QLC260R PARKING
ITT Cannon, LLC
Product details
ITT Cannon, LLC's QLC260R PARKING establishes new standards in Backplane Connectors - Specialized technology, specifically developed for renewable energy power conversion systems. This high-current connector solution combines robust power handling capabilities with precision signal transmission for smart grid applications.The Receptacle, Female Sockets interface configuration provides solar inverter designers with a reliable solution for high-power density interconnects.With 260 available positions, the connector enables comprehensive system integration for wind turbine control systems.The All loaded configuration offers optimized solutions for power monitoring and control circuits in smart grid applications.The 0.031" (0.80mm) spacing configuration allows for adequate creepage and clearance distances required in high-voltage designs.4 row implementation facilitates efficient heat dissipation in power semiconductor applications.The Through Hole mounting system ensures reliable PCB attachment in high-vibration wind power generation equipment.The Solder method has been optimized for high-reliability connections in fluctuating temperature environments.Key Actuating Camshaft, Shielding Cup, Zero Insertion Force (ZIF) include arc-resistant materials and safety interlocks essential for high-voltage power conversion equipment.Gold plating ensures minimal contact resistance for efficient power transmission in photovoltaic systems.40.0µin (1.02µm) plating thickness ensures long-term reliability in harsh outdoor conditions.
Product Attributes
- Product Status: Active
- Connector Usage: -
- Connector Type: Receptacle, Female Sockets
- Connector Style: -
- Number of Positions: 260
- Number of Positions Loaded: All
- Pitch: 0.031" (0.80mm)
- Number of Rows: 4
- Number of Columns: -
- Mounting Type: Through Hole
- Termination: Solder
- Contact Layout, Typical: -
- Features: Actuating Camshaft, Shielding Cup, Zero Insertion Force (ZIF)
- Contact Finish: Gold
- Contact Finish Thickness: 40.0µin (1.02µm)
- Color: -