Industrial-Grade Mineral Insulated Metal Sheathed Cable with Customizable Length and Multiple Thermocouple Types ISO9001 Certified
Basic Properties
Place of Origin:
Ningbo China
Brand Name:
LEADKIN
Certification:
ISO9001, IATF16949, CE
Model Number:
LK-Κ
Trading Properties
Minimum Order Quantity:
50μ.
Price:
Διαπραγματεύσιμα
Payment Terms:
L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability:
1,000,000M/έτος
Specifications
| Core: | 2,3,4,6 | Insulation: | Mgo |
| Warranty: | 1 έτος | Temperature Range: | 200 ℃ -1000 ℃ |
| Accuracy: | Τάξη I 、 ii 、 iii | Outside Dia: | 0,5-12,7 χιλιοστά |
| Package: | Χαρτοκιβώτιο. Αχυρόστρωμα | Function: | δοκιμή θερμοκρασίας |
| Cable Length: | 1-5m ή προσαρμοσμένο | Thermocouple Type: | K/n/e/j/t/s/r/b |
| High Light: | Customizable Length Mineral Insulated Metal Sheathed Cable,Multiple Thermocouple Types MIMS Cable,ISO9001 Certified Thermocouple Mineral Insulated Cable |
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Product Description
Industrial-Grade 2-6 Core Mineral Insulated Metal Sheathed Cable
High-performance cable designed for heavy-duty applications with thermocouple and instrument machine connections, featuring a temperature range of 200℃-1000℃ and Class I/II/III accuracy.
Quick Specifications
| Type | K/N/E/J/T/S/R/B |
|---|---|
| Place of Origin | Zhejiang, China (Mainland) |
| Accuracy | I-0.4%t, II-0.75%t, III-1.5%t |
| Core number | 2,3,4,6 |
| Insulator | 99.6% high purity MgO |
| Certificate | ISO9001, IATF16949, CE |
| Sheath material | 0Cr18Ni10Ti, SS304S, SS316L, SS316, Cu |
| Sheath Dia(mm) | φ3.0, φ4.0, φ6.0, φ8.0 |
Type K Sheath Wire Specifications
| Product Name | Code | Type | Sheath 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 |
Note: Different temperature measuring media and service conditions may affect service life and temperature range. Table data is for reference only.
Accuracy Specifications
| Type | Class I | Class II |
|---|---|---|
| K | ±1.5℃ (-40~375℃) ±0.4% (375℃-1000℃) |
±2.5℃ (-40~375℃) ±0.75% (375℃-1000℃) |
| N | ±1.5℃ (-40~375℃) ±0.4% (375℃-1000℃) |
±2.5℃ (-40~375℃) ±0.75% (375℃-1000℃) |
| E | ±1.5℃ (-40~375℃) ±0.4% (375℃-800℃) |
±2.5℃ (-40~375℃) ±0.75% (375℃-800℃) |
| J | ±1.5℃ (-40~375℃) ±0.4% (375℃-800℃) |
±2.5℃ (-40~375℃) ±0.75% (375℃-800℃) |
| T | ±0.5℃ (-40~125℃) ±0.4% (125℃-350℃) |
±1.0℃ (-40~125℃) ±0.75% (125℃-350℃) |
| S | ±1.0℃ (0-1100℃) | ±1.5℃ (0-1100℃) |
Product Overview
A thermocouple temperature probe uses the thermoelectric effect to measure temperature through two different metal wires joined at one end, generating a voltage corresponding to temperature differences.
Construction
- Wires: Made of two different conductive metals (copper, nickel, chromel, alumel)
- Junction: Measuring (hot) junction where wires join, connected to measuring device (cold junction)
- Insulation: High-temperature resistant materials (ceramic, fiberglass)
- Sheath: Protective metal or ceramic casing for environmental protection
Working Principle
Based on the Seebeck Effect: when two different metals are joined and exposed to temperature gradient, a thermoelectric voltage is produced at the junction. This voltage relates to the temperature difference and is converted into temperature readings using calibration data.
Applications
- Solid waste incinerators
- Sintering powdered metals
- Firing ceramic materials
- Gas or oil fired furnaces
- Fuel fired heat exchangers
- Box furnaces
- Nuclear or hydrocarbon based energy plants
Product Images
Package
We add heat shrink tubing and plastic film to ensure high insulated resistance. Each coil cable includes marking notes, pass card and test report.
Order Process
- Request accurate quotation
- Confirm price, trade terms, lead time, and payment terms
- Receive Proforma Invoice with official seal
- Arrange deposit payment
- Receive production line photos showing your products
- Confirm estimated delivery time
- Receive mass production photos
- Make balance payment and receive shipping details
- Provide feedback on quality and service
Frequently Asked Questions
What are the advantages of using thermocouples?
Wide temperature range, fast response time, simple and rugged design, relatively inexpensive, suitable for various environments including extreme conditions.
What are the disadvantages of thermocouples?
Non-linear output requiring calibration, potentially lower accuracy than other sensors, requires reference junction compensation, susceptible to electromagnetic interference.