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3/21  IOM-ELECTRA-FLO-INST

Nailor Industries Inc. reserves the right to change any information concerning product or specification without notice or obligation.

  PROTOCOL IMPLEMENTATION STATEMENT

  BACnet Protocol Revision: 12

  Device Profile (Annex L): BACnet Application Specific Controller 

(B-ASC)

  MS/TP master (Clause 9), baud rate(s): 9600, 19200, 38400, 

56700, 76800, 115200

  Device Address Binding: No

  BBMD Support Registration By Foreign Devices: No

  Character Set Supported: ANSI X3.4

  BACnet Interoperability Building Blocks Supported (Annex K):

  Data Sharing – Read Property-B (DS-RP-B)

  Data Sharing – Read Property Multiple-B (DS-RPM-B)

  Data Sharing – Write Property-B (DS-WP-B)

  Device Management – Dynamic Device Binding-B (DM-DDB-B)

  Device Management – Dynamic Object Binding-B (DM-DOB-B)

  Device Management – Device Communication Control-B 

(DM-DCC-B)

  Device Management – Reinitialize Device-B (DM-RD-B)

Summary of Contents for ELECTRA-FLO G5

Page 1: ...ept as stated in the warranty If the customer or any third party is harmed by the use of this product Nailor assumes no responsibility for any such harm owing to any defects in the product which were not predictable or for any indirect damages Safety Precautions The following general safety precautions must be observed during all phases of installation operation service and repair of this product ...

Page 2: ...ng 6 1 5 Working Environment 6 1 6 Serial and Sales Order Number 6 SECTION 2 0 INSTALLATION 6 2 1 Site Selection 6 2 2 Transmitter Dimensions 7 2 3 Transmitter Installation 8 2 3 1 ELECTRA flo G5 Power Signal Connections 9 2 3 2 ELECTRA flo G5 Ananlog Outputs Serial Communication 9 SECTION 3 0 OPERATION 10 3 1 Start up Operation 10 11 3 2 User Interface Device Configuration 11 3 3 Main Menu 13 16 ...

Page 3: ...Typical Thermal Dispersion Airflow Measurement System Installation Nailor s Airflow Measuring Damper accurately measures the average velocity of flowing air by means of thermal dispersion sensors located in airflow ducts Temperature is also measured via these sensors The Airflow G5 Transmitter can average data from a maximum of 32 individual flow sensors and is designed to measure airflow in a sin...

Page 4: ... mini DIN connectors XMTR to probes and two 2 1 2 conduit openings NEMA 4X enclosure two 2 liquid tight strain relief connectors and two 2 1 2 conduit openings Network Conn RS485 BACnet MS TP or MODBUS RTU Approvals UL 60730 BTL Certified to BACnet standard ISO 16484 5 rev 1 12 FCC Meets part 15 Subpart B Class A device requirements ELECTRA flo S5 Thermal Dispersion Probe Array Performance Sensor ...

Page 5: ... anodized aluminum 1 1 8 diameter with NEMA 4 enclosure and 1 2 13 conduit connections 300 series stainless steel 1 1 8 diameter with NEMA 4X enclosure and 1 2 13 conduit connections Operating Conditions Fluid Temperature 20 F to 140 F 29 C to 60 C Humidity 0 to 99 RH non condensing Wiring Connections Available Options Mini DIN NEMA 1 only Watertight IP67 Conduit opening with terminal blocks Duct ...

Page 6: ...o direct sunlight The operating ambient air temperature range is 20 F to 140 F 29 C to 60 C 1 6 Serial and Sales Order Number The serial number of your Airflow G5 transmitter is located outside of the enclosure The serial number and the sales order number are a unique identifier for your product Please have them available when contacting Nailor for assistance regarding your product The Nailor Airf...

Page 7: ... 9 124 3 5 89 6 4 163 2 3 58 NEMA 4X FIBERGLASS ENCLOSURE NEMA 1 ENCLOSURE NEMA 4X STAINLESS STEEL ENCLOSURE Thermal Airflow Transmitter ELECTRA flo G5 UP ESC DN ENT Thermal Airflow Transmitter ELECTRA flo UP ESC DN ENT 3 4 6 6 5 5 2 1 1 Two 2 0 188 mounting slots 2 1 2 conduit field power opening for connection 3 Two 2 Mini DIN connectors for probe 4 1 2 conduit analog output network opening for ...

Page 8: ...or firmware update tools Contact Air Monitor service for assistance 4 I O serial communication alarm and power input terminal block location Refer to section 2 3 2 for additional information 5 Termination resisitor bias switch location Refer to section 3 4 for additional information Thermal Airflow Transmitter ELECTRA flo G5 UP ESC DN ENT UP ESC BACnet D D G SH NO C NC L N 24 V INPUT PWR J2 J1 J3 ...

