Product Name | Code | Type | Shaeth Material | Outside Dia. | Temperature |
NiCr-NiSi /NiCr-NiAl | KK | K | SS304 SS316 | 0.5-1.0 | 400 |
1.5-3.2 | 600 | ||||
4.0-8.0 | 800 | ||||
SS310 Inconel600 | 0.5-1.0 | 500 | |||
1.5-3.2 | 800 | ||||
4.0-6.4 | 900 | ||||
8.0-12.7 | 1000 | ||||
NiCrSi-NiSi | NK | N | SS304 SS316 | 0.5-1.0 | 400 |
1.5-3.2 | 600 | ||||
4.0-8.0 | 800 | ||||
SS310 Inconel600 | 0.5-1.0 | 500 | |||
1.5-3.2 | 800 | ||||
4.0-6.4 | 900 | ||||
8.0-12.7 | 1000 | ||||
NiCr-Konstantan | EK | E | SS304 SS316 | 0.5-1.0 | 400 |
1.5-3.2 | 600 | ||||
4.0-8.0 | 800 | ||||
Fe-Konstantan | JK | J | SS304 SS316 | 0.5-1.0 | 400 |
1.5-3.2 | 600 | ||||
4.0-8.0 | 800 | ||||
Cu-Konstantan | TK | T | SS304 SS316 | 0.5-1.0 | 400 |
1.5-3.2 | 600 | ||||
4.0-8.0 | 800 | ||||
RhPt10-Ph | SK | S | Inconel600 | 6.0-12.7 | 1100 |
Different temperature measuring media and service conditions have an impact on the service life and temperature range of armored thermocouples, the data in the table is only recommended data.
Type | Class I | Class II | ||
Accuracy | Temp.Range | Accuracy | Temp.Range | |
K | ±1.5℃ | -40~375℃ | ±2.5℃ | -40~375℃ |
±0.4% | 375℃-1000℃ | ±0.75% | 375℃-1000℃ | |
N | ±1.5℃ | -40~375℃ | ±2.5℃ | -40~375℃ |
±0.4% | 375℃-1000℃ | ±0.75% | 375℃-1000℃ | |
E | ±1.5℃ | -40~375℃ | ±2.5℃ | -40~375℃ |
±0.4% | 375℃-800℃ | ±0.75% | 375℃-800℃ | |
J | ±1.5℃ | -40~375℃ | ±2.5℃ | -40~375℃ |
±0.4% | 375℃-800℃ | ±0.75% | 375℃-800℃ | |
T | ±0.5℃ | -40~125℃ | ±1.0℃ | -40~125℃ |
±0.4% | 125℃-350℃ | ±0.75% | 125℃-350℃ | |
S | 0-1100℃ | ±1.0℃ | 0-1100℃ | ±1.5℃ |
Characteristics:
Temperature Range: MI cables can operate in extreme temperature environments, often up to 1200°C.
Durability: The metal sheath provides durability and resistance to harsh environmental conditions.
Flexibility: Despite their rugged construction, MI cables can be made flexible for installation in various applications.
Applications:
Used with thermocouples in high-temperature and hazardous environments (e.g., power plants, petrochemical industries).
Suitable for temperature measurement in nuclear applications, furnace monitoring, and cryogenic environments.
Commonly found in applications where electrical and thermal insulation is critical.
Advantages:
High thermal conductivity and rapid response times.
Excellent protection against mechanical damage and chemical exposure.
Long lifespan, even under extreme conditions.
Disadvantages:
Typically more expensive than standard thermocouple leads.
Installation can be more complicated due to stiffness and weight.
Conclusion:
Both thermocouples and mineral insulated cables play critical roles in temperature measurement and control in various industries. Understanding their characteristics, advantages, and limitations helps in selecting the right components for specific applications. Whether you need reliable temperature readings in a furnace or require durable cables for harsh environments, these technologies are essential in modern industrial processes.
We add heat shrink tubing and plastic film to make sure high insulated resistance.
Except marking notes, we also have pass card and test report for every coil cable.
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