STREAMLIED DESIGN DEVELOPMENT

N Plug (Male) to N Jack (Female) Fixed Attenuator, 12.4GHz 25W 20dB VSWR 1.3

Order No:FA-N1N25A-12.4G25W20/H33-H3
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Key Specifications

Type Design:
Standard
Connection Type:
In-Series
Connector 1 Series:
N
Connector 1 Gender:
Jack (Female)
Connector 2 Series:
N
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):
12.4
Connector 1 Body Material:
Brass
Connector 1 Body Plating:
Nickel
Connector 2 Body Material:
Brass
Connector 2 Body Plating:
Nickel
VSWR, Max:
1.30
Power, Max (Watts):
25
Attenuation Max. (dB):
20

Description

N Fixed Attenuator | 20 dB | 25W | DC–12.4 GHz

Product Code: FA-N1N25A-12.4G25W20/H33-H3

The ROSNOL FA-N1N25A-12.4G25W20/H33-H3 Fixed Attenuator is engineered for controlled signal reduction and equipment protection across broadband RF and microwave applications. Designed with N Plug (Male) to N Jack (Female) interfaces, it supports DC to 12.4 GHz operation, 50 Ω impedance, and 25 W average power handling. The device provides 20 dB nominal attenuation with ±0.8 dB accuracy while maintaining a low VSWR ≤1.35 for consistent transmission performance.

Its high-quality construction includes a gold-plated phosphor bronze center contact for efficient conductivity, a nickel-plated brass body for durability, and a PTFE dielectric for excellent electrical stability. The robust design withstands harsh operating conditions and supports professional-grade RF installations.

Key Features & Benefits:
• 20 dB attenuation for signal conditioning
• Broadband frequency coverage to 12.4 GHz
• 25 W continuous power handling
• Excellent return loss characteristics
• Durable brass and PTFE construction
• Long service life with 500+ mating cycles

Industries & Applications:
Wireless communications, cellular infrastructure, RF production testing, broadcast systems, military communications, aerospace programs, network optimization, and laboratory research.