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COOLING ELEMENT

$136.89

Item# PG-CTN2-G03

Volume discounts available
Volume Discount Schedule
Quantity Price each
1-4 $136.89
5-9 $130.05
10-24 $127.31
25-49 $121.83
50-99 $119.09
100+ $116.36

In stock

Lead Time ( If not in Stock): 4 weeks

COOLING ELEMENT PG-CTN2-G03 PG-CTN2-G03
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  • Made from 316L SS to Withstand Most Process Media
  • 300°C (570°F) Maximum Temperature at 14,500 psi (1,000 bar)
  • 5000 psi Maximum Pressure at 38°C (100°F)
  • 0.4 kg (15 oz) Weight

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Product Specs

Description

Extreme process temperatures reduce the accuracy, life and can possible damage pressure transmitters or gauges. The Omega cooling element is made from cast 316L stainless for maximum corrosion resistance and compatibility with process media. When used, in still air, cooling element can reduce a 300°C (570°F) liquid process temperature down to 25°C (77°F) at the active portion of the sensing element. This rugged machined bar stock construction allows the unit to operate to pressures of 100MPa (14,500 psi) at full temperature.

SPECIFICATIONS
Connection: NPT male x NPT female
Body Material: 316L stainless steel
Weight: 15 oz (0.4 kg)
Operating Parameters: 200°C (570°F) maximum at 100MPa (14,500 psi)
Length: 135 mm (5.32") for -G03 or 105 mm (4.06") for -G02, maximum dia 32 mm (1.25")

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Does it affect the pressure reading?

Asked by: Actress
Thank you for your question? The cooling element is a pass through will not effect reading? Hope this was helpful?
Answered by: application engineer je
Date published: 2020-03-09

Can this be used to cool a gas temperature or is it only for cooling liquids?

Asked by: AndyPIC
Thanks for connecting with Omega. The PG-CTN2-G02 is 316l Stainless Steel. You can use it with any media that is compatible with stainless steel, but please note that we do not have the heat dissipation curves for all media. The specification sheet simply states that cooling element can reduce a 300°C (570°F) liquid process temperature down to 25°C (77°F) at the active portion of the sensing element. If you are using it with gases you will have to calculate delta T for the gas you are using. Manual: https://assets.omega.com/manuals/M5166.pdf
Answered by: Jane
Date published: 2019-06-17
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