Page 9: ...or more information 2 3 2 G5 Analog Outputs and Serial Communication IMPORTANT NOTE Two 2 analog outputs 4 20 mA 0 10 VDC or 0 5 VDC are available based on configuration Refer to page 15 for more information BACnet D D G SH NO C NC L N 24 V INPUT PWR J2 J1 J3 J4 G ALARM AO1 AO2 COM COM S1 TERM BIAS TB J4 INPUT POWER GROUND G COMMON N 24 V AC DC L NORMALLY CLOSED CONTACT NC COMMON C NORMALLY OPEN C...

Page 10: ...The data shown is field configurable The default configuration indicates flow velocity and temperature A field configurable Custom ID is also shown at the bottom of the screen Default Dual Channel Display Screens The true dual channel version of the Airflow G5 transmitter has two display screens for process data Sys1 Flow and Sys2 Flow are provided on the first screen Sys1 Flow Sys2 Flow and Sys1 ...

Page 11: ...urable The transmitter is configured using the display and 4 button membrane keypad Individual key functions are described below ENT Enters menu item from main or service menu moves cursor to next item below when in sub menu ESC Exits current page or sub menu item UP Arrow Toggles between display pages on dual channel meters In the menu mode it moves cursor up through main and service menus and ch...

Page 12: ...tem Scan Displays sensor enabled disabled status Sensor Enable Disable Enable or disable system sensors Sensor Data Scan Displays individual sensor data Sensor Alert Scan Displays alert codes for each sensor Custom ID Configure ID tag of unit also device name displayed in BACnet Restore Factory Setting Restores display settings to original factory setup Product Information Displays product informa...

Page 13: ...ork Configuration Configure BACnet MS TP or MODBUS RTU Network Connection 3 3 MAIN MENU Density Compensation Density compensation can be selected to be actual flow or flow corrected to standard conditions The default factory setting is for actual conditions The Airflow G5 also allows for inputting the site elevation which will add density compensation for average atmospheric pressure based upon el...

Page 14: ... area is automatically calculated Enter the Max Flow maximum airflow in CFM or L s Display Configuration This screen allows the user to set parameters on various lines of the display There are four display lines on the Airflow G5 Line 1 Flow typical Velocity or Temperature Line 2 Velocity Flow or None Line 3 Temperature Flow or None Line 4 Custom ID or None This field is settable over BACnet or th...

Page 15: ...ailable on connector J1 terminals AO1 and AO1 or AO2 and AO2 The full scale output is equal to Max Flow as programmed into the ELECTRA flo G5 transmitter on the Flow Configuration menu Temperature Available on connector J1 terminals AO1 and AO1 or AO2 and AO2 The temperature analog output has a fixed scale of 40 F to 140 F 40 C to 60 C The filter has a minimum setting of 0 to a maximum setting of ...

Page 16: ... may be best for control purposes to raise the zero lockdown velocity to an appropriate threshold in which the velocity is steady and reliable Alarm Alarm Configuration The Alarm Alert Configuration menu provides access to select and configure the transmitter alarm and alerts Alarm type can be either flow or temperature with Upper and Lower limits The transmitter alarm controls an on board relay s...

Page 17: ...t J2 terminals labeled D D G and SH The positive RS485 connection is made to D the negative connection is made to D The 3 wire common connection is made to G and the shield drain is connected to SH CAUTION Do not connect shield drains to the G terminal Transceiver 3 wire half duplex 1 3 unit load Recommended maximum units per segment 32 Baud rate s 9600 19200 38400 57600 115200 default 38400 unles...

Page 18: ...600 19200 38400 56700 76800 115200 Device Address Binding No BBMD Support Registration By Foreign Devices No Character Set Supported ANSI X3 4 BACnet Interoperability Building Blocks Supported Annex K Data Sharing Read Property B DS RP B Data Sharing Read Property Multiple B DS RPM B Data Sharing Write Property B DS WP B Device Management Dynamic Device Binding B DM DDB B Device Management Dynamic...

Page 19: ... 9 Read only Services Supported readProperty readPropertyMultiple writeProperty deviceCommunicationControl reinitializedevice who has who is Read only Object Types Supported Analog input Device Read only Object List Varies device 1 analog input 0 X where X 1 No of sensors 2 Read only Max ADPU Length 128 Read only Segmentation Supported No Segmentation Read only APDU Time Out 3000 Read only of APDU...

Page 20: ...s a problem with any sensor in question the OOS bit is set along with the FAULT bit If the OOS property is set data from the physical device will not be used in any calculation IN_ALARM is set for values which exceed the predetermined values set in the transmitter memory This field only affects the Avg Temp and Avg Flow Analog Input objects BACnet Engineering Units for Analog Inputs Defaults Flow ...

Page 21: ...ne Only use on end of line Biasing Jumper selectable 549 Ohms or none Only one device on the network should provide biasing Flow control none The MODBUS implementation of the ELECTRA flo supports the use of function code 17 Report Slave ID When a message is sent to the meter requesting the slave ID the following message is returned ELECTRA flo G5 The meter will report data in decimal or HEX depend...

