Loudspeaker Connectors

Loudspeaker connectors are designed with low-contact resistance to ensure the maximum signal is transmitted from the amplifier to the loudspeaker. The connectors are built with high-conductivity materials, such as gold or silver-plated contacts, which significantly reduce the risk of signal attenuation or loss. 

Contact Pressure

Optimized for 20-30g of contact pressure to ensure minimal contact resistance and stable signal transfer.

Insertion Force

Typically 10-15N for easy yet secure insertion without damaging connectors or cables.

Withdrawal Force

Ranges from 5-8N for smooth and reliable connector removal without excessive force.

Dielectric Strength

2000V AC minimum for reliable insulation and protection against electrical shorts.

Arc Resistance

>100 cycles at 15A, designed to prevent contact arcing during high-power audio transmission.

Product Description

Loudspeaker connectors must be capable of handling high currents and preventing overheating. As high-powered audio systems demand substantial power, the connectors need to be constructed to handle significant thermal stress. Our connectors are designed with materials that exhibit excellent thermal conductivity, ensuring that heat generated during high-power transmission is effectively dissipated. This prevents overheating, maintains system stability, and protects against damage from thermal build-up. 

Contact Plating Thickness

10-30μm of gold or silver plating to ensure high conductivity and corrosion resistance.

Contact Pitch

4mm to 5mm for ensuring compatibility with standard audio equipment and connectors.

Soldering Process

Compatible with standard lead-free soldering processes, ensuring a secure and durable connection.

Electromagnetic Compatibility

Designed to meet IEC 61000-4-3 standards to reduce EMI and ensure minimal interference with surrounding equipment.

Shock Resistance

Able to withstand up to 50g of shock without performance degradation or mechanical failure.

Coupling Mechanism

Twist-lock or push-pull coupling for secure and vibration-resistant connections.

Leakage Current

<1μA at 500V DC to prevent any unwanted current flow that may impact signal integrity.

Cable Compatibility

Supports 12-16 AWG cables for versatility in a variety of professional audio setups.

Insulator Material

High-performance nylon or PBT (Polybutylene Terephthalate) for excellent electrical insulation and mechanical strength.

Crimping Mechanism

Integrated crimping slots for secure cable termination with a precise and reliable connection.

Plating Material

Gold, silver, or nickel plating for enhanced conductivity and corrosion resistance.

Pressure Resistance

Rated for up to 1000N of mechanical pressure without compromising performance or connector integrity.

Humidity Resistance

IP67-rated for moisture and water resistance, ensuring reliable performance in humid environments.

Sealing Material

Silicone or EPDM (Ethylene Propylene Diene Monomer) rubber seals to ensure ingress protection.

Flammability Rating

UL94-V0 rated for flame resistance to meet safety standards in both consumer and professional environments.

Connector Strength

Designed for over 500 mating cycles while maintaining high reliability and performance.

Mounting Torque

Recommended 0.8-1.5Nm for secure mounting without over-tightening or damaging components.

Technical Advantages

The long-term reliability of loudspeaker connectors is heavily influenced by their resistance to environmental factors like moisture, oxidation, and physical wear. Connectors that corrode over time can lead to contact failures, signal degradation, or even complete loss of connection. To combat this, our connectors are crafted from corrosion-resistant metals, with additional gold or silver plating on contact surfaces to prevent oxidation. This ensures that the connectors maintain their electrical properties and continue to provide stable performance for years, even in humid or high-salt environments. 

Mechanical stability is another crucial factor in the performance of loudspeaker connectors. Loose or poorly secured connectors can cause intermittent signal loss or complete disconnection during operation. Our connectors utilize locking mechanisms or secure screw-based connections to ensure that the mechanical interface between components remains stable and free from movement, even in high-vibration environments. This minimizes the risk of intermittent failures and ensures continuous, reliable performance. 

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Industry Applications

High-Current Power Amplifiers

Connectors designed to handle high-current demands with minimal thermal resistance and signal degradation. 

Audiophile Sound Systems

Precision connectors ensure minimal signal loss and high fidelity for critical listening environments. 

Electroacoustic Research

Low-resistance connectors used in R&D environments for accurate signal transmission and testing of speaker components. 

Industrial Audio Equipment

Connectors engineered for durability in harsh environments, with resistance to vibration, temperature extremes, and corrosion.

Surround Sound Systems

Specialized connectors supporting multi-channel audio transmission with optimal impedance matching for surround setups. 

Automated Audio Calibration Systems

Connectors facilitating accurate data transmission between devices in systems used for sound calibration. 

Optimized for Peak Performance and EMI Mitigation

Electromagnetic interference (EMI) is a concern in any audio system, particularly when dealing with high-power components. Noise introduced by EMI can cause distortion or degrade the clarity of the audio signal. To mitigate this, our loudspeaker connectors are engineered with shielding and grounding mechanisms that reduce the risk of EMI. 

Loudspeaker connectors ensure that your audio system operates at peak performance. The careful design of contact materials, power handling capabilities, thermal management, corrosion resistance, and mechanical stability. This ensures that our connectors meet the stringent demands of professional audio systems. 

Having Doubts? Our FAQ

Check all our Frequently Asked Question

How does Frigate ensure optimal power handling in its loudspeaker connectors?

Frigate’s loudspeaker connectors are designed with high-conductivity materials, such as gold-plated contacts, ensuring minimal power loss and stable performance in high-power environments. This prevents overheating and ensures reliable power transmission. 

What makes Frigate's loudspeaker connectors resistant to signal degradation?

Frigate’s connectors are engineered with low-contact resistance and precision-machined components, which prevent signal degradation and ensure consistent, distortion-free transmission over long periods of use. 

How does Frigate address corrosion concerns in loudspeaker connectors for harsh environments?

Frigate uses corrosion-resistant materials, such as stainless steel and gold plating, to protect the connectors from moisture, humidity, and exposure to corrosive elements, ensuring long-term functionality and stability in outdoor or industrial settings. 

What design features in Frigate's loudspeaker connectors enhance thermal management?

Frigate’s connectors are built with materials that provide excellent thermal conductivity. This helps to dissipate heat generated during high-power audio transmission, ensuring that the connectors maintain performance under heavy load without overheating. 

How does Frigate reduce electromagnetic interference (EMI) in its loudspeaker connectors?

Frigate incorporates EMI shielding through advanced conductive materials like copper alloys and strategically designed grounding mechanisms to prevent external electromagnetic interference. This ensures clean, noise-free audio transmission even in electrically noisy environments. 

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LOCATIONS

Global Sales Office

818, Preakness lane, Coppell, Texas, USA – 75019

Registered Office

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Loudspeaker Connectors

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