Chemical Analysis Instruments
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| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | DMA-500 |
| Sample Introduction | Solid, Liquid, Gas (Direct Analysis, No Digestion Required) |
| Detection Principle | Cold Vapor Atomic Absorption Spectrometry (CVAAS) with Thermal Release and Dual-Absorption-Cell Optical Path |
| Automation | 4-Axis Robotic Autosampler (100-position) |
| Temperature Control | PID-Controlled Ashing & Catalytic Combustion Furnaces |
| Mercury Trap | Constant-Power Heated Trap (Rapid Thermal Response, Zero Memory Effect) |
| Optical System | Dual-Beam Light Source with Real-Time Drift Compensation |
| Compliance | Designed for ISO 17025-accredited laboratories |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | OEM Manufacturer |
| Region of Origin | Domestic (China) |
| Model | DMA-600 |
| Instrument Type | Benchtop Laboratory Analyzer |
| Measurement Principle | Cold Vapor Atomic Absorption Spectrometry (CVAAS) |
| Sample Introduction | Direct Solid/Liquid/Gas Injection |
| Dual Sample Preparation Pathways | Catalytic Thermal Decomposition + Gold Amalgamation OR Stannous Chloride Reduction + Gold Amalgamation |
| Furnace Control | PID Temperature Regulation (Ashing & Catalytic Combustion Zones) |
| Mercury Trap | Constant-Power Heated Trap |
| Absorption Cell | Dual-Temperature-Controlled Flow-Through Cells (Heated to Maintain Hg⁰ in Vapor Phase) |
| Optical System | Dual-Beam Reference Compensation |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | GC-IMS 1000 |
| Form Factor | 19-inch rack-mountable (4U height) |
| Ionization Source | Non-radioactive, low-power UV photoionization lamp (10.6 eV) |
| Polarity Mode | Dual-polarity (positive and negative ion detection) |
| Detection Limit | Sub-ppt (v/v) for selected volatile organic compounds |
| Sample Introduction | Negative-pressure direct draw sampling |
| Flow Path Materials | Fully inert (SilcoNert®-treated stainless steel, PFA, and fused silica) |
| Control Interface | Integrated industrial PC with native Chinese-language software suite |
| Compliance | Designed for GLP-compliant workflows |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | GC-IMS 2000 |
| Configuration | Integrated GC (GC-200) + Dual-Polarity IMS (dIMS-200) + Automated Multi-Mode Sampling Platform |
| Ionization Source | Non-radioactive UV photoionization (10.6 eV) |
| Detection Polarity | Positive and negative ions simultaneously |
| Sensitivity | Sub-ppt (v/v) for volatile organic compounds |
| Software | Fully localized Chinese-language workstation with GLP-compliant audit trail, method/sequence automation, fingerprint spectral generation, and multivariate statistical analysis modules |
| Compliance | Designed to support ISO 17025 workflows, ASTM D7923 (VOCs in air), USP <1225> method validation principles, and FDA 21 CFR Part 11–ready data integrity architecture |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Product Category | Domestic |
| Model | GC-IMS 2000 |
| Pricing | Available Upon Request |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | GC-IMS 3000 |
| Configuration | GC-IMS300 Main Unit + BP30 Rechargeable Battery Pack + HS30 Handheld Sampling Probe |
| Power Supply | Dual-mode (AC adapter & internal Li-ion battery) |
| Operating Environment | 5–40 °C, <85% RH (non-condensing) |
| Dimensions (Main Unit) | 320 × 240 × 180 mm |
| Weight | ≤8.5 kg (fully configured) |
| Sample Introduction | Negative-pressure direct draw via inertized capillary path |
| Ionization Source | Non-radioactive UV photoionization lamp (10.6 eV) |
| Polarity Mode | Bipolar (simultaneous positive/negative ion detection) |
| Detection Limit | Sub-ppt (v/v) for selected VOCs and S-compounds |
| Data Acquisition Rate | Up to 50 spectra/sec |
| Software Interface | Standalone Windows-based GUI with embedded chemometric tools |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer | Yes |
| Country of Origin | China |
| Model | GC-IMS 3000 |
| Pricing | Upon Request |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Product Origin | Domestic (China) |
| Model | GC-MS 8700 |
