Controls 2012 V1
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Transcript of Controls 2012 V1
![Page 1: Controls 2012 V1](https://reader035.fdocuments.net/reader035/viewer/2022081413/5469b266af7959cb768b50fc/html5/thumbnails/1.jpg)
Presented by:Luis I. Melgares
Product Manager
Presented to:Linkedin
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• EVC Controllers• EFC Controllers• BACnet Controllers
• Major Characteristics• Ancillary • What’s new
Agenda
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EVC SeriesThe EVC series is a VAV box controller combined with an
actuator and a thermostat
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EVC Series Features• Available for pressure dependant or
independent systems• Stand-alone or with BACnet®
communication protocol• Up to 4 triac outputs• 70 in. lb. or 180 in. lb. actuator
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EVC Series ThermostatsThe EVC thermostat (TRL) is needed to:
• Access the configuration menus of the EVC• Do the balancing of the VAV box• Setpoint adjustments• Display the system status
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TRL Thermostats Features
•Available in 2x4 or 3x3 formats•USB port to tap into the BACnet® network locally•RJ45 or 3 wire cable connection to the EVC•Built-in temperature sensor
3x3 2x4
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EVC Applications1. Central Cooling & Terminal Reheat2. Central Heating/Cooling with Auto-Changeover3. Central Heating/Cooling with Auto-Changeover &
Terminal reheat4. Dual Duct Master Slave 5. Fan Powered Box with ECM motors
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D uct heaterh igh voltage
pow er
D uct heater
D uct heaterre lay
Baseboard h ighvoltage pow er
Baseboardre lay
Baseboard
EVC 74W IT3S
A nalog Input
A I1
C O M
A I2
D I1
C O M
D I2
C O M
C O M
24 Vac
24 Vac
1 2 3 4
TB1
1 2 3
TB3
24 Vac external-JP1(TO 1/TO 2)
TO 1
C O M
TO 2
24 Vac external-JP2(TO 3/TO 4)
TO 3
C O M
TO 4
1 2 3 4 5 6 7 8
TB2
1 2 3
TB4 A O 1
C O M
A O 2
1 2 3
TB5
A nalog O utput
D ig ita l Input
Pow er 24 Vac
Triac O utput24 Vac
Triac O utput24 Vac
Signal selector for24 Vac triac(for JP1 & JP2)
INT E
XT
R
R
TR L
1 2 3
Therm ostat
TB7
3 w ire cable to TR L
C O M
PW R
D A TA
1 2 3
Low staticpressure
H igh tota lpressure
C onnect to thecrossflow
LD1
TB6
LD2 C om m unication
w ith therm ostatindication
ON1 2 3 4 5 6 7 8
DS
1*
(8) 120 ohmterm ination(Last node)
(1-7)M AC AddressSelection
IN A +
IN B -
C O M
O U T A +
O U T B -
N etw ork
1 2 3 4 5
Pow er indicationD uct heaterh igh voltage
pow er
D uct heater
0-10Vdc
C entral C ooling W ithTerm inal R eheat
XFO
Linevoltage
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STC 8-11
C hangeoversensor
EVC 74W IT3S
A nalog Input
A I1
C O M
A I2
D I1
C O M
D I2
C O M
C O M
24 Vac
24 Vac
1 2 3 4
TB1
1 2 3
TB3
24 Vac external-JP1(TO 1/TO 2)
TO 1
C O M
TO 2
24 Vac external-JP2(TO 3/TO 4)
TO 3
C O M
TO 4
1 2 3 4 5 6 7 8
TB2
1 2 3
TB4 A O 1
C O M
A O 2
1 2 3
TB5
A nalog O utput
D ig ita l Input
Pow er 24 Vac
Triac O utput24 V ac
Triac O utput24 V ac
S ignal se lector for24 Vac triac(fo r JP 1 & JP 2)
INT E
XT
TR L
1 2 3
Therm ostat
TB7
3 w ire cable to TR L
C O M
PW R
D A TA1 2 3
Low staticpressure
H igh to ta lpressure
C onnect to thecrossflow
LD1
TB6
LD2 C om m unication
w ith therm ostatind ication
ON1 2 3 4 5 6 7 8
DS
1*
(8) 120 ohmterm ination(Last node)
(1-7)M AC AddressSelection
IN A +
IN B -
C O M
O U T A +
O U T B -
N etw ork
1 2 3 4 5
Pow er ind ication
XFO
Linevoltage
C entral C ooling & H eatingW ith A uto C hangeover
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B aseboard h ighvo ltage pow er
B aseboard
EVC74W IT3S
Analog Input
A I1
CO M
AI2
D I1
CO M
DI2
CO M
CO M
24 Vac
24 Vac
1 2 3 4
TB1
1 2 3
TB3
24 Vac external-JP 1(TO 1/TO 2)
TO 1
CO M
TO 2
24 Vac external-JP 2(TO 3/TO 4)
TO 3
CO M
TO 4
1 2 3 4 5 6 7 8
TB2
