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PVIP Practice Exam Questions and Answers

PV Installation Professional (PVIP) Board Certification

Last Update 5 days ago
Total Questions : 70

PV Installation Professional (PVIP) Board Certification is stable now with all latest exam questions are added 5 days ago. Incorporating PVIP practice exam questions into your study plan is more than just a preparation strategy.

PVIP exam questions often include scenarios and problem-solving exercises that mirror real-world challenges. Working through PVIP dumps allows you to practice pacing yourself, ensuring that you can complete all PV Installation Professional (PVIP) Board Certification practice test within the allotted time frame.

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Question # 1

Which of the following tests measures axial uplift whenperforming load testing of driven-pile foundation members

Options:

A.  

Resistance to horizontal movement

B.  

Resistance to downward (Sinking force

C.  

Resistance to twisting

D.  

Resistance to withdraw (pull-out) force

Discussion 0
Question # 2

A project is using a PV module with a 25-38dc maximum power voltage range and a single input inverter with an operating windows of 250vdc-450dc. The dwelling the system is to be installed on has a 5:12 roof with a southeastem face that can accommodate 14 modules and southwestern face that can accommodate 10 modules. What is the MAXIMUM number of modules that can be installed for proper inverter maximum power point tracking?

Options:

A.  

14

B.  

18

C.  

20

D.  

24

Discussion 0
Question # 3

A bank of batteries with capability of supplying 250A and a maximum voltage of 325V is housed in a concrete structure in a very humid location. There is service access alsie between rows of batteries. What is the REQUIRED safety distance between the rows of batteries.

Options:

A.  

3 ft. when insulted conducted conductors are used between terminals.

B.  

3-1/2If the building is equipped with a dehumidifier and the batteries are on insulting surfaces

C.  

4 ftWhether or not the building is equipped with a dehumidifier or the batteries are insulting surfaces

D.  

6 ft.When the floor is insulated and no dehumidifier is installed.

Discussion 0
Question # 4

A grid-connected PV system on a dwelling is producing 30% less power than expected. The conductors from threes strings of modules enter into a 3-pole fused dc disconnect, and each ungrounded conductor is connected to a separate pole. On the inverter side of the switch terminals, the three strings are combined. The dc disconnect switch is opened. The voltages on the array side of theswitchare 440 on string #1, 444V on string #2, and 0V on string #3. The dc disconnect is then closed and the inverter resumes operating, still producing about 30% less power than expected. A clamp-on ammeter is used to measure the dc current of each string of each string of modules where they enter the rooftop junction box. The operating currents of each string are 3.9A for string #1, 3 85A for string #2, and 4.3 A for string #3. What is the MOST likely with the system?

Options:

A.  

Positive and negative output conductors of string #3 are faulted together.

B.  

String #3 has an open connection and is not contributing any voltage.

C.  

A ground fault is causing the current from strings #1 and #2 to flow into string #3.

D.  

There is lower module mismatch in string #3 than in string #1 and #2.

Discussion 0
Question # 5

An installer troubleshooting a ground-mounted array finds It to be performing as expected most of the time, but a ground-fault error is indicated on hot days. The inverter is in a shaded location. Which of the following should theinstaller check for FIRST when troubleshooting this array?

Options:

A.  

High voltage

B.  

Loose module connections

C.  

Pinched module wiring

D.  

Intermittent ground connections

Discussion 0
Question # 6

A metal condult containing an array circuit with Vmo of 400Vdc is connected to a metal enclosure at the location where the concentric knockouts have been punched by the manufacturer. Which method of attachment should be used?

Options:

A.  

Grounding bushing

B.  

Insulated bushing

C.  

Sealing locknut

D.  

Threaded coupling

Discussion 0
Question # 7

While surveying a potential three-phase project, an installer measures the voltage at the point of utility interconnection. The results are as follows:

* Phase to phase: 240V

* Phase A neutral: 120V

* Phase B neutral: 208V

* Phase C neutral: 120V

Which is a likely cause of these reading?

Options:

A.  

Supply-side ground fault

B.  

Phase-to-phase power imbalances

C.  

High-leg transformer configuration

D.  

Missing ground in the transformer

Discussion 0
Question # 8

Which of the following is an NEC requirement regarding access for large-scale PV electric power production facilities?

Options:

A.  

Field-applied hazard markings must be installed, and access to the supply station is to be restricted by fencing or other adequate means.

B.  

All fencing and associated gates must have ac and dc current and voltage exposure labvels and must be electrically isolated from the solar facility.

C.  

Arc flash warning labels must be field-applied by the installer at all access points for qualified persons and at the point of the utility interconnection directory.

D.  

Access to remote isolating equipment for servicing is allowed for individual other than qualified persons when the equipment is enclosed within a secure structure.

Discussion 0
Question # 9

When installing an ungrounded PV system with an open-circuit voltage of 450Vdc and a maximum voltage of 3000Vdc which procedures should be followed to establish an electrically safe condition?

Options:

A.  

Determine possible sources electrical supply an avoid exposure to energized conductors or parts.

B.  

Apply lockout/tagout devices and install a listed isolation transformer.

C.  

Mount inverters on nonconductive supports and temporarily ground one dc circuit conductor.

D.  

Verify that disconnecting device blades are closed and test conductors using an adequately rated detector.

Discussion 0
Question # 10

A grid-interactive PV system with battery backup is being installed with a ground-mounted PV array located 200 ft, from the inverter and batteries. The dc PV output circuit has overcuit has overcurrent protection rated from 30

A.  

To reduce voltage drop between the array and batteries, the output circuit wire size was determined to be 6 AW

G.  

The fused dc disconnect between the inverted and batteries is rated for 300

A.  

What is the required size of the equipment grounding conductor between the metal battery case and the inverter?

Options:

A.  

10 AWG

B.  

8 AWG

C.  

6 AWG

D.  

4 AWG

Discussion 0
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