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METPOINT® OCV

BEKO Instrumentation

Advanced hydrocarbon monitoring system

METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

  Models

Sensor


Sensor for the METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

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Power Supply 115 Vac / 60 Hz
Measurable Medium Compressed air
Identifiable Substances Hydrocarbon / Oil Vapor
Min./Max. Operating Temperature 32°F / 131°F
Min./Max. Operating Pressure 32 / 44 psig
Optional High Pressure Rating On request
Measuring Gas Humidity ≤40% relative humidity
Measured Increments mg/m3 (per ISO 1217 standard)
Measuring Range ≤0.01 - 5.00 mg/m3 residual oil vapor content
Connection 3/8" internal thread
Installation Requirements Vertically in a rising pipe with an oil- and grease-free measuring section

Analysis Unit


Analysis unit for the METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

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Power Supply 110 Vac / 60 Hz
Min./Max. Operating Temperature 32°F / 121°F
Outputs Potential-free change-over contact
230 Vac / 5A or 30 Vac / 2A
Ethernet Interface
4 to 20 mA (optional)
Installed Memory 2 GB Internal Memory with Data Log

  Features

The METPOINT OCV Principle

  • World Exclusive: inline hydrocarbon measuring technology that exceeds CLASS 1 (<0.01 mg/m3) ISO 8573-1 standards
  • 24/7 Process Reliability: around the clock measuring technology with autmatic self-adjusting reference air sampling
  • On-Site Calibration: integrated probe port allows for easy, simplified calibrations without downtime or added costs
  • Network Compatible: includes data logger and full control whether on-site or from remote location
  • Touchscreen Display: complete diagnostic, mult-function display with all parameters including alarm function

Companies in all branches of industry continuously have to face major challenges: the more critical consumers become, the more important transparency is in production. Simultaneously, processes are becoming increasingly complex. This particularly applies to the field of compressed air processing.

Even low levels of contamination can impair process safety and compromise the quality of the final product. The METPOINT OCV detects minute oil vapor content in compressed air in the range of one thousandth of a mg/m³ and offers relaible quality monitoring.

At the same time you are usually obligated to provide evidence of compliance within the legally stipulated limits. This is where the METPOINT OCV from BEKO Technologies comes into its own: the TÜV-certified measurement instrument meets all of the requirements for the measurement of gaseous residual oil and hydrocarbons within ISO 8573-1 of classes 1, 2, 3, and 4. METPOINT OCV truly makes the quality of your compressed air visible.

How does it work?

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Image Key
M
Sample gas-molecule with neutral electric charge
M+
Ionized sample gas-molecule with positive electric charge
e-
Separated electron with negative electric charge
Graphical representation of an ultraviolet lamp
Ultraviolet lamp
Graphical representation of a hydrocarbon particle
Hydrocarbon particle
Graphical representation of a counter electrode
Counter electrode
Graphical representation of a potential electrode
Potential electrode
Graphical representation of an amplifier
Amplifier
Graphical representation of an analog-digital converter
Analog-digital converter
Graphical representation of the METPOINT OCV touch-screen display
Touch-screen display

Diagram showing the operating principle of a METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

Diagram showing the operating principle of a METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

METPOINT OCV detects and measures hydrocarbon vapor with a detection limit down to 0.0006 mg/m3. The evaluation unit consists of a sensor unit [1], a probe for the sampling [2], and a connection cable that runs between the evaluation unit with the touch screen display [3]. Correct sizing of the sampling and measuring sections corresponds to the stipulations of ISO 8573. With the sampling probe [2], a partial volume flow is taken from the compressed air system and supplied to the sensor unit during the measurement.

Here, a photoionisation detector (PID) [4] measures the hydrocarbon content by exposing the airflow to UV radiation. Wherever UV radiation comes into contact with hydrocarbon particles, it will ionise them, whereupon the particles become electrically conductive. This ionisation flow is then exactly measured where its strength proportionally corresponds to the hydrocarbon content.

  Dimensions

Sensor


Drawing showing the dimensions of the  for a METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

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A 19.2 in
B 6.7 in
C 4.7 in

Analysis Unit


Drawing showing the dimensions of the  for a METPOINT OCV advanced hydrocarbon monitoring system from BEKO Technologies

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A 9.1 in
B 7.9 in
C 4.7 in

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