Thermal Analysis Coupled System
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| Brand | AnalysisTech |
|---|---|
| Origin | USA |
| Model | Phase12B |
| Heating Current Capacity | 100 A (max) |
| Max Heating Voltage | 20 V |
| Thermocouple Accuracy | ±0.15°C (typ.), ±0.3°C (max.) |
| Tj Measurement Resolution | ±0.007°C (typ.) |
| Tj Absolute Accuracy | ±0.2–±0.5°C (typ.) |
| Sampling Rate | 1 MHz |
| Dimensions | 17" × 17" × 7.5" H, 25 lb |
| PC Requirements | Windows 7/10 Pro (64-bit), 3 GHz CPU, 2 GB RAM, 500 GB HDD, 4+ USB ports |
| Brand | Henven |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Regional Classification | Domestic (China) |
| Model | HTG |
| Pricing | Available Upon Request |
| Brand | LINSEIS |
|---|---|
| Origin | Germany |
| Model | L40 EGA GC-MS |
| Temperature Range | Up to 1200 °C |
| Interface Type | Heated Capillary Transfer Line (100–350 °C) |
| GC Oven | Programmable, -10 to 350 °C |
| MS Detector | Quadrupole Mass Spectrometer (m/z 1–1000) |
| Detection Limit | <10 pg for selected ions |
| Compliance | ASTM E2892, ISO 11358-2, USP <1031>, GLP-ready data audit trail |
| Brand | Netzsch |
|---|---|
| Origin | Germany |
| Model | STA-GC-MS |
| Operating Temperature Range | RT to 350 °C |
| Coupling Interface | Heated Transfer Line (up to 350 °C) with Six-Port Valve Box |
| Trigger Mode | Event-Driven Synchronization |
| Software | Fully Integrated, Real-Time Hardware Synchronization |
| Standalone Operation | Yes (STA and GC-MS operate independently) |
| Compliance | Designed for GLP/GMP environments |
| Brand | Netzsch |
|---|---|
| Origin | Germany |
| Model | STA/TG-FTIR |
| Operating Temperature Range | RT to 350 °C |
| Gas Transfer Path | Heated Entirely (Prevents Condensation) |
| Gas Residence Time | Short |
| Carrier Gas Flow Rate | Low (Minimizes Dilution Effect) |
| Measurement Mode | Synchronized Simultaneous STA–FTIR Acquisition or Independent Operation |
| Software Architecture | Fully Integrated, Core-Embedded Control with Hardware-Automated Triggering |
| Sample Introduction | Top-Loading Vertical TGA Configuration (Ensures Quantitative Evolved Gas Transfer) |
| Brand | Netzsch |
|---|---|
| Origin | Germany |
| Model | STA/TG-FTIR-GC-MS |
| Operating Temperature Range | RT to 350 °C |
| Gas Transfer Path | Heated (up to 350 °C) |
| Coupling Architecture | Parallel FTIR and GC-MS interfaces |
| Sample Introduction | Top-loading vertical TGA configuration |
| Trigger Mode | Event-driven hardware synchronization |
| Software | Fully integrated, real-time synchronized control platform |
| Compliance Support | ASTM E1131, ISO 11358, USP <621>, GLP-compliant audit trail capability |
| Brand | Netzsch |
|---|---|
| Origin | Germany |
| Model | STA/TG-FTIR-MS |
| Mass Range | 1–300 amu |
| Transfer Line Temperature | RT to 350 °C |
| Gas Path | Heated, Condensation-Free |
| Detection Sensitivity | High |
| Gas Residence Time | Short |
| Carrier Gas Dilution Effect | Minimal |
| FTIR & MS Operation Modes | Simultaneous or Standalone |
| Brand | Netzsch |
|---|---|
| Origin | Germany |
| Model | STA/TG-MS |
| Mass Range | 1–300 amu (capillary interface) / 1–1024 amu (SKIMMER® interface) |
| Interface Temperature Range | RT–350 °C (capillary) / RT–2000 °C (SKIMMER®) |
| Sample Introduction | Top-loading vertical TGA configuration |
| Gas Transfer | Heated capillary or SKIMMER® transfer line, fully temperature-controlled |
| Data Synchronization | Hardware-triggered real-time coupling with dual acquisition control |
| Software Architecture | Fully integrated native-core platform with synchronized thermal and MS data acquisition |
| Brand | NIUMAG |
|---|---|
| Origin | Jiangsu, China |
| Manufacturer Type | Authorized Distributor |
| Country of Origin | China |
| Model | VTMR-niumag |
| Pricing | Available Upon Request |
| Magnet Type | Permanent Magnet |
| Magnetic Field Strength | 0.5 ± 0.05 T |
| Standard Temperature Range | Room Temperature to 130 °C |
| Optional Cryo/High-Temp Module | −100 °C to 200 °C |
| Imaging Capability | Optional |
| Measurement Modes | T₁ & T₂ Relaxometry, NMR Imaging (MRI), Quantitative Analysis |
| Typical Acquisition Time | ≤2 min per sample |
| Sample Forms | Solutions, Gels, Solids, Powders, Particulates |
| Core Technology | FLAT (Fast Low-Amplitude Transient) Pulse Sequence for Short-T₂/Weak-Signal Detection |
| Brand | PerkinElmer |
|---|---|
| Origin | USA |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Import Status | Imported |
| Model | TG-MS |
| Pricing | Upon Request |
| Brand | PerkinElmer |
|---|---|
| Origin | USA |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Origin Category | Imported |
| Model | TG-GC/MS |
| Pricing | Available Upon Request |
| Brand | PerkinElmer |
|---|---|
| Manufacturer Origin | USA |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Instrument Category | Imported |
| Model | TG-hiden MS |
| Pricing | Available Upon Request |
| Brand | PerkinElmer |
|---|---|
| Origin | USA |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Import Status | Imported |
| Model | TG-IR |
| Pricing | Upon Request |
| Brand | PerkinElmer |
|---|---|
| Origin | USA |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Product Category | Imported Instrument |
| Model | PerkinElmer TG-IR-GC/MS |
| Pricing | Upon Request |
| Brand | Rigaku |
|---|---|
| Origin | Japan |
| Model | DSC-XRD |
| Configuration | θ–θ goniometer geometry |
| Coupling Type | Synchronized in-situ DSC–XRD |
| Atmosphere Control | Programmable gas environment (N₂, Ar, air, O₂) |
| Temperature Range | RT to 1200 °C (DSC sensor dependent) |
| X-ray Source | Cu Kα (standard), optional Mo or Co anodes |
| Detector | High-speed 1D/2D pixel array detector (e.g., HyPix-400) |
| Data Synchronization | Sub-second temporal alignment of thermal and diffraction signals |
| Brand | Rigaku |
|---|---|
| Origin | Japan |
| Model | Thermo Mass |
| Coupling Type | TGA-MS |
| Mass Range | up to m/z 400 |
| Ionization Method | Fragment-Free Photoionization |
| Interface Technology | Patented Skimmer Interface |
| Real-Time Synchronization | Quadruple Concurrent Measurement (TGA, DTG, MS Total Ion Current, Selected Ion Monitoring) |
| Compliance | Designed for ISO 11358, ASTM E1131, and USP <621> thermal analysis workflows |
