Fans - Finger Guards, Filters & Sleeves

Image Part Number Description / PDF Quantity Rfq
109-1001F13

109-1001F13

Sanyo Denki

RESIN FILTER KITS 92MM (13PPI)

21

109-722

109-722

Sanyo Denki

127MM FAN GUARD SILVER

87

KM127

KM127

Sanyo Denki

127MM STANDARD FAN GUARDS

413

109-019C

109-019C

Sanyo Denki

120MM FAN GUARD SILVER

654

109-019K

109-019K

Sanyo Denki

120MM FAN GUARD BLACK

0

109-319E

109-319E

Sanyo Denki

172MM FAN GUARD SAVER

160

109-049C

109-049C

Sanyo Denki

80MM FAN GUARD SILVER

379

109-1001F30

109-1001F30

Sanyo Denki

RESIN FILTER KITS 92MM (30PPI)

274

109-1000M20

109-1000M20

Sanyo Denki

FILTER MEDIA 1=5 120MM (20PPI)

129

109-1001M13

109-1001M13

Sanyo Denki

FILTER MEDIA 1=5 92MM (13PPI)

216

KM172

KM172

Sanyo Denki

172MM STANDARD FAN GUARDS

636

109-319J

109-319J

Sanyo Denki

172MM FAN GUARD SDCUT SILVER

264

109-1003F40

109-1003F40

Sanyo Denki

RESIN FILTER KITS 60MM (40PPI)

348

109-619E

109-619E

Sanyo Denki

160MM FAN GUARD SILVER

471

109-1065

109-1065

Sanyo Denki

38MM FAN GUARD SILVER

0

109-1000F20

109-1000F20

Sanyo Denki

RESIN FILTER KITS 120MM (20PPI)

141

109-1000F13

109-1000F13

Sanyo Denki

RESIN FILTER KITS 120MM (13PPI)

647

109-1001F20

109-1001F20

Sanyo Denki

RESIN FILTER KITS 92MM (20PPI)

223

109-1003F13

109-1003F13

Sanyo Denki

RESIN FILTER KITS 60MM (13PPI)

343

109-149E

109-149E

Sanyo Denki

52MM FAN GUARD SILVER

0

Fans - Finger Guards, Filters & Sleeves

1. Overview

Fan accessories including finger guards, filters, and sleeves are critical components in thermal management systems. Finger guards prevent physical contact with rotating blades, filters ensure airflow purity, and sleeves optimize aerodynamic performance. These components are essential for maintaining equipment reliability, safety compliance, and energy efficiency in modern electronics, industrial machinery, and HVAC systems.

2. Main Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Perforated Metal GuardsMechanical protection with 95% airflow retentionIndustrial motors, power tools
Polymer Mesh FiltersParticulate filtration (5-50 m efficiency)Server racks, medical devices
Aerofoil SleevesFlow guidance with 15-20% static pressure increaseAerospace cooling systems
EMI Shielding GuardsRadiation suppression (30-100MHz range)Telecom equipment

3. Structure & Composition

Finger guards typically use stamped aluminum alloys (6061-T6) or glass-reinforced nylon. Filters employ multi-layer media: pre-filters (PET non-woven), HEPA layers (borosilicate microfibers), and activated carbon. Sleeves are constructed from anodized aluminum or fiber-reinforced polymers with aerodynamic profiles optimized via CFD analysis. All components incorporate anti-vibration mounts and corrosion-resistant coatings.

4. Key Technical Specifications

ParameterValue RangeImportance
Material Temp Range-40 C to +150 COperational stability
Filter Efficiency80-99.97% @ 0.3 mContamination control
Pressure Drop5-50 PaEnergy consumption
Noise Level20-45 dB(A)Environmental comfort

5. Application Fields

  • IT Infrastructure: Data center cooling systems
  • Industrial Automation: CNC machine tool cooling
  • Consumer Electronics: Gaming PC thermal management
  • Medical Equipment: MRI scanner thermal control

6. Leading Manufacturers & Products

ManufacturerProduct SeriesKey Features
NMB TechnologiesAeroGuard ProIntegrated EMI shielding & variable pitch design
SunonwealthMagLev Filter SleeveMagnetic levitation bearing & 50,000h L10 life
Delta ElectronicsSmartAir GuardPiezoelectric vibration sensing & IoT integration

7. Selection Guidelines

Consider environmental factors (temperature/humidity), system airflow requirements (CFM vs static pressure), maintenance accessibility, and regulatory standards (UL/CSA/CE). For high-contamination environments, select filters with differential pressure indicators. In vibration-prone applications, specify anti-resonance sleeve designs.

Industry Trends

Market evolution focuses on smart integration (IoT-enabled condition monitoring), nanocoating technologies for self-cleaning filters, and additive manufacturing for complex aerodynamic geometries. Regulatory pressures drive demand for UL94 V-0 flame-rated materials and RoHS-compliant production processes. Forecasted CAGR of 6.2% (2023-2030) driven by edge computing infrastructure growth.

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