• Yokogawa EJX-A Pressure Transmitter
  • Yokogawa EJX-A Pressure Transmitter
  • Yokogawa EJX-A Pressure Transmitter
  • Yokogawa EJX-A Pressure Transmitter
Yokogawa EJX-A Pressure TransmitterYokogawa EJX-A Pressure TransmitterYokogawa EJX-A Pressure TransmitterYokogawa EJX-A Pressure Transmitter

Yokogawa EJX-A Pressure Transmitter

Yokogawa EJX-A differential pressure transmitters use single-crystal silicon resonant sensor technology.Under pressure transmitters are subdivided into differential pressure, absolute pressure and static or basic pressure. And among these pressure measurement devices, Yokogawa has introduced targeted models for different pressure measurements, such as EJA110A for differential pressure, EJA120A for
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EJX110Aundefined

Accuracy ±0.04% (optional accuracy 0.025%)

Stability ±0.1%/15 years

Response time 90 milliseconds

Maximum working pressure 3,600 psi

TUV and Exida SIL 2 / SIL3 certification

Local Parameter Setting (LPS)


EJX110A high performance differential pressure transmitter with single crystal silicon resonant sensor technology for measuring flow, level, density and pressure of liquids, gases or steam.
EJX115Aundefined

Square root output accuracy ±0.04%

Stability ±0.1% URL/15 years

Response time 90 ms~150 ms

TUV and Exida SIL 2/3 certification

10-segment signal curve characterization

Local parameter setting (LPS)


EJX115A differential pressure transmitter with built-in orifice plate for micro flow measurement.
EJX118Aundefined

Accuracy ±0.15 %

Response time 200 ms

Exida and TUV SIL2 / SIL3 certification

Local parameter setting (LPS)

10-segment signal curve characterization

Active density compensation for capillary filling fluid


The EJX118A diaphragm sealed differential pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring flow, level, density and pressure in high and low temperature, high vacuum, high viscosity and easily crystallized media.
EJX120Aundefined

Accuracy ±0.09%

Stability ±0.15% URL / 1 year

Response time 150 ms

TUV and Exida SIL 2/3 certification

Local Parameter Setting (LPS)

True Draft Range design


EJX120A high performance micro differential pressure transmitter with single crystal silicon resonant sensor technology for measuring flow, level, density and pressure of liquids, gases or steam.
EJX130Aundefined

Accuracy ±0.04%

Stability ±0.1% URL/15 years

Response time 150 milliseconds

Maximum working pressure 4,500 psi

TUV and Exida SIL 2/3 certified

Local Parameter Setting (LPS)


The EJX130A high static differential pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the flow, level, density and pressure of liquids, gases or steam.
EJX210Aundefined

Accuracy ±0.075%

Stability ±0.1% URL / 1 year

Response time 120 ms

TUV and Exida SIL2 / SIL3 certification

10-segment signal curve characterization

Local Parameter Setting (LPS)


The EJX210A flange-mounted differential pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the level and density of liquids that are prone to crystallization or sedimentation.
EJX310Aundefined

Accuracy ±0.075%

Stability ±0.2% URL/15 years

Response time 90 ms

TUV and Exida SIL2 / SIL3 certification

Local Parameter Setting (LPS)


The EJX310A high performance absolute pressure transmitter uses single crystal silicon resonant sensing technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX430Aundefined

Accuracy ±0.04% (optional accuracy ±0.025%)

Stability ±0.1% URL / 15 years

Response time 90 ms

TUV and Exida SIL2 / SIL3 certification

Local parameter setting (LPS)


The EJX430A high performance pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX438Aundefined

Accuracy ±0.15 %

Response time 200 ms

TUV and Exida SIL2 / SIL3 certification

Active density compensation for capillary filling solution

Local parameter setting (LPS)


The EJX438A diaphragm sealed pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring pressure and liquid level in high and low temperature, high vacuum, high viscosity and easily crystallized media.

EJX440Aundefined

Accuracy ±0.04%

Stability ±0.1% URL/15 years

Response time 90 ms

TUV and Exida SIL2 / SIL3 certification

Local parameter setting (LPS)


The EJX440A high performance pressure transmitter uses single crystal silicon resonant sensing technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX510Aundefined

Accuracy ±0.04%

Stability ±0.2% URL/15 years

Response time 90 milliseconds

Maximum working pressure 10,800 psi

TUV and Exida SIL 2/3 certification

Local Parameter Setting (LPS)


The EJX510A high performance absolute pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX530Aundefined

Accuracy ±0.04%

Stability ±0.1% URL

Response time 90 milliseconds

The EJX530A high performance pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX610Aundefined

Accuracy ±0.04%

Stability ±0.2% URL

Response time 90 milliseconds

Maximum working pressure 15,200 psi

TUV and Exida SIL 2/3 certified

Local Parameter Setting (LPS)


The EJX610A high performance absolute pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX630Aundefined

Accuracy ±0.04% (optional accuracy ±0.025%)

Stability ±0.1% URL / 15 years

Response time 90 milliseconds

Maximum working pressure 15,200 psi

TUV and Exida SIL 2/3 certification

Local Parameter Setting (LPS)


The EJX630A high performance pressure transmitter uses single crystal silicon resonant sensor technology and is suitable for measuring the pressure of liquids, gases or steam.
EJX910Aundefined

Support orifice, nozzle and venturi

The HART7 protocol also supports uniform velocity tube and cone flowmeter

Mass flow accuracy ±1.0 %

Fully compensated mass flow rate

Mass flow accumulator with ±1.0% accuracy

Pulse/contact output

TUV SIL 2/3 certification

The EJX910A high performance multivariable transmitter uses a single crystal silicon resonant sensor to output measurements of differential pressure, static pressure and process temperature as well as to measure mass flow.
EJX930Aundefined

Support orifice, nozzle and venturi

The HART7 protocol also supports uniform velocity tube and cone flowmeter

Mass flow accuracy ±1.0 %

Fully compensated mass flow rate

Mass flow accumulator with ±1.0% accuracy

Pulse/contact output

Maximum operating pressure of 4,500 psi

TUV SIL 2/3 certified

The EJX930A high performance multivariable transmitter uses a single crystal silicon resonant sensor to output measurements of differential pressure, static pressure and process temperature and to measure mass flow for high static pressure applications.


Why Choose Us:

1. You can get the perfect material according to your requirement at the least possible price.

2. We also offer Reworks, FOB, CFR, CIF, and door to door delivery prices. We suggest you to do deal for shipping which will be quite economical.

3. The materials we provide are completely verifiable, right from raw material test certificate to the final dimensional statement.(Reports will show on requirement)

4. e guarantee to give a response within 24hours(usually in the same hour)

5. You can get stock alternatives, mill deliveries with minimizing manufacturing time.

6. We are fully dedicated to our customers. If it will not possible to meet your requirements after examining all options, we will not mislead you by making false promises which will create good customer relations.


Quality Assurance(including both Destructive and Non-Destructive)

1. Visual Dimension Test

2. Mechanical examining like tensile, Elongation and reduction of area.

3. Impact analysis

4. Chemical examination analysis

5. Hardness test

6. Pitting protection test

7. Penetrant Test

8. Intergranular Corrosion Testing

9. Roughness Testing

10. Metallography Experimental Test


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