Page 22: ...or 9 30036 float 30038 float see Register 30200 Sensor 10 30040 float 30042 float see Register 30200 Sensor 11 30044 float 30046 float see Register 30200 Sensor 12 30048 float 30050 float see Register 30200 Sensor 13 30052 float 30054 float see Register 30200 Sensor 14 30056 float 30058 float see Register 30200 Sensor 15 30060 float 30062 float see Register 30200 Sensor 16 30064 float 30066 float ...

Page 23: ..._t 1 ALL_OK 2 IN ALARM 3 IN FAULT 4 OOS System Node Total 30203 uint16_t 1 32 NODES ALLOWED Version 30204 uint16_t MSB Major LSB Minor Version 2 30205 uint16_t MSB Patch LSB Build Number Duct Shape 30206 uint16_t 1 Rect 2 Round 3 FLAT OVAL 4 OTHER Fan Inlet 5 Design Flow Max Setting 30207 float Max Flow to scale Analog Outputs Duct Area 30209 float Duct area size in ft2 or m2 DISCREET INPUTS DESCR...

Page 24: ...ensor 9 30036 float 30038 float see Register 30400 Sensor 10 30040 float 30042 float see Register 30400 Sensor 11 30044 float 30046 float see Register 30400 Sensor 12 30048 float 30050 float see Register 30400 Sensor 13 30052 float 30054 float see Register 30400 Sensor 14 30056 float 30058 float see Register 30400 Sensor 15 30060 float 30062 float see Register 30400 Sensor 16 30064 float 30066 flo...

Page 25: ... 30212 float 30214 float see Register 30400 Sensor 4 30216 float 30218 float see Register 30400 Sensor 5 30220 float 30222 float see Register 30400 Sensor 6 30224 float 30226 float see Register 30400 Sensor 7 30228 float 30230 float see Register 30400 Sensor 8 30232 float 30234 float see Register 30400 Sensor 9 30236 float 30238 float see Register 30400 Sensor 10 30240 float 30242 float see Regist...

Page 26: ...loat 30314 float see Register 30400 Sensor 29 30316 float 30318 float see Register 30400 Sensor 30 30320 float 30322 float see Register 30400 Sensor 31 30324 float 30326 float see Register 30400 Sensor 32 30328 float 30330 float see Register 30400 MODBUS HOLDING REGISTERS DEVICE FLOW UNITS Address Data Type System Flow Plus 40000 float see Register 30401 System Flow Minus 40002 float see Register ...

Page 27: ...OVAL Design Flow Max 2 Setting 30412 float Max Flow to scale Analog Outputs Duct Area 2 30413 float Duct area size in ft2 or m2 DISCREET INPUTS FOR SYSTEM VARIABLES DESCRIPTION ADDRESS DATA TYPE DESCRIPTION Sensor Enabled 10000 boolean Bit0 Bit15 Sensor Enabled Sensor Enabled 10001 boolean Bit16 Bit31 Sensor Enabled System Units 10002 boolean Coil 1 1 Sl Bit 0 0 US System Conditions 10002 boolean ...

Page 28: ...ready to input Manual displays the Exponent and Gain value forms for inputting externally determined Exponent and Gain values Calculate Number of Points is the number of flow reference points Each point is one reference flow rate determined by traverse testing or other and the associated ELECTRA flo system flow rate The traverse testing flow rate for these reference points is performed before ente...

Page 29: ...be disabled to remove it from the flow and temperature averages until it can be evaluated and or repaired if necessary Sensor Data Scan Displays sensor number Sen power input to sensors PWM temperature difference between flow and temperature sensors DELTAt velocity FPM flow temperature sensor FLOWt and the reference temperature sensor REFt This data display screen can be used to further evaluate a...

Page 30: ...ALERT Transmitter cannot communicate with Sensor Power cycle sytem and recheck MISSING SensAOOR or SensBOOR ALERT Sensor fault Replace sensor Contact Nailor DISABLED DeltaOOR ALERT Sensor Delta Temperature out of range Contact Nailor Temp value in red TempOOR RANGE Temperature measurement out of range 20 to 140F Verify application temperature is not outside 20 to 140F If ELECTRA flow G5 appears to...

Page 31: ...an issue with the ELECTRA flo measurement system or valid airflow and or temperature signals are not being received by the BMS BAS or controller check and complete the following 1 The power wiring is securely connected to the proper terminals and is providing the intended 24V AC DC power 2 The signal wiring is securely connected to the proper terminals 3 The probe to probe and probe to transmitter...

Page 32: ... Texas Tel 281 590 1172 Fax 281 590 3086 Toronto Canada Tel 416 744 3300 Fax 416 744 3360 Las Vegas Nevada Tel 702 648 5400 Fax 702 638 0400 Calgary Canada Tel 403 279 8619 Fax 403 279 5035 Houston Texas Tel 281 590 1172 Fax 281 590 3086 Toronto Canada Tel 416 744 3300 Fax 416 744 3360 Las Vegas Nevada Tel 702 648 5400 Fax 702 638 0400 Page 32 3 21 IOM ELECTRA FLO INST ...

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