| Pricing | Available Upon Request |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | GC-MS 8700 |
| Mass Analyzer Type | Single Quadrupole |
| Mass Range | Up to 1250 amu |
| Ion Source | High-Temperature Inert Ceramic |
| Vacuum System | Dual-Chamber Design with 250 L/s Turbo Molecular Pump |
| Ionization Modes | Electron Ionization (EI) |
| Scan Modes | Full Scan (SCAN) and Selected Ion Monitoring (SIM) Simultaneously |
| Filament | Dual Long-Life Inert Filament |
| Pre-Quadrupole | Removable |
| Detector | Electron Multiplier with Active Protection Logic |
| Compliance | Designed for GLP/GMP-aligned workflows, compatible with ASTM D5847, ISO 17025–compliant data handling, and supports 21 CFR Part 11–ready audit trail configuration (via optional software module) |
| Brand | Titan Instruments |
|---|---|
| Origin | Zhejiang, China |
| Manufacturer Type | Authorized Distributor |
| Product Origin | Domestic (China) |
| Model | ICP-5000 |
| Instrument Type | Full-Spectrum Direct-Reading |
| Detection Limit | µg/L (ppb-level) |
| Repeatability | RSD ≤ 0.5% |
| 4-Hour Stability | RSD < 2.0% |
| Wavelength Range | 165–870 nm |
| Optical Resolution | ≤ 0.007 nm (at 200 nm) |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | ICP-5500 |
| Instrument Type | Full-Spectrum Direct-Reading |
| Detection Limits | Al 167.0 nm, P 178.2 nm, B 182.6 nm, Se 196.0 nm, Pb 220.3 nm, Na, K — all < 10 µg/L |
| Precision (RSD) | ≤0.5% at 1 mg/L (n=10) |
| Long-Term Stability (RSD) | ≤2.0% at 1 mg/L over 4 h |
| Wavelength Range | 165–870 nm |
| Optical Resolution | ≤0.007 nm (FWHM at Mo 202.030 nm) |
| RF Generator Power | 0.5–1.6 kW, continuously adjustable |
| Plasma Observation Mode | Dual-view (axial + radial) |
| Detector | High-resolution solid-state CCD/CMOS array (>1 M pixels), thermoelectrically cooled to ≤−45 °C |
| Background Correction | Real-time, pixel-by-pixel |
| Linear Dynamic Range | ≥4–5 orders of magnitude |
| Warm-up Time | ≤30 min (optical chamber stabilized at 35 °C ± 0.1 °C) |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | iFIA 7Plus |
| Product Type | Flow Injection Analyzer |
| Category | Chemical Analysis Instrumentation — General Analytical Instruments — Flow Injection Analyzer |
| Manufacturer Status | Authorized Distributor |
| Regional Classification | Domestic (PRC) |
| Pricing | Upon Request |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | iFIA E |
| Type | Integrated Flow Injection Analyzer (FIA) System |
| Configuration | Fully Automated, Channel-Independent Modular Design |
| Standard Package | Auto-sampler, Main Unit, Control PC, Thermal Printer |
| Optional Modules | MAC3 Multi-Analyte Configuration Module (17 parameters) |
| Compliance Context | Designed for ASTM D129, ISO 6775, ISO 1192, EPA 300.0, EPA 354.1, USP <643>, and GLP/GMP-aligned data integrity workflows |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | iFIA E |
| Product Type | Flow Injection Analyzer |
| Wavelength Range | 340–1100 nm |
| Sample Capacity | 10–50 mL per vial / 50–300 positions |
| Reagent Positions | 12 |
| Flow Cell Path Length | 10 mm |
| Light Source | Tungsten Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Manufacturer |
| Product Category | Flow Injection Analyzer |
| Model | iFIA L9 |
| Wavelength Range | 600–700 nm |
| Sample Capacity | 50–212 positions |
| Reagent Ports | 7 |
| Flow Cell Path Length | 10 mm |
| Light Source | Tungsten Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Manufacturer |
| Product Category | Flow Injection Analyzer |
| Model | iFIA5+ |
| Wavelength Range | 340–1100 nm |
| Sample Capacity | 85–301 positions |
| Reagent Positions | 12 |
| Flow Cell Path Length | 10–30 mm |
| Light Source | Tungsten-Halogen Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Manufacturer |
| Product Category | Flow Injection Analyzer |
| Model | iFIA7 |
| Wavelength Range | 340–1100 nm |
| Sample Capacity | 85–301 positions |
| Reagent Positions | 12 |
| Flow Cell Path Length | 10–30 mm |
| Light Source | Tungsten-Halogen Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | iFIA7 |
| Product Type | Flow Injection Analyzer |
| Wavelength Range | 340–1100 nm |
| Sample Capacity | 85–301 positions |
| Reagent Positions | 12 |
