9-position right angle D-sub sockets for PCB
Manufacturer: assmann
The A-DF 09 A Series is a robust line of high-performance electronic connectors designed for demanding industrial applications. Known for their reliability and versatility, these connectors are engineered to meet the rigorous standards of modern connectivity while ensuring ease of use and installation. The A-DF 09 A Series features a modular design, allowing for flexible configurations that cater to a wide range of applications in sectors such as telecommunications, automation, and automotive.
One of the standout features of the A-DF 09 A Series is its advanced locking mechanism, which ensures a secure connection even in high-vibration environments. This is crucial for applications where movement and mechanical stress can compromise connectivity. Additionally, the connectors are crafted from durable materials that provide excellent resistance to environmental factors such as moisture, dust, and temperature fluctuations, making them suitable for outdoor and harsh industrial settings.
The A-DF 09 A Series is designed to accommodate various pin configurations, allowing for customized arrangements to suit specific circuit requirements. With a current rating of up to 10A and a voltage rating of 250V, these connectors are ideal for power distribution systems, signal transmission, and data communication. Their compact form factor enables integration into space-constrained designs, making them a perfect choice for modern electronic equipment, including robotics, control systems, and instrumentation.
Typical applications of the A-DF 09 A Series include industrial machinery, automotive electronics, and telecommunications equipment. Their exceptional performance and reliability make them an excellent choice for engineers and designers who prioritize quality and durability in their connectivity solutions. Overall, the A-DF 09 A Series stands out as a versatile and dependable option for a broad spectrum of industries, delivering superior functionality without compromising on design integrity.
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