Engineered for precision and efficiency, the SIEMENS 6DD16000BA1 is a high-performance processor module designed for industrial automation, enabling seamless integration into complex control systems with enhanced computing capabilities.
Engineered for precision and efficiency, the SIEMENS 6DD16000BA1 is a high-performance processor module designed for industrial automation, enabling seamless integration into complex control systems with enhanced computing capabilities.
WhatsApp
Operating Temperature:-20°C to +60°C
Storage Temperature:-40°C to +85°C
Operating Voltage Range:24V DC
Power Consumption:Max 2.4W
Communication Interface:RS-485
Number of Inputs/Outputs:4/4
Dimensions (WxHxD):100mm x 100mm x 25mm
Weight:Approx. 0.2kg
The Siemens 6DD1600-0AH0 Processor Module is engineered for seamless integration into complex industrial control systems, providing unparalleled performance and reliability. Its compact design and efficient power consumption make it an ideal choice for space-constrained applications.
Equipped with advanced communication capabilities, this module supports RS-485 interface, facilitating easy connectivity and data exchange with other components in the system. It ensures reliable data transmission even under challenging industrial conditions.
Featuring a wide operating temperature range (-20°C to +60°C), this processor module is suitable for deployment in various harsh environments without compromising on functionality or performance. It ensures continuous operation even in extreme temperatures.
The inclusion of 4 inputs and 4 outputs enables versatile connection options, allowing for the monitoring of multiple sensors and actuators simultaneously. This feature enhances system efficiency by enabling real-time data processing and control adjustments.
Manufactured from high-quality materials, the Siemens 6DD1600-0AH0 Processor Module boasts a durable construction that withstands the rigors of industrial use. Its long lifespan minimizes downtime and maintenance requirements, contributing to overall cost-effectiveness in the long run.
