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R3-NL2

5-2-55, Minamitsumori, Nishinari-ku, Osaka 557-0063 JAPAN
Phone: +81(6)6659-8201  Fax: +81(6)6659-8510  E-mail: [email protected]

EM-8428  Rev.9  P. 12 / 13

 

OTHER FUNCTIONAL BLOCKS (NL2LVIn, NL2LVOut, NL2LVIO, NL2TIn, NL2TPIn, NL2SWIn, NL2SWOut, NL2SWIO,  

NL2CIn, NL2COut, NL2CInOut, NL2CISWIO)

NETWORK
VARIABLE

TYPE
{Range}
{Default}

EXPLANATIONS

nvoLV01 thr.
 nvoLV56

SNVT_lev_percent
{-163.840 through 163.830}
{0.0}

Data for analog input modules.

nviLV01 thr.
 nviLV56

SNVT_lev_percent
{-163.840 through 163.830}
{0.0}

Data for analog output modules.

nvoT01 thr.
 nvoT56

SNVT_temp
{-274.0 through 3002.7}
{0.0}

Data for temperature input modules.

nvoTP01 thr.
 nvoTP56

SNVT_temp_p
{-273.17 through 327.66}
{0.0}

Data for temperature input modules.

nvoSW01 thr.
 nvoSW56

SNVT_switch
{0.0,0} or {100.0,1}
{0.0,0}

ON/OFF data for discrete input modules.
OFF : {0.0,0} 

ON : {100.0,1}

nviSW01 thr.
 nviSW56

SNVT_switch
{0.0,0} or {100.0,1}
{0.0,0}

ON/OFF data for discrete output modules.
OFF : {0.0,0} 

ON : {100.0,1}

nvoC01 thr.
 nvoC56

SNVT_count
{0 through 65535}
{0}

Data for totalized pulse input modules.

nviC01 thr.
 nviC56

SNVT_count
{0 through 65535}
{0}

Data for totalized pulse output modules.

nviDoState

SNVT_state

For factory adjustment.  Do not use.

nvoDiState

SNVT_state

For factory adjustment.  Do not use.

TRANSMISSION DATA ASSIGNMENTS

 

ANALOG INPUT / OUTPUT

The DIP SW located at the side of the module specifies each I/O module’s data allocation (occupied data area).

[Example 1]

Seven (7) of 8-point analog input module: Use APB: R3NL2_LVI56.

Position

Module Type

Data Area

Network Variable

Module 1

R3-SV8S

8

nvoLV01 through nvoLV08

Module 2

R3-SV8S

8

nvoLV09 through nvoLV16

Module 3

R3-SV8S

8

nvoLV17 through nvoLV24

Module 4

R3-SV8S

8

nvoLV25 through nvoLV32

Module 5

R3-SV8S

8

nvoLV33 through nvoLV40

Module 6

R3-SV8S

8

nvoLV41 through nvoLV48

Module 7

R3-SV8S

8

nvoLV49 through nvoLV56

Module 8

R3-NL2-N

Module 9

R3-PS3-R

The same principle is applied to Analog Output (R3NL2_LVO56) or Temperature Input (R3NL2_TI56, R3NL2_TPI56).

 

DISCRETE INPUT / OUTPUT

One (1) data area can handle 16 points of discrete signals.

[Example 2]

Four (4) of 16-point discrete input module: Use APB: R3NL2_SWI56.

Position

Module Type

Data Area

Network Variable

Module 1

R3-DA16S

1

nvoSW01 through nvoSW16

Module 2

R3-DA16S

1

nvoSW17 through nvoSW32

Module 3

R3-DA16S

1

nvoSW33 through nvoSW48

Module 4

R3-DA16S

1

nvoSW49 through nvoSW56

Module 5

R3-NL2-N

Module 6

R3-PS1-R

Channels 9 through 16 of the Module 4 are not transmitted.

Содержание LONWORKS R3-NL2

Страница 1: ...for maintenance without the power ENVIRONMENT Indoor use When heavy dust or metal particles are present in the air install the unit inside proper housing with sufficient ventilation Do not install th...

