Emerson Automation Solutions – Rosemount Sanitary Flow-through Toroidal Conductivity Sensor Model 245

Description
FLOW THROUGH DESIGN is ideal for applications where protrusion of the sensor into the piping is undesirable. AVAILABLE IN FOUR LINE SIZES with Tri-Clamp® fittings. WETTED PLASTICS AND ELASTOMERS COMPLIANT WITH 21CFR177. The Model 245 is a flow-through toroidal (inductive) conductivity sensor intended for pharmaceutical and food and beverage application where a sanitary design is required. No part of the sensor protrudes into the piping, so the sensor does not interfere with process flow. The Model 245 is not an immersion sensor. The sample flows only through the toroid opening; it does not surround the toroids. Therefore, the circuit around the toroids is not complete. To complete the circuit, a stainless steel contact ring on either side of the toroids couples the ionic current in the sample to an electronic current that travels through the sensor housing surrounding the toroids. The sensor is available in four line sizes between ½ inch and 2 inches with corresponding Tri-Clamp® fittings. Flanges and contact rings are 316 stainless steel, the liner is unfilled PEEK, and O-rings are EP. Plastics and elastomers meet the requirements of 21CFR177. The maximum temperature is 121°C (250°F), and the maximum pressure is 100 psig (791 kPa abs).
Datasheet
Description
FLOW THROUGH DESIGN is ideal for applications where protrusion of the sensor into the piping is undesirable. AVAILABLE IN FOUR LINE SIZES with Tri-Clamp® fittings. WETTED PLASTICS AND ELASTOMERS COMPLIANT WITH 21CFR177. The Model 245 is a flow-through toroidal (inductive) conductivity sensor intended for pharmaceutical and food and beverage application where a sanitary design is required. No part of the sensor protrudes into the piping, so the sensor does not interfere with process flow. The Model 245 is not an immersion sensor. The sample flows only through the toroid opening; it does not surround the toroids. Therefore, the circuit around the toroids is not complete. To complete the circuit, a stainless steel contact ring on either side of the toroids couples the ionic current in the sample to an electronic current that travels through the sensor housing surrounding the toroids. The sensor is available in four line sizes between ½ inch and 2 inches with corresponding Tri-Clamp® fittings. Flanges and contact rings are 316 stainless steel, the liner is unfilled PEEK, and O-rings are EP. Plastics and elastomers meet the requirements of 21CFR177. The maximum temperature is 121°C (250°F), and the maximum pressure is 100 psig (791 kPa abs).
Datasheet

Suppliers

Company
Product
Description
Supplier Links
Sanitary Flow-through Toroidal Conductivity Sensor - Model 245 - Emerson Automation Solutions – Rosemount
Irvine, CA, USA
Sanitary Flow-through Toroidal Conductivity Sensor
Model 245
Sanitary Flow-through Toroidal Conductivity Sensor Model 245
FLOW THROUGH DESIGN is ideal for applications where protrusion of the sensor into the piping is undesirable. AVAILABLE IN FOUR LINE SIZES with Tri-Clamp® fittings. WETTED PLASTICS AND ELASTOMERS COMPLIANT WITH 21CFR177. The Model 245 is a flow-through toroidal (inductive) conductivity sensor intended for pharmaceutical and food and beverage application where a sanitary design is required. No part of the sensor protrudes into the piping, so the sensor does not interfere with process flow. The Model 245 is not an immersion sensor. The sample flows only through the toroid opening; it does not surround the toroids. Therefore, the circuit around the toroids is not complete. To complete the circuit, a stainless steel contact ring on either side of the toroids couples the ionic current in the sample to an electronic current that travels through the sensor housing surrounding the toroids. The sensor is available in four line sizes between ½ inch and 2 inches with corresponding Tri-Clamp® fittings. Flanges and contact rings are 316 stainless steel, the liner is unfilled PEEK, and O-rings are EP. Plastics and elastomers meet the requirements of 21CFR177. The maximum temperature is 121°C (250°F), and the maximum pressure is 100 psig (791 kPa abs).
  • FLOW THROUGH DESIGN is ideal for applications where protrusion of the sensor into the piping is undesirable.
  • AVAILABLE IN FOUR LINE SIZES with Tri-Clamp® fittings.
  • WETTED PLASTICS AND ELASTOMERS COMPLIANT WITH 21CFR177.

The Model 245 is a flow-through toroidal (inductive) conductivity sensor intended for pharmaceutical and food and beverage application where a sanitary design is required. No part of the sensor protrudes into the piping, so the sensor does not interfere with process flow.

The Model 245 is not an immersion sensor. The sample flows only through the toroid opening; it does not surround the toroids. Therefore, the circuit around the toroids is not complete. To complete the circuit, a stainless steel contact ring on either side of the toroids couples the ionic current in the sample to an electronic current that travels through the sensor housing surrounding the toroids.

The sensor is available in four line sizes between ½ inch and 2 inches with corresponding Tri-Clamp® fittings. Flanges and contact rings are 316 stainless steel, the liner is unfilled PEEK, and O-rings are EP. Plastics and elastomers meet the requirements of 21CFR177.

The maximum temperature is 121°C (250°F), and the maximum pressure is 100 psig (791 kPa abs).

Supplier's Site Datasheet

Technical Specifications

  Emerson Automation Solutions – Rosemount
Product Category Conductivity Electrodes
Product Number Model 245
Product Name Sanitary Flow-through Toroidal Conductivity Sensor
Conductivity Range 100 to 2.00E6 MicroSiemens/cm
Mounting Options Flow Thru (Pipeline)
Maximum Diameter / Width 3.5 inch (88.9 mm)
Maximum Length 7.5 inch (190 mm)
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