LED Strips and Connectors

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LED strips and connectors form a reliable and functional base for flexible light assembly in various room and furniture configurations.


When creating complex light contours around corners or long perimeters, contact deterioration or increased resistance in the circuit is unacceptable. Using precision-engineered LED strip connectors and junction terminals makes flexible light assembly safe and stable. These components provide a firm electrical contact between diode sections without the need for soldering, thereby reducing the risk of installation errors. Proper connection of SMD or continuous COB systems prevents voltage drops at the end of the line, maintaining uniform light output over its entire length. Each connection element is designed to withstand the nominal current demanded by high-power lighting circuits and to protect the line against heating and oxidation during daily load.


Professional assembly components:

  • Stable connectors: Multi-pin contact terminals mechanically lock the strip in place, preventing vibrations or temperature fluctuations from interrupting the current flow.
  • Minimal resistance: Special joints maintain optimal electrical conductivity, which is critical when connecting multiple metrage sections into a single network.
  • Universal compatibility: Solutions for both wide and narrow strips ensure precise linkage in tight built-in furniture niches and profiles.

A secure technological chain and verified parts are a clear guarantee for a stable and long-lasting lighting result, eliminating the risks of short circuits and resistance losses even in heavy industrial usage scenarios and long installation lines in any project. Once stable basic lighting from strips is established in the room, smart Table Lamps with Gesture Control will perfectly fit for additional comfort at the local workstation.



Q: What is the physical resistance difference between soldering and fast "Click" (PIN) connectors?

A: Soldering with tin creates an atomic bond, providing a stable, low-resistance contact that withstands mechanical vibrations. Fast connectors use pressure contacts, whose transition resistance in humid air can increase over time due to micro-oxides.


Q: What is the LED strip cutting step, and what is its electrical significance?

A: During production, parallel circuit blocks with copper marks are embedded in the strip base, which are allowed to be separated (usually every 3, 5, or 10 cm). Cutting outside these marks breaks the series circuit of that specific block, excluding the entire affected segment from the current flow.


Q: How to engineeringly and safely create a 90-degree corner transition without damaging the diode board?

A: It is strictly forbidden to bend the strip at a sharp angle in the horizontal plane, as this tears the copper current traces in the PCB structure. Special L-shaped connectors must strictly be used, or flexible AWG wires must be soldered, ensuring current flow without tension.


Q: How do VIDEX connectors maintain contact under high current (A) load conditions?

A: "piercing" type connectors use nickel-plated blades that physically bite into the strip's copper base. This creates a mechanically stable connection that prevents arcing sparks and contact overheating even during prolonged operation.


Q: How to calculate the correct wire cross-section (AWG) when connecting an LED strip to a power supply?

A: The cable's copper cross-section (mm²) is proportional to the current strength (A) and the line length. For example, for a 150W (6.25A) load on a 24V system over 10 meters, at least 1.5mm² (16 AWG) wires must be used to prevent heat and voltage losses.