ProtoNode RER and ProtoNode LER Startup Guide For ...

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Document Revision: 7 ProtoNode RER and ProtoNode LER Startup Guide For Interfacing Customer Product: Harsco Industrial Patterson-Kelley ENVI Control Systems and Love Controller To Building Automation Systems: BACnet MS/TP, BACnet IP, Metasys N2, Modbus TCP, and LonWorks APPLICABILITY & EFFECTIVITY Explains the ProtoNode RER and LER hardware and how to install it. The instructions are effective for the above as of March 2013

Transcript of ProtoNode RER and ProtoNode LER Startup Guide For ...

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Document Revision: 7

ProtoNode RER and ProtoNode LER

Startup Guide

For Interfacing Customer Product: Harsco Industrial Patterson-Kelley ENVI Control Systems and Love Controller

To Building Automation Systems: BACnet MS/TP, BACnet IP, Metasys N2, Modbus TCP, and LonWorks

APPLICABILITY & EFFECTIVITY

Explains the ProtoNode RER and LER hardware and how to install it.

The instructions are effective for the above as of March 2013

jshick
Typewritten Text
1004905965
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TABLE OF CONTENTS

1 Introduction ................................................................................................................................................... 5 1.1 BTL Mark – BACnet Testing Laboratory ......................................................................................................... 5

1.2 LonMark Certification .................................................................................................................................... 5

2 BACnet/LonWorks Setup for ProtoNode RER/LER .......................................................................................... 6 2.1 Installation steps for the customer ................................................................................................................ 6

2.2 Record Identification Data ............................................................................................................................. 6

2.3 Configure the DIP Switches ............................................................................................................................ 6

2.3.1 Setting the Node/ID Device Instance (DIP Switch A0 – A7) for BACnet MS/TP, BACnet/IP, and Metasys

N2 ……………………………………………………………………………………………………………………………………………………………6

2.3.2 Setting the Serial Baud Rate (DIP Switch B0 – B3) for BACnet MS/TP and Metasys N2 ProtoNodes ....... 7

2.3.3 Using S0 – S3 bank of DIP Switches to select and load Configuration Files for ENVI and Love Controller

……………………………………………………………………………………………………………………………………………………………7

3 Interfacing the ProtoNode to ENVI and Love Controller ............................................................................... 10 3.1 ProtoNode RER and LER component layout with the cover removed ......................................................... 10

3.2 Wiring Connections to ProtoNode RER and LER for the ENVI and Love Controller ..................................... 11

3.2.1 Connecting ENVI Modbus RTU Boilers to the ProtoNode’s RS-485 ........................................................ 12

3.2.2 Biasing the Modbus RS-485 Network..................................................................................................... 12

3.2.3 End of Line Termination Switch for the Modbus RS-485 port on the ProtoNode ................................... 13

3.3 Wiring the ProtoNode RER to RS-485 Field Protocol ................................................................................... 14

3.4 Wiring the ProtoNode LER Field Port to a LonWorks network .................................................................... 15

3.5 Power-Up the ProtoNode RER or LER .......................................................................................................... 15

4 Commissioning the ProtoNode LER on a LonWorks network ........................................................................ 16 4.1 Commissioning the ProtoNode LER on a LonWorks network ...................................................................... 16

4.1.1 Instructions to Upload XIF File From the ProtoNode LER Using FS GUI Web Server .............................. 16

5 Connect the ProtoNode’s Web GUI to Setup IP Address for BACnet/IP or Modbus TCP ............................... 18 5.1 Connect the PC to the ProtoNode via the Ethernet port ............................................................................. 18

5.2 Use the ProtoNode Web GUI to Connect to the ProtoNode ....................................................................... 19

5.3 Set IP Address for BACnet/IP or Modbus TCP via GUI ................................................................................. 19

6 Chipkin Automation’s CAS BACnet Explorer for validating the Protonode in the field on a BACnet MS/TP or BACnet/IP network .............................................................................................................................................. 21

6.1 Downloading Chipkin Automation’s CAS Explorer and Requesting an Activation Key ................................ 21

6.2 CAS BACnet Setup ........................................................................................................................................ 22

6.2.1 CAS BACnet MS/TP Setup ....................................................................................................................... 22

6.2.2 CAS BACnet BACnet/IP Setup ................................................................................................................. 22

Appendix A. Troubleshooting Tips ....................................................................................................................... 23 Appendix A.1. Check Wiring and Settings ................................................................................................................ 23

Appendix A.2. Take Log With Our FieldServer Utilities............................................................................................ 23

Appendix A.3. LED Diagnostics for Modbus RTU Communications between the ProtoNode and the ENVI and the

Love Controller ........................................................................................................................................................ 26

A.3.1 ProtoNode RER and LER LEDs .................................................................................................................... 26

Appendix B. Vendor Information ......................................................................................................................... 27 Appendix B.1. ENVI and Love Controller Modbus RTU COM Settings ..................................................................... 27

Appendix B.2. ENVI Modbus RTU Mappings to BACnet MS/TP, BACnet IP, Metasys and LonWorks ..................... 27

Appendix B.3. Love Controller Modbus RTU Mappings to BACnet MS/TP, BACnet IP, Metasys N2 ....................... 28

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Appendix B.4. DIP switch settings for ENVI and Love Controllers to support Metasys N2 and Modbus TCP and

BACnet for the Love Controller................................................................................................................................ 29

Appendix B.5. Address DIP Switch Settings ............................................................................................................. 31

Appendix C. Reference ......................................................................................................................................... 37 Appendix C.1. Specifications .................................................................................................................................... 37

Appendix C.1.1. Compliance with UL Regulations ............................................................................................ 37

Appendix D. Limited 2 year Warranty .................................................................................................................. 38

LIST OF FIGURES

Figure 1: A0 – A7 DIP Switches ...................................................................................................................................... 7 Figure 2: B0 – B3 DIP Switches ...................................................................................................................................... 7 Figure 3: S0 – S3 DIP Switches ....................................................................................................................................... 7 Figure 4: ProtoNode BACnet RER N34 (top) and ProtoNode LER N35 (bottom) ......................................................... 10 Figure 5: Pin outs for the ENVI’s Modbus RS-485 port and power to the ProtoNode ................................................ 11 Figure 6: Pin outs for the Love’s Modbus RS-485 port and power to the ProtoNode ................................................. 11 Figure 7: Wiring diagram for the EVNI’s Modbus RTU RS-485 to the ProtoNode’s RS-485 port. ................................ 12 Figure 8: Modbus RS-485 Biasing Switch on the ProtoNode N34 (left) and ProtoNode N35 (left). ............................ 13 Figure 9: Modbus RS-485 End-Of-Line Termination Switch on ProtoNode N34 (left) and ProtoNode N35 (right) ..... 13 Figure 10: Connection from ProtoNode to RS-485 BMS Field Protocol –BACnet MS/TP or Metasys N2 .................... 14 Figure 11: End-of-line termination on from ProtoNode to RS-485 BMS Field Protocol .............................................. 14 Figure 10: ProtoNode LER LonWorks FFT-10 2 wire screw terminal ........................................................................... 15 Figure 13: ProtoNode power pin outs ......................................................................................................................... 15 Figure 14: Sample of Fserver.XIF file being generated ................................................................................................ 17 Figure 15: Ethernet port location of ProtoNode ......................................................................................................... 18 Figure 16: FST Web GUI screen ................................................................................................................................... 19 Figure 17: FST Web GUI IP Address settings screen .................................................................................................... 20

