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Appendix A- Network Points List for the RTU-MP 

 

 

28 

RTU-MP Controller 

 

 

AP

P

EN

D

IX A 

 

N

ETW

O

RK

 P

O

IN

TS

 L

IS

R

TU

P-

M

P P

ro

to

co

l M

a

ps

 

Lo

nW

or

ks

 O

ut

put

 

SN

VT

 N

am

 

 

 

 

nv

iOc

cup

ie

  nv

oC

om

p1

Rel

ay

 

   

nv

oC

om

p2

Rel

ay

 

   

nv

oC

om

pS

ta

tu

sS

w

 

   

nv

oD

eh

um

id

Rel

ay

 

   

 

 

 

nv

oFi

lte

rS

ta

tu

   

nv

oF

ireS

hu

td

ow

  nv

oH

ea

t1

Rel

ay

 

  nv

oH

ea

t2

Rel

ay

 

  nv

oH

um

id

is

ta

   

nv

oO

cc

yS

ta

tu

  nvo

Pw

rE

xhR

el

ay

 

  nv

oR

em

ot

eO

cc

   

 

SN

VT Ty

pe

 

 

 

 

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

 

SN

VT_

sw

itc

h(

95

 

SN

VT_

sw

itc

h(

95

 

SN

VT_

sw

itc

h(

95

 

 

 

 

SN

VT_

sw

itc

h(

95

 

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

 

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

SN

VT_

sw

itc

h(

95

 

 

Lon

W

or

ks

 In

pu

SN

VT

 N

am

nci

Un

occR

HS

 

nci

Un

occH

ea

tS

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

SN

VT Ty

pe

 

SN

VT

_l

ev

_p

er

cen

t(8

1)

 

 

SN

VT

_t

em

p_

p(

105)

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

N2 I

nf

N2  Ne

tw

or

Po

in

Addr

es

 

57

 

58

 

5    9 

10

 

  7 

17

 

  11

 

18

 

  12

 

13

 

14

 

15

 

16

 

  17

 

18

 

19

 

19

 

   

N2  Ne

tw

or

Po

in

Ty

pe

 

 

ADF

 

ADF

 

BO

 

BO

 

BI

 

BO

 

BI

 

BO

 

BI

 

BO

 

BI

 

BO

 

BI

 

BO

 

BO

 

BI

 

BO

 

BI

 

BI

 

BI

 

BI

 

BI

 

BI

 

BI

 

BI

 

BO

 

 

Mo

db

us

 In

fo

 

M

odbu

Reg

is

te

r#

 

 

4012

4012

1000

1000

1000

1000

1001

 

1001

18

 

1001

1001

1001

1001

1001

1001

1001

1001

 

†   

    

  S

et

 =

 O

N t

o r

es

et

 ru

nt

im

co

un

ter

   

    

    

Th

is

 p

oi

nt w

ill

 a

uto

m

ati

ca

lly

 re

st to

 O

FF 

 

   

    

    

aft

er

 ru

nt

im

co

un

ter

 is

 c

lea

red

††    

  U

se t

hi

po

in

t t

o c

on

tro

l en

th

al

py

 fr

om

 th

e n

et

w

or

k.

 

   

    

    

Se

t =

 O

FF;

 e

nth

al

py

 h

ig

   

    

    

Set

 =

 O

N;

 en

th

al

py

 lo

w

 

†††    

Th

is 

is t

he

 c

ur

re

nt

 oc

cu

pa

nc

y st

at

us u

se

d b

 

   

    

    

th

e c

on

tro

l a

lg

or

ith

m

s.

