Handles

Image Part Number Description / PDF Quantity Rfq
528-PA-122-8.5-SW

528-PA-122-8.5-SW

J.W. Winco

CABINET U-HANDLE, PLASTIC

29

333.1-28-250-B-SW

333.1-28-250-B-SW

J.W. Winco

TUBULAR HANDLE, ALUMINUM

30

26W1300AC0K/5T

26W1300AC0K/5T

J.W. Winco

CABINET U-HANDLE, PLASTIC

40

24W117AC0K/M6

24W117AC0K/M6

J.W. Winco

CABINET U-HANDLE, PLASTIC

88

666-30-M8-250-ELG

666-30-M8-250-ELG

J.W. Winco

TUBULAR GRIP HANDLE, ALUMINUM

30

528-PA-132-8.5-RT

528-PA-132-8.5-RT

J.W. Winco

CABINET U-HANDLE, PLASTIC

29

12W160BN0

12W160BN0

J.W. Winco

STAINLESS STEEL CABINET U-HANDLE

120

528-PP-117-8.5-SW

528-PP-117-8.5-SW

J.W. Winco

CABINET U-HANDLE, PLASTIC

197

528.1-PA-117-M8-OR

528.1-PA-117-M8-OR

J.W. Winco

CABINET U-HANDLE, PLASTIC

30

565.2-20-112-A-EL

565.2-20-112-A-EL

J.W. Winco

ALUMINUM CABINET U-HANDLE

50

666-1.18-5/16X18-20.00-EL

666-1.18-5/16X18-20.00-EL

J.W. Winco

TUBULAR GRIP HANDLE, ALUMINUM

35

565.1-20-128-BL

565.1-20-128-BL

J.W. Winco

ALUMINUM CABINET U-HANDLE

30

28W600AT0Q/A

28W600AT0Q/A

J.W. Winco

SYSTEM HANDLE, ALUMINUM

30

666-30-M8-600-ELG

666-30-M8-600-ELG

J.W. Winco

TUBULAR GRIP HANDLE, ALUMINUM

31

225W120D97T/B

225W120D97T/B

J.W. Winco

ECONOMICAL U-HANDLE, ALUMINUM

34

333.1-28-300-A-ES

333.1-28-300-A-ES

J.W. Winco

TUBULAR HANDLE, ALUMINUM

30

28W200AT0K/A

28W200AT0K/A

J.W. Winco

SYSTEM HANDLE, ALUMINUM

29

225W120D97V/A

225W120D97V/A

J.W. Winco

ECONOMICAL U-HANDLE, ALUMINUM

30

20W100B79K/3T

20W100B79K/3T

J.W. Winco

ALUMINUM CABINET U-HANDLE

30

27W180D97K/B

27W180D97K/B

J.W. Winco

ECONOMICAL U-HANDLE, ALUMINUM

75

Handles

1. Overview

Handles for boxes, enclosures, and racks are critical mechanical components designed to facilitate safe and ergonomic handling of technical equipment. These components enable efficient installation, maintenance, and mobility of enclosures housing electrical, electronic, or mechanical systems. In modern industrial, data center, and automation environments, standardized handle solutions ensure operational reliability while meeting safety and durability requirements.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Flush Mount HandlesLow-profile design with concealed mountingServer racks, control cabinets
Foldable HandlesSpace-saving retractable mechanismPortable test equipment, mobile racks
Overcenter Latches with HandlesIntegrated locking and lifting functionalityIndustrial enclosures, NEMA-rated cabinets
Knob HandlesErgonomic rotary grip designToolboxes, small instrument enclosures

3. Structural and Technical Composition

Typical handle systems consist of: 1) Load-bearing base plates (steel/aluminum alloys), 2) Gripping elements (thermoplastic/nylon coatings), 3) Mechanical fastening systems (stainless steel screws/pins), and 4) Optional sealing interfaces. Advanced designs incorporate vibration dampening materials and corrosion-resistant surface treatments like powder coating or electropolishing.

4. Key Technical Parameters

ParameterImportanceTypical Values
Load CapacityEnsures structural integrity under stress25-200 kg
Material GradeDetermines environmental resistanceStainless steel, PA66
Installation DimensionsGuarantees compatibility with enclosuresM4-M8 threaded holes
Operating TemperatureDefines environmental adaptability-20 C to +80 C

5. Application Fields

  • Industrial automation (PLC control cabinets)
  • Data centers (server rack systems)
  • Telecommunications (outdoor enclosures)
  • Medical equipment (diagnostic instrument cases)
  • Military/defense (ruggedized transport cases)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
PanduitToolless Rack Handle KitQuick-release mechanism
RittalTS 8 Cabinet HandleIP54 sealing compatibility
Hammond Manufacturing1551XX SeriesUV-resistant polymer construction

7. Selection Recommendations

Key considerations: 1) Environmental conditions (temperature, corrosive agents), 2) Mechanical load requirements, 3) Compatibility with enclosure standards (IEC 60529), 4) Maintenance accessibility, 5) Cost-efficiency ratio. For high-vibration environments, select handles with anti-loosening features. In cleanrooms, specify non-shedding materials.

8. Industry Trends

Current developments include: 1) Integration with smart monitoring systems (IoT-enabled handles), 2) Adoption of composite materials for weight reduction, 3) Modular quick-swap designs, 4) Enhanced ergonomics through biomechanical research. Sustainability trends drive the use of recyclable thermoplastics and powder coating processes with 95%+ material efficiency.

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