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1 INTRODUCTION

ProtoNode is an external, high performance Building Automation multi-protocol gateway that has been

preprogrammed for Harsco’s ENVI boiler control system and the Love Boiler controller to support BACnet®1MS/TP,

BACnet/IP, Metasys®2 N2 by JCI, Modbus TCP, and LonWorks®

3. Configurations for the various protocols are

stored within the ProtoNode and are selectable via DIP switches for fast and easy installation. It is not necessary to

download any configuration files to support the required applications.

This document provides the necessary information to facilitate installation of the ProtoNode.

1.1 BTL Mark – BACnet Testing Laboratory

1.2 LonMark Certification

1 BACnet is a registered trademark of ASHRAE 2 Metasys is a registered trademark of Johnson Controls Inc. 3 4 LonWorks is a registered trademark of Echelon Corporation

The BTL Mark on the ProtoNode RER is a symbol that indicates to everyone that a

product has passed a series of rigorous tests conducted by an independent laboratory

which verifies that the product correctly implements the BACnet features claimed in

the listing. The mark is a symbol of a high-quality BACnet product. Go to

http://www.bacnetinternational.net/btl/ for more information about the BACnet

Testing Laboratory.

LonMark International is the recognized authority for certification, education, and

promotion of interoperability standards for the benefit of manufacturers, integrators

and end users. LonMark International has developed extensive product certification

standards and tests to provide the integrator and user with confidence that products

from multiple manufacturers utilizing LonMark devices work together. FieldServer

Technologies has more LonMark Certified gateways than any other gateway

manufacturer, including the ProtoCessor, ProtoCarrier and ProtoNode for OEM

applications and the full featured, configurable gateways.

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2 BACNET/LONWORKS SETUP FOR PROTONODE RER/LER

2.1 Installation steps for the customer

1. Record the information about the unit. See Section 2.2

2. Configure each ENVI controller’s Modbus node address for each ENVI connected to the ProtoNode. The

first node must start at 1 and go up to 16; if you have a total of 16 ENVI’s connected to the ProtoNode.

See Appendix B.1

3. For Love Controller connected to the ProtoNode, the Modbus Node address must be set to 1. See

Appendix B.1

4. Set A, B, and S DIP Switch banks on ProtoNode for field protocol baud rate, Node-ID/Device Instance, and

proper configuration. See Section 2.3

5. Connect the ProtoNode to the Field protocol port (3 pin Phoenix connector) and the ENVI’s or Love

Controller’s RS-485 port to the ProtoNode’s RS-485 interface (located on the ProtoNode’s 6 pin

connector). See Section 3

6. Power up the ProtoNode RER and LER. See Section 3.6

7. Commission the ProtoNode on the LonWorks Network. This needs to be done by the LonWorks

administrator use a LonWorks Commissioning tool. See Section 4

8. If the Field protocol is BACnet/IP or Modbus TCP, refer to Section 4 to run the ProtoNode Web GUI to

change IP address. See Section 5

2.2 Record Identification Data

Each ProtoNode has a unique part number located on the underside of the unit. The numbers are as

follows:

Part number FPC-N34-103-126-0710:

o Supports 1 through 16 ENVI boilers to BACnet/IP, BACnet MS/TP, Modbus TCP, and

Metasys N2.

o Supports 1 Love controller to BACnet/IP, BACnet MS/TP, Modbus TCP, and Metasys N2.

Part number FPC-N35-103-401-0771:

o Supports 1 through 13 ENVI boilers to LonWorks.

o Supports 1 Love controller to LonWorks.

These part numbers should be recorded, as they may be required for technical support.

2.3 Configure the DIP Switches

2.3.1 Setting the Node/ID Device Instance (DIP Switch A0 – A7) for BACnet MS/TP,

BACnet/IP, and Metasys N2

The A Bank DIP switches on the ProtoNode RER allow users to set the Node-ID/Device Instance on the

Field RS-485.

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DIP switches A0 – A7 can also be used to set the MAC Address for BACnet MS/TP and BACnet/IP

Figure 1: A0 – A7 DIP Switches

Please refer to Appendix B.3 for the full range of addresses to set Node-ID/Device Instance.

NOTE: When setting DIP Switches, please ensure that power to the board is OFF.

2.3.2 Setting the Serial Baud Rate (DIP Sw itch B0 – B3) for BACnet MS/TP and Metasys

N2 ProtoNodes

DIP Switches B0 – B3 can be used to set the serial baud rate to match the baud rate provided by the

Building Management System for BACnet MS/TP.

Metasys N2 is always defaulted to 9600 baud and the B bank is disabled.

B0 B1 B2 B3

Figure 2: B0 – B3 DIP Switches

2.3.2.1 Baud Rate DIP Switch Selection

Baud B0 B1 B2 B3

9600 On On On Off

19200 Off Off Off On

38400 On On Off On

57600 Off Off On On

76800 On Off On On

2.3.3 Using S0 – S3 bank of DIP Switches to select and load Configuration Files for ENVI

and Love Controller

The S bank of DIP switches, S0 - S3 is used to select and load a configuration file from a group of

pretested/preloaded configuration files which are stored in the ProtoNode RER FPC-N34-103-126-0710

(BACnet MS/TP, BACnet/IP, Modbus TCP, Metasys N2) and the ProtoNode LER FPC-N35-103-401-0771

(LonWorks).

S0 S1 S2 S3

Figure 3: S0 – S3 DIP Switches

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2.3.3.1 S0 – S3 DIP Switch Configuration Settings

A. BACnet MS/TP and BACnet IP for ENVI boilers

The following chart describes S0 - S3 DIP Switch configuration settings for the ENVI’s 1 through 16 boilers

applications to support BACnet MS/TP and BACnet/IP on a ProtoNode RER (Part # FPC-N34-103-126-

0710).