 

   

    

    

OFF 

= U

no

cc

up

ie

   

    

    

ON

 =

 Oc

cu

pi

ed

 

M

odbu

Reg

is

ter

 

Ty

pe

 

 

flo

at

 v

al

ue

 

flo

at

 v

al

ue

 

di

sc

ret

e o

ut

 

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

 

di

sc

ret

e i

di

sc

ret

e o

ut

 

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

di

sc

ret

e i

 

BA

Cn

et

 In

fo

 

BA

Cn

et

 

Ob

je

ct

 ID

 

 

AV

:4022

 

AV

:4020

 

BV

:4006

 

BV

:4005

 

BV

:2101

 

BV

:4101

 

BV

:2102

 

BV

:4102

 

BV

:2150

 

BV

:3009

 

BV

:2011

 

BV

:4001

 

BV

:2002

 

BV

:4004

 

BV

:3010

 

BV

:2004

 

BV

:4003

 

BV

:2005

 

BV

:2201

 

BV

:2202

 

BV

:2006

 

BV

:1001

 

BV

:2008

 

BV

:2012

 

BV

:2007

 

BV

:3014

 

BA

Cn

et

 P

oi

nt

 

Na

me

 

 

un

oc

c_d

eh

um

_s

et

pt

 

 

un

oc

c_h

ea

t_s

ba

cn

et

_s

ch

ed

ul

ba

s_o

n_o

ff 

co

m

p_1

 

c1

_r

t_c

lea

co

m

p_2

 

c2

_r

t_c

lea

co

m

ps

ta

oc

c_ex

hu

m

iz

er

 

ec

on

_ex

is

ent

ha

lp

ent

ha

lp

y_

ne

sv

c_

te

st

 

fil

ts

ta

flt

s_r

t_c

lea

fir

ed

ow

hea

t_1

 

hea

t_2

 

hu

m

sta

kp

_s

ch

ed

_s

ta

oc

c_

sta

tu

aux

_2

 

rem

oc

te

st_

c1

 

 

De

fa

ul

Va

lu

 

95

 

60

 

n/a

 

off

 

n/a

 

off

 

n/a

 

off

 

n/a

 

off

 

n/a

 

off

 

n/a

 

lo

w

 

off

 

n/a

 

off

 

n/a

 

n/a

 

n/a

 

n/a

 

n/a

 

n/a

 

n/a

 

n/a

 

off

 

 

Un

its

 

%

rh

 

°

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

hi

gh/

lo

w

 

hi

gh/

lo

w

 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

on

/o

ff 

*   

    

  T

hi

is

 th

cu

rr

en

t o

cc

up

an

cy

 s

ta

te

  

   

    

    

of

 th

e B

AC

net

 s

ch

ed

ul

ob

jec

t. T

 

   

    

    

co

nt

ro

l o

cc

up

an

cy

 ex

ter

na

lly

, u

se 

 

   

    

    

ba

s_on

_off 

ins

te

ad

**

    

   S

etp

oi

nt =

 O

FF;

 U

no

cc

up

ie

   

    

    

    

    

    

   

= ON

; Oc

cup

ie

 

 

Rea

On

ly

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Po

in

t Na

me

  

 

Un

oc

cu

pi

ed

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eh

um

id

ific

at

io

n  

Set

po

in

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cu

pi

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ea

t S

et

po

in

BA

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et

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ch

ed

ul

e*

 

BA

S On

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f*

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m

pr

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so

r 1

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el

ay

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ta

te

 

Co

m

pr

es

so

r 1

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un

tim

e C

lea

r†

 

Co

m

pr

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so

r 2

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el

ay

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ta

te

 

Co

m

pr

es

so

r 2

 R

un

tim

e C

lea

r†

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m

pr

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so

r S

afet

y S

ta

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Co

nt

in

uo

us

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cup

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d E

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aus

De

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m

id

ific

at

io

n R

el

ay

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ta

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Ec

on

om

ize

r Ex

is

ts

 

Ent

ha

lp

Ent

ha

lp

y (

BA

Cne

t)†

† 

Fi

el

d S

er

vi

ce

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es

Fi

lte

r S

ta

tu

Filt

er

 T

im

er

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le

ar

† 

Fi

re

 S

hu

td

ow

H

ea

t S

ta

ge

 1

 R

el

ay

 S

ta

te

 

H

ea

t S

ta

ge

 2

 R

el

ay

 S

ta

te

 

H

um

id

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ta

t I

np

ut S

ta

tu

Lo

ca

l S

ch

ed

ul

e S

ta

tu

Oc

cup

an

cy

 S

ta

tus

††

† 

Po

w

er

 E

xh

au

st

 R

el

ay

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ta

te

 

Re

m

ot

e O

cc

up

anc

y Inp

ut

 

Ser

vi

ce

 T

es

t C

om

pr

es

so

r 1

 

 
 
 

Summary of Contents for RTU-MP

Page 1: ...P C Co on nt tr ro ol ll le er r I In nt te eg gr ra at ti io on n G Gu ui id de e CARRIER CORPORATION 2011 A member of the United Technologies Corporation family Stock symbol UTX Catalog No 48 50H T...

