HIGH VOLTAGE ELECTRICAL INSPECTOR
EXAMINATION WITH ACTUAL QUESTIONS
AND VERIFIED ANSWERS, PLUS
EXPLAINED RATIONALES/EXPERT
VERIFIED FOR GUARANTEED 100% PASS
2026/LATEST UPDATE/INSTANT
DOWNLOAD PDF
1.
During an inspection of a medium-voltage switchgear lineup, an
inspector observes that the equipment nameplate identifies a maximum
voltage rating of 15 kV, while the system is nominally 13.8 kV. Which
statement best describes the significance of the equipment voltage
rating?
A. The equipment must always operate at exactly 15 kV.
B. The equipment's maximum voltage rating indicates the highest
system voltage for which the equipment is designed and suitable, subject
to applicable standards and system conditions.
C. The equipment is automatically rated for any voltage below 600 V
only.
D. The equipment voltage rating determines only the conductor
ampacity.
Answer: B. The equipment's maximum voltage rating indicates the
highest system voltage for which the equipment is designed and
suitable, subject to applicable standards and system conditions.
Rationale: The voltage rating of medium- and high-voltage equipment
is a fundamental design and inspection parameter. An inspector
should verify that the equipment rating is appropriate for the system's
1
,nominal and maximum operating voltage, insulation requirements,
transient conditions, and applicable equipment standards.
2.
A high-voltage inspector is evaluating a substation grounding system.
Which is the primary purpose of a properly designed grounding grid?
A. To eliminate all electrical faults
B. To provide a controlled path for fault current and limit dangerous
touch and step potentials
C. To increase the normal operating voltage
D. To prevent transformers from producing magnetic fields
Answer: B. To provide a controlled path for fault current and limit
dangerous touch and step potentials
Rationale: A substation grounding grid provides low-impedance paths
for fault current and helps establish an equipotential surface.
Inspection must consider ground-grid conductors, connections,
ground rods where applicable, equipment bonding, surface material,
and the resulting step and touch voltages.
3.
A transformer has a primary voltage of 13.8 kV and a secondary voltage
of 480 V. Which transformer function is primarily being demonstrated?
A. Frequency conversion
B. Voltage transformation
C. Power-factor correction
D. Harmonic elimination
Answer: B. Voltage transformation
2
,Rationale: A transformer transfers electrical energy between circuits
through electromagnetic induction and changes voltage and current
levels while maintaining the system frequency under normal
operation.
4.
During a high-voltage inspection, an inspector finds that a transformer
tank is not bonded to the station grounding system. What is the principal
concern?
A. Reduced transformer efficiency
B. Increased transformer frequency
C. Potentially dangerous voltage on the transformer enclosure during a
fault
D. Excessive secondary conductor ampacity
Answer: C. Potentially dangerous voltage on the transformer
enclosure during a fault
Rationale: Exposed conductive equipment enclosures must be
effectively bonded to the grounding system. During a fault, inadequate
bonding can allow the enclosure to rise to a dangerous potential,
increasing shock and touch-voltage hazards.
5.
Which instrument is most appropriate for measuring insulation
resistance during a high-voltage equipment inspection?
A. Clamp-on ammeter
B. Megohmmeter
C. Frequency counter
D. Watt-hour meter
3
, Answer: B. Megohmmeter
Rationale: A megohmmeter, commonly called a megger, applies a
controlled DC test voltage and measures insulation resistance.
Insulation-resistance testing is commonly used to evaluate cables,
motors, transformers, and other electrical equipment, subject to the
manufacturer's procedures and applicable testing standards.
6.
A 15-kV cable has damaged outer insulation but the conductor
insulation appears intact. What should the inspector do first?
A. Ignore the damage because the conductor is not exposed
B. Paint over the damaged area
C. Evaluate the cable condition against the applicable cable construction,
installation, and repair requirements before energization
D. Increase the system voltage to test it
Answer: C. Evaluate the cable condition against the applicable cable
construction, installation, and repair requirements before
energization
Rationale: Medium-voltage cable systems depend on properly
constructed and protected insulation systems. Damage to jackets,
shields, insulation, terminations, or stress-control components can
compromise reliability and safety even when the conductor itself is not
visibly exposed.
7.
What is the primary function of a circuit breaker in a high-voltage power
system?
