N30 Supervisory Controller Installation

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Technical Bulletin Issue Date July 25, 2002 N30 Supervisory Controller Installation N30 Supervisory Controller Installation...2 Introduction... 2 Key Concepts... 3 Installation Site Considerations... 3 N30 Port Connections... 5 Local Display Terminal (LDT)... 9 Light-Emitting Diodes (LEDs)... 12 Procedure Overview... 14 Detailed Procedures... 15 Installing or Replacing the MS-NET1300 Card... 15 Mounting the N30... 17 Configuring a VT100 Terminal for the N30... 18 Configuring a Printer for the N30... 19 Troubleshooting... 20 Product Code Numbers... 21 Technical Specifications... 22 2002, Johnson Controls, Inc. www.johnsoncontrols.com Code No. LIT-6891100 Software Release 5.1

2 N30 Supervisory Controller Installation Technical Bulletin N30 Supervisory Controller Installation Introduction This technical bulletin describes the installation of the N30 Supervisory Controller and provides information regarding the Local Display Terminal (LDT), an optional display device installed in the N30. This technical bulletin describes how to: install or replace the MS-NET1300 card mount the N30 configure a VT100 Terminal for the N30 configure a printer for the N30 For information on setting up an N30 site and using an N30, see the N30 Supervisory Controller Quick Start Technical Bulletin (LIT-6891200) and the N30 Supervisory Controller User s Manual.

N30 Supervisory Controller Installation Technical Bulletin 3 Key Concepts Installation Site Considerations Consider the following when selecting an installation site for the N30 Supervisory Controller. The N30: measures 168 x 236 x 64 mm (6.6 x 9.3 x 2.5 in.) requires an actual mounting area measuring approximately 244 x 236 x 64 mm (9.6 x 9.3 x 2.5 in) to allow sufficient space for cable connections weighs approximately 0.7 kg (1.5 lb) Figure 1 shows the N30 dimensions with wiring allowances Wiring Allowance 168 mm (6.6 in.) N30 244 mm (9.6 in.) 236 mm (9.3 in.) N30 Figure 1: N30 Supervisory Controller Dimensions You can mount the N30 in an EN-EWC25-0 enclosure. The EN-EWC25-0 is a dual-high unit with a power box and 50 VA transformer.

4 N30 Supervisory Controller Installation Technical Bulletin 1 2 UPM_N30 1. If the transformer has plastic end bells (as illustrated), it must be mounted at the highest hole in the enclosure to fit the N30 in the enclosure. A TORX R (T-20) screwdriver is required to move the transformer. 2. If you must mount the N30 at the bottom of the enclosure, you need only three screws to attach the N30 to the enclosure. The bottom right mounting hole on the N30 will not be over a hole in the enclosure. Figure 2: N30 and EN-EWC25-0 Enclosure Consider the following when selecting an installation site for the EN-EWC25-0 enclosure: the enclosure measures 406 x 406 x 190 mm (16 x 16 x 7.5 in.) wooden surfaces generally only require bolting the enclosure to the wall; drywall surfaces require anchors for the bolts the pull-out value of the screw holes in the backbone of the enclosure is 90.7 kg (200 lb) the weight resting on the bottom of the enclosure must not exceed 22.6 kg (50 lb) the load-bearing capacity of the wall must be able to support the full configuration weight

N30 Supervisory Controller Installation Technical Bulletin 5 N30 Port Connections The N30 Supervisory Controller has an N2 port, an Ethernet port, and three serial ports. All three serial ports support a printer. The N30 also supports simultaneous serial port connection of two VT100s. A dial-out connection can be made to a printer, pager, or e-mail message. Dial-in/dial-out connections can be made to/from an M-Series Workstation or a VT100. The N30 supports multiple dial-in and/or dial-out connections to M-Series Workstations. Mounting Feet (2 of 4) 24 VAC N2 Port Port 1 Port 2 Port 3 Ethernet Port N30_SIDE Figure 3: N30 Supervisory Controller IMPORTANT: For baud faster than 19,200 bits per second (bps), the serial cables must be shorter than 4 m (13 ft). Note: The Shield connection S on the N2 port of the N30 is not connected to any Ground connection. S is an open terminal that can be used as a splice connection. To ground the connection, see Figure 4. You must connect the Shield wire to ground at one point only, preferably at the N30 controller (see Figure 4). N2+ N2- REF S N2+ N2- REF S OR (No connection to Shield S at the N30's N2 port) (Connection to Shield S at the N30's N2 port) Ground Ground Cable from Device Wire Color N2+ Blue N2- White REF Red S Green Cable from Device S_Ground Figure 4: N2 Port - Grounding Shield Connection S