1 2 3
TB4 AO 1
CO M
AO 2
1 2 3
TB5
Analog O utput
D igital Input
Pow er 24 Vac
Triac O utput24 Vac
Triac O utput24 Vac
S ignal se lector for24 V ac triac(fo r JP1 & JP2)
INT EXT
TRL
1 2 3
Therm osta t
TB7
3 w ire cable to TRLCO M
PW R
DATA
1 2 3
Low sta ticpressure
H igh to ta lpressure
C onnect to thecrossflow
LD1
TB6
LD2 C om m unication
w ith therm ostatind ication
ON1 2 3 4 5 6 7 8
DS1*
(8) 120 ohmterm ination(Last node)
(1-7)M A C A ddressS election
IN A+
IN B -
CO M
O UT A+
O UT B-
Netw ork
1 2 3 4 5
P ow er ind ication
D uct heaterh igh vo ltage
pow er
D uct heater
0-10V dc
STC8-11
C hangeoversensor
X FO
Linevoltage
C entral C ooling & H eatingW ith C hangeover &
Term inal R eheat
RB aseboardre lay
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EFC SeriesThe EFC series package consist of 2 parts: fan coil
controller and a thermostat
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EFC Series Features
•Available in 24 Vac, 120 Vac & 240 Vac•Stand-alone or with BACnet®
communication protocol•4AI/5UI sensor ded. 2AO/3TRIAC/3 Fan speed/4DO•Analog fan option
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EFC Series Thermostats
The EFC thermostat (TFL) is needed to:•Access the configuration menus of the EFC•Setpoint adjustments•Display the system status
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TFL Thermostats Features
•Available in 2x4 or 3x3 formats•USB port to tap into the BACnet® network locally•RJ45 or 3 wire cable connection to the EFC•Built-in temperature sensor•Optional humidity sensor
3x3 2x4
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ON
1 2 3 4 5 6 7 8
(1-7)MAC Address
Selection
1 2 3 4
AI1
COM
AI2
1 2 3
Programmable Analog Input Signal Selection (AI3 to AI6)Off: AI= Temp. sensor (10kohms)On: AI= Voltage (0-10Vdc)DS1.1 linked to AI3DS1.2 linked to AI4DS1.3 linked to AI5DS1.4 linked to AI6
DI1
DI2
COM
DI3
DI4
1 2 3 4 5
IN A+ 3
IN B- 3
COM 3
OUT A+ 3
OUT B- 3
1 2 3 4 51 2 3 4
24 Vac
24 Vac
AO1
COM
AO2
1 2 3
EFC
AI3
AI4
COM
AI5
AI6
1 2 3 4 5
TB
9T
B6
TB
7T
B8
DS2 DS1
TB
10T
B11
COM
COM
Fuse 10A.F1
DO43
Ret. DO43
Ret. DO33
DO33
DO23
Ret. DO23
Ret. DO13
DO13
1
2 3
4
1
2 3
4
Fan Low
Fan Medium
Fan High
Fan Return
Return
Vac IN11
2 3
4
5
6
TB
4T
B2
TB
3
COM
24 Vdc
COM.BUS
1 2 3
Analog Outputs
Analog Inputs (Fix)
Analog Inputs (Programmable)
Digital Inputs
Low VoltageOutputs*
(Inputs for EFCx10)
Network3
To TFL
TB
5
Digital Outputs3
Fan Outputs
Power In1
TO3
COM
TO2
COM
TO1
24 Vac1
2 3
4
5
6
TB
1 Triac Input
JP1
TR
IAC
INT
EX
T
Triac Outputs
(8) 120 ohm termination (Last node)
Changeover sensor
TFL
1 2 3
Thermostat
Modulating valve
0-10Vdc
Fan coil Application2 pipe modulating
+ reheat on-off
Duct heater high voltage power
Duct heater
Duct heater relay
R
120 Vac
2 Pipes
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ON
1 2 3 4 5 6 7 8
(1-7)MAC Address
Selection
1 2 3 4
AI1
COM
AI2
1 2 3
Programmable Analog Input Signal Selection (AI3 to AI6)Off: AI= Temp. sensor (10kohms)On: AI= Voltage (0-10Vdc)DS1.1 linked to AI3DS1.2 linked to AI4DS1.3 linked to AI5DS1.4 linked to AI6
DI1
DI2
COM
DI3
DI4
1 2 3 4 5
IN A+ 3
IN B- 3
COM 3
OUT A+ 3
OUT B- 3
1 2 3 4 51 2 3 4
24 Vac
24 Vac
AO1
COM
AO2
1 2 3
EFC
AI3
AI4
COM
AI5
AI6
1 2 3 4 5
TB
9T
B6
TB
7T
B8
DS2 DS1
TB
10
TB
11
COM
COM
Fuse 10A.F1
DO43
Ret. DO43
Ret. DO33
DO33
DO23
Ret. DO23
Ret. DO13
DO13
1
2 3
4
1
2 3
4
Fan Low
Fan Medium
Fan High
Fan Return
Return
Vac IN11
2 3
4
5
6
TB
4T
B2
TB
3
COM
24 Vdc
COM.BUS
1 2 3
Analog Outputs
Analog Inputs (Fix)
Analog Inputs (Programmable)
Digital Inputs
Low VoltageOutputs*
(Inputs for EFCx10)
Network3
To TFL
TB
5
Digital Outputs3
Fan Outputs
Power In1
TO3
COM
TO2
COM
TO1
24 Vac1
2 3
4
5
6
TB
1 Triac Input
JP
1T
RIA
CIN
T
EX
T
Triac Outputs
(8) 120 ohm termination (Last node)
TFL
1 2 3
Thermostat
Modulating Heating valve
Modulating Cooling valve
0-10Vdc
0-10Vdc
Fan coil Application4 pipe modulating
