AO2020 Advance Optima AO2000 Series Continuous gas analyzers

Advance Optima AO2000 Series is a line of modules used for continuous process gas analysis.
The product line consists of the following modules:
 Analyzer modules
 Pneumatics module
 Electronics module with system controller and I/O modules
 Housing with display and control unit
 System bus
The modules can be arranged in various ways to form single or multiple analyzer systems.
The electronics module, power supply and housing with display and control unit are also collectively referred to as the “central unit”.

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Description

AO2020 Advance Optima AO2000 Series Continuous gas analyzers

Product description

Advance Optima AO2000 Series is a line of modules used for continuous process gas analysis.
The product line consists of the following modules:
 Analyzer modules
 Pneumatics module
 Electronics module with system controller and I/O modules
 Housing with display and control unit
 System bus
The modules can be arranged in various ways to form single or multiple analyzer systems.
The electronics module, power supply and housing with display and control unit are also collectively referred to as the “central unit”.

The pneumatics module contains the following elements when fully equipped:
 One or three solenoids to control test gas supply
 One or two disposable elements for fine filtration
 One gas supply pump with coarse filter and capillary
 One or two flow monitors
The pneumatics module is always associated with an analyzer module and installed in the same housing as the analyzer module.

AO2000-LS25

Product parameter

Analyzer modules:
 Uras26 Infrared analyzer module
 Limas21 UV Process photometer analyzer module
Limas21 HW Process photometer analyzer module
 Limas11 IR Process photometer analyzer module
 Magnos206 Oxygen analyzer module
 Magnos27 Oxygen analyzer module
 ZO23 Trace oxygen analyzer module
 Caldos25 Thermal conductivity analyzer module
 Caldos27 Thermal conductivity analyzer module
 Fidas24 FID analyzer module
 Fidas24 NMHC FID analyzer module
 LS25 Laser analyzer module
Each analyzer module consists of the sensor and associated electronics having its own processor. The analyzer modules are linked to the system controller via the system bus. The laser analyzer module is linked to the central unit via Ethernet.
The analyzer modules are supplied with 24-VDC from an integral power supply or an external unit.
The electrochemical oxygen sensor is available as an option in combination with an analyzer module.

Application field

Compact design

The electronics module incorporates the system controller with the I/O modules.
The system controller carries out the following functions:
 Processing and communicating the measured values supplied by the analyzer module sensor electronics
 Compensating measured values, e.g. cross sensitivity correction
 Controlling system functions, e.g. calibration
 Display and control functions
 Controlling associated systems, e.g. gas supply
 Communicating with external systems
The system controller communicates with the other functional units of the gas analyzer (e.g. the analyzer modules) via the system bus.
Interfaces for controlling associated systems and for communicating with external systems are located on the system controller (Ethernet 10/100/1000BASE-T interface) and on the I/O modules.
The I/O modules are attached and directly connected to the system controller board. There are six types of I/O modules:
 Profibus modules have one RS485 and one MBP interface.
 Modbus modules have one RS485 and one RS232 interface.
 Digital I/O modules have four digital inputs and four digital outputs.
 2-way analog output modules have two analog outputs.
 4-way analog output modules have four analog outputs.
 4-way analog input modules have four analog inputs.
Examples of I/O module applications include:
 Output of measured values
 Output of status and alarm signals
 Calibration control
 Control of external solenoid valves and pumps
 Measurement range switching and feedback
 Feed of current or status signals from external analyzers
 Feed of status signals from peripherals

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