ProtoNode RER FPC-N34-103-126-0710 ProtoNode S Bank DIP Switches

Profile S0 S1 S2 S3

BACnet IP/BACnet MS/TP 1 ENVI Off Off Off Off

BACnet IP/BACnet MS/TP 2 ENVI On Off Off Off

BACnet IP/BACnet MS/TP 3 ENVI Off On Off Off

BACnet IP/BACnet MS/TP 4 ENVI On On Off Off

BACnet IP/BACnet MS/TP 5 ENVI Off Off On Off

BACnet IP/BACnet MS/TP 6 ENVI On Off On Off

BACnet IP/BACnet MS/TP 7 ENVI Off On On Off

BACnet IP/BACnet MS/TP 8 ENVI On On On Off

BACnet IP/BACnet MS/TP 9 ENVI Off Off Off On

BACnet IP/BACnet MS/TP 10 ENVI On Off Off On

BACnet IP/BACnet MS/TP 11 ENVI Off On Off On

BACnet IP/BACnet MS/TP 12 ENVI On On Off On

BACnet IP/BACnet MS/TP 13 ENVI Off Off On On

BACnet IP/BACnet MS/TP 14 ENVI On Off On On

BACnet IP/BACnet MS/TP 15 ENVI Off On On On

BACnet IP/BACnet MS/TP 16 ENVI On On On On

Support for 1 through 16 ENVI’s to Metasys N2 or Modbus TCP see Appendix B.2

Support for 1 Love Controller to support BACnet MS/TP, BACnet/IP, Metasys N2 or Modbus TCP

see Appendix B.2

S Bank DIP Switches

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B. LonWorks for ENVI boilers

The following chart describes the DIP switch settings for the ENVI and Love controllers to support

LonWorks (Part # FPC-N35-103-401-0771).

ProtoNode LER FPC-N35-103-401-0771 ProtoNode S Bank DIP Switches

Profile S0 S1 S2 S3

LonWorks 1 ENVI Off Off Off Off

LonWorks 2 ENVI On Off Off Off

LonWorks 3 ENVI Off On Off Off

LonWorks 4 ENVI On On Off Off

LonWorks 5 ENVI Off Off On Off

LonWorks 6 ENVI On Off On Off

LonWorks 7 ENVI Off On On Off

LonWorks 8 ENVI On On On Off

LonWorks 9 ENVI Off Off Off On

LonWorks 10 ENVI On Off Off On

LonWorks 11 ENVI Off On Off On

LonWorks 12 ENVI On On Off On

LonWorks 13 ENVI Off Off On On

LonWorks 1 Love On Off On On

ProtoNode LER will only support up to 13 ENVI’s on LonWorks. If you need more than 13 ENVI’s then you

will need to add another ProtoNode LER.

NOTE: When setting DIP Switches, please ensure that power to the board is OFF.

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3 INTERFACING THE PROTONODE TO ENVI AND LOVE CONTROLLER

3.1 ProtoNode RER and LER component layout with the cover removed

Figure 4: ProtoNode BACnet RER N34 (top) and ProtoNode LER N35 (bottom)

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3.2 Wiring Connections to ProtoNode RER and LER for the ENVI and Love Controller

ProtoNode 6 Pin Phoenix connector – Pin outs to ENVI’s and Love’s Modbus RTU and Power

Figure 5: Pin outs for the ENVI’s Modbus RS-485 port and power to the ProtoNode

Figure 6: Pin outs for the Love’s Modbus RS-485 port and power to the ProtoNode

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3.2.1 Connecting ENVI Modbus RTU Boilers to the ProtoNode’s RS -485

Connect ENVI’s Modbus COM 1A (RS485+) to ProtoNode’s pin 1 labeled B+ (RS485+) on the Phoenix 6 pin

connector.

Connect ENVI’s Modbus COM 1B (RS485-) to ProtoNode’s pin 2 labeled A- (RS485-) on the Phoenix 6 pin

connector.

Do not connect Ground between ENVI and the ProtoNode’s RS485 Ground.

Figure 7: Wiring diagram for the EVNI’s Modbus RTU RS-485 to the ProtoNode’s RS-485 port.

3.2.2 Biasing the Modbus RS-485 Network

An RS-485 network with more than one device needs to have biasing to ensure proper communication.

The biasing needs to be done on one device.

None of the ENVI’s support biasing.

The ProtoNode has a 510 Ohm resistor switch that is used to set the biasing. The ProtoNode’s default

position for the Biasing switch is ON from the factory.

The biasing MUST always be left in the ON position. The ON position is when the 2 RED biasing jumpers

straddle the 4 pins closest to the inside of the board of the ProtoNode. See Figure 8 below

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Figure 8: Modbus RS-485 Biasing Switch on the ProtoNode N34 (left) and ProtoNode N35 (left).

3.2.3 End of Line Termination Switch for the Modbus RS-485 port on the ProtoNode

On long RS-485 cabling runs, the RS-485 trunk must be properly terminated at each end.

If the ProtoNode is placed at one of the ends of the trunk, you turn the Blue RS-485 End-of- Line

Terminating switch to ON position.

On short cabling runs which most of the ENVI applications are, the EOL switch does not to need to be

turned ON. The default setting for this Blue EOL switch is OFF.

All ways leave the single Red Jumper in the A position.

Figure 9: Modbus RS-485 End-Of-Line Termination Switch on the ProtoNode N34 (left) and ProtoNode N35 (right)

RS-485 Bias Switch RS-485 Bias Switch

Modbus RS-485 EOL Switch Switch

Modbus RS-485 EOL Switch EOLEOL Switch

Leave in A Position

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3.3 Wiring the ProtoNode RER to RS-485 Field Protocol

Connection from ProtoNode RER to BACnet MS/TP and Metasys N2 networks

Connect BACnet MS/TP or N2 RS485 to the 3-pin RS485 connector on ProtoNode RER as shown below.

Figure 10: Connection from ProtoNode to RS-485 BMS Field Protocol –BACnet MS/TP or Metasys N2

See Section 4 for information on connecting the ProtoNode RER to BACnet/IP or Modbus TCP network.

If the ProtoNode is the last device on the BACnet MS/TP or Metasys N2 RS-485 trunk, then enable the

End-of-line termination needs to be enabled. The default is off.

Figure 11: End-of-line termination on from ProtoNode to RS-485 BMS Field Protocol

End-of-Line Switch

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3.4 Wiring the ProtoNode LER Field Port to a LonWorks network

Connect the ProtoNode to the field network with the LonWorks terminal using a twisted pair non-

shielded cable. LonWorks has no polarity.

Figure 12: ProtoNode LER LonWorks FFT-10 2 wire screw terminal

3.5 Power-Up the ProtoNode RER or LER

Apply power to the device. Ensure that the power supply used complies with the specifications provided in

Appendix C.1. Ensure that the cable is grounded using the “Frame-GND” terminal. The ProtoNode is factory set to

accept both 9-30VDC and 12-24 VAC.

