361P705
Winchester Interconnect
Product details
The 361P705 by Winchester Interconnect represents the pinnacle of precision engineering in Coaxial Connectors (RF) technology. Developed for test and measurement applications, this connector delivers laboratory-grade performance in field-deployable packaging with exceptional repeatability.Featuring BNC interface geometry, the connector achieves >60dB return loss up to {Frequency - Max}. The air dielectric design minimizes dispersion for time-domain applications.The Jack, Female Socket configuration provides genderless mating capability for flexible system integration. The anti-binding design ensures smooth engagement even in misaligned conditions.The 75Ohm controlled design features stepped impedance matching for broadband performance. Full 3D EM simulation verifies <1% impedance deviation across the operating band.The Bayonet Lock mechanism provides positive engagement with 15-20 in-lbs torque. The self-locking design prevents loosening under vibration per MIL-STD-810G.Characterized up to 1 GHz, the connector exhibits <0.05dB ripple in insertion loss. The precision-machined interface minimizes higher-order mode excitation.With 1 independent RF paths, the connector supports simultaneous multi-band operation. Each channel features <-70dB cross-talk isolation up to 40GHz.The Silver housing material provides excellent RF transparency with <0.001 dielectric loss tangent. The UV-stabilized compound resists yellowing over time.Meeting Weatherproof standards, the connector survives 56 days salt fog exposure per ASTM B117. The hermetic seal maintains <5x10-8 atm-cc/sec helium leak rate.
Product Attributes
- Product Status: Active
- Connector Style: BNC
- Connector Type: Jack, Female Socket
- Contact Termination: -
- Shield Termination: -
- Impedance: 75Ohm
- Mounting Type: -
- Mounting Feature: -
- Cable Group: -
- Fastening Type: Bayonet Lock
- Frequency - Max: 1 GHz
- Number of Ports: 1
- Features: -
- Housing Color: Silver
- Ingress Protection: Weatherproof
- Center Contact Material: -