STREAMLIED DESIGN DEVELOPMENT

1.0mm Female Connector PCB End Launch, 110 GHz

Order No:W2HA50-1890B1-LP/9X
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Key Specifications

Type Design:
Precision
Impedance (Ohm):
50
Body Style:
Straight
Frequency, Max (GHz):
110
VSWR, Max:
1.50
Connector Series:
1.00mm
Connector Gender:
Jack (Female)
Connection Method:
Threaded (Screw-lock)
Center Contact:
Soldered
Mount Method:
None
Body Material:
Stainless Steel
Body Plating:
Passivated
Captivated Type:
Mechanical Captivation
Bankend Type:
Coaxial End

Description

1.0mm Jack (Female) Connector | PCB End Launch | DC- 110 GHz | VSWR 1.4 | Low Profile

The ROSNOL W2HA50-1890B1-LP/9X is a high-frequency 1.0 mm female connector engineered for advanced microwave, millimeter-wave, and high-speed test applications operating from DC to 110 GHz. Featuring a removable end launch PCB design and low-profile configuration for 5.35 mm thick boards, this precision 50-ohm connector supports reliable signal transmission across ultra-wide bandwidths. Its compact structure and end-launch mounting style make it an excellent choice for next-generation RF systems, research laboratories, semiconductor testing, and high-frequency communications equipment.

Built with beryllium copper center contacts and launch pins with gold plating, the connector delivers excellent conductivity and stable electrical performance. The stainless steel body and transition block feature passivated surfaces for durability, while PEI and PTFE insulating components provide dependable electrical isolation. Key specifications include DC to 110 GHz frequency coverage, VSWR ≤ 1.4, insertion loss ≤ 0.05 × √F (GHz) dB, insulation resistance ≥ 5 GΩ, and RF leakage of at least 90 dB up to 1 GHz.

Designed for demanding precision applications, the ROSNOL W2HA50-1890B1-LP/9X utilizes a secure screw-on coupling mechanism and supports more than 500 mating cycles. Its low-profile architecture, removable end-launch structure, and stable millimeter-wave performance make it ideal for aerospace electronics, high-speed digital systems, laboratory measurements, network analysis, and advanced RF and microwave PCB development.