Страница 2: ...identify the node in LONWORKS network configura tion RESET SW Used to reset the Neuron Chip Press the switch to reset Control functions are halted while completing resetting and restarting Confirm no...

Страница 3: ...6 2 24 CONNECTION DIAGRAM INTERNAL POWER INTERNAL BUS LONWORKS CONFIGURATION JACK JACK BUS CONNECTOR 1 1 2 3 4 5 4 RUN RUN RUN CONTACT OUTPUT 2 3 6 U V FG POWER INPUT Not provided with No Power Suppl...

Страница 4: ...NAL BLOCKS INPUT OUTPUT 56 0 SNVT_temp R3NL2_TI56_103 XIF R3NL2_TI56_103 APB NodeObject NL2TIn 56 0 SNVT_temp_p R3NL2_TPI56_103 XIF R3NL2_TPI56_103 APB NodeObject NL2TPIn DISCRETE INPUT OUTPUT NO of D...

Страница 5: ...SNVT_obj_request NVO 1 nvoStatus SNVT_obj_status NVO 2 nvoCardState SNVT_state NVO 3 nvoCardErr SNVT_state Number of internal communication errors NVO 4 nvoCommErr SNVT_count NVO 5 nvoFileDirectory SN...

Страница 6: ...OG I O FUNCTIONAL BLOCKS NL2LVIn NVO 6 nvoLV01 SNVT_lev_percent 56 variables NVO 61 nvoLV56 SNVT_lev_percent NL2LVOut NVI 6 nviLV01 SNVT_lev_percent 56 variables NVI 61 nviLV56 SNVT_lev_percent NL2LVI...

Страница 7: ...hone 81 6 6659 8201 Fax 81 6 6659 8510 E mail info m system co jp EM 8428 Rev 9 P 7 13 TEMPERATURE INPUT FUNCTIONAL BLOCKS NL2TIn NVO 6 nvoT01 SNVT_temp 56 variables NVO 61 nvoT56 SNVT_temp NL2TPIn NV...

Страница 8: ...8 Rev 9 P 8 13 DISCRETE I O FUNCTIONAL BLOCKS NL2SWIn NVO 6 nvoSW01 SNVT_switch 56 variables NVO 61 nvoSW56 SNVT_switch NL2SWOut NVI 6 nviSW01 SNVT_switch 56 variables NVI 61 nviSW56 SNVT_switch NL2SW...

Страница 9: ...8428 Rev 9 P 9 13 TOTALIZED PULSE I O FUNCTIONAL BLOCKS NL2CIn NVO 6 nvoC01 SNVT_count 56 variables NVO 61 nvoC56 SNVT_count NL2COut NVI 6 nviC01 SNVT_count 56 variables NVI 61 nviC56 SNVT_count NL2C...

Страница 10: ...co jp EM 8428 Rev 9 P 10 13 TOTALIZED PULSE INPUT DISCRETE I O FUNCTIONAL BLOCKS NL2CISWIO NVO 24 nvoC01 SNVT_count 16 variables NVO 39 nvoC16 SNVT_count NVO 40 nvoSW01 SNVT_switch 16 variables NVO 5...

Страница 11: ...ched 65535 nvoCardStatus SNVT_state 0 or 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Indicates that I O modules are mounted in each slot Bit 0 through bit 15 are applied for slot 1 through 16 0 Not mounted 1 Mo...

Страница 12: ...es nviDoState SNVT_state For factory adjustment Do not use nvoDiState SNVT_state For factory adjustment Do not use TRANSMISSION DATA ASSIGNMENTS ANALOG INPUT OUTPUT The DIP SW located at the side of t...

Страница 13: ...LV09 through nviLV16 Module 7 R3 YV8S 8 nviLV17 through nviLV24 Module 8 R3 NL2 N Module 9 R3 PS3 R TOTALIZED PULSE INPUT DISCRETE I O Network Variables for the discrete input channels are assigned fi...

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