About SMB Female Right Angle Connector Gold Plating Through Hole For PCB Mount
Description:SMB Connector,Right Angled/90,Female/Jack,Through Hole,PCB Mount,Gold Plating
Features:
- SMB Connector,Right Angled/90,Female/Jack,Through Hole,PCB Mount,Gold Plating;
- Snap-on coupling design for fast installation;
- With boardband performance and low reflection;
- To reduce your Cost by using die casting process in non-critical areas.
- From the OEM Original Factory, same quality with much better price.
Main Application of SMB Connectors:
- Aerospace and Defense: Test Stands
- Medical: Telemetry
- Commercial Vehicle: GPS
- Telecommunications: Wireless Base Stations, Cellular Mobile System
- Data/Communications: Routers, WIFI, Radio Boards
- Industrial: M2M Communications, Process Controls, Video Systems, Instrumentation
Reliable & Durable RF ConnectivityWith gold plating over nickel contacts and a brass body, this SMB female right angle connector ensures high conductivity and corrosion resistance. The robust design supports a minimum of 500 mating cycles and features PTFE insulation, offering reliability for long-term and high-frequency PCB mount applications.
Precision Engineering for Superior PerformanceTested to meet strict standards like IEC 60169-10 and MIL-C-39012, this connector offers exceptional electrical properties with low VSWR (1.3), minimal contact resistance, and insulation resistance exceeding 1000 M at 500 V DC. Its compact dimensions are ideal for integrating into space-sensitive RF modules.
Application Versatility Across IndustriesSpecially designed for use in PCB mounting, this right angle connector is widely used in RF wireless modules, telecommunications, cellular base stations, antennas, and GPS systems. Its quick snap-on coupling, through-hole mount, and compatibility with a wide range of frequencies offer flexibility for various modern electronic projects.
FAQs of SMB Female Right Angle Connector Gold Plating Through Hole For PCB Mount:
Q: How is the SMB Female Right Angle Connector mounted onto a PCB?
A: This connector is a right angle, through-hole type, meaning it is inserted into matching holes on the PCB and secured by soldering, ensuring a strong electrical and mechanical connection suitable for RF signal transmission.
Q: What are the main benefits of gold plating and PTFE insulation in this connector?
A: Gold plating over nickel enhances conductivity and resists oxidation, ensuring long-term signal integrity, while PTFE insulation provides excellent dielectric strength and thermal stability across a wide temperature range (-55C to +155C).
Q: When should I use a right angle, through-hole SMB female connector?
A: Choose this connector when PCB space is limited or when the boards layout requires a 90-degree signal path. Its ideal for applications demanding robust, high-frequency connections like wireless equipment, GPS modules, or data communications.
Q: Where can this SMB connector be typically found in electronic systems?
A: It is most commonly used in the RF signal paths of PCB-mounted telecommunications devices, antennas, base stations, GPS modules, and other wireless communication equipment requiring reliable, high-frequency connections.
Q: What is the typical process for installing this connector on a PCB?
A: Installation involves aligning the connector pins with the PCBs through-holes, soldering each pin to secure electrical and mechanical connection, and then optionally inspecting for solder joint quality to guarantee RF performance.
Q: What advantages does the snap-on coupling feature provide?
A: Snap-on coupling allows for quick, secure, and tool-free connection or disconnection, streamlining assembly and maintenance while reducing the risk of mechanical wear compared to threaded connectors.
Q: How does this connector maintain performance in harsh environments?
A: It meets rigorous MIL-STD-202 standards for humidity and salt spray resistance, has a brass body with gold plating for corrosion protection, and uses PTFE insulation, making it suitable for both indoor and outdoor RF applications.