N30 6 N30 Supervisory Controller Installation Technical Bulletin Cabling Overview Figure 5 shows an overview of the cables needed to connect various devices to an N30, computer, VT100, printer, or modem. Personal Computer (PC) with M-Series Workstation Modem 25-Pin to 9-Pin Modem Cable N30 M-Series Workstation Modem 25-Pin to 9-Pin Modem Cable 9-Pin to 9-Pin Null Modem Cable 9-Pin to 25-Pin Null Modem Cable VT100 Serial Printer Modem OR 25-Pin to 25-Pin Modem Cable Serial Printer Cables.cdr Figure 5: Cabling Overview Figure 6, Figure 7, Figure 8, and Figure 9 describe the individual cable pinouts for each of the cables shown in Figure 5.

N30 Supervisory Controller Installation Technical Bulletin 7 PC Serial Port Cabling To connect the N30 to the serial port of a PC running VT100 emulation software, use a standard 9-pin female to 9-pin female, Data Terminal Equipment (DTE) to DTE null modem cable (Figure 6). N30 9-Pin Female PC Serial Port 9-Pin Female Shell Shell DCD 1 1 DCD RD 2 2 RD TD 3 3 TD DTR 4 4 DTR SG 5 5 SG DSR 6 6 DSR RTS 7 7 RTS CTS 8 8 CTS RI 9 9 PCSERIAL Figure 6: 9-Pin to 9-Pin Null Modem Cable Modem (Remote N30 or PC) Cabling To connect a modem to a remote N30 or PC, use a standard 9-pin female to 25-pin male, DTE to Data Communication Equipment (DCE) modem cable (Figure 7). N30 or PC 9-Pin Female Modem 25-Pin Male Shell Shell DCD RD TD DTR SG DSR RTS CTS RI 1 2 3 4 5 6 7 8 9 2 3 4 5 6 7 8 20 22 MODEM Figure 7: 9-Pin to 25-Pin Modem Cable

8 N30 Supervisory Controller Installation Technical Bulletin Serial Printer and VT100 Cabling To connect the N30 to a VT100 or serial printer, use a standard 9-pin female to 25-pin male, DTE to DTE null modem cable (Figure 8). N30 9-Pin Female VT100 or Serial Printer 25-Pin Male Shell Shell DCD 1 1 FG RD 2 2 TD TD 3 3 RD DTR 4 4 RTS SG 5 5 CTS DSR 6 6 DSR RTS 7 7 SG CTS 8 8 DCD NC 9 20 DTR VT100 Figure 8: 9-Pin to 25-Pin Null Modem Cable Modem (Remote VT100 or Printer) Cabling To connect a modem to a remote VT100 or serial printer, use a standard 25-pin male to 25-pin male, DTE to DCE modem cable (Figure 9). VT100 Terminal or IBM Proprinter III Modem 25-Pin Male 25-Pin Male IMPORTANT: The serial printer must be configured as an IBM Proprinter printer. 1 2 3 4 5 6 7 8 18 20 Shell 2 3 4 5 6 7 8 18 20 printmodem Figure 9: 25-Pin to 25-Pin Modem Cable

N30 Supervisory Controller Installation Technical Bulletin 9 Local Display Terminal (LDT) The LDT is an optional display device installed in the N30 Supervisory Controller. The LDT provides alarm notification and navigation and access to data in the controller. The device also allows display and modification of operating conditions, such as temperature, heating and cooling setpoints, and fan override. The Liquid Crystal Display (LCD) of the LDT displays up to four lines of twenty alphanumeric characters. The keypad contains navigational and functional pushbuttons. See Figure 10 and Table 1. Order the LDT separately for installation into existing N30s or as part of a preassembled N30/LDT package. See Product Code Numbers in this document. For troubleshooting the LDT, refer to Table 7 in this document. For information on how to install and operate the LDT, see the Local Display Terminal (LDT) Installation Instructions (LIT-12023). To avoid possible equipment damage due to Electrostatic Discharge (ESD), do not use the LDT as a handheld or portable device. esc 1 5 9 3 esc 7 4 8 3 4 2 6 Figure 10: Local Display Terminal LDTn

