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LINSEIS Thermal Analysis

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BrandLINSEIS
OriginGermany
ModelTEG-Tester (TEG L34)
Temperature RangeAmbient to 300 °C (hot side) / −20 °C to 300 °C (cold side)
Sample DiameterØ20–60 mm (circular) or 20×20–40×40 mm (rectangular)
Thickness CapacityUp to 25 mm
Clamp Force2–5 kN (motor-driven)
Current Range0–3 A DC
Voltage Range0–12 V DC
Voltage Resolution1.6 µV
Current Resolution1 µA
Voltage Accuracy±0.3 %
Current Accuracy±0.3 %
Temperature Accuracy±0.1 °C
Thermocouple TypeE-type
Reference Block MaterialsAluminum, Brass, Copper (custom options available)
Heating Power1.0 kW
Cooling Capacity1.0 kW at 10 °C / 0.5 kW at −20 °C
Pump Flow Rate27 L/min at 0.7 bar
Reservoir Volume3.8–7.5 L
RefrigerantR449A
Sampling Interval<10 ms
Operating ModesCC, CV, FOC, MPPT, P&O
Heat Dissipation Capacity36 W
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BrandLINSEIS
OriginGermany
ModelLZT-Meter (LZT L33)
Thermal Conductivity Measurement MethodLaser Flash Analysis (LFA)
Thermal Diffusivity Range0.01 – 1000 mm²/s
Laser SourceNd:YAG (25 J/pulse)
Pulse Width0.01 – 5 ms
Temperature Range–100 °C to 1100 °C
Atmosphere OptionsInert, Reducing, Oxidizing, Vacuum
Seebeck Coefficient Range1 µV/K – 250 mV/K (Static DC Method)
Electrical Conductivity Range0.01 – 2×10⁵ S/cm
Sample GeometryDisc-shaped (10, 12.7, 25.4 mm diameter) or Cylindrical/Rectangular (2–5 mm × 6–23 mm)
DetectionInSb / MCT Detectors
Furnace OptionsIR Furnace (RT–800 °C / 1100 °C), Cryo Furnace (–100 °C to 500 °C), High-Temp Furnace (RT–1100 °C)
Measurement PrinciplesLaser Flash Analysis (ASTM E1461), Static DC Seebeck & Four-Terminal Resistivity, Harman Method (Direct ZT), AC Impedance Spectroscopy (TEG Modules)
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BrandLINSEIS
OriginGermany
ModelLSR-1 (LSR L32)
Temperature Range (Base Unit)RT to 200 °C
Extended Low-Temp Range (with LN₂ Accessory)–160 °C to 200 °C
Extended High-Temp Resistivity Range (with HT Probe)up to 600 °C
Seebeck Coefficient Range0–2.5 mV/K
Seebeck Voltage Range±8 mV
Electrical Resistance Range10 nΩ
Voltage Sensitivity0.5 nV/K
Temperature Accuracy±1.5 °C or 0.0040·
Heating Rate0.01–100 K/min
Atmosphere OptionsInert, Reducing, Oxidizing, Vacuum
Recommended Purge GasLow-pressure He
Sample Dimensions (Seebeck)8–25 mm (L) × 2–25 mm (W) × ≤2 mm (T)
Sample Dimensions (Resistivity)18–25 mm (L) × 18–25 mm (W) × ≤2 mm (T)
Measurement PrinciplesVan der Pauw method (resistivity), Static DC method & Slope-based Seebeck measurement
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BrandLINSEIS
OriginGermany
ModelLSR-3 (LSR L31)
Temperature Range–100 °C to 1500 °C (configurable via interchangeable furnace modules)
Measurement MethodsStatic DC Seebeck method / Slope method (Seebeck)
Seebeck Range1 µV/K to 5000 µV/K
Electrical Conductivity Range0.01 to 2 × 10⁵ S/cm
Furnace OptionsIR furnace (RT–800 °C / RT–1100 °C), resistance furnace (RT–1500 °C), cryo furnace (–100 °C to 500 °C)
