Introduction
Thermal characterization is foundational to materials science, new energy, pharmaceuticals, and chemical engineering, requiring precise monitoring of mass and thermal behavior. The SKZ1060 Simultaneous DSC-TGA Analyzer integrates advanced technology and user-centric design to meet these demands, offering exceptional precision and versatility for research and industrial applications.
Core Design & Technology
1. Robust Build & Precision Sensors
Engineered for durability, the SKZ1060 features a reinforced chassis resistant to impacts and environmental stress, suitable for labs and on-site testing. At its core are platinum-rhodium (Pt-Rh) precious metal sensors—resistant to oxidation and thermal drift—ensuring reliable data even at 1550°C, outperforming conventional sensors in long-term stability.
2. Key Functional Advantages
-
Simultaneous DSC-TGA Measurement: Eliminates separate tests by combining mass change (TGA) and thermal flow (DSC) analysis, reducing errors from inconsistent conditions and correlating thermal events with mass shifts in real time.
-
1550°C Temperature Range: Covers polymers, ceramics, metals, and composites, enabling high-temperature studies like ceramic sintering without specialized equipment.
-
Ultra-High Sensitivity: 0.01mg mass resolution (10µg) and 0.01µW thermal flow resolution detect microscale changes—critical for pharmaceutical moisture analysis or polymer additive degradation.
-
Multi-Atmosphere Control: Supports inert, oxidizing, reducing, or custom gas mixtures (0–100mL/min flow), simulating real-world conditions for battery cathode testing or catalytic reactions.
-
Dual Control Interface: 7-inch touchscreen for intuitive on-site operation and USB remote control for fume hood/glove box use, with CSV/PDF data export for easy analysis.
Technical Specifications
Application Scenarios
1. Research & Development
-
Materials Science: Analyzes polymer Tg/Tm, ceramic sintering, and composite thermal stability.
-
New Energy: Evaluates lithium-ion battery cathode decomposition and fuel cell catalyst stability.
-
Pharmaceuticals: Verifies drug moisture content and polymorphic transitions for regulatory compliance.
2. Industrial & Environmental Use
-
Quality Control: Monitors chemical product purity and catalyst activity in manufacturing.
-
Environmental Science: Measures biomass pyrolysis and waste combustion characteristics for energy optimization.
User Value & Reliability
The SKZ1060 combines low maintenance (self-calibration, durable sensors) with space-saving design, ideal for small labs. Its intuitive interface requires minimal training, while precision data accelerates R&D and ensures product quality across industries.