10 N30 Supervisory Controller Installation Technical Bulletin Table 1: LDT Display Callout Feature Description 1 Liquid Crystal Display (LCD) with Backlight 2 Alarm Light-Emitting Diode (LED) Displays the menus and parameters associated with objects. The backlight turns on at startup and remains on until it times out (10 minutes after a key press or startup). Indicates the presence of an alarm when the light is on. 3 Up/Down Arrows Navigation Mode: Scrolls upward/downward through menu and submenu items. Edit Mode: Increases/decreases the parameter value shown. 4 Right/Left Arrows Navigation Mode: Scrolls right/left through menu and submenu items. Edit Mode: Positions the cursor to the next editable field to the right/left within the displayed line. 5 Escape (Esc) Navigation Mode: Returns to the previous menu. Edit Mode: Exits Edit Mode. Note: If in Password mode and at the Main Menu, Esc logs the user out of Password mode. 6 Enter Navigation Mode (Main Menu): Selects the submenu in which the cursor is positioned and displays that submenu. Navigation Mode (Submenus): Selects the submenu item and switches to Edit Mode. Edit Mode: Writes the changed parameter value to the controller memory. 7 Get Alarms Displays the highest priority alarm if the Alarm LED is on. 8 Clear Alarms Acknowledges the displayed alarm. 9 DIP Switches Sets the N2 Address. Passwords The LDT prompts the user to enter a password before entering Edit Mode. The password remains in effect until the LCD times out 10 minutes after the last key press. Passwords contain four numeric characters. For more information, refer to Project Builder User s Guide.

N30 Supervisory Controller Installation Technical Bulletin 11 DIP Switches Two DIP switches configure the N2 Address of the LDT. The N2 Address ranges from 32 to 35 using a base address of 32 and two DIP switches (Switch 1 and Switch 2) to increase the address. Although four DIP switches exist on the LDT, Switch 3 and Switch 4 are not accessible and are set to factory defaults that should not be changed. The N2 Address equals the sum of the base address and each DIP switch set to the ON position. For example, Figure 11 shows the first DIP switch (1) set to ON and the second switch (2) set to OFF; the N2 Address for that controller is 33 (32 + 1 = 33). OFF ON 1 2 3 4 DIP_switches Figure 11: LDT DIP Switches Initialization Once power is applied to the N30 controller, the LDT automatically begins initialization. An initialization message briefly appears when complete. See Figure 12 and Table 2. LCD Display Version AO8 Address 32 Status Ok Startup Ok Ok Ok ini_msg Table 2: LDT Initialization Message Message Description Version Version of firmware Figure 12: LDT Initialization Message Address N2 Address 32, 33, 34, or 35 Status Startup Ok (normal startup) or No Comm (no communication between the controller and the LDT) Ok (normal startup) or RAM (internal RAM test failed on startup) Ok (normal startup) or XRAM (external RAM test failed on startup) Ok (normal startup) or ROM (calculated ROM checksum does not match stored checksum)

12 N30 Supervisory Controller Installation Technical Bulletin Light-Emitting Diodes (LEDs) Each port on the N30 has its own LED to indicate the status of operation (Figure 13). N2 End-Of-Line (EOL) Switch 24 VAC Port N2 Port LED (green) N2 Port Fault LED (red) Port 1 LED (green) Port 1 intel Battery Port 2 LED (green) Port 2 Port 3 LED (green) Standoff (1 of 4) Port 3 Ethernet Port LED (green) Ethernet Port Receive LED (green) Transmit LED (green) Collision LED (red) Ethernet Communications Card MS-NET1300 (10Base-T) n30cirbd Figure 13: N30 Port and LED Locations During startup, the N30 automatically runs an LED test to verify the operational status of the LEDs. Immediately after a reset, the LED lighting sequence occurs as follows: all LEDs turn on all LEDs shut off each LED turns on for one-half second, in sequence all LEDs shut off, or any startup errors display Note: If startup errors display, the red fault LED lights, along with an associated binary combination of the five port LEDs. See Table 3. the operational status of the N30 appears (active ports are indicated by flashing port LEDs) or the current diagnostic test displays (if in diagnostic test mode) Port failures are indicated during startup by the red fault LED and the LED assigned to the particular failed port. For example, a failure on Port 1 is indicated when the red fault LED and the Port 1 LED are illuminated.