Atmosphere CompatibilityInert, reducing, oxidizing, vacuum (recommended: low-pressure He)
Electrode MaterialsNi (–100 °C to 500 °C), Pt (–100 °C to 1500 °C)
Sample Geometry SupportBulk rods (2–5 mm² cross-section, ≤23 mm length, ≤6 mm diameter), discs (10/12.7/25.4 mm Ø), thin films (with optional film adapter)
Thermocouple TypesK, S, C
Inter-thermocouple Spacing4 mm, 6 mm, 8 mm
Mandatory CoolingIntegrated water-cooling system
Optional ModulesHammar Method ZT module (LSR-4), Impedance Spectroscopy for TEGs, Low-Temperature Cryo Kit (LN₂-cooled), High-Resolution Camera-Assisted Resistance Imaging, High-Resistance Adapter
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BrandLINSEIS
OriginGermany
ModelLFA L52
Measurement PrincipleLaser Flash Analysis (LFA)
Thermal Conductivity Range0.1–4000 W/(m·K)
Thermal Diffusivity Range0.01–2000 mm²/s
Temperature Range−125 °C to 2800 °C
Sample FormsSolid, Powder, Liquid
Sample GeometryCircular (Ø 6, 10, 12.7, 25.4 mm), Square (10×10 mm, 20×20 mm)
Sample Thickness0.1–6 mm
Pulse SourceUser-replaceable Nd:YAG laser
DetectionNon-contact IR detection (InSb or MCT detector)
Data Acquisition Rate2 MHz
AtmosphereInert or reducing
Auto-sampler Options3-, 6-, or 18-position
Furnace OptionsMultiple modular furnaces (e.g., cryo, graphite, SiC, high-temp metal)
Heating Rate0.01–100 °C/min (furnace-dependent)
ComplianceASTM E1461, ISO 22007-4, DIN 30905
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BrandLINSEIS
OriginGermany
ModelTIM-Tester (TIM L58)
Measurement PrincipleLaser Flash Method (ASTM D5470–17 compliant)
Sample CapacitySingle sample per test
Test EnvironmentAmbient temperature operation
Accuracy±0.1% at 50% stroke, ±0.25% at 100% stroke
Thermal Conductivity Range0.1–50 W/(m·K) (extendable upon configuration)
Sample FormsSolid, powder, paste, liquid, adhesive, foil
Sample DimensionsCircular Ø20/25/40 mm
Thermal Resistance Range0.01–8 K/W
Temperature Range−30 °C to 300 °C (configurable)
Contact Pressure0–16 MPa (dependent on sample area)
Cooling SystemExternal water-cooling unit
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BrandLINSEIS
OriginGermany
ModelTF-LFA L54
Sample Size Range2 mm × 2 mm to 25 mm × 25 mm (arbitrary shape)
Thin-Film Thickness Range10 nm – 20 µm (sample-dependent)
Temperature RangeRT, RT–200 °C, or RT–500 °C
AtmosphereInert, oxidative, reductive, or vacuum down to 10⁻⁴ mbar
Thermal Diffusivity Range0.01 – 1200 mm²/s (sample-dependent)
Pump Laser405 nm, 300 mW, modulation frequency up to 200 MHz
Probe LaserCW 532 nm, 25 mW
DetectorSi-based photodetector, active diameter 0.2 mm, bandwidth DC–400 MHz
SoftwareIntegrated multilayer thermal modeling suite for extraction of κ, α, Cᵥ, η, and TBC
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BrandLINSEIS
OriginGermany
ModelLFA L51
Measurement PrincipleLaser Flash Method (LFA)
Temperature Range−100 °C to 1250 °C
Thermal Diffusivity Range0.01–2000 mm²/s
Thermal Conductivity Range0.1–4000 W/(m·K)
