Perfusion Lab
Experimental Sensors & Monitoring

Flow Monitoring Module

AEP-FM-01

Multi-Channel Flow Monitoring for Experimental Fluid Systems

A configurable flow-monitoring module designed for real-time measurement, visualization and data acquisition within laboratory fluid-circulation and experimental perfusion setups.

Depending on the requested configuration, AEP-FM-01 can integrate compatible flow-sensing hardware with signal acquisition electronics, centralized monitoring interfaces and experimental data-management architecture.

Conceptual experimental flow-monitoring setup: transparent fluid tubing passing through several inline flow sensor interfaces, each cabled into a signal-acquisition enclosure connected to a display showing multi-channel real-time flow traces and a data-logging panel
Sense
Acquire
Visualize
Record
Integrate

Representative configuration — sensor hardware, number of channels, interfaces and monitoring functions depend on experimental requirements.

What Is AEP-FM-01?

More Than a Flow Sensor

AEP-FM-01 is designed as an experimental flow-monitoring and integration platform rather than a standalone flow sensor.

Depending on the requested configuration, compatible flow-sensing hardware can be integrated with signal acquisition, multi-channel monitoring, visualization, data logging and centralized experimental control architecture.

Flow Sensor
+
Signal Acquisition
+
Multi-Channel Monitoring
+
Real-Time Visualization
+
Data Logging
= AEP-FM-01 · Flow Monitoring Module
Key Capabilities

Sense · Acquire · Visualize · Record · Integrate

Real-Time Flow Monitoring

Configurable monitoring of flow signals within experimental fluid systems.

Multi-Channel Architecture

Multiple experimental flow points can be integrated into a centralized monitoring architecture.

Signal Acquisition

Compatible sensor signals can be acquired and processed through the experimental monitoring platform.

Real-Time Visualization

Flow measurements can be presented through configurable experimental monitoring interfaces.

Data Logging

Experimental flow data can be recorded according to the requested system configuration.

System Integration

Flow monitoring can be integrated with pumps, fluid circuits, thermal systems and Aeternus Control & Data architecture.

Multi-Point Monitoring

Monitor Multiple Flow Points

Flow Point 01
Fluid Circuit Inlet
Flow Point 02
Pump Outlet
Flow Point 03
Experimental Chamber Inlet
Flow Point 04
Return Circuit
AEP-FM-01 · Flow Monitoring Module
Centralized Monitoring

Conceptual configuration only — measurement points are defined according to the individual experimental setup.

System Architecture

Conceptual Experimental Monitoring Architecture

Reservoir
AEP-CP-01 · Centrifugal Pump & Control
[F1] Flow Monitoring
AEP-HX-01 · Heat Exchange Circuit
[F2] Flow Monitoring
Experimental Chamber
[F3] Flow Monitoring
Return Circuit
Reservoir
F1 · F2 · F3 channels connect to
AEP-FM-01Flow Monitoring Module
Control & Data System

This diagram is conceptual only and describes experimental laboratory architecture. Measurement points, sensor hardware, channel count and interfaces depend on the requested configuration.

Configurator

Configure This Module

Define your flow-monitoring points, sensor situation, acquisition and data requirements — our engineering team evaluates the configuration.

1. Application
2. Monitoring Points
3. Define Points
4. Sensor Configuration
5. Monitoring Requirements
6. System Integration
7. Technical Requirements
8. Contact
9. Summary
Optional Integration

Flow-Informed Pump Control

Flow-monitoring data may be evaluated for integration with experimental pump-control architecture when required by the research setup.

Flow Sensor
AEP-FM-01
Control System
Pump Control

Control logic and feedback architecture are configuration dependent and subject to engineering evaluation.

Technical Specifications

Specification Overview

Product CodeAEP-FM-01
Product FamilyExperimental Sensors & Monitoring
MeasurementFlow
Number of ChannelsConfiguration Dependent
Sensor TechnologyConfiguration Dependent
Sensor HardwareSelected according to experimental requirements and compatibility evaluation
Measurement RangeDefined per configuration
Signal InterfaceConfiguration Dependent
Sampling ArchitectureConfiguration Dependent
Real-Time VisualizationOptional / Configuration Dependent
Multi-Channel MonitoringOptional / Configuration Dependent
Data LoggingOptional / Configuration Dependent
Data ExportOptional / Configuration Dependent
Threshold MonitoringOptional / Configuration Dependent
Pump-Control IntegrationOptional / Configuration Dependent
External InterfaceConfiguration Dependent
Custom IntegrationAvailable on Request

Final sensor selection, measurement range, number of channels, signal architecture, acquisition parameters and software functions are defined following engineering evaluation of the requested experimental configuration.

Component Integration

Depending on the selected configuration, AEP-FM-01 may incorporate compatible third-party flow-sensing hardware integrated with Aeternus Perfusion Lab electronics, monitoring software and experimental system architecture.

Specific sensor manufacturers and models are determined according to technical requirements, availability and compatibility evaluation.

Sensor Integration

Already Have Flow Sensors?

Researchers who already have flow-sensing hardware may submit manufacturer, model, output signal and available technical documentation for engineering compatibility evaluation.

Sensor Manufacturer
Sensor Model
Signal / Output Type
Technical Documentation

Compatibility subject to engineering evaluation.

Product Ecosystem

From Fluid Movement to Measurable Experimental Data

AEP-CP-01
Centrifugal Pump & Control
+
AEP-FC-01
Fluid Circuit
+
AEP-FM-01
Flow Monitoring
+
Control & Data
= Monitored Experimental Fluid Platform
Build Your System
Related Technologies

Complete Your Experimental Setup

Get in Touch

Planning a Monitored Experimental Setup?

AEP-FM-01 transforms individual flow-sensing components into an integrated experimental monitoring architecture — from sensor signal to real-time visualization, data acquisition and system-level integration.

Build a Complete Perfusion System

Important Information

AEP-FM-01 is presented as a configurable flow-monitoring, signal-acquisition and integration module for laboratory and experimental engineering applications according to its specified intended use.

It is not presented for clinical use, diagnosis, treatment or patient monitoring.

Sensor hardware, measurement range, interfaces, acquisition architecture, monitoring functions and final specifications depend on the individual experimental requirement and engineering evaluation.

Compatible third-party components may be integrated where appropriate.

The module is not described as sterile, medical grade, CE certified, RUO certified or approved unless such status is specifically documented for the supplied configuration.