Artium
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| Brand | Artium |
|---|---|
| Origin | USA |
| Model | ASA |
| Dispersion Method | Dry & Wet |
| Instrument Type | Laboratory Laser Particle Size Analyzer |
| Measurement Range | 1–1200 µm |
| Repeatability | <1% |
| Measurement Duration | Unlimited |
| Analog Bandwidth | 10–160 MHz (standard), upgradable to 10–200 MHz |
| Max Sampling Rate | 320 MHz (standard), upgradable to 400 MHz |
| Signal Processing Architecture | Quadrature-based Fourier Transform (FT) with Phase Pulse Detection (PPD) and Adaptive Sampling |
| Brand | Artium |
|---|---|
| Origin | USA |
| Model | DIS |
| Application | Droplet & Particle Size, Morphology, Velocity, and Concentration Measurement |
| Technology | Particle Tracking Velocimetry (PTV) |
| Field of View | 140 mm × 70 mm (2:1 aspect ratio) |
| Illumination | Uniform, Homogeneous LED Backlighting |
| Ruggedization | Shock- and Vibration-Resistant Design |
| Compliance Context | Designed for ASTM D6328, ISO 9276-2, and USP <788> particle imaging alignment principles |
| Software Support | Proprietary DIS-Analyzer Suite with timestamped frame capture, binary segmentation, and centroid-based trajectory reconstruction |
| Brand | Artium |
|---|---|
| Origin | USA |
| Model | LII 300 |
| Measurement Principle | Laser-Induced Incandescence (LII) |
| Measured Parameter | Soot Mass Concentration, Primary Particle Diameter, Specific Surface Area |
| Detection Limit | <1.0 ppt (<2 µg/m³) |
| Upper Range | 10 ppm (20 g/m³) |
| Dynamic Range | >1,000,000:1 |
| Accuracy | ±2% of reading |
| Repeatability | ±2% |
| Stability | ±2% |
| Response Time | <100 ms |
| Soot Primary Particle Size Range | 10–100 nm |
| Specific Surface Area Resolution | Derived from LII signal ratio and calibration traceable to NIST standards |
| Compliance | Designed for ASTM D6551, ISO 8573-4, and EPA Method 9-compatible particulate characterization workflows |
| Software | Real-time acquisition with timestamped raw signal, background-subtracted incandescence decay, and dual-wavelength LII ratio processing |
| Brand | Artium |
|---|---|
| Origin | USA |
| Model | PDI-FPDR |
| Instrument Type | Aerosol Detector |
| Application | Airborne Cloud Microphysics Measurement |
| Laser Source | Diode-Pumped Solid-State (DPSS) |
| Optical Configuration | Transmissive Dual-Beam Interferometric |
| Particle Discrimination | Spherical Liquid Droplets vs. Ice Crystals |
| Optional Feature | Integrated Anti-Icing Heater |
| Compliance Context | Designed for FAA Part 25/27-certified research aircraft integration and NASA GRC-validated flight test protocols |
| Brand | Artium |
|---|---|
| Origin | USA |
| Model | PDI-TK |
| Type | Laboratory Laser Diffraction Particle Analyzer |
| Dispersion Method | Dry & Wet |
| Measurement Range | 1–1200 µm |
| Repeatability | <1% |
| Measurement Duration | Unlimited |
| Laser Source | Diode-Pumped Solid-State (DPSSL) Laser |
| Wavelength | 532 nm |
| Optical Probe Weight | 2.63 kg (TK1), 2.86 kg (TK2) |
| IP Rating | IP66 |
| Calibration | NIST-Traceable, Single-Calibration-for-Life |
| Signal Processor | ASA2 Advanced Signal Analyzer |
| Software Platform | AIMS (Advanced Imaging & Measurement Suite) |
| Optional Accessories | Anti-Fog Window Shroud, Integrated Thermostatic Heating Module for Sub-Zero/Freezing Environments |
| Brand | Artium |
|---|---|
| Origin | USA |
| Model | PDI-X00MD |
| Measurement Principle | Laser-based phase Doppler anemometry (PDA) / Phase Doppler Particle Analysis (PDPA) |
| Velocity Range | −100 to +300 m/s |
| Droplet Size Range | 0.5–2000 µm |
| Size Accuracy | ±0.5 µm |
| Size Resolution | 0.5 µm |
| Velocity Accuracy | ±1% of reading |
| Volumetric Flow Rate Accuracy | ±15% |
| Signal Processor Bandwidth | 5–150 MHz |
| Minimum Transit Time | 100 ns |
| Maximum Sampling Rate | 320 MHz (integrated) |
| Minimum SNR | −6 dB |
| Max Data Throughput | 100,000 events/s |
| Operating Systems | Windows XP/2000, Linux 2.4 kernel |
| Software Architecture | Client-server over LAN/internet |
| Data Export Formats | MATLAB (.mat), Excel (.csv), ASCII |
| Compliance | Designed for GLP/GMP-aligned workflows |
