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Brand | ABB |
---|---|
Model | MB3000 Series |
Category | Laboratory Equipment |
Language | English |
Explains the objective and scope of the manual.
Defines the meaning of various icons used throughout the publication.
Details potential hazards associated with laser radiation.
Provides precautions for handling Electrostatic Sensitive Devices.
Outlines safety measures related to electrical hazards and grounding.
Covers general safety precautions for operating and handling the spectrometer.
Provides important operational and handling guidelines for the equipment.
Lists the conformity certifications for the ABB MB3000 Series FTIR spectrometers.
Discusses environmental considerations and disposal recommendations for the spectrometer.
Describes the various labels and their locations on the spectrometer unit.
Details the procedure for safely powering off and securing the spectrometer.
Step-by-step guide for safely removing the spectrometer from its packaging.
Lists all items included in the spectrometer's shipping box.
Instructions for physically connecting and setting up the spectrometer.
Procedures for performing spectral autocalibration and manual calibration.
Explains how to connect the spectrometer to a computer or network via Ethernet.
Details the configuration steps for establishing an Ethernet connection.
Instructions for establishing a direct Ethernet connection to a PC.
Methods to check if the spectrometer is properly connected and communicating.
Guidelines for safely cleaning the spectrometer and its components.
Procedures for cleaning up spills on the spectrometer.
Advice on proper storage conditions to maintain spectrometer integrity.
Information on environmentally responsible disposal of the spectrometer.
General introduction to the MB3000 Series FTIR spectrometer's features and applications.
Explains the meaning of different LED states for monitoring the instrument.
Locates and describes the various connectors on the spectrometer.
Details the types of Ethernet cables and their applications for connectivity.
Information on the purge system and recommended gases for use.
Describes the attenuator's position and its role in signal optimization.
Step-by-step instructions for removing and installing the detector module.
Procedures for safely removing and installing the source module.
Details the electrical input requirements and power consumption of the spectrometer.
Provides physical dimensions, enclosure details, and weight of the unit.
Specifies the required environmental conditions for optimal spectrometer performance.
Information on the data communication protocols used by the spectrometer.
Describes the key components of the optical bench assembly.
Details the laser type, wavelength, output power, and safety class.
Provides fundamental safety and procedural guidelines for troubleshooting.
A table and flowchart to diagnose issues based on LED indicators.
Procedures and requirements for sending the spectrometer back to ABB for service.
Formal declaration that the product meets EU directives and harmonized standards.
Document confirming the product's compliance with IECEE CB Scheme standards.
Certification mark and details from TUV SUD America Inc. for safety compliance.
Details compliance with EMC and FCC standards for emissions and immunity.
Explains the role of firmware and how to obtain updates.
Step-by-step guide on using the ABB Bomem FTIR utility for firmware updates.
Explains Beer's Law and its relation to absorbance and pathlength in FTIR.
Describes methods to evaluate the spectrometer's photometric linearity.
Details performance criteria for linearity testing using a polystyrene film.
Discusses factors like stray light and double modulation affecting photometric linearity.
Explains changes in optical configuration and laser technology for calibration.
Compares optical configurations and their impact on frequency calibration.
Discusses how field of view impacts FTIR frequency scale accuracy.
Explains how field of view and optical axis affect frequency measurements.
Analyzes how accessories modify the IR beam and affect frequency.
Discusses adjustments needed when transferring calibrations between FTLA and MB3000.