120 Vac
4 Pipes
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Lets talk BACnet®
and Neptronic…And the Common Problems we encounter with installations…
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NEPTRONIC and BACnet®
•We are active Member of BACnet® International•All Neptronic BACnet® products are certified to BTL (BACnet® Testing Laboratories)•We are BACnet® MS/TP over RS-485
2 wire cable, twisted-shielded (BACnet IP Summer 2012) •Baud rate can be set to one of the following: 9600, 19200, 38400 or 76800 bps
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• Baud Rate– One device at a different baud rate than the controller or other
devices will crash the trunk
• MAC Address– Lots of time people will forget to change the factory default MAC to
a unique address on their network (set at 0 by default)
• T-taps– Too many T-taps will result in communication issues (max 65‘ per T-
tap,130‘ total max)
BACnet® Common Problems
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BACnet ASC Controllers
EVCB EFCB
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1. Two MAC addressing options -Controller and/or Thermostat
2. Auto Device Instance Configuration
3. Auto baud rate
4. Copy configuration5. Service Display Address
(Service Display Address) EVC EFC
Neptronics Major BACnet Characteristics ASC
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1. Two MAC addressing options
1-DIP switch Mac addressing is always priority vs Thermostataddressing
OFF ON
1 2 4
16 3264
8
EOL
2- Thermostat
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2- Auto Device Instance Configuration
All NEPTRONIC Controllers come with a default Device Instance (D.I.) value of 153 000(153 is NEPTRONIC’s BACnet vendor ID number)To which a MAC address is automatically added to
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2- Auto device instance configuration
As you set the MAC address, the Instance automatically set the Device Instance (D.I.)
MAC Address: 21
Default Device Instance (D.I.): 153000
Automatic D.I. 153021
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3- Auto baud rateController « Listens » & identifies the networks baud rate and sets its speed accordingly (9,6/19,2/38,4/76,8Kb)
MS/TP Network @ « X Kb » Speed
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4- Copy configuration:
A Single profile or application can be pushed to similar Zone Controllers
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Copies configuration
VAV 1 Profile type:
1 Changeover Remote Sensor input1 Reheat on/off Output HW Valve1 Reheat TPM Output (Duct heater)
VAV2
VAV3
VAV 4
VAV5
VAV6
4- Copy configuration:
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Avantage:
Push globally and not pull individually to similar information to identical controllers.
4- Copy configuration:
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Helps you identify a specific controller on a given network
5- Service Display Address:
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• Cuts labor costs• Increases your productivity• Flexibility that fits your needs
Neptronic’s BACnet® ControlsAdvantages:
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Neptronic Controllers & Accessories
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What’s on the way…
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• Design to mount on most spring loaded valves
• Delivers a minimum of 200N force• Modulating analog or digital control
signal, Failsafe up or down• Easy installation (no tools)
X Series Actuator
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• 10 Inputs and 10 Outputs (8UI-2AI/6DO-4AO)• 1 BACnet MS/TP and 1 MODbus Ports• Possibility to add 8 slave Tstats • Optional : LCD Display, RTC
CMMB Remote BACnet I/O Board card
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In Conclusion…How can we help
Increase your business?