Accuracy±2.4% (typical for homogeneous solids)
Pulse SourceAdjustable Xenon Flash Lamp (up to 15 J/pulse)
Atmosphere ControlInert, Reducing, Vacuum
Sample CapacityUp to 18 samples (auto-sampler)
Sample GeometryCircular (Ø 3–25.4 mm), Square (10×10 mm or 20×20 mm)
Sample Thickness0.1–6 mm
Heating Rate0.01–100 °C/min
Detector TypesInSb (RT–1250 °C), CMCT (−100–500 °C)
Data Acquisition Rate2.5 MHz
Sample CompatibilitySolids, Powders, Pastes, Liquids
Furnace OptionsIR heating, Resistive heating (graphite, SiC, Al₂O₃, metal crucibles)
InterfaceUSB
Software ComplianceSupports ASTM E1461, ISO 22007-4, and GLP/GMP audit trails (21 CFR Part 11 optional)
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BrandLINSEIS
OriginGermany
ModelTHB L56
Thermal Conductivity Range0.005–1800 W/(m·K)
Sample TypesSolids, Powders, Gels, Liquids
Standards ComplianceASTM D5930-01, ISO 22007-2, ASTM D5334
Measurement PrincipleTransient Hot Bridge (THB)
Temperature Range (Sensor)−150 to 700 °C
Typical Measurement Time1–10 min (solids), 1–120 s (liquids)
Specific Heat Capacity Range0.1–5 J/(g·K)
Thermal Diffusivity Range0.05–1200 mm²/s
Minimum Sample Size1.5 × 1.5 × 2 mm
Sensor MaterialsPolyimide, Ceramic
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BrandLINSEIS
OriginGermany
ModelTFA L59
Thermal Conductivity Range0.05–200 W/(m·K) (3ω method, in-plane configuration)
Temperature Range–160 °C to 280 °C
Vacuum Level1×10⁻⁴ mbar
Sample Thickness Compatibility5 nm – 25 µm
Electrical Conductivity Range0.05–1×10⁶ S/cm (Van der Pauw four-point probe)
Seebeck Coefficient Range5–2500 µV/K
Optional Hall ModuleMagnetic Field up to 1 T (electromagnet) or 0.5 T (permanent magnet)
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BrandLINSEIS
OriginGermany
ModelHFM L57
Measurement PrincipleHeat Flow Method (Steady-State)
Thermal Conductivity Range0.001–0.5 W/(m·K), extendable to 2.5 W/(m·K)
Temperature Range−35 °C to 90 °C
Sample Dimensions (max)600 mm × 600 mm × 200 mm
Thickness Resolutionμm-level via integrated potentiometer
Temperature Resolution0.0001 °C
Contact Pressureup to 1.3 kPa (optional 25 kPa)
Thermal Resistance Range0.036–9.0 m²·K/W
ComplianceASTM C518, ISO 8301, JIS A1412, DIN EN 12664, DIN EN 12667
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BrandLINSEIS
OriginGermany
ModelLFA L52 Nuclear
Measurement PrincipleLaser Flash Analysis (LFA)
Thermal Conductivity Range0.1 – 4000 W/(m·K)
Thermal Diffusivity Range0.01 – 2000 mm²/s
Temperature Range−125 °C to 2800 °C (configurable furnace options)
Laser SourceNd:YAG, 25 J/pulse
Detector TypeNon-contact IR (InSb or MCT)
AtmosphereInert or reducing (recommended)
Sample GeometryCircular (Ø 6, 10, 12.7, 25.4 mm) or square (10 × 10 mm, 20 × 20 mm)
Sample Thickness0.1 – 6 mm
Auto-sampler Options3-, 6-, or 18-position
Furnace Liner MaterialsMetal / SiC / Graphite
Data Acquisition Rate2 MHz
InterfaceUSB
Heating Rate0.01 – 100 °C/min (furnace-dependent)
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