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Phenix 6CP120/60-10



This portable rugged line of AC high voltage test equipment is ideally suited for use in the field or in the laboratory. The 6CP line offers a complete test system in a mobile package. All units in the 6CP line use a combination control and regulator enclosure and a separate high voltage section. The system is equipped with advanced digital metering, and control and protection devices which are easy to use and provide the operator with all necessary information to safely operate the system. The Metering Guard Mode allows accurate measurements of the high voltage test specimen leakage current by bypassing stray capacitive currents. The high voltage section consists of a specially designed oil insulated high voltage transformer characterized by use of an isolating cylindrical housing mounted on a rugged steel base. The high voltage output is equipped with a corona free aluminum shielding electrode. The high quality design and construction is key to the superior partial discharge performance of the 6CP line. The system arrives ready to use with all power and interconnect cables included; the simple setup allows this 6CP to be ready for testing in minutes. The rugged construction and dependability, backed by long-term warranty makes the 6CP line an ideal choice for your high voltage testing requirements.

  • A premier line of AC Dielectric Test Sets with ratings from 15 to 200 kVAC
  • Lightweight and ruggedly constructed for years of field use
  • Units feature easy to read digital instrumentation and clean, efficient controls
  • Simple set-up and operation
  • Low partial discharge output


When we are ready to test in a High Voltage environment, general safety precautions should be taken into account as Hipot testers are capable of providing POTENTIALLY LETHAL VOLTAGES!

Improper operation or test practices may result in injury or death to the operator or surrounding personnel. The operation of High Voltage test equipment should only be performed by personnel familiar with HIGH VOLTAGE testing and safety procedures. The operator of this equipment must be aware of all hazards associated with High Voltage testing. The operator is responsible for himself and others in close proximity of the testing area.

Some General Safety Practices for working with High Voltage test equipment have been listed below for your reference.

  • Become familiar with your instrument before performing an actual test.
  • Know your work area, check that all circuits are de-energized and locked out.
  • Never work alone; always work with another qualified worker.
  • Mark off entire work area with barriers and warning tape.
  • Make all personnel aware of your testing activities.
  • Be aware of dangerous conditions that may arise from energizing a test specimen.
  • Never modify test equipment; modifications to equipment could introduce an unknown hazard or hinder a designed-in safety feature.
  • DO NOT operate damaged equipment. Remove power, and do not use the equipment until safe operation can be verified by service-trained personnel.


The following terms relate to testing applications in the Electrical Laboratory or temporary Laboratory Set-up and in Test Stations.

High Voltage (HV)

Voltages exceeding 1000 V rms AC or 1000 V DC with current exceeding 2 mA AC or 3 mA DC.


Safety circuit to prevent energizing HV generators until all access doors are closed, and immediately de-energizes HV if door is opened; this function does not necessarily ensure full discharge of stored energy.

Earthing System

HV test labs with earthing systems reduce potential increases and overvoltages to avoid danger to operators or control and measuring equipment.

Grounding/Discharge Stick

  • Before touching HV circuit components or leaving unattended and exposed, they must be de-energized and grounded with a grounding/discharge stick.
  • Grounding/discharge sticks must remain visible on HV terminal until circuit is re-energized; typically located near entrances to HV test station.
  • Automated grounding/discharge systems.

Safe Clearance

The minimum distance of HV component electrodes to safety fences.

Security Circuit

PHENIX builds in a Security Circuit or auxiliary safety control device on most test sets. This consists of a removable plug that has a shorting jumper installed to complete circuit. The jumper must be removed and cable connected to user supplied device if using this provision. This feature may prevent unauthorized use until the test process has been examined by safety personnel. Optional devices may be ordered including a Gate Switch, Foot Switch, or Deadman Switch to further ensure safety.

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