| Flow Cell Path Length | 10–30 mm |
| Light Source | Tungsten-Halogen Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Product Category | Flow Injection Analyzer |
| Model | iFIA7 Plus |
| Product Type | Flow Injection Analyzer |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Manufacturer |
| Product Category | Domestic |
| Model | iFIAE |
| Product Type | Flow Injection Analyzer |
| Wavelength Range | 340–1100 nm |
| Sample Volume Capacity | 10–50 mL per vial |
| Sample Tray Capacity | 50–300 positions |
| Reagent Positions | 12 |
| Flow Cell Path Length | 10 mm |
| Light Source | Tungsten Halogen Lamp |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | OEM Manufacturer |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Design |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn |
| RSD | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits (As, Sb, Se, Bi, Te, Hg, Sn, Pb) | <0.01 µg/L |
| PMT Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | Kylin A12 |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction Mode | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Design |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn, Au |
| Relative Standard Deviation (RSD) | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer | Yes |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Design |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn |
| RSD | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| PMT Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | Kylin A13 |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Configuration |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn, Au |
| Relative Standard Deviation (RSD) | < 0.6% |
| Linear Dynamic Range | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Detection Limit | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Configuration |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn |
| Relative Standard Deviation (RSD) | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | Kylin A18 |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pumps |
| Waste Disposal | Rear Exhaust Configuration |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn, Au |
| Relative Standard Deviation (RSD) | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Manufacturer |
| Product Category | Domestic |
| Model | Kylin |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction Method | Dual Sequential Injection Pump |
| Waste Disposal | Rear Exhaust Design |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Hg, Se, Sn, Bi, Sb, Pb, Ge, Cd, Te, Zn, Au |
| Relative Standard Deviation (RSD) | < 0.6% |
| Linear Dynamic Range | > 3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | Programmable and Element-Optimized |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Direct Manufacturer |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pump |
| Waste Disposal | Rear Exhaust Configuration |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn |
| RSD | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits (As, Sb, Se, Bi, Te, Hg, Sn, Pb) | <0.01 µg/L |
| PMT Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Model | Kylin S12 |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pump |
| Waste Disposal | Rear Exhaust Configuration |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn, Au |
| Relative Standard Deviation (RSD) | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
| Brand | Titan Instruments |
|---|---|
| Origin | Beijing, China |
| Manufacturer Type | Original Equipment Manufacturer (OEM) |
| Instrument Type | Multi-channel Atomic Fluorescence Spectrometer |
| Sample Introduction | Dual Sequential Injection Pump |
| Waste Disposal | Rear Exhaust Design |
| Hydride Generation Mode | Vapor Generation / Hydride Generation |
| Gas Flow Control | Mass Flow Controller (MFC) |
| Detectable Elements | As, Sb, Bi, Sn, Se, Te, Pb, Ge, Hg, Cd, Zn |
| Relative Standard Deviation (RSD) | <0.6% |
| Linear Dynamic Range | >3 orders of magnitude |
| Detection Limits | As, Sb, Se, Bi, Te, Hg, Sn, Pb < 0.01 µg/L |
| Photomultiplier Tube Wavelength Range | 160–320 nm |
| Atomizer Temperature Control Range | 100–350 °C |
