Pulse Transformers

Image Part Number Description / PDF Quantity Rfq
T5038NL

T5038NL

PulseLarsen Antenna

MODULE ISDN-S 1CT:2CT 30MH SMD

0

PE-68822NL

PE-68822NL

PulseLarsen Antenna

XFRMR 1CT:2CT/1:1.36CT 1.6/1.6MH

0

H1200NLT

H1200NLT

PulseLarsen Antenna

XFRMR MODULE 2PORT 1:1 10/100

186

PA1282NL

PA1282NL

PulseLarsen Antenna

PULSE XFMR 155UH

0

PA3493NLT

PA3493NLT

PulseLarsen Antenna

PULSE XFMR 1.25:1 656UH

0

PE-65793T

PE-65793T

PulseLarsen Antenna

PULSE XFMR 1:1 TX 1:1 RX 22MH

0

PA2194NLT

PA2194NLT

PulseLarsen Antenna

PULSE XFMR 617.4UH

0

PA3242NL

PA3242NL

PulseLarsen Antenna

PULSE XFMR 220UH

0

PA4065NLT

PA4065NLT

PulseLarsen Antenna

PULSE XFMR 100.5UH

0

H5007ENLT

H5007ENLT

PulseLarsen Antenna

PULSE XFMR 1CT:1CT TX 1CT:1CT RX

0

PA2431NL

PA2431NL

PulseLarsen Antenna

PULSE XFMR 429.3UH

0

PE-65834NL

PE-65834NL

PulseLarsen Antenna

XFRMR T1/CEPT/ISDN 1:1 1.2MH T/H

491

HX1305NLT

HX1305NLT

PulseLarsen Antenna

XFRMR MODULE 2PORT 1:1 10/100

0

T3012NLT

T3012NLT

PulseLarsen Antenna

XFRMR T3/DS3/E3/STS-1 1:2CT SMD

0

PA2194NL

PA2194NL

PulseLarsen Antenna

PULSE XFMR 617.4UH

0

PA3342NLT

PA3342NLT

PulseLarsen Antenna

PULSE XFMR 90UH

0

PA2204NLT

PA2204NLT

PulseLarsen Antenna

PULSE XFMR 5UH

0

PA1309NLT

PA1309NLT

PulseLarsen Antenna

PULSE XFMR 16.4UH

0

PA2006NLT

PA2006NLT

PulseLarsen Antenna

PULSE XFMR 1:1 864UH

0

PH9572.211NLT

PH9572.211NLT

PulseLarsen Antenna

GDT, FUNCTIONAL, EP7, SMT

0

Pulse Transformers

1. Overview

Pulse transformers are specialized electromagnetic devices designed to transfer electrical pulse signals between circuits while maintaining galvanic isolation. They play a critical role in modern electronics by enabling efficient signal transmission, voltage level conversion, and noise suppression. Their unique ability to handle fast transient signals makes them essential in power electronics, telecommunications, and industrial control systems.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Signal Pulse TransformerHigh bandwidth, fast rise time (ns level), low distortionDigital communication interfaces (RS485, Ethernet)
Power Pulse TransformerHigh voltage isolation (>1kV), high efficiency (>90%)Switch-mode power supplies (SMPS), motor drives
High-Voltage Pulse TransformerMulti-kV insulation, partial discharge resistanceX-ray generators, radar systems
Wideband Pulse TransformerFrequency range: 100kHz-100MHz, flat response curveRF amplifiers, test equipment

3. Structure and Components

Typical construction includes:

  • Primary/secondary windings: Enamelled copper wire with precise turn ratio
  • Magnetic core: Ferrite (high permeability), powdered iron (high saturation)
  • Insulation system: Multi-layer dielectric barriers, vacuum pressure impregnation
  • Termination: Surface-mount pads or through-hole pins

Advanced designs use planar transformers with PCB-integrated windings for improved thermal management.

4. Key Technical Parameters

ParameterTypical RangeImportance
Turns Ratio1:1 to 1:100Voltage scaling accuracy
Frequency Range100kHz-10MHzSignal integrity maintenance
Isolation Voltage500V-30kVSafety compliance (UL/IEC)
Pulse Rise Time1ns-50nsDigital signal fidelity
Leakage Inductance<1 HEfficiency optimization

5. Application Fields

  • Power Electronics: Isolated gate drivers for IGBT/MOSFET
  • Telecommunications: DSL line interface units
  • Medical Equipment: Patient-isolated monitoring systems
  • Industrial Control: PLC signal transmission
  • Automotive: EV battery management system (BMS) isolation

Case Study: In electric vehicle chargers, pulse transformers enable 1500V isolation between grid and battery systems while maintaining 98% signal integrity at 2MHz switching frequency.

6. Leading Manufacturers

ManufacturerKey Product SeriesSpecifications
CoilcraftPulse-Hi Series1:1.4 ratio, 25kV isolation, 100MHz bandwidth
Pulse ElectronicsPA1538NL1:16 ratio, 3kV isolation, 100ns rise time
TDK-LambdaCUT1002.5kV isolation, 2MHz frequency, SMD package

7. Selection Guidelines

Key considerations:

  • Match turns ratio with driver/receiver voltage requirements
  • Verify insulation class against system safety standards
  • Check frequency response vs. signal bandwidth requirements
  • Consider thermal rating for continuous power operation
  • Evaluate PCB footprint constraints (through-hole vs SMD)

8. Industry Trends

Current development directions include:

  • Miniaturization through nanocrystalline core materials
  • Integration with EMI filtering components
  • Increased operating frequencies (>10MHz) for 5G infrastructure
  • SiC/GaN compatible designs for wide bandgap power devices
  • Automotive-grade models for 800V EV systems
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