Voltage Pin outs

Figure 13: ProtoNode power pin outs

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4 COMMISSIONING THE PROTONODE LER ON A LONWORKS NETWORK

Commissioning may only be performed by the LonWorks administrator.

4.1 Commissioning the ProtoNode LER on a LonWorks network

To commission the ProtoNode LER LonWorks port, insert a small screwdriver in the commissioning hole on the

face of the LER’s enclosure to access the Service Pin. See the illustration on the ProtoNode LER as to which way to

toggle the screw driver during commissioning.

If an XIF file is required, see steps Section 4.4.1 to generate XIF

4.1.1 Instructions to Upload XIF File From the ProtoNode LER Using FS GUI Web Server

Connect a standard cat5 Ethernet cable between the PC and ProtoNode

The Default IP Address of the ProtoNode is 192.168.1.24, Subnet Mask is 255.255.255.0. If the PC and the

ProtoNode are on different IP Networks, assign a static IP Address to the PC on the 192.168.1.xxx network

For Windows XP:

Go to > >

Right-click on Local Area Connection > Properties

Highlight >

For Windows 7:

Go to > >

> >

Right-click on Local Area Connection > Properties

Highlight >

LonWorks Service Pin

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For Windows XP and Windows 7, select: Use the following IP address

Click twice

Open a web browser and go to the following address: IP address of ProtoCessor/fserver.xif

Example: 192.168.1.24/fserver.xif

Download and save the file onto the PC.

Figure 14: Sample of Fserver.XIF file being generated

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5 CONNECT THE PROTONODE’S WEB GUI TO SETUP IP ADDRESS FOR BACNET/IP OR

MODBUS TCP

5.1 Connect the PC to the ProtoNode via the Ethernet port

Figure 15: Ethernet port location of ProtoNode

Connect a standard CAT5 Ethernet cable (straight through or cross) between the PC and ProtoNode

The Default IP Address of the ProtoNode is 192.168.1.24, Subnet Mask is 255.255.255.0. If the PC and the

ProtoNode are on different IP Networks, assign a static IP Address to the PC on the 192.168.1.xxx network

Go to > >

Right-click on Local Area Connection > Properties

Highlight >

Select: Use the following IP address

Click twice

Ethernet Port

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5.2 Use the ProtoNode Web GUI to Connect to the ProtoNode

Open PC web browser; enter the default IP address of the ProtoNode 192.168.1.24, to determine if the

ProtoNode is up and communicating.

Figure 16: FST Web GUI screen

5.3 Set IP Address for BACnet/IP or Modbus TCP via GUI

Open a PC web browser, enter the default IP address of the ProtoNode 192.168.1.24 and connect to the

ProtoNode.

From the GUI main home page, click on setup and then Network Settings to enter the Edit IP Address

Settings menu.

Modify the IP address (N1 IP address field) of the ProtoNode Ethernet port.

If necessary, change the Netmask (N1 Netmask field).

Type in a new Subnet Mask.

If necessary, change the IP Gateway (Default Gateway field).

Type in a new IP Gateway.

Note: If the ProtoNode is connected to a router, the IP Gateway of the ProtoNode should be set to the IP

address of the router that it is connected to.

Reset ProtoNode.

Unplug Ethernet cable from PC and connect it to the network hub or router.

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Figure 17: FST Web GUI IP Address settings screen

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6 CHIPKIN AUTOMATION’S CAS BACNET EXPLORER FOR VALIDATING THE PROTONODE

IN THE FIELD ON A BACNET MS/TP OR BACNET/IP NETWORK

Chipkin Automation has extended to Harsco and their customers a free complementary 2 week fully functional

copy of CAS BACnet Explorer that can be used to validate BACnet MS/TP and/or BACnet/IP communications of the

ProtoNode in the field without having to have the BMS Integrator on site. A Serial or USB to RS-485 converter is

needed to test BACnet MS/TP.

6.1 Downloading Chipkin Automation’s CAS Explorer and Requ esting an Activation Key

To request a 2 week complementary BACnet CAS key, go to http://app.chipkin.com/activation/twoweek/

and fill in all the information. Enter Vendor Code “harsco12”. Once completed, the key will be sent to the

email address that was submitted. From this email from Chipkin Automation, the long key will need to be

copied and pasted into the CAS key activation page.

Go to Chipkin Automation’s web site, download, and install the CAS BACnet Explorer to your PC

http://www.chipkin.com/technical-resources/cas-bacnet-explorer/.

In the CAS Activation form, enter the email address and paste the CAS key that was sent from Chipkin

Automation. Once completed, select Activation.

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6.2 CAS BACnet Setup

These are the instructions to set CAS Explorer up for the first time on BACnet MS/ST and BACnet/IP.

6.2.1 CAS BACnet MS/TP Setup

Using the Serial or USB to RS-485 converter, connect it to your PC and the 3 Pin BACnet MS/TP connector

on the ProtoNode RER.

In CAS Explorer, do the following:

o Click on settings o Check the BACnet MSTP box and uncheck the BACnet IP and BACnet Ethernet boxes. o Set the BACnet MSTP MAC address to 0. o Set the BACnet MSTP Baud Rate to 38400. o Click Ok. o On the bottom right-hand corner, make sure that the BACnet MSTP box is green. o Click on discover. o Check all 4 boxes. o Click Send.

6.2.2 CAS BACnet BACnet/IP Setup

See Section 4.1 to set the IP address and subnet of the PC that will be running the CAS Explorer.

Connect a straight through or cross Ethernet cable from the PC to the ProtoNode.

In CAS Explorer, do the following:

o Click on settings o Check the BACnet IP box and uncheck the BACnet MSTP and BACnet Ethernet boxes. o In the “Select a Network Device” box, select the network card of the PC by clicking on it. o Click Ok. o On the bottom right-hand corner, make sure that the BACnet IP box is green. o Click on discover. o Check all 4 boxes. o Click Send.

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Appendix A. Troubleshooting Tips

Appendix A.1. Check Wiring and Settings

No COMS on Modbus RTU side. If TX/RX is not flashing rapidly then there is a COM issue on the Modbus side and you need to check the following things: o Visual observations of LEDs on ProtoNode. See Appendix A.3 o Check baud rate, parity, data bits, stop bits o Check Modbus device address o Verify wiring

Field COM problems. o Visual observations of LEDs on ProtoNode. See Appendix A.3 o Visual dipswitch settings (using correct baud rate and device instance) o Verify IP address setting o Verify wiring

If the problem still exists, a log needs to be taken and sent to FieldServer. See Appendix A.2

Appendix A.2. Take Log With Our FieldServer Utilities

Once the log is complete, email it to [email protected]. The log will allow us to rapidly diagnose

the problem.

