LEDs - Spacers, Standoffs

Image Part Number Description / PDF Quantity Rfq
7045

7045

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

200

7044

7044

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

1900

7046

7046

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

200

7036

7036

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2300

7039

7039

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

1600

7042

7042

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

1400

7051

7051

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2300

7052

7052

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

9300

7037

7037

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

700

7054

7054

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2300

7055

7055

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

47100

7058

7058

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

100

7053

7053

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

1900

7047

7047

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2000

7059

7059

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

38600

7050

7050

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2200

7041

7041

Keystone Electronics Corp.

LED HOLDER T1 NYLON NATURAL

0

7061

7061

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

35000

7056

7056

Keystone Electronics Corp.

LED HOLDER T1 NYLON NATURAL

46700

7043

7043

Keystone Electronics Corp.

LED HOLDER T1 3MM NYLON NATURAL

2100

LEDs - Spacers, Standoffs

1. Overview

Spacers and standoffs for LEDs are mechanical components used to create precise spacing, electrical isolation, and structural support in optoelectronic assemblies. These components ensure optimal thermal management, mechanical stability, and electrical safety in LED-based systems. They play a critical role in applications ranging from consumer electronics to industrial lighting, enabling efficient heat dissipation and preventing physical stress on delicate LED packages.

2. Main Types and Functional Classification

Type Functional Features Application Examples
Metal Spacers (Aluminum/Steel) High thermal conductivity, mechanical strength, and EMI shielding High-power LED lighting modules, automotive headlights
Plastic Standoffs (Nylon/POM) Electrical insulation, lightweight, corrosion resistance LED display panels, consumer electronics enclosures
Ceramic Spacers High-temperature resistance, excellent dielectric properties Medical imaging equipment, UV LED systems
Threaded Standoffs Secure fastening with screw compatibility Industrial LED luminaires, outdoor signage

3. Structure and Composition

Spacers and standoffs typically feature cylindrical or hexagonal geometries with hollow centers. Common materials include:

  • Metal alloys (aluminum, stainless steel) with anodized or passivated surfaces
  • Thermoplastics (nylon 6/6, POM) with glass fiber reinforcement
  • Technical ceramics (alumina, zirconia) for high-voltage applications

Surface treatments include black oxide coating (metals), UV stabilization (plastics), and precision polishing (ceramics).

4. Key Technical Specifications

Parameter Significance
Material Thermal Conductivity (W/m K) Determines heat transfer efficiency (1-200 range based on material)
Dielectric Strength (kV/mm) Electrical insulation capability (10-30 for plastics, >50 for ceramics)
Operating Temperature Range ( C) Defines environmental stability (-40 to +150 C typical)
Compressive Strength (MPa) Mechanical load capacity (50-500 MPa range)
Dimensional Tolerance ( mm) Assembly precision (typically 0.05-0.1mm)

5. Application Areas

  • Consumer Electronics: Smartphone flash modules, notebook keyboard backlights
  • Automotive: Headlight assemblies, interior ambient lighting systems
  • Industrial: Machine vision systems, high-bay LED lighting
  • Medical: Endoscopic illumination devices, phototherapy equipment
  • Outdoor: LED billboards, street lighting infrastructure

6. Leading Manufacturers and Products

Manufacturer Key Products
TE Connectivity Aluminum standoffs with hex sockets (10-30mm lengths)
Molex LCP plastic spacers with 0.5mm pitch for micro-LEDs
3M Adhesive-backed ceramic standoffs for UV-LED systems
Keystone Electronics Threaded brass standoffs with captive screws

7. Selection Recommendations

Key considerations include:

  • Thermal requirements vs. electrical isolation needs
  • Mechanical load requirements (compression/torsion)
  • Environmental factors (humidity, UV exposure, vibration)
  • Assembly methodology (screw mounting vs. snap-fit)
  • Regulatory compliance (UL, RoHS, REACH)

Example: For outdoor LED displays, select IP67-rated plastic standoffs with UV stabilization and 25mm spacing.

8. Industry Trends

Current developments include:

  • Miniaturization for micro-LED integration (sub-1mm spacing)
  • Hybrid materials combining metal cores with polymer coatings
  • Integrated thermal vias for improved heat spreading
  • Smart standoff designs with embedded strain sensors
  • Recyclable polymer composites for sustainable manufacturing
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