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    through hole technology pcb plated printed circuit board

    through hole technology pcb plated printed circuit board

    Product Description

    Product Overview


    The Through Hole Technology PCB Plated Printed Circuit Board is engineered to provide robust and reliable connections for electronic components in a wide range of applications. Utilizing through-hole technology, these PCBs ensure strong mechanical bonds and superior electrical connections, making them ideal for applications that require durability and long-lasting performance. Through-hole technology PCBs are commonly used in industrial equipment, automotive systems, and high-reliability consumer electronics.


    Key Features:


    Through-Hole Technology: Ensures durable and reliable component connections.

    Plated Through Holes (PTH): Enhances electrical connectivity between layers.

    High Durability: Suitable for environments that require robust mechanical strength.

    Wide Range of Applications: Ideal for industrial, automotive, and consumer electronics.

    Customizable Designs: Tailored to meet specific project requirements.


    Mechanical Properties


    1. Material Strength:

       Base Material: Typically made from high-quality FR-4 material, known for its balance of strength, durability, and cost-effectiveness.

       High Tensile Strength: Ensures the PCB can withstand mechanical stresses and strains during assembly and operation.


    2. Thickness and Layer Configuration:

       Standard Thickness: Available in a range of thicknesses from 1.0 mm to 3.2 mm, customizable based on mechanical and electrical requirements.

       Multilayer Capability: Can be configured with multiple layers to support complex circuitry and enhance mechanical stability.


    3. Plated Through Holes (PTH):

       Hole Diameter: Customizable hole sizes, typically ranging from 0.2 mm to 1.5 mm, to accommodate various component leads.

       Hole Plating: High-quality copper plating inside the through-holes ensures reliable electrical connections between layers and components.

       Pull Strength: PTH technology provides high pull strength, ensuring components remain securely attached to the PCB under mechanical stress.


    4. Mechanical Shock and Vibration Resistance:

       Vibration Resistance: Designed to withstand high levels of vibration, making these PCBs suitable for automotive and industrial applications.

       Shock Resistance: High shock resistance ensures the PCB and components can endure sudden impacts without damage.


    5. Thermal Expansion:

       Low Coefficient of Thermal Expansion (CTE): Ensures dimensional stability across a wide temperature range, minimizing the risk of mechanical deformation and stress on solder joints.

       Thermal Cycling Durability: Capable of withstanding repeated thermal cycles, ensuring long-term reliability in fluctuating temperature environments.


    6. Flexural Strength:

       High Flexural Strength: Provides resistance to bending and warping, ensuring the PCB maintains its shape and integrity during assembly and operation.

       Reinforced Layers: Optional reinforcement layers can be added to enhance mechanical strength for specific applications.


    7. Solder Joint Reliability:

       Strong Solder Joints: Through-hole technology provides robust solder joints that are less susceptible to mechanical failure compared to surface-mount technology.

       Long-Term Durability: Ensures reliable performance and longevity of the PCB in demanding applications.


    The Through Hole Technology PCB Plated Printed Circuit Board is an excellent choice for applications that demand high mechanical strength and reliable electrical connections. Contact us today to learn more about how our through-hole technology PCBs can be customized to meet your specific needs and provide the durability and performance required for your projects.

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    Need help? Tell us about your project. Or call +86 755 2794 4155
    Get your instant price
    Need help? Tell us about your project. Or call +86 755 2794 4155

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