SIEMENS 16413-1-05 INTERFACE MODULE – Advanced Networking & Communication Solutions
The SIEMENS 16413-1-05 Interface Module: MNI/MBI APACS MNET is a versatile interface solution designed for seamless integration in industrial control systems, enabling efficient data communication between various devices.
Detailed content
Brand:SIEMENS
Model Number:16413-1-05
Module Type:Interface
Sub-Type:MNI/MBI
Application:APACS MNET System
Connectivity:High-speed digital communication
Power Consumption:Low power, efficient operation
Operating Temperature:-20°C to +70°C
Operating Humidity:5% to 95% non-condensing
Connection Ports:Multiple I/O configurations
The SIEMENS 16413-1-05 Interface Module is a key component for any industrial network infrastructure, providing robust and efficient data exchange capabilities. Its compatibility with the APACS MNET protocol ensures seamless integration with a wide range of Siemens automation systems.
With a maximum data transfer rate of up to 1Mbps, this module can handle large volumes of data with ease, making it suitable for applications requiring high-speed communications. The dual connection types (RS-485 and RS-232) offer flexibility in system configuration.
Energy efficiency is a priority with less than 2W of power consumption, contributing to reduced operational costs and environmental impact. It is designed to operate within a broad temperature range (-20°C to +60°C) and withstand varying humidity conditions without compromising performance.
For safety and reliability, the module features an IP20 enclosure, which protects against dust and splashes from above. Its compact size (111mm x 57mm x 76mm) and lightweight (approximately 120g) make it easy to install and integrate into existing systems.
The SIEMENS 16413-1-05 Interface Module is not just a tool for communication—it’s a solution that enhances system performance, improves efficiency, and simplifies the management of industrial networks. It’s designed to meet the stringent requirements of modern manufacturing environments, ensuring optimal operation and productivity.