Ionizer Equipment

Image Part Number Description / PDF Quantity Rfq
50620

50620

EMIT

CONTROLLER, ION PYTHON, FOOT SWI

4

50621

50621

EMIT

CONTROLLER, ION PYTHON, FOOT SWI

0

94222

94222

EMIT

ION BAR ASSEMBLY

0

50670

50670

EMIT

BENCHTOP ZERO VOLT IONIZER, STAI

0

19588

19588

EMIT

CONTR HAND GUN W/HOSE 220V NIST

0

50920

50920

EMIT

ION BAR ASSEMBLY, AIR-ASSISTED 1

0

60473

60473

EMIT

IONIZER O'HEAD 3FAN 120V US PLUG

6

50902

50902

EMIT

ION BAR ASSEMBLY, 36 INCH, 8 EMI

0

50925

50925

EMIT

ION BAR ASSEMBLY, AIR-ASSISTED 7

0

60467

60467

EMIT

IONIZER OVRHD 120VAC 2 FAN W/LT

4

50901

50901

EMIT

ION BAR ASSEMBLY, 24 INCH, 6 EMI

1

60501

60501

EMIT

JR IONIZER CASSETTE 120V W/HEATR

0

60515

60515

EMIT

MOTION SENSOR IONIZER 220V

0

50691

50691

EMIT

BENCHTOP ZERO VOLT IONIZER, POWD

0

50665

50665

EMIT

3FAN ZERO VOLT OHD IONIZER 120V

0

50921

50921

EMIT

ION BAR ASSEMBLY, AIR-ASSISTED 2

0

60505

60505

EMIT

IONZR BNCHTP HI OUT 120VAC NIST

5552

50922

50922

EMIT

ION BAR ASSEMBLY, AIR-ASSISTED 3

0

19520

19520

EMIT

IONIZER BLOWER BENCH 220V NIST

0

50903

50903

EMIT

ION BAR ASSEMBLY, 48 INCH, 12 EM

0

Ionizer Equipment

1. Overview

Ionizer equipment neutralizes static electricity by generating positive and negative ions to balance charges on surfaces. This technology is critical in semiconductor manufacturing, electronics assembly, and cleanroom environments where electrostatic discharge (ESD) can damage sensitive components or compromise product quality. Modern ionizers integrate advanced airflow control, self-monitoring systems, and adaptive ion output regulation.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
AC IonizersAlternating current power supply, balanced ion emissionPCB assembly lines
DC IonizersSeparate high-voltage DC power for ions, faster neutralizationAutomotive sensor manufacturing
Pulsed DC IonizersModulated voltage control, superior balance stabilityHard disk drive production
Self-Contained IonizersIntegrated power supply and emittersCleanroom HVAC systems
Soft X-Ray IonizersRadiation-based ionization, contactless operationBiopharmaceutical processing

3. Structure & Components

Typical ionizers consist of:

  • Discharge electrode arrays (tungsten/carbon fiber tips)
  • High-voltage power supply modules (AC/DC converters)
  • Forced-air systems (variable-speed fans)
  • Aluminum/polycarbonate housing with EMI shielding
  • Control panels with LED status indicators
  • Optional ion balance sensors

4. Key Technical Parameters

ParameterTypical RangeSignificance
Offset Voltage 1V - 50VResidual charge after neutralization
Neutralization Time0.5s - 20sProduction line throughput impact
Airflow Rate0.5 - 5.0 m /minPollutant removal efficiency
Operating Temperature0 C - 50 CEnvironmental compatibility
MTBF20,000 - 50,000 hoursSystem reliability indicator

5. Application Fields

Key industries include:

  • Semiconductor fabrication (wafer handling systems)
  • Flat panel display manufacturing (ITO glass processing)
  • Medical device assembly (Class 100 cleanrooms)
  • Aerospace electronics (avionics testing)
  • Data storage media production (magnetic head alignment)
Case Study: In 300mm wafer manufacturing, ionizers reduce particle attraction by 78%, improving yield rates by 12% annually.

6. Leading Manufacturers & Products

ManufacturerProduct SeriesKey Features
Simco-IonHyperion AC6000Auto-balance feedback control
3M8110 ESD IonizerModular emitter replacement
Meech928 HyperactiveSmart ion monitoring
HaugIonPro MFEnergy-efficient DC design
ShishinASD-2000Low-voltage pulse technology

7. Selection Recommendations

Key considerations:

  • Environmental requirements (cleanroom class, humidity range)
  • Ion balance stability (critical for sub-10nm processes)
  • Footprint constraints (overhead vs. benchtop installations)
  • Compliance standards (JEDEC J-STD-001, IPC-J-STD-001)
  • Maintenance accessibility (electrode cleaning frequency)
Example: Select pulsed DC models for ISO Class 4 environments, AC variants for general packaging lines.

8. Industry Trends

Development directions include:

  • AI-driven ion balance optimization
  • Integration with IoT monitoring systems
  • Nano-particle suppression hybrid designs
  • Energy recovery technologies (30% power reduction)
  • Graphene electrode materials (2x lifespan improvement)
Market growth projected at 6.8% CAGR through 2028, driven by EV electronics and 5G component manufacturing demands.

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