Manufacturer Part Number
MMCX-R-PC(40)
Manufacturer
hirose
Introduction
The MMCX-R-PC(40) is a high-performance MMCX coaxial connector designed for use in a variety of radio frequency (RF) and microwave applications. This receptacle-style connector features a 50-ohm impedance, a frequency range up to 6 GHz, and is suitable for through-hole mounting. It offers reliable performance and durable construction, making it a versatile choice for various communication and electronic systems.
Product Features and Performance
Frequency range up to 6 GHz
50-ohm impedance
Through-hole mounting
Snap-on fastening mechanism
Beryllium copper center contact
Gold-plated brass body
PTFE dielectric material
Operating temperature range of -55°C to 85°C
Mating cycles up to 500
Product Advantages
Consistent and reliable signal transmission
Robust and durable construction for long-term use
Versatile mounting and installation options
Compact and space-saving design
Key Reasons to Choose This Product
Excellent high-frequency performance for demanding applications
Dependable and long-lasting solution for your RF connectivity needs
Compatibility with a wide range of systems and devices
Competitively priced for cost-effective integration
Quality and Safety Features
Rigorous quality control and testing processes
Compliance with relevant industry standards and regulations
Designed for safe and reliable operation
Compatibility
The MMCX-R-PC(40) connector is compatible with a variety of MMCX-compatible devices and systems, making it a versatile choice for various RF and microwave applications.
Application Areas
Wireless communication systems
Test and measurement equipment
Radar and satellite communications
Industrial and medical electronics
Automotive and transportation applications
Product Lifecycle
The MMCX-R-PC(40) is an active product in our website's sales team's product lineup. There are no current plans for discontinuation. Customers are advised to contact our website's sales team for any updates or information on equivalent or alternative models.