Make sure the FieldServer utilities are loaded on the PC.

http://fieldserver.com/techsupport/utility/utility.php

Disable any wireless Ethernet adapters on the PC/Laptop.

Disable firewall and virus protection software.

Connect a standard cat5 Ethernet cable between the PC and ProtoNode.

The Default IP Address of the ProtoNode is 192.168.1.24, Subnet Mask is 255.255.255.0. If the PC and the

ProtoNode are on different IP Networks, assign a static IP Address to the PC on the 192.168.1.xxx network

For Windows XP:

Go to > >

Right-click on Local Area Connection > Properties

Highlight >

Ethernet Port

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For Windows 7:

Go to > >

> >

Right-click on Local Area Connection > Properties

Highlight >

For Windows XP and Windows 7, select: Use the following IP address

Click twice

Double click on the FST Diag Utility.

Step 1: Select a Field Server IP Address.

The IP address can be entered manually or selected by clicking on button 1 using the Utility.

Type in the ProtoNode IP address Default IP Address is 192.168.1.24

Press here to retrieve the IP address.

Locate where the log is saved on the PC

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Step 2: Take a Log

Press the Take Log button. While the Utility runs a few DOS prompts will flash across the monitor. Don't

click or type anything in to these DOS prompts. This step may take a few minutes depending on the

chosen Log Type and computer speed. When the Utility is finished you will be presented with a log of

events that have occurred.

Step 3: Send Log

Click the “Send Log” button located near the bottom of the dialog. The following dialog should appear.

Push the ‘Locate Folder’ button to launch explorer and have it point directly at the correct folder. The file

upload.zip must be sent to [email protected].

Step 4: Close the Program

Press the exit button when the log is completed

Select a log type.

Press the Take Log button.

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Appendix A.3. LED Diagnostics for Modbus RTU Communications between the ProtoNode and the ENVI

and the Love Controller

Please see the diagram below for LED Locations

A.3.1 ProtoNode RER and LER LEDs

Light Description For ProtoNode RER and LER

RTC Unused

RUN The RUN LED will start flashing 20 seconds after power indicating normal operation.

ERR

The SYS ERR LED will go on solid 15 seconds after power up. It will turn off after 5 seconds. A steady red light will indicate there is a system error on the ProtoNode LER. If this occurs, immediately report the related “system error” shown in the error screen of the RUI interface to FieldServer Technologies for evaluation.

RX The RX LED will flash when a message is received on the ProtoNode port.

TX The TX LED will flash when a message is sent on the ProtoNode port.

PWR This is the power light and should show steady green at all times when the ProtoNode is powered.

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Appendix B. Vendor Information

Appendix B.1. ENVI and Love Controller Modbus RTU COM Settings

Settings ENVI Boiler 1 ENVI Boiler 2 ENVI Boiler 3 Love Controller

Baud Rate 9600 9600 9600 9600

Data Bits None None None None

Stop Bits 8 8 8 8

Parity 1 1 1 1

Modbus Node ID 1 2 3 1

Appendix B.2. ENVI Modbus RTU Mappings to BACnet MS/TP, BACnet IP, Metasys and LonWorks

Map_Descriptor_Name BACnet

Object Type BACnet

Object Id N2 Data

Type N2 Point Address

Lonworks Name Lonworks SNVT

Type

State AI 1 AI 1 nvoXXState SNVT_count_inc_f

Supply Temp AI 2 AI 2 nvoXXSupplyTmp SNVT_count_inc_f

Return Temp AI 3 AI 3 nvoXXReturnTmp SNVT_count_inc_f

DHW Temp AI 4 AI 4 nvoXXDHWTmp SNVT_count_inc_f

Header Temp AI 5 AI 5 nvoXXHeaderTmp SNVT_count_inc_f

Firing Rate AI 6 AI 6 nvoXXFiringRate SNVT_lev_percent

Flue Gas Temp AI 7 AI 7 nvoXXFlueGasTmp SNVT_count_inc_f

HX Temp AI 8 AI 8 nvoXXHXTmp SNVT_count_inc_f

Outside Temp AI 9 AI 9 nvoXXOutsideTmp SNVT_count_inc_f

Flame Signal AI 10 AI 10 nvoXXFlameSignal SNVT_count_inc_f

CH Setpoint AV 11 AO 11 nvi/nvoXXCHSP SNVT_count_inc_f

DHW Setpoint AV 12 AO 12 nvi/nvoXXDHWSP SNVT_count_inc_f

Boiler Operation AV 13 AO 13 nvi/nvoXXBlrOperatn SNVT_count_inc_f

High Outdoor Air Temp AV 14 AO 14 nvi/nvoXXHiOATmp SNVT_count_inc_f

Min Outdoor Air Setpoint AV 15 AO 15 nvi/nvoXXMinOASP SNVT_count_inc_f

Low Outdoor Air Temp AV 16 AO 16 nvi/nvoXXLoOATmp SNVT_count_inc_f

Max Outdoor Air Setpoint AV 17 AO 17 nvi/nvoXXMaxOASP SNVT_count_inc_f

Outdoor Air Shutdown Temp AV 18 AO 18 nvi/nvoXXOAShtdwnTmp SNVT_count_inc_f

Night Setback AV 19 AO 19 nvi/nvoXXNightStback SNVT_count_inc_f

Error Code AI 20 AI 20 nvoXXErrorCode SNVT_count_inc_f

Analog In AI 21 AI 21 nvoXXAnalogIn SNVT_volt

Analog Out AI 22 AI 22 nvoXXAnalogOut SNVT_volt

Ignitions AI 23 AI 23 nvoXXIgnitions SNVT_count_inc_f

Burner High Hours AI 24 AI 24 nvoXXBrnrHiHrs SNVT_time_hour

Burner Medium Hours AI 25 AI 25 nvoXXBrnrMedHrs SNVT_time_hour

Burner Low Hours AI 26 AI 26 nvoXXBrnrLoHrs SNVT_time_hour

Water Level BI 27 DI 27 nvoXXWaterLvl SNVT_switch

Low Gas Pressure BI 28 DI 28 nvoXXLoGasPrs SNVT_switch

Air Pressure BI 29 DI 29 nvoXXAirPrs SNVT_switch

Blocked Flue BI 30 DI 30 nvoXXBlckdFlue SNVT_switch

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CH Pump BI 31 DI 31 nvoXXCHPump SNVT_switch