Page 2: ......

Page 3: ...n 13 Scheduling 13 Indoor Fan 15 Cooling 15 Economizer 16 Power Exhaust 17 Heating 17 Indoor Air Quality 18 Dehumidification 18 Demand Limiting 19 Troubleshooting 20 LED s 20 BACnet MSTP 21 Modbus 23...

Page 4: ...ue STAT 42 Notification Class 43 Program 43 Schedule 43 Trend_log 44 Appendix D Johnson Controls N2 Protocol Implementation Conformance Statement 45 Appendix C Modbus Protocol Implementation Conforman...

Page 5: ...ation System BAS On board DIP switches allow you choose your protocol and baud rate BACnet Modbus Johnson N2 or LonWorks This document will serve as the reference guide for integrating RTU MP into the...

Page 6: ...Introduction 2 RTU MP Controller...

Page 7: ...ert symbol When you see this symbol on the unit in the instructions or manuals be alert to the potential for personal injury Understand the signal words DANGER WARNING and CAUTION These words are used...

Page 8: ...tus fanstat DI 24 VAC J5 1 2 or J5 3 4 or J5 5 6 or J5 7 8 Filter Status filstat DI 24 VAC J5 1 2 or J5 3 4 or J5 5 6 or J5 7 8 Remote Occupancy Input remocc DI 24 VAC J5 1 2 or J5 3 4 or J5 5 6 or J5...

Page 9: ...o communicate using one of four different protocols BACnet Modbus N2 or LonWorks The default setting is BACnet Switch 3 SW3 on the board is used to set protocol and baud rate Switches 1 and 2 SW1 and...

Page 10: ...re 16 is the BACnet vendor ID for Carrier Carrier Corporation and xx equals the rotary switch address EXAMPLE To set the RTU MP s MS TP MAC address to 01 point the arrow on the MSB SW1 switch to 0 and...

Page 11: ...ent 7 Turn on the RTU MP s power Configuring the RTU MP for Modbus RTU Refer to Appendix C of this document for the Modbus Protocol Implementation Conformance Statement PICS 1 Turn off the RTU MP s po...

Page 12: ...6 for Modbus See example below 5 Leave DS7 and DS8 in the OFF position These switches are not applicable to Modbus SW3 Protocol Switch Settings for Modbus DS8 DS7 DS6 DS5 DS4 DS3 Off Off Off On On Off...

Page 13: ...slave address to 01 point the arrow on the MSB SW1 switch to 0 and the arrow on the LSB SW1 switch to 1 3 Set the Comm Selector DIP switches DS1 and DS2 for the 9600 baud NOTE Use the same baud rate...

Page 14: ...uit board with fingerprints moisture or any foreign material Do not touch components or leads Handle the board by its edges Isolate from high voltage or electrostatic discharge Ensure that you are pro...

Page 15: ...ion to enable the LON OC 5 Leave Comm Selector DIP Switch DS8 on SW3 in the OFF position since it is not used SW3 Protocol Switch Settings for LonWorks DS8 DS7 DS6 DS5 DS4 DS3 Off On On Off On Off The...

Page 16: ...hese variables can be bound or accessed by the network management tool NOTE Contact your local Carrier representative for a copy of the XIF file The Browse feature of the Network Management Tool also...

Page 17: ...own hardware clock that is set automatically when the software is installed on the board The default is to control to occupied setpoints all the time until a type of occupancy control is set Occupancy...

