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Humiseal 1B51NSLU Synthetic Rubber-Based Conformal Coating

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Protective Coating for Electronics: A synthetic rubber-based conformal coating designed to shield electronic components from moisture, chemicals, and corrosion, ensuring longevity and reliability in harsh environments.
  • Multi-Application Method: Available in both spray and binder formats for seamless integration into assembly lines or manual application in repair workshops.

Key features

  • 1. Advanced Material Technology

  • With a synthetic rubber and silicone formulation, protect electronic components from moisture, chemicals, and corrosion. The corrosion-resistant metal can ensures safe storage and transport, outperforming plastic containers in durability*.

  • 2. Effortless Application Design

  • With a spray-type application method, achieve uniform coating distribution and precise coverage, reducing manual labor compared to brush-on alternatives*. The ergonomic spray nozzle simplifies coating even on complex circuit board layouts.

  • 3. High-Performance Parameters

  • With a flexible conformal coating thickness of 25–75 microns, accommodate diverse circuit board designs while maintaining adhesion under extreme temperatures (-55°C to 150°C). This outperforms rigid coatings in thermal stability*.

  • 4. Customized Scenario Solutions

  • Designed for industrial and commercial electronics protection, this coating provides reliable insulation in high-humidity or chemically exposed environments, ensuring continuous operation for mission-critical devices*.

  • 5. Industry-Recognized Standards

  • Complies with IPC-CC-830 and UL认证 standards for conformal coatings, ensuring safety and quality in electronics manufacturing. This certification ensures compatibility with global regulatory requirements*.

Product details

Humiseal 1B51NSLU Synthetic Rubber-Based Conformal Coating

Humiseal 1B51NSLU is a synthetic rubber-based conformal coating designed to protect electronic components from environmental hazards such as moisture, chemicals, and thermal stress. Available in spray and binder forms, it combines the flexibility of synthetic rubber with the thermal stability of silicone for robust performance. The product is certified to meet industry standards like UL and RoHS, ensuring compliance with global electronics manufacturing requirements.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialSynthetic rubber + silicone blendCoating for PCBs, connectors, and sensors
TypeSpray & binder applicationRapid industrial coating or precision manual application
CertificationsUL Recognized, RoHS, REACH compliantHigh-reliability electronics assembly
Chemical ResistanceResists solvents, fuels, and corrosive agentsAutomotive and aerospace components
Thermal StabilityOperates from -55°C to +150°CIndustrial and military electronics

Customization guide

Adjustable parameters include viscosity (for precise spray/binder ratios) and cure time (via formulation adjustments) to meet specific needs such as high-temperature resistance or rapid production cycles. For example, increasing silicone content enhances thermal stability for aerospace applications.

Get inspired

With Humiseal 1B51NSLU, you can:

  • Protect sensitive circuits in harsh environments like automotive engines or marine systems.
  • Achieve uniform coverage with spray application for complex PCB geometries.
  • Customize formulations (e.g., 1A33-5L, T521-5L) to match exact project requirements.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Chemical ResistanceStandard grade+20% solvent resistance+40% acid/alkali resistance*
Thermal Stability-40°C to +125°C-55°C to +150°C-60°C to +200°C
Cure Time24h @ 25°C8h accelerated2h UV-cured*
Application MethodSpray onlySpray + dipSpray + robotic

Supplier's note

  1. Three Technical Breakthroughs:

    • Enhanced Flexibility: The synthetic rubber-silicone blend (vs. traditional acrylic) allows 30% greater strain tolerance for vibration-prone devices.
    • Faster Cure: The Pro Model’s UV-curable formula cuts production downtime by 90% compared to conventional heat-cured coatings.
    • Extreme Thermal Range: The Pro Model’s -60°C to +200°C stability exceeds industry benchmarks by 25%, enabling use in cryogenic and aerospace systems.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard electronics assembly (e.g., consumer devices) where cost-efficiency is prioritized.
    • Advanced Model: Best for industrial applications (e.g., automotive sensors) requiring faster cure times and broader chemical resistance.
    • Pro Model: Tailored for mission-critical systems (e.g., aerospace, defense) needing extreme durability and rapid robotic application.

Example: The Pro Model’s UV-cured formulation enables just-in-time coating in automotive manufacturing, reducing assembly line bottlenecks while ensuring protection against engine bay temperatures exceeding 180°C.

Frequently asked questions

  • Which Humiseal model is best for protecting circuit boards in high-humidity environments?

  • How do I clean residual synthetic rubber-based coating from spray equipment?

  • What are the key differences between Humiseal synthetic rubber and silicone-based coatings?

  • Can Humiseal coatings be customized for niche electronics applications?

  • Is Humiseal 1B51NSLU compliant with RoHS and IPC standards?

  • What application methods work best for Humiseal spray coatings?

  • Does Humiseal protect against corrosive chemicals in industrial settings?

  • What is the shelf life of Humiseal conformal coatings in unopened metal cans?

Related searches

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