43-10-NB
3M
Product details
The 43-10-NB by 3M establishes new benchmarks in Terminals - Ring Connectors technology, crafted for ultra-high-speed data transmission systems. This cutting-edge connector integrates advanced signal integrity features with precision manufacturing for 5G infrastructure and data center applications.Featuring Hook architecture, this connector delivers exceptional impedance control. When analyzed in vector network analyzers, its geometry demonstrates <0.5dB insertion loss up to 40GHz.Optimized for 10 Stud interfaces, this terminal employs anti-resonant design principles. The patented contact configuration reduces skin effect losses by 35% at high frequencies.The Free Hanging (In-Line) configuration enables seamless integration with PCB backplanes. The low-insertion-force design supports 10,000 mating cycles without performance degradation.Utilizing Crimp technology, this connector achieves <1 characteristic impedance. The ground-optimized termination scheme reduces ground bounce effects in high-speed digital systems.Compatible with 10-12 AWG coaxial cables, this terminal features constant-impedance transitions. The graduated impedance matching eliminates return loss spikes at connection points.The Insulated system employs low-Dk materials for minimal signal distortion. Tested up to 100GHz, the dielectric properties remain stable across temperature extremes.Incorporating Butted Seam, this connector delivers exceptional crosstalk immunity. The orthogonal pin-field arrangement achieves >60dB near-end crosstalk isolation.The Yellow coding follows IEEE P1785 high-speed connector standards. Laser-marked identifiers remain legible after repeated cleaning cycles.
Product Attributes
- Product Status: Active
- Terminal Type: Hook
- Stud/Tab Size: 10 Stud
- Thickness: -
- Width - Outer Edges: -
- Length - Overall: -
- Mounting Type: Free Hanging (In-Line)
- Termination: Crimp
- Wire Gauge: 10-12 AWG
- Insulation: Insulated
- Features: Butted Seam
- Color: Yellow
- Contact Material: -
- Contact Finish: -