DHW Pump BI 32 DI 32 nvoXXDHWPump SNVT_switch

Air Damper BI 33 DI 33 nvoXXAirDamper SNVT_switch

High Gas Pressure BI 34 DI 34 nvoXXHiGasPrs SNVT_switch

ET Error Number AI 35 AI 35 nvoXXETErrorNum SNVT_count_inc_f

ET Supply Temp AI 36 AI 36 nvoXXETSupTmp SNVT_count_inc_f

ET Return Temp AI 37 AI 37 nvoXXETRetTmp SNVT_count_inc_f

ET DHW Temp AI 38 AI 38 nvoXXETDHWTmp SNVT_count_inc_f

ET Flue Gas Temp AI 39 AI 39 nvoXXETFluGasTmp SNVT_count_inc_f

ET HX Temp AI 40 AI 40 nvoXXETHXTmp SNVT_count_inc_f

ET Outside Temp AI 41 AI 41 nvoXXETOtsdTmp SNVT_count_inc_f

Boiler State AI 42 AI 42 nvoXXBlrState SNVT_count_inc_f

Frost Protection BI 43 DI 43 nvoXXFrstPrtctn SNVT_switch

DHW Mode BI 44 DI 44 nvoXXDHWMode SNVT_switch

CH Mode BI 45 DI 45 nvoXXCHMode SNVT_switch

ET Month AI 46 AI 46 nvoXXETMonth SNVT_count_inc_f

ET Day AI 47 AI 47 nvoXXETDay SNVT_count_inc_f

ET Year AI 48 AI 48 nvoXXETYear SNVT_count_inc_f

ET Hours AI 49 AI 49 nvoXXETHrs SNVT_count_inc_f

ET Minutes AI 50 AI 50 nvoXXETMinutes SNVT_count_inc_f

ET Day Count High AI 51 AI 51 nvoXXETDayCntHi SNVT_count_inc_f

ET Day Count Low AI 52 AI 52 nvoXXETDayCntLo SNVT_count_inc_f

ET Run Hours AI 53 AI 53 nvoXXETRunHrs SNVT_time_hour

Appendix B.3. Love Controller Modbus RTU Mappings to BACnet MS/TP, BACnet IP, Metasys N2

Map_Descriptor_Name BACnet Object Type BACnet Object

Id N2 Data Type

N2 Point Address

Setpoint AI 1 AI 1

PB Proportional Band AI 2 AI 2

Ti Integral time AI 3 AI 3

Td Derivative time AI 4 AI 4

Hyst Value 1st output grp AI 5 AI 5

Alm 1 Type AI 6 AI 6

Alm 2 Type AI 7 AI 7

Alm 3 Type AI 8 AI 8

Alm 1 Upper Limit AI 9 AI 9

Alm 1 Lower Limit AI 10 AI 10

Alm 2 Upper Limit AV 11 AI 11

Alm 2 Lower Limit AV 12 AI 12

Alm 3 Upper Limit AV 13 AI 13

Alm 3 Lower Limit AV 14 AI 14

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Appendix B.4. DIP switch settings for ENVI and Love Controllers to support Metasys N2 and Modbus TCP

and BACnet for the Love Controller

Note: The lid on top of the ProtoNode has to be removed in order to select the A Bank of DIP switches. Pull on

the lid while holding the on to the 6 pin Phoenix connector. Please do not hold the wall mount tabs as these

are designed to break off if not required!

To set select these configurations, open the ProtoNode and select the A bank of switches (A1 or A2) on

the small ProtoCessor module that sits on top of the ProtoCarrier (inside the ProtoNode).

ProtoCessor A1 DIP switch starts on the bottom of the A bank of DIP switches below.

ProtoCessor A3-A8 DIP switches are disabled.

ProtoNode RER ProtoCarrier DIP Switches ProtoCessor DIP Switches (Remove Cover)

Profile - FPC-N34-103-126-0710 S0 S1 S2 S3 A1 A2 A3 A4 A5 A6 A7 A8

Metasys N2 1 ENVI Off Off Off Off On Off Off Off Off Off Off Off

Metasys N2 2 ENVI On Off Off Off On Off Off Off Off Off Off Off

Metasys N2 3 ENVI Off On Off Off On Off Off Off Off Off Off Off

Metasys N2 4 ENVI On On Off Off On Off Off Off Off Off Off Off

Metasys N2 5 ENVI Off Off On Off On Off Off Off Off Off Off Off

Metasys N2 6 ENVI On Off On Off On Off Off Off Off Off Off Off

Metasys N2 7 ENVI Off On On Off On Off Off Off Off Off Off Off

Metasys N2 8 ENVI On On On Off On Off Off Off Off Off Off Off

Metasys N2 9 ENVI Off Off Off On On Off Off Off Off Off Off Off

Metasys N2 10 ENVI On Off Off On On Off Off Off Off Off Off Off

Metasys N2 11 ENVI Off On Off On On Off Off Off Off Off Off Off

Metasys N2 12 ENVI On On Off On On Off Off Off Off Off Off Off

Metasys N2 13 ENVI Off Off On On On Off Off Off Off Off Off Off

S Bank DIP Switches

A1 and A2 DIP Switches

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ProtoNode RER ProtoCarrier DIP Switches ProtoCessor DIP Switches (Remove Cover)

Profile - FPC-N34-103-126-0710 S0 S1 S2 S3 A1 A2 A3 A4 A5 A6 A7 A8

Metasys N2 14 ENVI On Off On On On Off Off Off Off Off Off Off

Metasys N2 15 ENVI Off On On On On Off Off Off Off Off Off Off

Metasys N2 16 ENVI On On On On On Off Off Off Off Off Off Off

Modbus TCP/Modbus RTU 1 ENVI Off Off Off Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 2 ENVI On Off Off Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 3 ENVI Off On Off Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 4 ENVI On On Off Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 5 ENVI Off Off On Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 6 ENVI On Off On Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 7 ENVI Off On On Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 8 ENVI On On On Off Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 9 ENVI Off Off Off On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 10 ENVI On Off Off On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 11 ENVI Off On Off On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 12 ENVI On On Off On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 13 ENVI Off Off On On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 14 ENVI On Off On On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 15 ENVI Off On On On Off On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 16 ENVI On On On On Off On Off Off Off Off Off Off

BACnet IP/BACnet MSTP 1 Love Off Off Off Off On On Off Off Off Off Off Off

Metasys N2 1 Love On Off Off Off On On Off Off Off Off Off Off

Modbus TCP/Modbus RTU 1 Love Off On Off Off On On Off Off Off Off Off Off

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Appendix B.5. Address DIP Switch Settings

