
( Brand: Mdc/isi ), ( Manufacturer Part Number: 9312009 ), ( Type: Vacuum )
The MDC/ISI 9312009 Conflat Ultra High Vacuum K-Type Thermocouple Feedthrough represents a remarkable fusion of precision engineering and vacuum technology. This exceptional product, with its item number 9312009, is designed to facilitate precise temperature measurement in high vacuum environments.
Crafted with meticulous attention to detail, this thermocouple feedthrough boasts a K-type thermocouple element, renowned for its exceptional accuracy and stability across a wide temperature range (-200 C to 1250 C). The K-type element is encapsulated within a durable ceramic sheath, ensuring insulation and protection from the harsh vacuum conditions.
The feedthrough itself is constructed using Conflat (CF) flanges, an international standard for high-vacuum applications. These flanges provide a leak-free and reliable seal, ensuring the integrity of the vacuum system. The feedthrough has a connection size of 1.33 CF, making it compatible with a broad range of vacuum systems.
The MDC/ISI 9312009 Conflat Ultra High Vacuum K-Type Thermocouple Feedthrough is designed to operate in extreme vacuum conditions, with a pressure rating of up to 10 -7 Torr at 25 C. This makes it ideal for use in various scientific, industrial, and research applications where precise temperature measurement in a high-vacuum environment is essential.
In summary, the MDC/ISI 9312009 Conflat Ultra High Vacuum K-Type Thermocouple Feedthrough is a high-quality, reliable, and versatile product that combines the precision of a K-type thermocouple with the durability of Conflat flanges, making it an indispensable tool for those working in high-vacuum environments.
Product: MDC/ISI 9312009 Conflat Ultra High Vacuum (UHV) K-type Thermocouple Feedthrough
Pros:1. High-quality construction: This product is manufactured by MDC (Midwest Directional Drilling) and ISI (International Sensor Inc.), both reputable companies in their respective fields.
2. UHV compatibility: It is designed for use in ultra-high vacuum environments, making it suitable for applications requiring a high degree of vacuum integrity.
3. K-type thermocouple: This type of thermocouple offers good precision and stability, making it ideal for temperature measurement in a wide range of applications.
4. Conflat design: The conflat design provides a leak-tight connection, ensuring a high degree of vacuum compatibility.
5. 1.33 CF rating: The feedthrough's 1.33 CF (centifilament) rating indicates a relatively small size, making it easier to integrate into various systems.
Cons:1. Price: Given its high-quality construction and specialized design, this product is relatively expensive compared to more standard thermocouple feedthroughs.
2. Limited temperature range: While the K-type thermocouple offers a wide usable temperature range, it may not be suitable for extremely high or low temperature applications.
3. Potential compatibility issues: It is essential to ensure that this feedthrough is compatible with the specific vacuum system and application in question.
Conclusion:The MDC/ISI 9312009 Conflat UHV K-type Thermocouple Feedthrough is a high-quality, specialized product suitable for applications requiring a leak-tight connection in ultra-high vacuum environments. Its small size, precision, and stability make it an excellent choice for many applications. However, its high cost and potential compatibility issues should be carefully considered before making a purchase.
Recommendation:If you are working in an ultra-high vacuum environment and require a leak-tight connection for temperature measurements, the MDC/ISI 9312009 Conflat UHV K-type Thermocouple Feedthrough could be an excellent choice. It is essential to verify compatibility with your specific application and budget before making a purchase. If cost is a significant concern, you may want to consider alternative, less expensive feedthrough options.
MDC CONFLAT ULTRA HIGH VACUUM THERMOCOUPLE FEEDTHROUGH K-TYPE 1.33 CF 9312009 Shipped with USPS Ground Advantage. Condition is Used.