Deck 16: Controllogix Controllers - Part 2 - Bit Level Programming

Full screen (f)
exit full mode
Question
CLX bit level instructions require ____ addresses.

A)DINT
B)INT
C)BOOL
D)REAL
Use Space or
up arrow
down arrow
to flip the card.
Question
During each program scan the processor:

A)reads all inputs and takes these values to control the outputs according to the program.
B)reads all outputs and takes these values to control the inputs according to the program.
C)reads all inputs and adjusts these values to control the outputs according to the program.
D)reads the program and adjusts all inputs and outputs accordingly.
Question
OTL is an acronym for the output unlatch instruction.
Question
An ONS instruction can be used to turn an output on for one scan.
Question
OTE is an acronym for output empty.
Question
All ladder logic rung contacts represent output instructions.
Question
Internal relay instructions are used when real-world field devices are needed as input or output reference instructions.
Question
A tag is a text-based name for an area of the controller where data is stored.
Question
A CLX controller executes the program in real time.
Question
The edit tags window shows the state of the tags created for a program.
Question
XIO is an acronym for examine if open.
Question
A CLX processor can update the input tag from the field and write the output tag to the field at different points during execution of the program.
Question
XIC is an acronym for examine if closed.
Question
A ladder logic program rung does not need to contain any input instructions.
Question
Tag-based addressing is not tied to specific memory locations in the memory structure.
Question
Output instructions can be placed in series on a rung in CLX logic.
Question
All ladder logic rung coil instructions are input instructions.
Question
OTU is an acronym for the output latch instruction.
Question
ONS is an acronym for the on instruction.
Question
Output instructions can be placed in parallel on a rung in CLX logic.
Question
The XIO instruction:

A)processor checks for a logic input of 0 or 1.
B)returns a true value if the input is logic 1.
C)returns a true value if the input is 0.
D)both a and c.
Question
The XIC instruction:

A)processor checks for a logic input of 0 or 1.
B)returns a true value if the input is logic 1.
C)returns a true value if the input is 0.
D)both a and b.
Question
When creating a ladder rung:

A)all input instructions must be to the right of an output instruction.
B)a rung must contain at least one input instruction.
C)the last instruction must be an output instruction.
D)all of these.
Question
For the motor start/stop program shown,what would the value of the tags be when the motor is not operating? <strong>For the motor start/stop program shown,what would the value of the tags be when the motor is not operating?  </strong> A)Motor_Start (0),Motor_Stop (1),Motor_Run (0) B)Motor_Start (0),Motor_Stop (0),Motor_Run (0) C)Motor_Start (1),Motor_Stop (1),Motor_Run (0) D)Motor_Start (1),Motor_Stop (1),Motor_Run (1) <div style=padding-top: 35px>

A)Motor_Start (0),Motor_Stop (1),Motor_Run (0)
B)Motor_Start (0),Motor_Stop (0),Motor_Run (0)
C)Motor_Start (1),Motor_Stop (1),Motor_Run (0)
D)Motor_Start (1),Motor_Stop (1),Motor_Run (1)
Question
Internal relay instructions are used when:

A)real-world input field devices are needed as inputs.
B)real-world output field devices are needed as outputs.
C)other than real-world field devices are needed as input or output reference instructions.
D)both a and b.
Question
The OTE instruction:

A)is true when the rung associated with it has logic continuity.
B)when true can be used to energize an output.
C)when true can be used to set a value in memory to 1.
D)all of these.
Question
The real-word pushbutton associated with an XIC stop contact in a motor start/stop control logic is:

A)normally closed
B)normally open
C)timed closed
D)timed open
Question
The real-word pushbutton associated with an XIC start contact in a motor start/stop control logic is:

A)normally closed
B)normally open
C)timed closed
D)timed open
Question
The window shown is an example of creating a tag in the: <strong>The window shown is an example of creating a tag in the:  </strong> A)New Tag window. B)Controller Organizer window. C)Edit Tag window. D)Monitor Tag window. <div style=padding-top: 35px>

A)New Tag window.
B)Controller Organizer window.
C)Edit Tag window.
D)Monitor Tag window.
Question
The OTL instruction

A)is a retentive output instruction.
B)even if the status of its input becomes false.
C)is used in conjunction with an OTU instruction with the same referenced tag.
D)all of these.
Question
The physical address for the tag High_limit_light would be: <strong>The physical address for the tag High_limit_light would be:  </strong> A)Local:I:2.Data.5 B)Local:I:5.Data.2 C)Local:O:2.Data.5 D)Local:O:5.Data.2 <div style=padding-top: 35px>