N30 Supervisory Controller Installation Technical Bulletin 13 Table 3: LED Displays for Startup Failures LED Battery Flash CRC RAM Hi (All) Byte During startup, the fault LED lights steadily to indicate a non-catastrophic failure. A non-catastrophic failure displays for 3 seconds, and then the startup process is resumed. The fault LED flashes to indicate a catastrophic error (Static Random Access Memory [SRAM] failure) or a Flash Cyclic Redundancy Check (CRC) failure. During operation, the N30 performs a battery test at midnight and on a manual command to test the battery. If the battery is bad, the red fault LED flashes. The fault LED continues to flash until the battery is replaced and another battery test is initiated or power is cycled to the N30. The N30 uses 3-volt polycarbonmonofluoride lithium batteries. These batteries are used for extended reliability and safety. The N30 battery life lasts approximately 3 years when the N30 is not powered. It is unlikely that the battery will need to be replaced. Under normal circumstances when downloading code into the N30, the red fault LED lights steadily indicating that the N30 is running in Boot code. Table 3 describes the failures indicated by the LEDs during startup. Startup Failures RAM Lo N2 Byte Port N2 Port On On Port 1 Port 2 Port 3 Ethernet Port Fault On Flash Flash Flash On On On On On Port 1 On On On Port 2 On On On On Port 3 On On Ethernet On Figure 13 shows the location of the ports and their corresponding LEDs. Note: The N2 End-of-Line (EOL) Switch (SW1) is a two-position slide switch provided to switch in a 220-ohm EOL resistor and 1200-ohm bias resistor to terminate the N2 Bus. The EOL resistors are switched in when both switches are in the On position. This is the default position. To remove the EOL terminations, move both switches to the opposite side.

14 N30 Supervisory Controller Installation Technical Bulletin Procedure Overview Table 4: N30 Supervisory Controller Installation To Do This Follow These Steps: Install or Replace the MS-NET1300 Card (MS-N30101x-x controllers ship without the MS-NET1300 card) Mount the N30 Wall Mount DIN Rail Universal Packaging Module (UPM) Enclosure Configure a VT100 Terminal for the N30 Configure a Printer for the N30 Detach the N30 from its mounting location. Remove the N30 cover. If necessary, pull out the existing card after releasing the tabs on the standoffs. Push the MS-NET1300 card onto the standoffs until it clicks into place. Replace the cover. Mount the controller. Position the N30 over the proposed mounting space, and mark the locations of the four mounting feet (at the corners of the N30). Remove the N30 from the wall, and drill a hole in the wall at each of the four mounting feet locations. Align the four mounting feet of the N30 with the holes in the wall. Insert screws at each of the four mounting feet. Connect 24 VAC power and cables to the N30. Snap the N30 onto the DIN rail. Connect 24 VAC power and cables to the N30. Mount the enclosure. Align the four mounting feet at the corners of the N30 with the holes in the backbone of the enclosure. Insert screws at each of the four mounting feet. Connect 24 VAC power and cables to the N30. Same baud rate as N30, 8, N, 1, Hardware flow control. Set terminal emulation to Auto Detect, especially if using special characters from Western European languages in the N30 database. Same baud rate as N30, 8, N, 1, Hardware flow control, Normal operation

N30 Supervisory Controller Installation Technical Bulletin 15 Detailed Procedures Installing or Replacing the MS-NET1300 Card Note: MS-N30131x-x controllers come with the MS-NET1300 card factory installed. Use these steps only if you need to replace the card or if you want to install the card in an MS-N30101x-x controller that does not have the card factory installed. To install or replace the MS-NET1300 card: 1. Remove the N30 from the wall, DIN rail, or enclosure. 2. Turn over the N30 so that the back faces you and locate the screwdriver slots (Figure 14). insert screwdriver here (see enlargement for detail) tab from cover screwdriver slot back or here Figure 14: Back of the N30

16 N30 Supervisory Controller Installation Technical Bulletin 3. Hold onto the N30 base and insert a flat-head screwdriver into each of the four slots at either end of the controller in turn. Release the cover tab by twisting the screwdriver blade, and carefully prying the cover off the base (Figure 15). n30hand Figure 15: Pry Off the Cover 4. Remove the existing card (if present) by pressing in the tabs of the standoffs so that they pass through the holes in the card, and pulling the card out of the controller circuit board.

