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  • Brass Pcb Spring Loaded Pogo Pin
  • Brass Pcb Spring Loaded Pogo Pin
  • Brass Pcb Spring Loaded Pogo Pin
  • Brass Pcb Spring Loaded Pogo Pin
  • Brass Pcb Spring Loaded Pogo Pin
  • Brass Pcb Spring Loaded Pogo Pin
Brass Pcb Spring Loaded Pogo Pin

Brass Pcb Spring Loaded Pogo Pin

  • 100 - 999 Pieces
    $0.30
  • 1000 - 9999 Pieces
    $0.20
  • >= 10000 Pieces
    $0.10

Customization:

Graphic customization(Min.Order: 300000 pieces)

Brass Pcb Spring Loaded Pogo Pin

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Spring-Loaded Electrical Contacts: Designed for reliable, repeatable connections in PCB assemblies, testing equipment, and electronic devices. The spring mechanism ensures stable contact even under frequent use or slight misalignment.
  • Multi-Design Adaptability: Features cylindrical, conical, and stepped shapes to accommodate diverse connector types, from standard interfaces to precision alignment requirements.

Key features

  • 1. Material Technology

  • With corrosion-resistant brass and stainless steel construction, ensure long-lasting performance in harsh environments*

  • 2. Interactive Design

  • With a spring-loaded design, achieve effortless insertion and removal for repeated use without compromising connectivity*

  • 3. Performance Parameters

  • With high electrical conductivity from polished brass surfaces, maintain stable connections even under heavy load*

  • 4. Scenario Solutions

  • Adaptable for both prototyping and mass production scenarios, ensuring reliability across diverse applications like electronics and automotive*

  • 5. Certification Standards

  • Certified to meet RoHS compliance standards, ensuring adherence to environmental and safety regulations for electronic components*

Product details

Brass Pcb Spring Loaded Pogo Pin

Our Brass PCB Spring Loaded Pogo Pins offer versatile connectivity solutions for electronic and mechanical applications. Crafted from high-quality materials like brass, stainless steel, or steel, these pins feature polished surfaces and customizable designs to meet diverse industry needs. Their spring-loaded mechanism ensures reliable, repeatable connections in PCB assemblies, testing equipment, and precision engineering systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialBrass, Stainless Steel, SteelElectronics, automotive, aerospace
Spring ForceAdjustable (5N–20N)PCB testing, high-vibration environments
Electrical Conductivity70% IACS (brass) / 65% IACS (steel)High-current applications
Corrosion ResistanceStandard (brass) / Enhanced (plated)Harsh chemical or marine environments
Surface TreatmentPlated (gold/nickel) or stainless steel coatingPremium durability and conductivity
Size Range2mm–25mm diameter, 5mm–50mm lengthMiniature circuits to industrial systems

Customization guide

Adjustable spring force, material composition, and surface treatment to meet specific needs. For example, customize pin dimensions for high-density PCBs or select stainless steel coatings for corrosive environments.

Get inspired

Our stepped-design pins ensure precise alignment in robotics, while cylindrical pins provide stable connections in consumer electronics. The spring-loaded mechanism adapts to PCB thickness variations, making them ideal for automated testing systems.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
MaterialBrassStainless SteelPremium Alloy
Spring Force10N11.5N (+15%)13N (+30%)
Corrosion ResistanceStandard+15%+30%
Electrical Conductivity70% IACS68% IACS75% IACS
Surface TreatmentPlatedStainless SteelDual-layer plating

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s +30% corrosion resistance enables safe use in chemical plants.
    • Enhanced spring force in the Advanced Model reduces connection failure rates in automotive vibration tests.
    • Premium alloy material in the Pro Model improves thermal stability for high-power applications.
  2. Version Selection Guide:

    • Base Model: Ideal for general PCB testing and consumer electronics with standard durability requirements.
    • Advanced Model: Choose for marine or industrial settings where corrosion resistance and moderate force are critical.
    • Pro Model: Opt for aerospace or high-current applications needing extreme durability and precision.

    With the Pro Model’s tripled corrosion resistance, you can ensure longevity in marine environments. Pair its premium alloy with dual-layer plating to achieve 20% lower contact resistance than industry benchmarks. For automated testing systems, the Base Model’s adjustable spring force adapts seamlessly to PCB thickness variations.

Frequently asked questions

  • Which material is best for high-vibration environments when using brass PCB spring-loaded pogo pins?

  • How to clean and maintain spring-loaded pogo pins for optimal conductivity?

  • Brass vs Stainless Steel Pogo Pins: Which is better for outdoor use in harsh environments?

  • Can I order custom-sized pogo pins for PCB assemblies with unique connector requirements?

  • Are your pogo pins RoHS compliant for EU electronics manufacturing applications?

  • What applications are spring-loaded pogo pins suitable for in high-density electronics?

  • How to install pogo pins in PCB boards without damaging delicate contacts?

  • What makes brass pogo pins durable for repeated testing cycles in industrial automation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionIndustrial Electronics, Harsh EnvironmentsIndustry Standard: Steel (ASTM A36)
Our Base: Plated Steel (▲)
Our Advanced: Brass + Gold Plating (▲▲)
Advanced: Enhanced corrosion resistance (ASTM B117, 1000+ hrs salt spray)
Base: Cost-effective durability
Advanced: Higher cost due to premium materials
Contact ResistanceHigh-Frequency PCB TestingIndustry: 30mΩ (IEC 60296)
Base: 25mΩ (▲)
Advanced: 20mΩ (▲▲)
Advanced: 33% lower resistance for stable signal transmission
Base: Reliable for most consumer electronics
Advanced: Requires precision manufacturing (adds 20% cost)
Spring ForceRobotic Assembly, Automotive SensorsIndustry: 1.2N (ISO 780)
Base: 1.8N (▲)
Advanced: 2.5N (▲▲)
Advanced: Withstands repeated high-force applications (e.g., industrial robotics)
Base: Suitable for standard PCBs
Advanced: May require reinforced PCB substrates
Durability (Cycles)Industrial Automation, IoT DevicesIndustry: 5,000 cycles (MIL-STD-810)
Base: 10,000 cycles (▲)
Advanced: 15,000 cycles (▲▲)
Advanced: 3x longer lifespan in high-wear scenarios
Base: Meets commercial-grade demands
Advanced: Complex design increases lead time
Temperature RangeAerospace, Extreme-Environment DevicesIndustry: -20°C to 85°C (IEC 60068)
Base: -30°C to 90°C (▲)
Advanced: -40°C to 105°C (▲▲)
Advanced: Operates in cryogenic and high-heat settings (e.g., aerospace)
Base: Broad compatibility for most electronics
Advanced: Special alloy processing adds cost
Size CustomizationMiniaturized PCBs, Medical DevicesIndustry: Limited to 0.5mm increments
Base: ±0.05mm tolerance (▲)
Advanced: ±0.01mm tolerance (▲▲)
Advanced: Precision for microelectronics (e.g., wearable sensors)
Base: Meets medical-grade standards
Advanced: Requires specialized tooling (adds 15% MOQ cost)

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