A)Local:I:2.Data.5
B)Local:I:5.Data.2
C)Local:O:2.Data.5
D)Local:O:5.Data.2
Question
For the latch/unlatch program shown,what would the value of the tags be after momentary actuation of the Fan_Off_ Button? <strong>For the latch/unlatch program shown,what would the value of the tags be after momentary actuation of the Fan_Off_ Button?  </strong> A)Fan_On _Button (0),Fan_Off _Button (1),Vent Fan (0) B)Fan_On _Button (0),Fan_Off _Button (0),Vent_Fan (0) C)Fan_On _Button (1),Fan_Off _Button (1),Vent_Fan (0) D)Fan_On _Button (0),Fan_Off _Button (1),Vent_Fan (0) <div style=padding-top: 35px>

A)Fan_On _Button (0),Fan_Off _Button (1),Vent Fan (0)
B)Fan_On _Button (0),Fan_Off _Button (0),Vent_Fan (0)
C)Fan_On _Button (1),Fan_Off _Button (1),Vent_Fan (0)
D)Fan_On _Button (0),Fan_Off _Button (1),Vent_Fan (0)
Question
The physical address for the tag Limit_Switch would be: <strong>The physical address for the tag Limit_Switch would be:  </strong> A)Local:I:3.Data.1 B)Local:I:1.Data.3 C)Local:O:3.Data.1 D)Local:O:1.Data.3 <div style=padding-top: 35px>

A)Local:I:3.Data.1
B)Local:I:1.Data.3
C)Local:O:3.Data.1
D)Local:O:1.Data.3
Question
For the one shot program shown,the ADD function is executed: <strong>For the one shot program shown,the ADD function is executed:  </strong> A)only once per actuation of the limit switch. B)as long as the limit switch is closed. C)as long as the limit switch is opened. D)either b or c. <div style=padding-top: 35px>

A)only once per actuation of the limit switch.
B)as long as the limit switch is closed.
C)as long as the limit switch is opened.
D)either b or c.
Unlock Deck
Sign up to unlock the cards in this deck!
Unlock Deck
Unlock Deck
1/34
auto play flashcards
Play
simple tutorial
Full screen (f)
exit full mode
Deck 16: Controllogix Controllers - Part 2 - Bit Level Programming
1
CLX bit level instructions require ____ addresses.

A)DINT
B)INT
C)BOOL
D)REAL
C
2
During each program scan the processor:

A)reads all inputs and takes these values to control the outputs according to the program.
B)reads all outputs and takes these values to control the inputs according to the program.
C)reads all inputs and adjusts these values to control the outputs according to the program.
D)reads the program and adjusts all inputs and outputs accordingly.
A
3
OTL is an acronym for the output unlatch instruction.
False
4
An ONS instruction can be used to turn an output on for one scan.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
5
OTE is an acronym for output empty.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
6
All ladder logic rung contacts represent output instructions.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
7
Internal relay instructions are used when real-world field devices are needed as input or output reference instructions.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
8
A tag is a text-based name for an area of the controller where data is stored.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
9
A CLX controller executes the program in real time.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
10
The edit tags window shows the state of the tags created for a program.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
11
XIO is an acronym for examine if open.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
12
A CLX processor can update the input tag from the field and write the output tag to the field at different points during execution of the program.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
13
XIC is an acronym for examine if closed.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
14
A ladder logic program rung does not need to contain any input instructions.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
15
Tag-based addressing is not tied to specific memory locations in the memory structure.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
16
Output instructions can be placed in series on a rung in CLX logic.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
17
All ladder logic rung coil instructions are input instructions.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
18
OTU is an acronym for the output latch instruction.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
19
ONS is an acronym for the on instruction.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
20
Output instructions can be placed in parallel on a rung in CLX logic.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
21
The XIO instruction:

A)processor checks for a logic input of 0 or 1.
B)returns a true value if the input is logic 1.
C)returns a true value if the input is 0.
D)both a and c.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
22
The XIC instruction:

A)processor checks for a logic input of 0 or 1.
B)returns a true value if the input is logic 1.
C)returns a true value if the input is 0.
D)both a and b.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
23
When creating a ladder rung:

A)all input instructions must be to the right of an output instruction.
B)a rung must contain at least one input instruction.
C)the last instruction must be an output instruction.
D)all of these.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
24
For the motor start/stop program shown,what would the value of the tags be when the motor is not operating? <strong>For the motor start/stop program shown,what would the value of the tags be when the motor is not operating?  </strong> A)Motor_Start (0),Motor_Stop (1),Motor_Run (0) B)Motor_Start (0),Motor_Stop (0),Motor_Run (0) C)Motor_Start (1),Motor_Stop (1),Motor_Run (0) D)Motor_Start (1),Motor_Stop (1),Motor_Run (1)

A)Motor_Start (0),Motor_Stop (1),Motor_Run (0)
B)Motor_Start (0),Motor_Stop (0),Motor_Run (0)
C)Motor_Start (1),Motor_Stop (1),Motor_Run (0)
D)Motor_Start (1),Motor_Stop (1),Motor_Run (1)
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
25
Internal relay instructions are used when:

A)real-world input field devices are needed as inputs.
B)real-world output field devices are needed as outputs.
C)other than real-world field devices are needed as input or output reference instructions.
D)both a and b.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
26
The OTE instruction:

A)is true when the rung associated with it has logic continuity.
B)when true can be used to energize an output.
C)when true can be used to set a value in memory to 1.
D)all of these.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
27
The real-word pushbutton associated with an XIC stop contact in a motor start/stop control logic is:

A)normally closed
B)normally open
C)timed closed
D)timed open
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
28
The real-word pushbutton associated with an XIC start contact in a motor start/stop control logic is:

A)normally closed
B)normally open
C)timed closed
D)timed open
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
29
The window shown is an example of creating a tag in the: <strong>The window shown is an example of creating a tag in the:  </strong> A)New Tag window. B)Controller Organizer window. C)Edit Tag window. D)Monitor Tag window.

A)New Tag window.
B)Controller Organizer window.
C)Edit Tag window.
D)Monitor Tag window.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
30
The OTL instruction

A)is a retentive output instruction.
B)even if the status of its input becomes false.
C)is used in conjunction with an OTU instruction with the same referenced tag.
D)all of these.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
31
The physical address for the tag High_limit_light would be: <strong>The physical address for the tag High_limit_light would be:  </strong> A)Local:I:2.Data.5 B)Local:I:5.Data.2 C)Local:O:2.Data.5 D)Local:O:5.Data.2

A)Local:I:2.Data.5
B)Local:I:5.Data.2
C)Local:O:2.Data.5
D)Local:O:5.Data.2
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
32
For the latch/unlatch program shown,what would the value of the tags be after momentary actuation of the Fan_Off_ Button? <strong>For the latch/unlatch program shown,what would the value of the tags be after momentary actuation of the Fan_Off_ Button?  </strong> A)Fan_On _Button (0),Fan_Off _Button (1),Vent Fan (0) B)Fan_On _Button (0),Fan_Off _Button (0),Vent_Fan (0) C)Fan_On _Button (1),Fan_Off _Button (1),Vent_Fan (0) D)Fan_On _Button (0),Fan_Off _Button (1),Vent_Fan (0)

A)Fan_On _Button (0),Fan_Off _Button (1),Vent Fan (0)
B)Fan_On _Button (0),Fan_Off _Button (0),Vent_Fan (0)
C)Fan_On _Button (1),Fan_Off _Button (1),Vent_Fan (0)
D)Fan_On _Button (0),Fan_Off _Button (1),Vent_Fan (0)
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
33
The physical address for the tag Limit_Switch would be: <strong>The physical address for the tag Limit_Switch would be:  </strong> A)Local:I:3.Data.1 B)Local:I:1.Data.3 C)Local:O:3.Data.1 D)Local:O:1.Data.3

A)Local:I:3.Data.1
B)Local:I:1.Data.3
C)Local:O:3.Data.1
D)Local:O:1.Data.3
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
34
For the one shot program shown,the ADD function is executed: <strong>For the one shot program shown,the ADD function is executed:  </strong> A)only once per actuation of the limit switch. B)as long as the limit switch is closed. C)as long as the limit switch is opened. D)either b or c.

A)only once per actuation of the limit switch.
B)as long as the limit switch is closed.
C)as long as the limit switch is opened.
D)either b or c.
Unlock Deck
Unlock for access to all 34 flashcards in this deck.
Unlock Deck
k this deck
locked card icon
Unlock Deck
Unlock for access to all 34 flashcards in this deck.