N30 Supervisory Controller Installation Technical Bulletin 17 5. Place the new card over the four standoffs (Figure 16). Make sure the card mounting holes center over the standoffs and the integrated circuitry faces down. Press down firmly on the card to snap it into place. MS-NET1300 Card Mounting Standoffs cardin Figure 16: N30 Circuit Board 6. Press the cover back onto the N30 and mount the controller following the instructions in Mounting the N30. Mounting the N30 There are several options when mounting the N30. Note: If you are installing or replacing an MS-NET1300 card, complete that task before mounting the N30. See Installing or Replacing the MS-NET1300 Card for details. Wall Mount To mount the N30 by itself on a wall: 1. Position the N30 over the proposed mounting space, and mark the locations of the four mounting feet (at the corners of the N30). Note: Allow enough space to make cable connections to the N30. The proposed mounting space should be at least 244 x 236 x 64 mm (9.6 x 9.3 x 2.5 in.). 2. Remove the N30 from the wall, and drill a hole in the wall at each of the four mounting feet locations. 3. Align the four mounting feet of the N30 with the holes in the wall. 4. Insert screws at each of the four mounting feet. 5. Connect 24 VAC power and cables to the N30.

18 N30 Supervisory Controller Installation Technical Bulletin DIN Rail To mount the N30 on a DIN rail: 1. Snap the N30 onto the DIN rail. 2. Connect 24 VAC power and cables to the N30. UPM Enclosure To mount the N30 in an EN-EWC25-0 enclosure: 1. Mount the EN-EWC25-0 enclosure according to the procedures described in the Universal Packaging Module Technical Bulletin (LIT-6363070). 2. Align the four mounting feet (at the corners of the N30) with the holes in the backbone of the enclosure. Note: Allow enough space for making cable connections to the N30. The proposed mounting space should be at least 244 x 236 x 64 mm (9.6 x 9.3 x 2.5 in.). 3. Insert screws at each of the four mounting feet. 4. Connect 24 VAC power and cables to the N30. Note: The hot and common lines can be connected to either terminal of the 24 VAC. Maintain polarity on subsequent devices. Configuring a VT100 Terminal for the N30 To configure a VT100 Terminal for the N30, use the settings in Table 5. Table 5: VT100 Terminal Configurations Setting Configuration Data Bits 8 Parity Stop Bits 1 Baud Rate Flow Control Note: No Same baud rate as the N30 (9600 default) Hardware flow control If using a VT100 Terminal emulator, set the emulation setting to Auto Detect. Connect the VT100 Terminal to Port 1.

N30 Supervisory Controller Installation Technical Bulletin 19 Configuring a Printer for the N30 To configure a printer for the N30, set the mode and DIP switches to the configurations shown in Table 6. Table 6: Printer Configurations Setting Configuration Card Serial Interface Mode Polarity Baud Rate Data Bits 8 Parity Stop Bits 1 Protocol Operation RS-232 No reverse polarity (typically) Set to the rate established in N30 No Hardware flow control Normal

20 N30 Supervisory Controller Installation Technical Bulletin Troubleshooting Refer to Table 7 for troubleshooting the LDT. Table 7: LDT Troubleshooting Problem The LDT does not display values for the parameters. The LDT s initialization message remains on the LCD Display with a status of No Comm. The LDT s Alarm menu does not display when pressing the Get Alarms key. The Initialization Message Startup attribute shows RAM, XRAM, or ROM instead of Ok. Solution Check that the LDT communication cable is installed properly. Refer to the Local Display Terminal (LDT) Installation Instructions (LIT-12023). Configure the Display object using Project Builder. Refer to Project Builder User s Guide. Check that the LDT communication cable is installed properly. Refer to the Local Display Terminal (LDT) Installation Instructions (LIT-12023). Configure the Display object using Project Builder. Refer to Project Builder User s Guide. Check that an alarm menu is defined in the Display object. Check that the Alarm menu is the last menu in the hierarchy of the Display object. Replace the LDT device.

