The CY7 series has been upgraded. Models will only be available until stock is depleted. Please see the CY670 as the alternative or contact our Temperature Engineering department.
The CY7 Series Sensors from Omega represent the first truly new cryogenic sensor technology introduced in the last decade. The sensors incorporate uniform sensing elements that exhibit precise, repeatable, monotonic temperature response over a wide range. The elements are mounted into rugged, hermetically sealed packages that have been specifically designed for proper behavior in a cryogenic environment.The result is a family of sensors with temperature responses so predictable, tightly grouped, and stable that the sensors can be routinely interchanged with one another.
A New Proprietary Silicon Diode Chip The key to the sensor’s temperature response lies with the basic sensing element itself. The small silicon chip in each sensor has a temperature characteristic that is so stable, so predictable, and conforms so well from chip to chip, that the CY7’s sensors are the first mass produced, interchangeable cryogenic sensors. A Sensor Package Designed for Cryogenics Sensors for higher temperatures fall far short for cryogenic use. The complex thermal link between the sensing element and its entire environment must be taken into account, as does the effect of any measurement induced self-heating of the sensor itself, to achieve accurate results. In addition, the package must also withstand repeated cycling to low temperatures without mechanical failure. Clean room assembly keeps out contaminants. All CY7 sensors are meticulously assembled in semiconductor grade clean rooms on state-of-the-art bonding equipment. Special effort is made to keep them free of epoxies, polyimides, fluxes, chlorine, and other contaminants which have a detrimental effect on sensor performance.
Choose the sensor style that best fits your application and level of interchangeability you want.
It’s easy to pick the CY7 sensor you should use. Omega starts with the same basic sensor style and offers it unmounted or in a variety of mounting adapters that will simplify installation in your system. Choose from a simple cylinder that slides into a mounting hole, metric or SAE threaded stud mounts, or bolt-on flat mounts. Probes, thermowells and other mounts can be special ordered.
All CY7 sensors follow the temperature response curve shown in standard curve #10. Five bands of tracking accuracy (#1, 2, 3, 4, & 7) are offered to allow sensor selection to be suited to both the technical and economical considerations of any application. Low temperature accuracy ranges from 0.25K for the tightest band (#1) to 1.5K for the loosest (#7).
Model CY7-SD7 Economical Sensor For applications where temperature measurements below 10K are not required, the CY7-SD7 series offers an inexpensive alternative to the other CY7-SD series temperature sensor. The upper operating temperature is limited to 475K for the CY7-SD7. Since the package configuration of the CY7-SD7 is identical to the CY7-SD, the installation and operation of the device follow the same procedures as the CY7-SD.
The CY7-SD7 follows Standard Curve #10 (on previous page) to a tolerance of ±1.5K or 1.5% of temperature, whichever is greater. Due to possible irregularities and non-monotonic behavior below 10K, extrapolations or interpolations outside of the operating temperature range should not be attempted.
Examples of pricing for popular models is referenced in the "To Order" box. Use the "Part Number Builder" below to get pricing for all available models. For complete product specifications see the Related Links section at the bottom of this page.
† All amounts shown in USD
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Probe Configuration Type select from: SD for 1.4 to 475 K temperature range ET for 1.4 to 325 K temperature range BO for 1.4 to 325 K temperature range CU for 1.4 to 325 K temperature range LR for 1.4 to 325 K temperature range MT for 1.4 to 325 K temperature range CO for 1.4 to 475 K temperature range CY for 1.4 to 325 K temperature range
Accuracy Range select from: 1 for 1 2 for 2 3 for 3 4 for 4 7 for 7
Note: All combinations may not be valid, check spec sheet for valid part numbers.