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  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
  • Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application
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Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application

  • 50 - 499 Pieces
    $2.50
  • 500 - 999 Pieces
    $2.30
  • >= 1000 Pieces
    $2.10

Customization:

Customized logo(Min.Order: 500 pieces)
Customized packaging(Min.Order: 500 pieces)
Graphic customization(Min.Order: 500 pieces)

Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Secure Battery Terminal Connection: Designed for through-wall mounting in energy storage systems (ESS), enabling reliable electrical connections between batteries and external circuits.
  • Multi-Application Compatibility: Supports bolt-type fastening for industrial, automotive, and electric power applications, ensuring robust conductivity with copper and brass cores.

Key features

  • 1. Corrosion-Resistant Nickel-Plated Copper Construction

  • With nickel-plated copper material, you can ensure long-lasting durability in harsh industrial or outdoor environments, outperforming standard uncoated terminals*. The plating protects against oxidation and corrosion, maintaining performance in wet or chemically exposed conditions.

  • 2. Secure Bolt-Type Through-Wall Design

  • With a bolt-type through-wall connector, you can achieve stable, tool-free mounting on walls or enclosures, simplifying installation compared to traditional screw-based connectors*. The cylindrical flange base ensures firm attachment even under vibration or pressure.

  • 3. High-Conductivity Copper Core for Efficient Power Transfer

  • With a pure copper core, you can minimize electrical resistance for optimal power transmission, reducing energy loss by ~20% compared to aluminum-based terminals*. This enhances reliability in high-current applications like energy storage systems (ESS) or automotive batteries.

  • 4. Multi-Industry Scenario Adaptability

  • With a modular design compatible with ESS, automotive, and industrial applications, you can deploy this terminal across diverse systems, unlike single-use connectors*. The rectangular shape and square opening allow seamless integration into sensors, batteries, or control panels.

  • 5. Compliance with Environmental and Safety Standards

  • With nickel surface treatment meeting RoHS and REACH standards, you can ensure eco-friendly and regulatory-compliant use, avoiding non-compliant alternatives*. The material choice aligns with automotive and industrial safety requirements for chemical resistance and heat stability.

Product details

Nickel Plated Copper Screw Terminal Through-Wall Connector Bolt Type for ESS Storage Power Application

The Nickel Plated Copper Battery Terminal Through-Wall Connector Bolt Type is a rugged, modular component designed for high-reliability connections in energy storage systems (ESS), automotive, and industrial applications. Its nickel-plated copper construction ensures exceptional conductivity and corrosion resistance, while the bolt-type design simplifies secure mounting in harsh environments.

Technical specifications

FeatureSpecificationBenefit
MaterialCopper/Brass core with nickel platingHigh conductivity, corrosion resistance
DesignRectangular through-wall bolt mountingSecure integration into walls or panels
Surface TreatmentNickel platingEnhanced durability in humid/chemical environments
ApplicationESS, automotive, industrial machineryVersatile for power distribution systems
Load Capacity15-30A (varies by model)Supports heavy-duty electrical demands

Customization guide

Adjustable opening dimensions and mounting flange configurations to accommodate custom sensor sizes, cable diameters, or specific ESS storage rack designs.

Get inspired

Engineered for reliability, this terminal ensures seamless power flow in demanding applications. Its modular design allows easy retrofitting into existing systems, while the nickel-plated finish guarantees longevity in corrosive or outdoor settings.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Conductivity58 MS/m+15% (66.7 MS/m)+30% (75.4 MS/m)*
Corrosion Resistance500 hours salt spray750 hours salt spray1000+ hours salt spray
Max Load Capacity15A25A30A
Temperature Range-20°C to 85°C-30°C to 105°C-40°C to 125°C

Supplier's note

  1. Technical Breakthroughs:

    • Nickel Plating: Tripled corrosion resistance vs. uncoated copper, enabling use in marine or chemical plants.
    • Copper Core: 20% lower resistance than brass-only terminals, optimizing energy efficiency.
    • Modular Design: Adjustable flange spacing accommodates 80% of global ESS rack standards.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard automotive or residential ESS installations requiring basic durability.
    • Advanced Model: Suitable for industrial machinery or outdoor power systems needing enhanced temperature and load tolerance.
    • Pro Model: Recommended for extreme environments (e.g., offshore wind farms) where prolonged exposure to high temps or corrosives is critical.

With nickel-plated copper, you can achieve 98% conductivity retention over 5 years in corrosive settings. The Pro Model’s -40°C rating ensures reliability in Arctic oil rigs, while its 30A capacity handles high-power battery banks. Pair with compatible ESS racks to streamline deployment.

Frequently asked questions

  • Which nickel plated copper battery terminal is best suited for ESS storage power applications?

  • How do I maintain nickel plated copper terminals to prevent corrosion in industrial settings?

  • What are the advantages of copper over brass in battery terminals for automotive use?

  • Can this battery terminal be customized for non-standard mounting configurations?

  • Is this nickel plated terminal rated for high-temperature automotive battery systems?

  • Which terminal type handles high-current loads in electric power applications?

  • How do I clean the threaded connections on nickel plated battery terminals?

  • Why choose nickel plating over zinc for outdoor battery terminals?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-current industrial systemsCopper/Brass core (58 MS/m conductivity) ▲ Advanced: 59 MS/m (vs Aluminum: 37.7 MS/m)Superior conductivity for efficient power transfer (IEC 60207)Heavier than aluminum, higher cost than plastic alternatives
Surface TreatmentHarsh chemical environmentsNickel-plated (Base: 1000h salt spray resistance) ▲ Advanced: 1500h (vs Zinc: 500h)Enhanced corrosion resistance (ASTM B117), durable finishHigher cost than zinc-plated alternatives
Terminal DesignSecure ESS battery connectionsBolt-type terminal (Base: 3mm thread pitch) ▲ Advanced: 2.5mm tighter grip (vs Spring clips: 5mm)More secure than spring clips, vibration-resistant (ISO 261)Requires tool for installation
Mounting SolutionIndustrial equipment mountingFlanged base (Base: M6 bolt) ▲ Advanced: M8 for heavy loads (vs Adhesive mounts)Secure attachment under load (ISO 232), no adhesive degradationRequires drilling, heavier than adhesive solutions
Temperature ResistanceExtreme climate applicationsBase: -40°C to 85°C ▲ Advanced: -50°C to 105°C (vs Industry Standard: -30°C to 70°C)Operates in extreme temperatures (IEC 60068-2-14)Advanced version requires premium materials, increasing cost
Application SuitabilityAutomotive vs Industrial systemsDesigned for automotive (vibration resistance: Base 10G ▲ Advanced 15G vs Industrial: 8G)Meets automotive vibration standards (MIL-STD-810G)Less suitable for low-vibration consumer devices

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