GEOPCP 150

The GEOPCP 150 has twelve points of measurement which are specifically intended for the optimization of progressive cavity pump systems. 

GEOPCP-Downhole-Gauge-(Web)-GEO-PSI

GEOPCP 150 – Progressive Cavity Pump Gauge

This specialty gauge provides a means of collecting high-quality real-time downhole pressure and temperature data which is intended for progressive cavity pump optimization.

  1. Pump Intake Pressure
  2. Pump Intake Temperature
  3. Pump Discharge Pressure
  4. Pump Discharge Temperature
  5. X Vibration
  6. Z Vibration
  7. Downhole Rotor Speed
  8. Surface Rotor Speed
  9. Downhole Rotor Slip/Stick
  10. Rotor Positioning
  11. Optional Surface Casing Pressure
  12. Accumulated Pump Rotation Count

Easy-ConnectTM Cablehead

Leak-Proof Design

ISO Certified

Technical Specifications

The Absolute Best Reliability for Pressure & Temperature

Our piezoresistive downhole gauges provide the absolute best reliability and longevity for measuring downhole pressure & temperature. At GEO PSI we design and manufacture every component of our gauges in order to ensure that they can withstand even the most hostile downhole conditions, while delivering exceptional value.

Compatible With

The GEOPCP 150 gauge is designed for versatility and universal compatibility. Below are a few of the common accessories that are used to complete the GEOPCP monitoring system.

Real-Time Data Applications

Measurement

Products-Downhole-Gauges-Bubble-Tube-System-Measurement-Pressure-Icon-Orange-GEO-PSI

Pressure
(10,000 psi)

The GEOPCP 150 is designed to accurately measure pressure within available ranges between 300 – 10,000 psi.

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Temperature
(150°C)

The GEOPCP 150 is designed to accurately measure temperature up to 150°C (302°F).

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Vibration
(± 36g)

The GEOPCP 150 is designed to accurately measure vibration on the X and Z axis up to ± 36g.

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Rotation

The GEOPCP 150 is designed to accurately measure downhole and surface speeds.

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Positioning

The GEOPCP 150 is designed to accurately measure the relative positioning of the stator.

Measurement

Dual Pressure, Dual Temperature, Positioning, & Vibration

Sensor Type

Piezoresistive

Input Voltage Range

9-24 VDC

Available Pressure Ranges

300  1,000  1,500  3,000  5,000  6,000  10,000 psiA

Pressure Accuracy

± 0.05% Full Scale

Pressure Resolution

0.01 psi

Temperature Rating

150°C

Temperature Accuracy

± 1°C

Vibration Sensor Range

± 36g

Magnometer Resolution

24-bit

Construction Material

Stainless Steel 316L or Inconel 718

Overall Length

22.00″ / 55.88cm

Outside Diameter

0.875” / 22.22mm

Maximum Width

2.875″ / 72.03mm

Sample Speed

Two samples per second for pressure and temperature
Up to 1,200 rpm for downhole and surface rod rotation speed

Process Connection

1/4″ Autoclave HF4

Patented Easy-Connect Cablehead

Yes

Leak Proof Design

Yes

Pressure Testable Design

Yes

Field Programmable

Yes

ISO Certified Manufacturing

Yes

Smart Technologies

Live transmitting of: Device Configuration, Device Health, Downhole Head Voltage, Current, Calibration Files, and Downhole Serial Number Identity

Looking for the necessary components to build a complete fit for purpose system for your well?

Fill out this short questionnaire and one of our experienced team members will show you a solution designed to match the specific requirements of your well.

Visit this page on desktop to complete a brief questionnaire, or visit our contact page to get in touch with one of our experienced team members.

Contact Information

Provide us with the necessary contact, and location information.


 

 

Downhole Conditions

Tell us about the downhole environment present in your well.


 

Please describe the type of environment the sensors will be in.

 

 

Packer/Obstruction #1

Packer/Obstruction #2

Packer/Obstruction #3

 

Completion Data

Please provide us with as much information on your specific completion as possible.


Surface Casing

 

Production Casing

2nd Production Casing

Tubing

2nd Tubing

Liner

 

 

Open Hole

 

 

What are the major application(s) for the downhole sensor(s)?

What are your preferred wellhead exit options?

What are the surface electronics required?

 

 

 

 

 

Want to know more?

One of our team members would be happy to help.