STREAMLIED DESIGN DEVELOPMENT

Fixed Attenuator 1.85mm Plug (Male) to 1.85mm Jack (Female), 65GHz 10W 20dB VSWR 1.5

Order No:FA-V1V25A-65G10W20/9XX-9X
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Key Specifications

Type Design:
Precision
Connection Type:
In-Series
Connector 1 Series:
1.85mm
Connector 1 Gender:
Jack (Female)
Connector 2 Series:
1.85mm
Connector 2 Gender:
Plug (Male)
Impedance (Ohm):
50
Body Style:
Straight
Connector 1 Connection Method:
Threaded (Screw-lock)
Connector 2 Connection Method:
Threaded (Screw-lock)
Frequency, Max (GHz):
65
Connector 1 Body Material:
Stainless Steel
Connector 1 Body Plating:
Passivated
Connector 2 Body Material:
Stainless Steel
Connector 2 Body Plating:
Passivated
VSWR, Max:
1.50
Power, Max (Watts):
10
Attenuation Max. (dB):
20

Description

1.85mm Fixed Attenuator | 20 dB | 10W | DC–65 GHz

The ROSNOL FA-V1V25A-65G10W20/9XX-9X Fixed Attenuator is engineered for broadband millimeter-wave applications requiring accurate signal attenuation and dependable electrical performance. Featuring a 1.85 mm Plug (Male) to 1.85 mm Jack (Female) configuration, this 50 Ω attenuator operates from DC to 65 GHz and supports 10 W average power handling. With a VSWR of ≤1.5 and 20 dB nominal attenuation, it helps maintain signal integrity while minimizing reflections in high-frequency RF paths.

Constructed with gold-plated beryllium copper contacts, passivated stainless steel components, and a PEI dielectric, the attenuator is designed for durability, dimensional stability, and long-term reliability. The precision screw-on interface supports more than 500 mating cycles, making it suitable for demanding laboratory and production environments.

Key Features & Benefits:
• DC–65 GHz millimeter-wave performance
• 20 dB attenuation for signal control
• 10 W average power handling
• Low VSWR for improved measurement accuracy
• Stainless steel construction for long service life
• RoHS-compliant materials

Target Industries:
RF test and measurement, aerospace systems, defense electronics, satellite communications, radar development, semiconductor testing, and advanced microwave research.