4
EXAMINATION WITH ACTUAL QUESTIONS
AND VERIFIED ANSWERS, PLUS
EXPLAINED RATIONALES/EXPERT
VERIFIED FOR GUARANTEED 100% PASS
2026/LATEST UPDATE/INSTANT
DOWNLOAD PDF
1.
During an inspection of a medium-voltage switchgear lineup, an
inspector observes that the equipment nameplate identifies a maximum
voltage rating of 15 kV, while the system is nominally 13.8 kV. Which
statement best describes the significance of the equipment voltage
rating?
A. The equipment must always operate at exactly 15 kV.
B. The equipment's maximum voltage rating indicates the highest
system voltage for which the equipment is designed and suitable, subject
to applicable standards and system conditions.
C. The equipment is automatically rated for any voltage below 600 V
only.
D. The equipment voltage rating determines only the conductor
ampacity.
Answer: B. The equipment's maximum voltage rating indicates the
highest system voltage for which the equipment is designed and
suitable, subject to applicable standards and system conditions.
Rationale: The voltage rating of medium- and high-voltage equipment
is a fundamental design and inspection parameter. An inspector
should verify that the equipment rating is appropriate for the system's
1
,nominal and maximum operating voltage, insulation requirements,
transient conditions, and applicable equipment standards.
2.
A high-voltage inspector is evaluating a substation grounding system.
Which is the primary purpose of a properly designed grounding grid?
A. To eliminate all electrical faults
B. To provide a controlled path for fault current and limit dangerous
touch and step potentials
C. To increase the normal operating voltage
D. To prevent transformers from producing magnetic fields
Answer: B. To provide a controlled path for fault current and limit
dangerous touch and step potentials
Rationale: A substation grounding grid provides low-impedance paths
for fault current and helps establish an equipotential surface.
Inspection must consider ground-grid conductors, connections,
ground rods where applicable, equipment bonding, surface material,
and the resulting step and touch voltages.
3.
A transformer has a primary voltage of 13.8 kV and a secondary voltage
of 480 V. Which transformer function is primarily being demonstrated?
A. Frequency conversion
B. Voltage transformation
C. Power-factor correction
D. Harmonic elimination
Answer: B. Voltage transformation
2
,Rationale: A transformer transfers electrical energy between circuits
through electromagnetic induction and changes voltage and current
levels while maintaining the system frequency under normal
operation.
4.
During a high-voltage inspection, an inspector finds that a transformer
tank is not bonded to the station grounding system. What is the principal
concern?
A. Reduced transformer efficiency
B. Increased transformer frequency
C. Potentially dangerous voltage on the transformer enclosure during a
fault
D. Excessive secondary conductor ampacity
Answer: C. Potentially dangerous voltage on the transformer
enclosure during a fault
Rationale: Exposed conductive equipment enclosures must be
effectively bonded to the grounding system. During a fault, inadequate
bonding can allow the enclosure to rise to a dangerous potential,
increasing shock and touch-voltage hazards.
5.
Which instrument is most appropriate for measuring insulation
resistance during a high-voltage equipment inspection?
A. Clamp-on ammeter
B. Megohmmeter
C. Frequency counter
D. Watt-hour meter
3
, Answer: B. Megohmmeter
Rationale: A megohmmeter, commonly called a megger, applies a
controlled DC test voltage and measures insulation resistance.
Insulation-resistance testing is commonly used to evaluate cables,
motors, transformers, and other electrical equipment, subject to the
manufacturer's procedures and applicable testing standards.
6.
A 15-kV cable has damaged outer insulation but the conductor
insulation appears intact. What should the inspector do first?
A. Ignore the damage because the conductor is not exposed
B. Paint over the damaged area
C. Evaluate the cable condition against the applicable cable construction,
installation, and repair requirements before energization
D. Increase the system voltage to test it
Answer: C. Evaluate the cable condition against the applicable cable
construction, installation, and repair requirements before
energization
Rationale: Medium-voltage cable systems depend on properly
constructed and protected insulation systems. Damage to jackets,
shields, insulation, terminations, or stress-control components can
compromise reliability and safety even when the conductor itself is not
visibly exposed.
7.
What is the primary function of a circuit breaker in a high-voltage power
system?
4