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1600°C Heat Resistant Type S Thermocouple Probe 95% Alumina Ceramic Sheath
Product Details
| Thermocouple Type | Type S (PtRh10-Pt) | Sheath Material | 95% Alumina Ceramic (Al₂O₃ ≥95%) |
|---|---|---|---|
| Sheath Diameter | 8mm (customizable: 6–16mm) | Sheath Length | Customizable (e.g., 300mm, 500mm, 1000mm) |
| Connection Head | Die-cast Aluminum (IP65) | Thermocouple Wire Diameter | 0.35mm (customizable: 0.2–1.0mm) |
| Continuous Operating Temperature | 0 ~ 1600℃ | Accuracy Class | Class 1 (IEC 60584-2) |
| Highlight | 1600°C Type S thermocouple probe,heat resistant alumina ceramic sheath,high temperature thermocouple probe |
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Product Description
Type S Thermocouple Probe with 95% Alumina Ceramic Sheath
High-temperature precision temperature sensor featuring Type S (PtRh10-Pt) thermocouple junction, 95% alumina ceramic protective sheath, and die-cast aluminum connection head. Manufactured with precision welding and high-temperature insulation for stable thermoelectric performance from 0℃ to 1600℃ (continuous) / 1700℃ (short-term).
Standard Designations & Core Material Foundation
- Thermocouple Type: Type S (PtRh10-Pt; compliant with IEC 60584-2 Class 1)
- Sheath: 95% alumina ceramic; diameter: 8mm (customizable: 6-16mm)
- Connection Head: Die-cast aluminum (IP65 protection)
- Thermocouple Wire: PtRh10 (SP) / Pure Pt (SN), diameter: 0.35mm (customizable: 0.2-1.0mm)
- Chemical Composition: Positive (SP): Pt 90% / Rh 10%; Negative (SN): Pt ≥99.99%
- Compliant Standards: IEC 60584-2, ASTM E230, GB/T 4989, RoHS 2.0
- Manufacturer: Huona New Material, certified to ISO 9001 and IATF 16949
Key Core Advantages
Ultra-High Temperature Capability
Continuous operation up to 1600℃, short-term up to 1700℃. 95% alumina ceramic sheath withstands rapid temperature changes without cracking, ensuring stable performance in furnace cycling.
High Precision & Excellent Linearity
Class 1 accuracy with thermoelectric potential error ≤±1.0℃ (0-1100℃) / ±0.1% t (1100-1600℃). Consistent thermoelectric characteristics across the entire temperature range.
Superior Corrosion & Contamination Resistance
95% alumina ceramic is inert to most chemicals and prevents contamination of high-purity processes. Platinum-based thermocouple wire provides excellent oxidation resistance.
Rugged Connection Head & Easy Installation
Die-cast aluminum head with IP65 protection against dust and moisture. Standard threaded or flange mounting options for secure installation.
Stable Mechanical Properties
Uniform sheath dimensions with strict tolerance control and high surface quality for reliable thermal response.
Technical Specifications
| Attribute | Value (Typical) |
|---|---|
| Thermocouple Type | Type S (PtRh10-Pt) |
| Sheath Material | 95% Alumina Ceramic (Al₂O₃ ≥95%) |
| Sheath Diameter | 8mm (customizable: 6-16mm) |
| Sheath Length | Customizable (e.g., 300mm, 500mm, 1000mm) |
| Connection Head | Die-cast Aluminum (IP65) |
| Thermocouple Wire Diameter | 0.35mm (customizable: 0.2-1.0mm) |
| Continuous Operating Temperature | 0 ~ 1600℃ |
| Short-term Temperature | Up to 1700℃ |
| Accuracy Class | Class 1 (IEC 60584-2) |
| Thermoelectric Potential Error | ±1.0℃ (0-1100℃); ±0.1% t (1100-1600℃) |
| Thermal Response Time (τ₅₀) | ≤3s (in air at 1000℃) |
| Insulation Resistance (25℃) | ≥100 MΩ*km |
| Protection Class | IP65 (connection head) |
Product Specifications
| Item | Specification |
|---|---|
| Supply Form | Single probe (pre-assembled); bulk packaging (10/50/100 pcs/carton) |
| Junction Type | Ungrounded (for high-temperature stability) |
| Mounting | Threaded (e.g., M18×1.5) or flange mount (customizable) |
| Packaging | Anti-static bag + foam insert + carton |
| Customization | Sheath diameter (6-16mm); sheath length (100-2000mm); thermocouple wire diameter (0.2-1.0mm); grounded/ungrounded junction; mounting type |
| Processability | Supports standard connection to temperature controllers and data loggers |
Typical Application Scenarios
High-Temperature Industrial Furnaces: Temperature monitoring in ceramic kilns, sintering furnaces, and metal melting furnaces (1600℃ continuous operation).
Laboratory & Calibration: Precision temperature measurement and standard calibration in research institutes and metrology laboratories.
Metal Heat Treatment: Temperature control in forging, annealing, and quenching processes for high-alloy steels and special metals.
Aerospace & Defense: High-temperature sensor applications in rocket engines, hypersonic vehicles, and aerospace testing.
Semiconductor & Advanced Manufacturing: High-purity temperature monitoring in semiconductor wafer processing and advanced material synthesis.
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