VIBRO-METER VM600 CPUM 209-595-200-232 CPU Module

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Description:209-595-200-232: VM600 series CPU module—no published specs.

Product condition: New

Packing condition:Factory Packing

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A Module That Thinks in Motion

Unlike standard processors, this CPUM module dynamically adapts to real-time signals from sensors, protecting turbines, compressors, and pumps without human intervention.
It balances signal integrity, timely communication, and data safety, creating a virtual control layer over every connected monitoring card.

It integrates seamlessly with IOCN modules, translating raw vibration, temperature, and speed data into actionable insights.


Functional Overview Table

Capability

How It Works

Benefit

Data Aggregation

Collects input from multiple monitoring modules

Provides a unified view of the system

Signal Interpretation

Converts raw sensor data into readable metrics

Early detection of anomalies

Event Tracking

Logs operational events and alarms

Helps predict maintenance needs

Communication Layer

Ethernet / Modbus RTU / PROFINET

Ensures real-time data flow to DCS / SCADA

Operational Resilience

Fanless design, low power

Continuous operation in harsh environments

 


Design Philosophy

The 209-595-200-232 is built for machines that never stop.
Its fanless, compact design allows operation in dusty, hot, or high-vibration industrial environments.
It maintains stability even during network interruptions or module replacements, making it a silent, reliable backbone of your monitoring system.


Technical Snapshot

Parameter

Specification

Product Code

VM600 CPUM 209595200232

Input Voltage

24 VDC nominal

Communication Ports

Ethernet, RS-232/485

Protocols Supported

Modbus RTU, PROFINET

Module Type

CPU M (front rack) + IOCN optional rear module

Power Consumption

~12 W with IOCN card

Temperature Range

0°C – +65°C

Memory

Non-volatile storage for event logs

Firmware

Upgradable via Ethernet

MTBF

>100,000 hours

 


Real-World Impact

This module excels in environments where timing and precision are critical:

1. Turbine monitoring in power plants

2. Offshore compressors and pump stations

3. Refinery machinery health tracking

4. Rotating equipment in chemical and metallurgical industries

It converts every subtle vibration into a meaningful signal, helping engineers make informed, timely decisions.


What happens next?

 



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