The rugged microeconomical socket is designed for high-reliability PCB connections in industrial and electronic applications. Made with phosphor bronze contacts and black Liquid Crystal Polymer insulators, these connectors support surface mount and through-hole options. They feature gold or tin plating, offering excellent corrosion resistance and conductivity. Rated for 281 VAC with TMM and 250 VAC with TMMH, the sockets operate within a temperature range suitable for demanding environments. They support multiple rows, with a variety in pin counts, ensuring versatility for complex electronic assemblies.
Voltage Rating: 281 VAC with TMM, 250 VAC with TMMH
Operating Temperature Range: Suitable for industrial environments
Insertion Depth: 0.787 inches (2.62 mm)
Max pitch: 0.198 inches (5.03 mm)
Number of Positions: 4 to 28, with minimums specified
Surface Mount Option: Yes
RoHS Compliant: Yes
Lead-Free Solderable: Yes for -D & -D variants
RoHS Compliance: Yes
Dimensions vary with configuration, featuring pitch options and row counts
Buy the Samtec SQW– Reliable Rugged Connectors for Industrial Applications
Order the high-reliability micro connector from Samtec today for industrial and electronic applications. Designed with phosphor bronze contacts and liquid crystal polymer insulators, these sockets feature gold or tin plating for corrosion resistance. Suitable for PCB mounting with surface-mount and through-hole options, they support voltages up to 281 VAC. Featuring multi-row configurations from 4 to 28 positions, they offer excellent connection stability and durability in demanding environments. Purchase now to ensure reliable electrical connections for your projects.
Get Samtec SQW-112-01-F-D-VS-LC today—built for precision and long-lasting durability in demanding environments.
Frequently Asked Questions
Where can I buy SAMTEC SQW11701LD002?
You can click on the BUY or RFQ button to purchase SQW11701LD002 from an authorized SAMTEC distributor.
How do I troubleshoot issues or seek technical support for part SQW11701LD002?