Page 18: ...times 7 Edit these times following Steps 5 and 6 8 Scroll down to Days section and highlight the days required for the Daily schedule by INCR or DECR softkeys 9 Press the OK softkey The Holiday schedu...

Page 19: ...SPT alarm are active the fan will be shutdown immediately regardless of the occupancy state or demand The RTU MP does not include controls algorithms for additional building smoke control functions su...

Page 20: ...the supply air temperature has increased above the low supply air setpoint After a compressor is staged off it may be started again after a normal time guard period and the supply air temperature has...

Page 21: ...e true in order for this algorithm to run Indoor Fan has been ON for at least 30 seconds Cool mode is not active and the time guard between modes equals zero If occupied and SPT occupied heat setpoint...

Page 22: ...mum damper position configuration then it will be clamped to the configured value Dehumidification The RTU MP provides occupied and unoccupied dehumidification on units that are equipped with the Carr...

Page 23: ...degree offset 2 two degree offset or a 3 4 degree offset to the BACnet demand limit variable the controller expands the heating and cooling setpoints by the configured demand limit setpoint value and...

Page 24: ...erator should begin troubleshooting the unit equipment rather than the RTU MP or network Third party network may also help in troubleshooting the controller and rooftop unit Third party network troubl...

Page 25: ...the same communication settings 8 data bits No Parity and 1 stop bit 5 Verify proper connection wiring between the BAS and the controller 6 Verify that the controller has a unique MAC address on the M...

Page 26: ...software asks the controllers Who Is This is to auto locate devices on the network Only controllers set as masters will answer this request See Appendix A for Points Mapping tables See Appendix B for...

Page 27: ...controller s unique slave address 7 BAS must be reading or writing to the proper point addresses on the controller 8 BAS is sending requests to the proper slave address of the controller NOTES Refer t...

Page 28: ...w the active protocol and baud rate 2 Verify that the BAS and the controller are both set for the same baud rate 38 4k for LonWorks Comm Selector DIP switches DS2 and DS1 By getting a Modstat of the c...

Page 29: ...se harmful interference in which case the user will be required to correct the interference at his own expense CAUTION Changes or modifications not expressly approved by the responsible party for comp...

Page 30: ...101 AV 4101 AV 2102 AV 4102 AV 3003 AV 4002 AV 2002 AV 4006 AV 2001 AV 4004 AV 4005 AV 2004 AV 2005 AV 2015 AV 4025 AV 3004 AV 4003 AV 2003 AV 4011 AV 4010 AV 4009 BACnet Point Name lstat zone_temp ls...

Page 31: ...dbus Register Type float value float value float value float value float value float value float value float value float value float value float value float value float value float value float value f...

Page 32: ...e in discrete out discrete in discrete in discrete in discrete in discrete in discrete in discrete in discrete in BACnet Info BACnet Object ID AV 4022 AV 4020 BV 4006 BV 4005 BV 2101 BV 4101 BV 2102 B...

Page 33: ...Set 1 no function 2 Enthalpy Switch 3 Fan status 4 Filter status 5 Remote occupancy BACnet Point Name test_c2 test_hmz test_h1 test_h2 test_x2 test_sf sf sf_rt_clear fanstat sys_down inp_01_func inp_0...

Page 34: ...t status 1 Off 2 Fan Only 3 Free Cooling 4 Cooling 5 Heating 6 Dehumidification 7 Test 8 Shutdown BACnet Info BACnet Object ID MSV 3018 MSV 3009 MSV 3019 MSV 4003 MSV 4002 MSV 4001 MSV 2001 MSV 2002 B...

Page 35: ...e in discrete in BACnet Info BACnet Object ID BV 7021 BV 7005 BV 7020 BV 7022 BV 7019 BV 7006 BV 7003 BV 7023 BV 7002 BV 7024 BV 7010 BV 7012 BV 7001 BV 7004 BV 7008 BV 7009 BV 7011 BV 6001 BACnet Poi...

Page 36: ...e protocols BACnet Standardize Device Profile Annex K B AAC List of all BACnet Interoperability Building Blocks Supported Annex K DS RP A AE N I B SCHED I B T VMT I B DM DDB A DS RP B AE ACK B T ATR B...

