Micro-Latch 2.00mm Wire-to-Board Connector System Ideal for High Temperature Design

   date:2020-10-27     browse:2    comments:0    
Summary:Molex announces the introduction of the Micro-Latch 2.00 mm wire-to-board connector system for customers in the industrial automation, consumer products and automotive markets. The connector system is ideal for compact applications that require high-tempe

Molex announces the introduction of the Micro-Latch 2.00 mm wire-to-board connector system for customers in the industrial automation, consumer products and automotive markets. The connector system is ideal for compact applications that require high-temperature design, while meeting a variety of standards while still providing excellent reliability. The unique features make this connector system have better terminal retention effect, enhanced rigidity, and excellent pairing ability.

The Micro-Latch 2.00 mm wire-to-board connector system provides 2 to 15 single-row plug-in circuits in both vertical and horizontal configurations with low-profile connectors with through-hole terminals and 2.00 mm pitch. RoHS compliant and high temperature resistant, and used for crimp terminals and cables widely sold in the market. The fastener is provided with a terminal insertion rod. The system is also equipped with a friction lock and anti-misinsertion function similar to removing the housing wall on one side to help prevent mis-insertion.

The reliability of a product is the most important factor in determining the quality and advantages of a product or technology,said Mariko Okamoto, global product manager at Molex.With Molex's Micro-Latch connectors, customers can use reliability as a unique selling point for their products. "

Compared to similar connector systems on the market today, the Micro-Latch 2.00 mm wire-to-board connector system has a smaller depth and height, higher endurance in the high temperature range, higher rated voltage, and the cable size is smaller.


 
Article Source: Micro-Latch 2.00mm Wire-to-Board Connector System Ideal for High Temperature Design
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