N30 Supervisory Controller Installation Technical Bulletin 21 Product Code Numbers Refer to Table 8 for Metasys Network N30 product code numbers. Table 8: Product Code Numbers Product Code Number Description MS-N301010-1 Supervisory controller, base unit with N2 field bus MS-N301012-1 MS-N301310-1 MS-N301312-1 MS-NET1300-0 MS-N301010-701 MS-N301012-701 MS-N301310-701 MS-N301312-701 MS-LDT1102-0 MW-MTOOL-0 MW-MTOOL-6 MW-MTCBT-0 Supervisory controller, base unit with N2 field bus and factory-installed Local Display Terminal (LDT) Supervisory controller, base unit with N2 field bus and Ethernet peer bus Supervisory controller, base unit with N2 field bus, Ethernet peer bus, and factory-installed LDT Ethernet communication card for N30/N31 unit Repair unit for supervisory controller, base unit with N2 field bus Repair unit for supervisory controller, base unit with N2 field bus and LDT Repair unit for supervisory controller, base unit with N2 field bus and Ethernet peer bus Repair unit for supervisory controller, base unit with N2 field bus, Ethernet peer bus, and LDT LDT Panel Kit for N30 (cable included) Programming tool set for N30 and related Application Specific Controllers (ASCs) (replaces Configuration Tools). Includes System Tools and Configuration Tools software and M-Tool tutorial. Upgrade to Programming tool set for N30 and related ASCs (replaces Configuration Tools). Includes System Tools and Configuration Tools software and M-Tool tutorial. M-Tool tutorial package

22 N30 Supervisory Controller Installation Technical Bulletin Technical Specifications Feature Power Power Consumption Ambient Operating Temperature Ambient Operating Conditions Ambient Storage Temperature Ambient Storage Conditions Internal Battery Serial Interfaces Processor Memory Display (LDT) Keypad (LDT) Dimensions (L x W x H) Shipping Weight Agency Listings Specification Nominal 24 VAC ±10% at 50/60 Hz 5 VA maximum 0 to 50 C (32 to 122 F) 10 to 90% RH 30 C (86 F) maximum dew point -30 to 70 C (-22 to 158 F) 5 to 90% RH 30 C (86 F) maximum dew point 3 V polycarbonmonofluoride lithium battery; Panasonic BR2325 or equivalent One optically isolated RS-485 interface for N2 connection; 9600 baud pluggable, three-position connector Three RS-232-C Serial ports (9600 19.2 K or 57.6 K) One Ethernet connection (RJ45) Intel 386 @ 16 MHz 2 MB FLASH; 1 MB SRAM 4 x 20 character alphanumeric display module with LED backlight Membrane keypad with navigational and functional buttons and red LED alarm indicator N30 = 168 x 236 x 64 mm (6.6 x 9.3 x 2.5 in.) Area required for mounting the N30 is approximately 244 x 236 x 64 mm (9.6 x 9.3 x 2.5 in.) LDT (optional) = 108 mm (4.25 in.) x 108 mm (4.25 in.) x 27 mm (1.07 in.) N30 = Approximately 0.68 kg (1.5 lb) N30 with LDT = Approximately 0.87 kg (1.93 lb) LDT (cable included) = Approximately 0.19 kg (0.43 lb) UL Listed, CSA Certified, CE Mark, and C-Tick Directive UL 916, CSA C222.2 No. 205, CFR47 FCC Part 15 Class A, CE Directive 89/336/EEC (EN50081/1, EN50082/1) The performance specifications are nominal and conform to acceptable industry standards. For application at conditions beyond these specifications, consult the local Johnson Controls office. Johnson Controls, Inc. shall not be liable for damages resulting from misapplication or misuse of its products. Controls Group 507 E. Michigan Street P.O. Box 423 Milwaukee, WI 53201 www.johnsoncontrols.com Published in U.S.A.