A7 A6 A5 A4 A3 A2 A1 A0 Address

Off Off Off Off Off Off Off Off 0

Off Off Off Off Off Off Off On 1

Off Off Off Off Off Off On Off 2

Off Off Off Off Off Off On On 3

Off Off Off Off Off On Off Off 4

Off Off Off Off Off On Off On 5

Off Off Off Off Off On On Off 6

Off Off Off Off Off On On On 7

Off Off Off Off On Off Off Off 8

Off Off Off Off On Off Off On 9

Off Off Off Off On Off On Off 10

Off Off Off Off On Off On On 11

Off Off Off Off On On Off Off 12

Off Off Off Off On On Off On 13

Off Off Off Off On On On Off 14

Off Off Off Off On On On On 15

Off Off Off On Off Off Off Off 16

Off Off Off On Off Off Off On 17

Off Off Off On Off Off On Off 18

Off Off Off On Off Off On On 19

Off Off Off On Off On Off Off 20

Off Off Off On Off On Off On 21

Off Off Off On Off On On Off 22

Off Off Off On Off On On On 23

Off Off Off On On Off Off Off 24

Off Off Off On On Off Off On 25

Off Off Off On On Off On Off 26

Off Off Off On On Off On On 27

Off Off Off On On On Off Off 28

Off Off Off On On On Off On 29

Off Off Off On On On On Off 30

Off Off Off On On On On On 31

Off Off On Off Off Off Off Off 32

Off Off On Off Off Off Off On 33

Off Off On Off Off Off On Off 34

Off Off On Off Off Off On On 35

Off Off On Off Off On Off Off 36

Off Off On Off Off On Off On 37

Off Off On Off Off On On Off 38

Off Off On Off Off On On On 39

Off Off On Off On Off Off Off 40

Off Off On Off On Off Off On 41

Off Off On Off On Off On Off 42

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A7 A6 A5 A4 A3 A2 A1 A0 Address

Off Off On Off On Off On On 43

Off Off On Off On On Off Off 44

Off Off On Off On On Off On 45

Off Off On Off On On On Off 46

Off Off On Off On On On On 47

Off Off On On Off Off Off Off 48

Off Off On On Off Off Off On 49

Off Off On On Off Off On Off 50

Off Off On On Off Off On On 51

Off Off On On Off On Off Off 52

Off Off On On Off On Off On 53

Off Off On On Off On On Off 54

Off Off On On Off On On On 55

Off Off On On On Off Off Off 56

Off Off On On On Off Off On 57

Off Off On On On Off On Off 58

Off Off On On On Off On On 59

Off Off On On On On Off Off 60

Off Off On On On On Off On 61

Off Off On On On On On Off 62

Off Off On On On On On On 63

Off On Off Off Off Off Off Off 64

Off On Off Off Off Off Off On 65

Off On Off Off Off Off On Off 66

Off On Off Off Off Off On On 67

Off On Off Off Off On Off Off 68

Off On Off Off Off On Off On 69

Off On Off Off Off On On Off 70

Off On Off Off Off On On On 71

Off On Off Off On Off Off Off 72

Off On Off Off On Off Off On 73

Off On Off Off On Off On Off 74

Off On Off Off On Off On On 75

Off On Off Off On On Off Off 76

Off On Off Off On On Off On 77

Off On Off Off On On On Off 78

Off On Off Off On On On On 79

Off On Off On Off Off Off Off 80

Off On Off On Off Off Off On 81

Off On Off On Off Off On Off 82

Off On Off On Off Off On On 83

Off On Off On Off On Off Off 84

Off On Off On Off On Off On 85

Off On Off On Off On On Off 86

Off On Off On Off On On On 87

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A7 A6 A5 A4 A3 A2 A1 A0 Address

Off On Off On On Off Off Off 88

Off On Off On On Off Off On 89

Off On Off On On Off On Off 90

Off On Off On On Off On On 91

Off On Off On On On Off Off 92

Off On Off On On On Off On 93

Off On Off On On On On Off 94

Off On Off On On On On On 95

Off On On Off Off Off Off Off 96

Off On On Off Off Off Off On 97

Off On On Off Off Off On Off 98

Off On On Off Off Off On On 99

Off On On Off Off On Off Off 100

Off On On Off Off On Off On 101

Off On On Off Off On On Off 102

Off On On Off Off On On On 103

Off On On Off On Off Off Off 104

Off On On Off On Off Off On 105

Off On On Off On Off On Off 106

Off On On Off On Off On On 107

Off On On Off On On Off Off 108

Off On On Off On On Off On 109

Off On On Off On On On Off 110

Off On On Off On On On On 111

Off On On On Off Off Off Off 112

Off On On On Off Off Off On 113

Off On On On Off Off On Off 114

Off On On On Off Off On On 115

Off On On On Off On Off Off 116

Off On On On Off On Off On 117

Off On On On Off On On Off 118

Off On On On Off On On On 119

Off On On On On Off Off Off 120

Off On On On On Off Off On 121

Off On On On On Off On Off 122

Off On On On On Off On On 123

Off On On On On On Off Off 124

Off On On On On On Off On 125

Off On On On On On On Off 126

Off On On On On On On On 127

On Off Off Off Off Off Off Off 128

On Off Off Off Off Off Off On 129

On Off Off Off Off Off On Off 130

On Off Off Off Off Off On On 131

On Off Off Off Off On Off Off 132

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A7 A6 A5 A4 A3 A2 A1 A0 Address

On Off Off Off Off On Off On 133

On Off Off Off Off On On Off 134

On Off Off Off Off On On On 135

On Off Off Off On Off Off Off 136

On Off Off Off On Off Off On 137

On Off Off Off On Off On Off 138

On Off Off Off On Off On On 139

On Off Off Off On On Off Off 140

On Off Off Off On On Off On 141

On Off Off Off On On On Off 142

On Off Off Off On On On On 143

On Off Off On Off Off Off Off 144

On Off Off On Off Off Off On 145

On Off Off On Off Off On Off 146

On Off Off On Off Off On On 147

On Off Off On Off On Off Off 148

On Off Off On Off On Off On 149

On Off Off On Off On On Off 150

On Off Off On Off On On On 151

On Off Off On On Off Off Off 152

On Off Off On On Off Off On 153

On Off Off On On Off On Off 154

On Off Off On On Off On On 155

On Off Off On On On Off Off 156

On Off Off On On On Off On 157

On Off Off On On On On Off 158

On Off Off On On On On On 159

On Off On Off Off Off Off Off 160

On Off On Off Off Off Off On 161

On Off On Off Off Off On Off 162

On Off On Off Off Off On On 163

On Off On Off Off On Off Off 164

On Off On Off Off On Off On 165

On Off On Off Off On On Off 166

On Off On Off Off On On On 167

On Off On Off On Off Off Off 168

On Off On Off On Off Off On 169

On Off On Off On Off On Off 170

On Off On Off On Off On On 171

On Off On Off On On Off Off 172

On Off On Off On On Off On 173

On Off On Off On On On Off 174

On Off On Off On On On On 175

On Off On On Off Off Off Off 176

On Off On On Off Off Off On 177

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A7 A6 A5 A4 A3 A2 A1 A0 Address

