The SQT-110-01-S-D is a high-quality, dual-row, surface-mount terminal strip manufactured by Samtec. It's part of their Tiger Beam™ series, known for its high reliability and dense packaging. This connector is designed for board-to-board connections in a wide variety of electronic applications.
Applications
- Board-to-board connections in networking equipment (routers, switches).
- Industrial control systems requiring robust and reliable interconnects.
- Medical devices where high density and signal integrity are crucial.
- Telecommunications equipment for signal routing and distribution.
- Embedded systems and prototyping platforms.
Features
- Dual-row design for increased density.
- Surface-mount technology (SMT) for automated assembly.
- 0.8mm pitch for compact board layouts.
- Tiger Beam™ contact system for high reliability and durability.
- Gold-plated contacts for excellent signal integrity and corrosion resistance.
Benefits
- Space savings on the PCB due to the high-density design.
- Reduced assembly costs through automated SMT placement.
- Improved signal integrity due to the gold-plated contacts and robust contact design.
- Increased product lifespan and reliability due to the durable construction.
- Versatile connectivity options for various board-to-board configurations.
Additional Details
The SQT-110-01-S-D has 20 total pins (10 pins per row). It is designed to mate with Samtec's TMM series headers. The insulator material is typically high-temperature thermoplastic, allowing for reflow soldering processes. The current rating is typically around 1 amp per contact, and the voltage rating is dependent on the application but is generally suitable for low-voltage signal and power transmission. For precise electrical and mechanical specifications, consult the Samtec datasheet for the SQT series.
This connector is widely used in applications demanding reliable and space-efficient board-to-board connections. The Tiger Beam™ contact system provides a secure and long-lasting connection, making it suitable for demanding environments.