Holiday Notice: Closed on Apr 3, 2026 to Apr 6, 2026 for Children’s Day / Tomb Sweeping Day. Normal operations resume next business day.

 

Holiday Notice: Closed on Apr 3, 2026 to Apr 6, 2026 for Children’s Day / Tomb Sweeping Day. Normal operations resume next business day.

 

STREAMLIED DESIGN DEVELOPMENT

Precision SMA Jack (Female) Termination Load, DC-27GHz 1W VSWR 1.2

Order No:T-PCA25-27G1WA/9X
Add Cart

Key Specifications

Type Design:
Precision
Impedance (Ohm):
50
Frequency, Max (GHz):
27
VSWR, Max:
1.20
Power, Max (Watts):
1
Connector Series:
Precision SMA
Connector Gender:
Jack (Female)
Connection Method:
Threaded (Screw-lock)
Body Material:
Stainless Steel
Body Plating:
Passivated

Description

Precision SMA Termination Load Jack (Female) | DC to 27 GHz | 50 Ω | 1 W

The ROSNOL T-PCA25-27G1WA/9X is a precision SMA termination load jack (female) designed for broadband RF and microwave test environments. It provides a nominal impedance of 50 Ω with frequency coverage from DC to 27 GHz and supports 1 W average power at 25 °C. Electrical performance is defined by VSWR ≤ 1.20, enabling low reflection and stable impedance matching across the operating band. A screw-lock coupling mechanism and controlled mechanical interface ensure secure attachment, reliable contact captivation, and repeatable performance during frequent mating cycles.

Centre contact: beryllium copper with gold plating over nickel underplating. Body: stainless steel with passivated finish. Insulator: PTFE. This termination load jack is widely used in RF laboratories, calibration systems, automated test equipment, and high-frequency microwave measurement platforms.

ROSNOL RF termination products are manufactured in ISO 9001-certified facilities and fully comply with RoHS and REACH requirements. Designed to deliver stable performance, consistent quality, and competitive pricing, ROSNOL termination loads provide a cost-effective alternative to leading European and American brands. Comprehensive customization services are available to support diverse RF and microwave system requirements.