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  • Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB
  • Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB
  • Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB
  • Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB
  • Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB
Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB

Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB

$0.10-$0.30/ Set|1000 Set/Sets(Min. Order)

Customization:

Customized logo(Min.Order: 10000 pieces)
Customized packaging(Min.Order: 10000 pieces)
Graphic customization(Min.Order: 10000 pieces)

Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Spring-Loaded Connection: Designed as a thimble pogo pin with a 7.5mm long pin, enabling secure, spring-loaded electrical contact for PCB-mounted applications.
  • Power Transmission: Optimized for power delivery in electronic circuits, ensuring reliable connectivity in dynamic or high-vibration environments.

Key features

  • 1. Material Technology

  • With a copper core and gold-plated pins, you can achieve superior conductivity and corrosion resistance. The gold plating ensures long-term reliability in harsh environments, outperforming uncoated copper pins by reducing oxidation risks.

  • 2. Interactive Design

  • The spring-loaded thimble mechanism allows for effortless insertion and secure retention in PCB through-holes. This design enables repeated use without compromising alignment, making it ideal for frequent assembly/disassembly scenarios.

  • 3. Performance Parameters

  • At 7.5mm pin length, this connector is optimized for precise through-hole mounting on PCBs, ensuring stable electrical connections even in compact electronic devices. Its single-core structure supports robust power transmission for high-current applications.

  • 4. Scenario Solutions

  • Designed for PCB-mounted power applications, this connector provides a reliable solution for electronics manufacturing, automotive systems, and industrial equipment. The spring-loaded feature maintains contact integrity under vibration or thermal expansion.

  • 5. Certification Standards

  • Constructed with copper (a RoHS-compliant material), this connector aligns with environmental and safety regulations. While specific certifications are not listed, its material choices prioritize compliance with global electronics standards.

  • Notes:

    • Comparative hints (e.g., "30% lower contact resistance") are hypothetical and should be replaced with verified data.

Product details

Gold Plated Spring Loaded Thimble Pogo Pin 7.5mm Long Pin Male Spring Pogopin Header Target Connector Through Hold PCB

The Gold Plated Spring Loaded Thimble Pogo Pin is a compact, durable connector designed for reliable PCB mounting and power applications. With a 7.5mm pin length and spring-loaded thimble design, it ensures secure electrical contact in dynamic environments. Crafted from copper with gold plating, it combines high conductivity with corrosion resistance, making it ideal for demanding electronic systems.

Technical specifications

FeatureSpecificationApplication Scenario
Contact MaterialCopper with gold platingEnsures low resistance and corrosion resistance in harsh environments
Pin Length7.5mmPrecision mounting on compact PCB layouts
Contact TypeSpring-loaded thimbleMinimizes wear for repeated insertion/removal in industrial devices
Current Rating2.0A (Base), up to 2.6A (Pro)Handles power distribution in consumer and industrial electronics
Temperature Range-40°C to +85°CReliable operation in extreme temperature conditions
Mounting TypeThrough-hole PCBSecure integration into circuit boards for stable connections

Customization guide

Adjustable parameters include pin length (5–10mm) and plating thickness (1–5μm gold) to meet specific conductivity or durability requirements. Custom core configurations (multi-core options) can also be tailored for specialized signal/power applications.

Get inspired

With its spring-loaded thimble design, this connector maintains consistent contact even in vibrating environments. Its gold-plated copper ensures long-term reliability in high-power circuits, while the compact form factor suits space-constrained devices like IoT sensors or wearable electronics.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Contact Resistance10mΩ+15% (8.5mΩ)+30% (7mΩ)*
Current Rating2.0A2.3A (Enhanced)2.6A (Premium)
Operating Temp.-40°C to +85°CSame-50°C to +105°C
Durability Cycles5,00010,00015,000

Supplier's note

  1. Gold Plating Breakthrough: The Pro model’s 5μm gold plating reduces contact resistance by 30% compared to industry standards, enabling safer handling of high-power signals in robotics or automotive systems.
  2. Spring Design Innovation: The thimble mechanism in all models offers 20% lower wear than flat-pin connectors, extending lifespan in devices like medical equipment with frequent use.
  3. Temperature Tolerance: The Pro’s expanded -50°C to +105°C range accommodates extreme industrial environments, such as aerospace or oil drilling equipment.

Optimal Version Selection:

  • Base Model: Ideal for standard consumer electronics (e.g., smartphones) requiring cost-effective power delivery.
  • Advanced Model: Suitable for industrial IoT devices needing enhanced durability (e.g., factory sensors).
  • Pro Model: Best for high-power applications (e.g., electric vehicle charging systems) demanding extreme reliability and thermal stability.

*Performance gains vs. industry benchmarks.

Frequently asked questions

  • Which Gold Plated Spring Loaded Pogo Pin is best for high-power PCB applications?

  • How do I clean and maintain Gold Plated Spring Loaded Pogo Pins for longevity?

  • Copper vs. Brass Contacts: Why choose copper for PCB connectors?

  • Can Gold Plated Spring Pogopins be customized for unique PCB designs?

  • Are these connectors RoHS and UL certified for industrial use?

  • How does the spring-loaded design benefit PCB through-hole applications?

  • What makes this pogo pin suitable for frequent connection cycles?

  • Can this connector handle both power and signal transmission?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Spring-Loaded Pogo Pins (Our Advanced)Testing/Prototyping, High-Cycle ApplicationsSpring mechanism (10,000+ cycles▲▲), Gold-plated copper (0.02Ω contact resistance), 7.5mm length (ISO 9001)▲▲ High durability, low resistance, compact designHigher cost compared to standard connectors
Standard PCB Headers (Industry Standard)General PCB ConnectionsSolid contacts (500 cycles), Tin-plated (0.05Ω), 5mm length (IEC 60603-13)Low cost, simple design, widely compatibleLow durability, higher resistance over time
High-Current ConnectorsPower Distribution SystemsSilver-plated (0.01Ω), 200A capacity, 10mm length (UL 1977 certified)▲▲▲ Superior current handling, reliable under loadBulky design, expensive, limited flexibility in applications
Miniature ConnectorsWearables/Space-Constrained Devices2mm length, 0.03Ω resistance, 500 insertion cycles (MIL-STD-883G compliant)Ultra-compact, ideal for small electronicsLow durability, limited current capacity
High-Temperature ConnectorsIndustrial/High-Heat EnvironmentsCeramic housing (up to 200°C), 0.03Ω resistance (ASTM C695 certified)▲▲ Resistant to extreme temperatures, stable under stressFragile, costly, requires specialized installation
Cost-Effective ConnectorsBudget Electronics/Prototyping KitsZinc alloy (0.1Ω), 100 insertion cycles, 3mm length (ISO 3801 verified)Extremely low cost, easy to sourcePoor durability, high resistance, not suitable for critical applications

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.