Inrush Current Limiters (ICL)

Image Part Number Description / PDF Quantity Rfq
SL03 10001

SL03 10001

Ametherm

ICL 10 OHM 20% 1A 3MM

5523

B57213P121M301

B57213P121M301

TDK EPCOS

ICL 120 OHM 20% 2A 14.5MM

1144

MF73T-1 5/25

MF73T-1 5/25

Cantherm

ICL 5 OHM 20% 25A 40MM

30

CL-50B

CL-50B

Thermometrics (Amphenol Advanced Sensors)

ICL 7 OHM 5A 19.56MM

2000

SL10 12101

SL10 12101

Ametherm

ICL 120 OHM 20% 1A 10MM

0

SL18 2R508-A

SL18 2R508-A

Ametherm

ICL 2.5 OHM 20% 8A 19MM

0

MS32 20010-B

MS32 20010-B

Ametherm

ICL 20 OHM 25% 10A 31MM

100

SL22 2R508-A

SL22 2R508-A

Ametherm

ICL 2.5 OHM 20% 8A 22MM

0

SL22 12103-B

SL22 12103-B

Ametherm

ICL 120 OHM 25% 3A 22MM

261

B57236S0509L002

B57236S0509L002

TDK EPCOS

ICL 5 OHM 15% 4.5A 11.5MM

0

MF72-200D5

MF72-200D5

Cantherm

ICL 200 OHM 20% 100MA 7MM

0

SL32 0R530-B

SL32 0R530-B

Ametherm

ICL 500 MOHM 20% 30A 31MM

178

ICL155R007-01

ICL155R007-01

Honeywell Sensing and Productivity Solutions

ICL 5 OHM 20% 7A 15MM

913

MF73T-1 5/17

MF73T-1 5/17

Cantherm

ICL 5 OHM 20% 17A 30MM

49

B57237S0109M051

B57237S0109M051

TDK EPCOS

ICL 1 OHM 20% 9A 15MM

803

SL18 30006-A

SL18 30006-A

Ametherm

ICL 30 OHM 25% 6A 18MM

300

CL-210A

CL-210A

Thermometrics (Amphenol Advanced Sensors)

ICL 30 OHM 25% 1.5A 10.16MM

0

CL-30B

CL-30B

Thermometrics (Amphenol Advanced Sensors)

ICL 2.5 OHM 25% 8A 19.56MM

2014

SL32 0R530

SL32 0R530

Ametherm

ICL 500 MOHM 20% 30A 31MM

6826

MF72-022D7

MF72-022D7

Cantherm

ICL 22 OHM 20% 600MA 9MM

5156

Inrush Current Limiters (ICL)

1. Overview

Inrush Current Limiters (ICL) are electronic components designed to suppress peak currents during device startup, protecting circuits from thermal and electrical stress. These transient currents, often 10-100 times higher than steady-state levels, occur in capacitive or inductive loads like power supplies, motors, and transformers. Modern electronics increasingly rely on ICLs to ensure system reliability, comply with safety standards, and extend product lifespans.

2. Main Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
NTC Thermistor ICLResistance decreases with temperature rise, self-resetting capabilitySwitching power supplies, LED drivers
PTC Thermistor ICLResistance increases with temperature, latching protectionMotor start circuits, battery management systems
Active ICLElectronic control using MOSFETs/IGBTs with precise timingHigh-precision industrial equipment
Hybrid ICLCombines passive and active elements for optimized performanceElectric vehicle charging stations

3. Structure & Composition

ICLs typically consist of three key elements:

  • Sensing Element: Thermally responsive material (e.g., NTC ceramic) or semiconductor junctions
  • Conductive Path: Silver/palladium electrodes in thermistors or MOSFET channels in active devices
  • Encapsulation: Epoxy or ceramic coatings for environmental protection

Active ICLs additionally integrate control ICs, gate drivers, and heat dissipation structures.

4. Key Technical Specifications

ParameterDescriptionImportance
Maximum Steady-State Current (Imax)Rated operational current after inrush suppressionDetermines continuous load capacity
Response Time (tresponse)Time to activate current limiting functionProtects against fast transient events
Clamping Voltage (Vclamp)Maximum voltage during limiting operationPrevents downstream component damage
Operating Temperature RangeFunctional temperature limitsEnsures reliability in extreme environments
Energy Absorption (I t)Total energy handling capabilityDefines survival under fault conditions

5. Application Fields

Major industries utilizing ICLs include:

  • Consumer Electronics: Power adapters, HVAC systems
  • Industrial: Variable frequency drives, welding machines
  • Automotive: EV charging stations, onboard chargers
  • Medical: MRI power systems, patient monitors

Typical case: NTC ICLs reduce 50A startup surges to 5A in 500W switching power supplies.

6. Leading Manufacturers & Products

ManufacturerProduct SeriesKey Features
TDK CorporationB59xxx SeriesHigh-reliability NTCs for automotive applications
LittelfusePTCLxxx SeriesAEC-Q100 qualified PTC devices
Bel Fuse0Zxxx SeriesMulti-layer ceramic thermistors
EPCOS (TDK)B25xxx SeriesHybrid ICLs with integrated sensors

7. Selection Guidelines

Critical factors for proper ICL selection:

  • Match Imax with system steady-state requirements (+20% margin)
  • Verify Vrated exceeds peak AC voltage by 50%
  • Consider ambient temperature effects on performance
  • Evaluate reset time for thermistor-based solutions
  • For active ICLs: Confirm compatibility with control signals

Example: A 240VAC motor drive requires an ICL with 15A Imax and 300Vclamp.

8. Industry Trends

Emerging developments include:

  • Miniaturization: 0603-sized active ICLs for mobile devices
  • Wide bandgap integration: SiC/GaN-based hybrid devices
  • Smart ICLs: Embedded current monitoring and diagnostics
  • Material innovation: Graphene-enhanced thermistors

Market growth driven by EV charging infrastructure and renewable energy systems, projected at 7.2% CAGR through 2027.

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