The HLE-130-02-F-DV series by Samtec features high-density, RoHS compliant, surface-mount headers made from black liquid crystal polymer insulator and copper alloy contacts with gold or tin plating. Designed for PCB applications, these connectors support current ratings up to 4.1 A per pin, operate within -55°C to +125°C temperature range, and have pass-through or bottom entry options with insertion depths from 0.070 to 0.135 inches. Suitable for demanding industrial electronics requiring reliable connectivity with low insertion and withdrawal forces, these headers are lead-free, solderable, and RoHS compliant, ensuring environmental safety and high performance in compact spaces.
Insertion Depth: 0.070" to 0.135" (1.78 mm to 3.43 mm)
Pass-through or bottom entry designs
Insertion Force: 4.6 oz (0.44 N) (average)
Withdrawal Force: 4.6 oz (0.44 N) (average)
RoHS Compliant, Lead-Free Solderable
Lead Coplanarity: Max 0.004" (0.10 mm) to 0.006" (0.15 mm)
Processing suitable for SMT applications
Buy the Samtec HLE-130-02-F-DV U+2013 Reliable Industrial PCB Headers for Industrial Applications
Order the Samtec HLE-130-02-F-DV series online today to ensure high-quality, reliable connections in your industrial electronics. These headers are RoHS compliant, lead-free, and designed for PCB applications requiring compact, durable, and high-current-capable connectors. With a temperature range from -55°C to +125°C and pass-through or bottom entry options, they support easy installation and longevity in demanding environments. Enhance your projects with these robust, environmentally friendly headers that meet strict quality standards and optimize your manufacturing process.
Buy Samtec HLE-130-02-F-DV now and experience unmatched reliability and performance for demanding industrial electronics.
Frequently Asked Questions
Where can I buy SAMTEC HLE13202LDVPE?
You can click on the BUY or RFQ button to purchase HLE13202LDVPE from an authorized SAMTEC distributor.
How do I troubleshoot issues or seek technical support for part HLE13202LDVPE?