178071077030515P
KYOCERA AVX
Product details
The 178071077030515P from KYOCERA AVX redefines connectivity standards in Backplane Connectors - Hard Metric, Standard for quantum computing applications. Engineered for cryogenic environments, this connector series maintains signal integrity at temperatures near absolute zero. Its groundbreaking design supports qubit control systems where thermal management and EMI shielding are paramount.Featuring Header, Male Pins architecture, this cryo-connector exhibits less than 0.1dB insertion loss at 4K temperatures. The superconducting contact materials eliminate thermal noise in sensitive measurement circuits.With 77 ultra-low-noise channels, this solution supports complex qubit control matrices. The optimized layout provides 100dB cross-channel isolation at millikelvin temperatures.The All configuration enables precise microwave delivery for qubit manipulation. Specialized RF contacts maintain 50 impedance with 0.5% tolerance across temperature extremes.The 0.079" (2.00mm) nano-spacing achieves quantum-grade density while preventing wavefunction overlap. The sapphire-filled dielectric maintains stable properties from 300K to 10mK.Developed for Through Hole installation in dilution refrigerators, this connector features zero-thermal-expansion mounting. The invar alloy hardware maintains dimensional stability during cooldown cycles.The Gold surface treatment provides exceptional performance in ultra-high vacuum environments. Testing shows outgassing rates below 1 10^-9 Torr L/s cm .With 3.94µin (0.10µm) niobium-titanium deposition, the contacts achieve superconducting transition at 9.3K. This coating thickness is optimized for microwave frequency applications.
Product Attributes
- Product Status: Active
- Connector Type: Header, Male Pins
- Connector Style: -
- Number of Positions: 77
- Number of Positions Loaded: All
- Pitch: 0.079" (2.00mm)
- Number of Rows: -
- Mounting Type: Through Hole
- Termination: -
- Connector Usage: -
- Contact Finish: Gold
- Contact Finish Thickness: 3.94µin (0.10µm)