Board Spacers, Standoffs

Image Part Number Description / PDF Quantity Rfq
1452A

1452A

Keystone Electronics Corp.

HEX STANDOFF #8-32 BRASS 7/16"

5001800

24495

24495

Keystone Electronics Corp.

HEX STANDOFF M4 SS 15MM

295408

24328

24328

Keystone Electronics Corp.

HEX STANDOFF M4 BRASS 18MM

505700

NC121366A

NC121366A

Keystone Electronics Corp.

HEX STANDOFF #6-32 ALUMINUM 3"

1562

2270-2

2270-2

Keystone Electronics Corp.

HEX STANDOFF #4-40 BRASS 1/8"

1505100

1549C

1549C

Keystone Electronics Corp.

ROUND STANDOFF #8-32 BRASS 5/8"

118320

1628-2

1628-2

Keystone Electronics Corp.

HEX STANDOFF #4-40 BRASS 3/8"

9602100

1848

1848

Keystone Electronics Corp.

ROUND STANDOFF #6-32 ALUM 7/8"

28832200

1798A

1798A

Keystone Electronics Corp.

HEX STANDOFF #2-56 BRASS 3/16"

5472800

24283

24283

Keystone Electronics Corp.

HEX STANDOFF M2.5X0.45 SS 10MM

176

24381

24381

Keystone Electronics Corp.

HEX STANDOFF M2.5X0.45 BRASS 6MM

82388800

24417

24417

Keystone Electronics Corp.

HEX STANDOFF M4 BRASS 20MM

375700

8442D

8442D

Keystone Electronics Corp.

HEX STANDOFF #8-32 NYLON 5/8"

7431200

1922F

1922F

Keystone Electronics Corp.

HEX STANDOFF #6-32 SS 2"

2015841

24300

24300

Keystone Electronics Corp.

HEX STANDOFF M3 SS 25MM

1311906

2315E

2315E

Keystone Electronics Corp.

ROUND STANDOFF #8-32 ALUMINUM 1"

50700

24488

24488

Keystone Electronics Corp.

HEX STANDOFF M3 SS 25MM

474

24285

24285

Keystone Electronics Corp.

HEX STANDOFF M2.5X0.45 SS 15MM

21129916

24482

24482

Keystone Electronics Corp.

HEX STANDOFF M3 SS 8MM

107957

24309

24309

Keystone Electronics Corp.

HEX STNDFF M2.5X0.45 BRASS 15MM

8112300

Board Spacers, Standoffs

1. Overview

Board spacers and standoffs are specialized hardware components used to create controlled spacing between printed circuit boards (PCBs), panels, or structural elements. They provide mechanical support, electrical isolation, and thermal management in electronic assemblies. Their importance in modern technology includes enabling compact designs, reducing vibration stress, and improving heat dissipation in devices ranging from smartphones to industrial control systems.

2. Main Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Cylindrical SpacersSimple tubular design with uniform diameterPCB layer separation in consumer electronics
Hexagonal Standoffs6-sided structure for wrench tighteningIndustrial equipment panel mounting
Self-clinching StandoffsPermanent installation with threaded compressionSheet metal enclosures in servers
Adjustable SpacersVariable length through threaded adjustmentPrototype development and testing
Insulated SpacersNon-conductive materials for electrical isolationHigh-voltage power supply assemblies

3. Structure & Composition

Typical construction includes:

  • Material: Stainless steel (corrosion resistance), aluminum (lightweight), or nylon (insulation)
  • Geometry: Cylindrical (standard), stepped (for multiple board heights), or flanged (for load distribution)
  • Installation Features: Internal threading (male/female), knurled surfaces (for grip), or press-fit tabs
  • Surface Treatment: Passivation (metal), UV resistance (plastics), or EMI shielding coating

4. Key Technical Specifications

ParameterImportance
Material Hardness (HV)Determines wear resistance and load capacity
Thread Engagement LengthAffects vibration resistance in dynamic environments
Thermal Conductivity (W/m K)Critical for heat dissipation in power electronics
Dielectric Strength (kV/mm)Safety factor in high-voltage applications
Installation Torque RatingPrevents over-tightening damage to PCBs

5. Application Fields

Primary industries include:

  • Electronics Manufacturing: Server racks, LED displays
  • Automotive: Engine control units (ECUs), ADAS systems
  • Aerospace: Satellite PCB mounting, avionics enclosures
  • Medical Devices: MRI scanner internal structures
  • Consumer Electronics: Smartphone PCB stacking

6. Leading Manufacturers & Products

ManufacturerRepresentative Product
PEMS-8900 Series self-clinching standoffs
RS Components486-8826 insulated hexagonal spacers
Mouser Electronics925206-12 adjustable PCB spacers
McMaster-Carr91285A102 stainless steel standoffs

7. Selection Recommendations

  • Evaluate mechanical load requirements vs material strength
  • Match thread type (UNC/UNF/Metric) with assembly hardware
  • Consider CTE (Coefficient of Thermal Expansion) compatibility with PCB materials
  • Select insulated variants for >50V circuits
  • Use vibration-damping coatings in mobile applications

8. Industry Trends

Emerging developments include:

  • Miniaturization: Sub-1mm spacers for wearable devices
  • Material Innovation: Conductive polymer composites for EMI shielding
  • Smart Integration: Standoffs with embedded strain gauges for structural monitoring
  • Automated Installation: Self-aligning designs for robotic assembly lines
  • Sustainability: Biodegradable plastic options (PLA-based) entering mainstream production
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