Page 37: ...dium __________ Other Device Address Binding Methods Supported XX Send Who Is receive I Am BIBB DM DDB A XX Receive Who Is send I Am BIBB DM DDB B XX Send Who Has receive I Have BIBB DM DOB A XX Recei...

Page 38: ...ue notification_class notify_type reliability resolution time_delay update_interval 4 Writeable Properties cov_increment deadband description device_type event_enable high_limit limit_enable low_limit...

Page 39: ...ited by min_pres_value and max_pres_value properties relinquish_default limited by min_pres_value and max_pres_value properties notification_class must be valid notification_class time_delay 0 to 4294...

Page 40: ...s None 6 Range Restrictions None Analog Value STAT Analog Value STAT 1 Creatable NO 2 Deletable NO 3 Optional Properties Supported acked_transitions cov_increment deadband description event_enable eve...

Page 41: ...4967295 description limited to 50 octets in length device_type limited to 50 octets in length elapsed_active_time 0 to 4294967295 inactive_text limited to 50 octets in length notification_class must b...

Page 42: ...NO 3 Optional Properties Supported acked_transitions active_text alarm_value change_of_state_count change_of_state_time description elapsed_active_time event_enable event_time_stamps inactive_text mi...

Page 43: ..._off_time minimum_on_time notification_class notify_type reliability time_delay time_of_active_time_reset time_of_state_count_reset 4 Writeable Properties active_text alarm_value change_of_state_count...

Page 44: ...es alarm_value event_enable notification_class notify_type out_of_service time_delay 5 Proprietary properties None 6 Range Restrictions notification_class must be valid notification_class time_delay 0...

Page 45: ...etries object_identifier object_name time_synchronization_recipients utc_offset 5 Proprietary properties None 6 Range Restrictions description limited to 50 octets in length location limited to 50 oct...

Page 46: ...s description limited to 50 octets in length notification_class must be valid notification_class present_value must be valid state relinquish_default must be valid state time_delay 0 to 4294967295 Mul...

Page 47: ...le Program NO 2 Deletable NO 3 Optional Properties Supported description description_of_halt instance_of program_location reason_for_halt reliability 4 Writeable Properties description program_change...

Page 48: ...upported acked_transitions client_cov_increment cov_resubscription_interval current_notify_time description event_enable event_time_stamps log_device_object_property log_interval notification_class no...

Page 49: ...s The RTU MP controller speaks the Johnson N2 Open Protocol as described in the Metasys N2 System Protocol Specification for Vendors document revision 6 13 96 Further details on the N2 supported imple...

Page 50: ...RTU MP Controller Read Analog Output Read Binary Output Read Internal Parameter Write Analog Input Write Binary Input Write Analog Output Write Binary Output Write Internal Parameter Override Analog I...

Page 51: ...egister Numbers 01 Read Coil Status Read Discrete Outputs 00001 09999 02 Read Input Status Read Discrete Inputs 10001 19999 03 Read Holding Registers Read Holding Registers 40001 49999 04 Read Input R...

Page 52: ...TU MP Controller Signed Integer SINT 32768 32767 3 Read Holding Register 6 Preset Single Register 16 Preset Multiple Register Discrete Input DI 0 Off 1 On 2 Read Input Status Discrete Output DO 0 Off...

Page 53: ...management tool can design and configure the RTU MP prior to installation Contact your Carrier representative for this XIF file LonWorks is an open protocol that requires the use Echelon s Neuron mic...

Page 54: ......

Page 55: ...s table 4 J Johnson N2 5 9 23 45 L LonWorks 5 10 24 49 LonWorks Option Card 10 M Modbus 5 7 23 47 N Network Points List 26 S Sequence of operation Cooling 15 Dehumidification 18 Demand limiting 19 Eco...

Page 56: ......

Page 57: ......

Page 58: ...RTU MP Controller 54 CARRIER CORPORATION 2011 A member of the United Technologies Corporation family Stock symbol UTX Catalog No 48 50H T 1SB 1 27 2011...

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