Overview
Manuals
Key Applications
Communication time
Features:
- PROFIBUS communication module
- Lenze 8400 PROFIBUS module 8400 TOPLINE SERIES
- EXTENSION MODULE FOR FREQUENCY INVERTERS SUB D-FUNCTIONS
The Lenze E84AYCPMV is a PROFIBUS communication module designed specifically for the 8400 series frequency converters. It enables network connectivity between the frequency converter and automation systems, supports PROFIBUS-DP data transmission, and provides real-time monitoring of frequency converter parameters.
This module is compatible with DRIVECOM and PROFIDrive protocols, can handle 16 process data words, and features automatic baud rate detection for improved control accuracy. Usage is very simple: just insert the E84AYCPMV module into the expansion slot of the 8400 frequency converter to connect to the PROFIBUS network via RS485 bus technology.
The E84AYCPMV Lenze Profibus Communication Module may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
Lenze E84AYCPMV Profibus Communication Module manual(Datasheets), Link
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
- Centralized drive networking: Primarily used in scenarios where multiple drives are networked. Individual drives do not need to be connected separately; they can be connected to the main controller via a single PROFIBUS bus.
- Industrial automation: Commonly found in manufacturing equipment such as conveyor systems, packaging machines, and palletizers, which require precisely coordinated motor control.
- Complex motion control: Used in conjunction with the 8400 TopLine or HighLine models for high-performance tasks such as pick-and-place or synchronous linear drives.
The communication time is the time between the start of a request and the arrival of the corresponding response.
The communication times in a PROFIBUS network depend on ...
• the processing time in the inverter;
• the transmission delay time (baud rate / telegram length);
• the nesting depth of the network.