On Off On On Off Off On Off 178

On Off On On Off Off On On 179

On Off On On Off On Off Off 180

On Off On On Off On Off On 181

On Off On On Off On On Off 182

On Off On On Off On On On 183

On Off On On On Off Off Off 184

On Off On On On Off Off On 185

On Off On On On Off On Off 186

On Off On On On Off On On 187

On Off On On On On Off Off 188

On Off On On On On Off On 189

On Off On On On On On Off 190

On Off On On On On On On 191

On On Off Off Off Off Off Off 192

On On Off Off Off Off Off On 193

On On Off Off Off Off On Off 194

On On Off Off Off Off On On 195

On On Off Off Off On Off Off 196

On On Off Off Off On Off On 197

On On Off Off Off On On Off 198

On On Off Off Off On On On 199

On On Off Off On Off Off Off 200

On On Off Off On Off Off On 201

On On Off Off On Off On Off 202

On On Off Off On Off On On 203

On On Off Off On On Off Off 204

On On Off Off On On Off On 205

On On Off Off On On On Off 206

On On Off Off On On On On 207

On On Off On Off Off Off Off 208

On On Off On Off Off Off On 209

On On Off On Off Off On Off 210

On On Off On Off Off On On 211

On On Off On Off On Off Off 212

On On Off On Off On Off On 213

On On Off On Off On On Off 214

On On Off On Off On On On 215

On On Off On On Off Off Off 216

On On Off On On Off Off On 217

On On Off On On Off On Off 218

On On Off On On Off On On 219

On On Off On On On Off Off 220

On On Off On On On Off On 221

On On Off On On On On Off 222

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ProtoCessor 1991 Tarob Court Milpitas, California 95035 USA Web: www.protocessor.com Tel: (408) 964 4444 Fax: (408) 964 4425 Toll Free: (800) 317 8319 email: [email protected]

A7 A6 A5 A4 A3 A2 A1 A0 Address

On On Off On On On On On 223

On On On Off Off Off Off Off 224

On On On Off Off Off Off On 225

On On On Off Off Off On Off 226

On On On Off Off Off On On 227

On On On Off Off On Off Off 228

On On On Off Off On Off On 229

On On On Off Off On On Off 230

On On On Off Off On On On 231

On On On Off On Off Off Off 232

On On On Off On Off Off On 233

On On On Off On Off On Off 234

On On On Off On Off On On 235

On On On Off On On Off Off 236

On On On Off On On Off On 237

On On On Off On On On Off 238

On On On Off On On On On 239

On On On On Off Off Off Off 240

On On On On Off Off Off On 241

On On On On Off Off On Off 242

On On On On Off Off On On 243

On On On On Off On Off Off 244

On On On On Off On Off On 245

On On On On Off On On Off 246

On On On On Off On On On 247

On On On On On Off Off Off 248

On On On On On Off Off On 249

On On On On On Off On Off 250

On On On On On Off On On 251

On On On On On On Off Off 252

On On On On On On Off On 253

On On On On On On On Off 254

On On On On On On On On 255

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ProtoCessor 1991 Tarob Court Milpitas, California 95035 USA Web: www.protocessor.com Tel: (408) 964 4444 Fax: (408) 964 4425 Toll Free: (800) 317 8319 email: [email protected]

Appendix C. Reference

Appendix C.1. Specifications

ProtoNode RER ProtoNode LER

Electrical

Connections

One 6-pin Phoenix connector, one RS-485

+/- ground port, power +/- frame ground

port

One 3-pin RS-485 Phoenix connector, one

RS-485 +/- ground port

One Ethernet-10/100 Ethernet port

One 6-pin Phoenix connector, one RS-485

+/- ground port, power +/- frame ground

port

One Ethernet 10/100 BaseT port

One FTT-10 LonWorks port

Approvals:

Pending CE (EN55022;EN55024; EN60950), UL916, Pending FCC Class A Part 15, DNP3

Conformance Tested, OPC Self-tested for Compliance, RoHS Compliant, CSA 205 Approved

BTL Marked LonMark Certified

Power

Requirements Multi-mode power adapter: 9-30VDC or 12 - 24VAC

Physical

Dimensions 11.5 cm L x 8.3 cm W x 4.1 cm H (4.5 x 3.2 x 1.6 in.)

Weight: 0.2 kg (0.4 lbs)

Operating

Temperature: -40°C to 75°C (-40°F to167°F)

Surge Suppression EN61000-4-2 ESD EN61000-4-3 EMC EN61000-4-4 EFT

Humidity: 5 - 90% RH (non-condensing)

(Specifications subject to change without notice)

Appendix C.1.1. Compliance with UL Regulations

For UL compliance, the following instructions must be met when operating the ProtoNode.

The units shall be powered by listed LPS or Class 2 power supply suited to the expected operating

temperature range.

The interconnecting power connector and power cable shall:

Comply with local electrical code.

Be suited to the expected operating temperature range.

Meet the current and voltage rating for the ProtoNode/Net

Furthermore, the interconnecting power cable shall:

Be of length not exceeding 3.05m (118.3”)

Be constructed of materials rated VW-1 or FT-1 or better

If the unit is to be installed in an operating environment with a temperature above 65 °C, it should be

installed in a Restricted Access Area requiring a key or a special tool to gain access

This device must not be connected to a LAN segment with outdoor wiring.

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Appendix D. Limited 2 year Warranty

FieldServer Technologies warrants its products to be free from defects in workmanship or material

under normal use and service for two years after date of shipment. FieldServer Technologies will repair

or replace any equipment found to be defective during the warranty period. Final determination of the

nature and responsibility for defective or damaged equipment will be made by FieldServer Technologies

personnel.

All warranties hereunder are contingent upon proper use in the application for which the product was

intended and do not cover products which have been modified or repaired without FieldServer

Technologies approval or which have been subjected to accident, improper maintenance, installation or

application, or on which original identification marks have been removed or altered. This Limited

Warranty also will not apply to interconnecting cables or wires, consumables or to any damage resulting

from battery leakage.

In all cases FieldServer Technology’s responsibility and liability under this warranty shall be limited to

the cost of the equipment. The purchaser must obtain shipping instructions for the prepaid return of

any item under this warranty provision and compliance with such instruction shall be a condition of this

warranty.

Except for the express warranty stated above, FieldServer Technologies disclaims all warranties with

regard to the products sold hereunder including all implied warranties of merchantability and fitness

and the express warranties stated herein are in lieu of all obligations or liabilities on the part of

FieldServer Technologies for damages including, but not limited to, consequential damages arising out

of/or in connection with the use or performance of the product.