renewable energy applications (wind/solar farms)

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