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BenchCAT Catalog
Product Catalog of Reactor System
Perform dynamic temperature-programmed catalyst characterization experiments unattended.
Designed for complex experimental applications and provides one-stop services for your laboratory needs.
Adopts a modular integrated design scheme, suitable for exploration of reaction conditions and optimization of process conditions
Compact architecture design, can be placed on the desktop of the experimental platform, and has the smallest dead volume of the system.
Includes over-pressure and over-temperature alarms, power failure, and gas stop treatment, etc.
DSC 600
Reliable, Cost-Effective Calorimetry
Multiple heat flow sensor options: base, high-sensitivity, corrosion-resistant, and energetic sample-compatible.
Flexible cooling systems: water, mechanical, or liquid nitrogen (LN2).
Surrounding dual-PID temperature control delivers accurate thermal curves during both heating and cooling.
Ultra-light mineral furnace design reduces heat loss and enhances thermal uniformity and energy efficiency.
Optional high-pressure DSC model supports measurements up to 1000 psi for advanced material studies.
TGA 1000/1200/1500
Precise Mass Loss and Decomposition Analysis
Proprietary, self-developed hang-down microbalance with 0.1 μg resolution and high stability—no buoyancy correction required.
Temperature range options: ambient to 1000°C / 1200°C / 1500°C.
Insulated balance housing minimizes thermal drift and ensures accurate mass measurements.
Combines high sensitivity, low drift design, and robust thermal insulation for exceptional long-term precision.
Seamlessly integrates with mass spectrometry (MS) or FTIR for evolved gas analysis (EGA) in real time.
STA 650 1000 1200 1500
Integrated TGA, DSC/DTA –True Hang-Down STA for Unmatched Accuracy and Sensitivity
Simultaneous measurement of TGA and DSC (DTA) for comprehensive thermal analysis.
Optimized for evolved gas analysis with high-resolution detection of micro-scale mass and heat changes.
Proprietary hang-down balance with thermal insulation and low drift—accuracy without buoyancy correction.
Micro furnace design significantly reduces gas buoyancy and enhances baseline stability.
TMA 800
Premium Thermomechanical Analysis for Precision Expansion and Transition Measurement
Accurately measures glass transition temperature, stress relief points, and dimensional changes in materials.
Broad temperature range: ambient to 800°C (Optional –90°C to 800°C with RCS system).
High-sensitivity LVDT sensor detects minute dimensional changes with exceptional precision.
Rugged design optimized for small components and materials with low expansion rates (e.g., circuit boards, electronic materials).
RuboSORP MSB
High-Pressure Sorption Analyzer Using Magnetic Suspension Technology
Gravimetric high pressure sorption analyzer.
Patented magnetic suspension balance technology with up to 1μg resolution.
Customizable gas dosing unit (static/dynamic).
Dual sample containers enable parallel analysis of two samples.
Supports the widest max sample capacity, accommodating large or irregular samples without compromising accuracy.
RuboSORP MSB DVS
High-Performance Dynamic Vapor Sorption using Magnetic Suspension Technology
Gravimetric vapor sorption analyzer.
Dual sample containers enable parallel analysis of two samples.
Patented magnetic suspension balance technology with up to 1μg resolution.
Customizable gas dosing unit (static/dynamic).
Option Available: High-pressure up to 10 bar.
Lattice Series
Benchtop XRD
High-power X-ray diffractometer.
Desktop XRD combines high-power X-ray & photon-counting 2D array.
Photon-counting detector delivers lab-grade XRD in minutes.
Wide-angle goniometer (-3° - 156°).
X-ray power: 600W/1600W.
Photon-driven two-dimensional array detector.
Angle accuracy: ±0.01°.
AMI 400TPx
Cost-Effective Catalyst Characterization – Core Functions, Expandable Options
AMI’s most economical platform for temperature-programmed catalyst evaluation.
Supports TPD, TPR, TPO, and TPSR as standard functions.
Accurate gas delivery with 1 MFC and up to 10 gas inlet lines.
Broad temperature control: RT to 1200°C (optional –100°C to 1200°C range)
Optional features include mass spectrometry, automated loop injectors for pulse chemisorption, and single-point dynamic BET surface area analysis.
Three-layered safety system ensures operator and equipment protection.
AMI-400
Fully Automatic Chemisorption Analyzer
User-friendly software, auto-lift furnace, flexible gas inlet system.
Precise gas control by 1 (Optional: 2 or 3) MFC(s), 8 (optional: 14) gas inlets.
Temperature range: RT-1200°C, Optional-130°C-1200°C.
High reproducibility for automated loop loop injections with insulated valve box and TCD.
Equipped with an auto air-cooling system for faster cooling and shorter test time.
Comprehensive, three-layered safety system that protects both users and equipment.
A variety of options: vapor dosing, and Mass Spec.
AMI-300
The Flagship Platform for Advanced Catalyst Characterization
Precise gas control with 3 MFCs (Optional 4) and 10 gas inlets (expandable to 12).
Broad temperature range: RT to 1200°C standard, Optional-130°C to 1200°C.
High reproducibility in automated pulse chemisorption with insulated valve box and TCD.
Comprehensive three-layered safety system protects both users and equipment.
Compatible with advanced modules including vapor dosing, mass spectrometry, and in-situ FTIR.
Expandable platform with multiple upgrade paths to meet evolving research needs.
AMI 300 SSITKA
Steady-state Isotope Transient Kinetic Analysis
Automated chemisorption analyzer with integrated SSITKA (Steady-state Isotopic Transient Kinetic Analysis) functionality.
Enables detailed investigation of catalytic mechanisms, intermediate lifetimes, and surface kinetics.
Features precise pressure equalization for rapid and accurate isotopic switching.
Precise gas control via 4 MFCs and 12 gas inlets for complex experiment designs.
Broad temperature control: RT to1200°C (standard), Optional-130°C to1200°C.
High reproducibility for automated loop injections with insulated valve box and TCD.
Optional upgrades: vapor dosing mass spectrometry, and in-situ FTIR.
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