Manufacturer Part Number
U.FL-R-SMT-1(40)
Manufacturer
Hirose
Introduction
The U.FL-R-SMT-1(40) is a high-performance coaxial connector from Hirose Electric, designed for use in a variety of RF and microwave applications. This compact, surface-mount receptacle connector features a 50-ohm impedance and is capable of operating at frequencies up to 6 GHz.
Product Features and Performance
50-ohm impedance
Frequency range up to 6 GHz
Surface-mount design for easy integration
Snap-on fastening mechanism for secure connections
Compact and lightweight construction
Operating temperature range of -40°C to 90°C
30 mating cycles
Product Advantages
Excellent high-frequency performance
Space-saving surface-mount design
Reliable snap-on connection for secure signal transmission
Robust construction for reliable operation in challenging environments
Key Reasons to Choose This Product
Exceptional high-frequency capabilities
Compact and versatile design for easy integration
Reliable and durable performance for long-lasting use
Cost-effective solution for a wide range of RF applications
Quality and Safety Features
Phosphor bronze body material for strength and durability
Gold-plated center contact for reliable signal transmission
Liquid crystal polymer (LCP) dielectric for excellent high-frequency characteristics
Compliance with relevant industry standards for quality and safety
Compatibility
The U.FL-R-SMT-1(40) is compatible with a wide range of RF and microwave equipment, including wireless communication devices, test and measurement instruments, and various industrial and consumer electronics applications.
Application Areas
Wireless communication systems
Test and measurement equipment
Industrial and medical electronics
Consumer electronics with RF components
Product Lifecycle
The U.FL-R-SMT-1(40) is an active product in Hirose's product portfolio. There are no plans for discontinuation at this time. Customers can contact our website's sales team for information on any updates or equivalent/alternative models that may become available in the future.