Stationary Housing

Stationary Sensor Housings

Robust & Reliable Static Process Assemblies & Housings

A static housing provides a secure, durable and safe way for a sensor to be connected in-line to a vessel or pipe for continuous, analytical measurement. METTLER TOLEDO offers a variety of stationary housing models with different materials, process connections and certifications to meet a wide range of application needs. These static sensor holders are suited for pH, DO, conductivity and turbidity measurements across many process environments.

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InFit 761e no móvil, de acero

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Carcasa retráctil InTrac 797e

La carcasa retráctil de acero inoxidable InTrac 797e está diseñada para procesos que utilizan electrodos de 12 mm para medir la conductividad del pH, el OD y el CO2. Con una cámara de lavado doble, está diseñada para evitar la contaminación en la producción estéril.

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Carcasa retráctil InTrac 799e

La carcasa retráctil de acero inoxidable InTrac 799e está diseñada para procesos que utilizan sensores de turbidez de 12 mm. Con una cámara de lavado doble, está diseñada para evitar la contaminación en la producción estéril.

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Carcasa de paso de flujo InFlow 762e

La InFlow 762e es una robusta carcasa de PVDF de paso de flujo adecuada para los requisitos de las aplicaciones de procesamiento químico. Está diseñada para puntos de medición en una desviación (tubería). La InFlow 762e es adecuada para sensores analíticos de 12 mm.

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Carcasa de paso de flujo InFlow 761e

La InFlow 761e es una carcasa de paso de flujo de acero inoxidable adecuada para los requisitos de las aplicaciones de procesamiento químico. Está diseñada para puntos de medición en una desviación (tubería). La InFlow 761e es adecuada para sensores analíticos de 12 mm.

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InFlow 751 paso de flujo - carcasa de PVC

La carcasa de paso de flujo de PVC InFlow 751 está diseñada para la instalación directa de sensores analíticos de 120 mm de longitud directamente en aguas residuales industriales y otros procesos. La carcasa está diseñada para proteger el sensor frente a daños mecánicos.

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FAQs

What is a stationary housing or stationary process adaption?

A stationary housing is a piece of hardware that is installed on a vessel or pipe as an entry point for an analytical sensor. These static housings are used for continuous, inline measurement applications of pH, dissolved oxygen, conductivity and turbidity. Stationary process adaptions from METTLER TOLEDO are available in rugged plastic (PVDF, PP), stainless steel and Hastelloy to meet the needs of your process environment. METTLER TOLEDO stationary housings, the InFit range, can be configured to align with your sensor installation requirements.

What are the stationary housing models that METTLER TOLEDO has available?

METTLER TOLEDO offers the InFit range of stationary housings in a variety of models. The InFit 761e series housings are stationary housings for 12 mm sensors with a Pg 13.5 threaded collar. This is one of the most versatile housings due to the wide availability of materials, O-rings, process connections and insertion lengths. The InFit 764e static housings are specifically designed to maximize the performance and longevity of liquid-filled pH and redox sensors. Finally, the InFit 762e and InFit 763e stationary housings are designed for top mount applications in larger vessels and reactors.

Can you move a static housing during the process flow?

Stationary housings are widely used in all industries, providing a secure, durable, and safe way to position sensing devices in a process. Once connected, however, the stationary housing and sensor must be left in place until the process stops or flow is interrupted and the tank or pipe is drained.

What should you consider when selecting a stationary sensor housing?

The primary considerations when a static sensor housing is selected are:

  • Process connection compatibility
  • Insertion length
  • Wetted part materials
  • Process seal materials
  • International compliances e.g. ATEX/ FM approval to be installed in ex-classified area, USP Class VI compliant seals etc.