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. MicroLogix 1100 Programmable Controllers Bulletin 1763 Controllers and 1762 Expansion I/O User Manual. BURN HAZARD alert people that surfaces may reach dangerous temperatures.

Rockwell Automation, DeviceNet, ModBus, Allen-Bradley, SLC 5/02, SLC 5/03, PLC-5, MicroLogix, SLC 500, RSLogix, RSLinx, and RSLogix 500 are trademarks of Rockwell Automation, Inc. Trademarks not belonging to Rockwell Automation are property of their respective companies. Summary of Changes To help you find new and updated information in this release of the manual, we have included change bars as shown to the right of this paragraph. The table below lists the sections that document new features and additional or updated information on existing features.

Summary of Changes Publication 1763-UM001E-EN-P - June 2015. Component Descriptions.12 MicroLogix 1100 Memory Module and Built-in Real-Time Clock 12 1762 Expansion I/O. Table of Contents DIN Rail Mounting.35 Panel Mounting. Table of Contents Connecting the Communication Cable to the DH-485 Connector. Grounding and Terminating the DH-485 Network.

87 Connecting the AIC+.89 Cable Selection Guide. Analog Modules.171 Appendix B MicroLogix 1100 Replacement Kits.179 Replacement Parts Lithium Battery (1763-BA). Table of Contents Transportation.181 Disposal. MicroLogix 1100 Controllers and Ethernet Communication.213 Connecting to Networks via MicroLogix 1100 Performance Considerations.214 Ethernet Interface MicroLogix 1100 and PC Connections to the Ethernet Network. If you do not, obtain the proper training before using this product.

This manual is a reference guide for MicroLogix 1100 controllers and Purpose of this Manual expansion I/O. It describes the procedures you use to install, wire, and troubleshoot your controller. Information on the MicroLogix 1100 Controllers instruction set. Set Reference Manual, publication 1763-RM001 MicroLogix 1100 Programmable Controllers Installation Information on mounting and wiring the MicroLogix 1100 Controllers, including Instructions, publication 1763-IN001 a mounting template for easy installation. Advanced Interface Converter (AIC+) User Manual, A description on how to install and connect an AIC+. Chapter Hardware Overview The Bulletin 1763, MicroLogix 1100 programmable controller contains a Hardware Features power supply, input and output circuits, a processor, an isolated combination RS-232/485 communication port, and an Ethernet port.

Each controller supports 18 I/O points (10 digital inputs, 2 analog inputs, and 6 discrete outputs). The 4 high-speed inputs (inputs 0 through 3) can be used individually for pulse catch/latching inputs or combined as a high speed counter. Refer to Digital Input Specifications on page 155 and the MicroLogix 1100 Instruction Set Reference Manual, publication 1763-RM001, for more information. Hardware Overview 1763-MM1 Memory Module 1762 Expansion I/O 1762 expansion I/O can be connected to the MicroLogix 1100 controller, as shown below.

A maximum of four I/O modules, in any combination, can be connected to a controller. See Appendix G to determine how much heat a certain combination generates. 1762-IR4 4-Channel RTD/Resistance Input Module 1762-IT4 4-Channel Thermocouple/mV Input Module Use only the following communication cables with the MicroLogix 1100 Communication Cables controllers. These cables are required for Class I Div. 2 applications. 1761-CBL-AM00 Series C or later.

1761-CBL-AP00 Series C or later. Hardware Overview UNSUPPORTED CONNECTION ATTENTION Do not connect a MicroLogix 1100 controller to another MicroLogix family controller such as MicroLogix 1000, MicroLogix 1200, MicroLogix 1500, or the network port of a 1747-DPS1 Port Splitter using a 1761- CBL-AM00 (8-pin mini-DIN to 8-pin mini-DIN) cable or equivalent. Communication Options isolated combination RS-232/485 communication port (Channel 0) and an Ethernet port (Channel 1). The isolated Channel 0 port on the MicroLogix 1100 can be connected to the following:. operator interfaces, personal computers, etc. Using DF1 Full Duplex point-to-point.

Hardware Overview The controller cannot be used for CIP implicit messaging (real-time I/O messaging). The controller also includes an embedded web server which allows viewing of not only module information, TCP/IP configuration, and diagnostic information, but also includes the data table memory map and data table monitor screen using a standard web browser. Hardware Overview Notes: Publication 1763-UM001E-EN-P - June 2015.

Chapter Installing Your Controller This chapter shows you how to install your controller. The only tools you require are a flat or Phillips head screwdriver and drill. Topics include:. agency certifications. compliance to European Union Directives. installation considerations.

Part 2 - Equipment Requirements and Tests. For specific information required by EN 61131-2, see the appropriate sections in this publication, as well as the following Allen-Bradley publications:. Industrial Automation Wiring and Grounding Guidelines for Noise Immunity, publication 1770-4.1. Installing Your Controller Electrostatic discharge can damage semiconductor devices ATTENTION inside the controller.

Do not touch the connector pins or other sensitive areas. Vertical mounting of the controller is not supported due to ATTENTION heat build-up considerations. Be careful of metal chips when drilling mounting holes for ATTENTION your controller or other equipment within the enclosure or panel.

Installing Your Controller EXPLOSION HAZARD WARNING. Substitution of components may impair suitability for Class I, Division 2.

Do not replace components or disconnect equipment unless power has been switched off. Do not connect or disconnect components unless power has been switched off. Installing Your Controller Disconnecting Main Power Explosion Hazard WARNING Do not replace components, connect equipment, or disconnect equipment unless power has been switched off.

The main power disconnect switch should be located where operators and maintenance personnel have quick and easy access to it. In addition to disconnecting electrical power, all other sources of power (pneumatic and hydraulic) should be de-energized before working on a machine or process controlled by a controller. Power Supply Inrush During power-up, the MicroLogix 1100 power supply allows a brief inrush current to charge internal capacitors.

Many power lines and control transformers can supply inrush current for a brief time. If the power source cannot supply this inrush current, the source voltage may sag momentarily.

Installing Your Controller Loss of Power Source The power supply is designed to withstand brief power losses without affecting the operation of the system. The time the system is operational during power loss is called program scan hold-up time after loss of power.

The duration of the power supply hold-up time depends on the type and state of the I/O, but is typically between 10 milliseconds and 3 seconds. Installing Your Controller Do not bring in unfiltered outside air. Place the controller in an enclosure to protect it from a corrosive atmosphere. Harmful contaminants or dirt could cause improper operation or damage to components.

In extreme cases, you may need to use air conditioning to protect against heat build-up within the enclosure. Installing Your Controller The master control relay is not a substitute for a disconnect to the controller. It is intended for any situation where the operator must quickly de-energize I/O devices only.

When inspecting or installing terminal connections, replacing output fuses, or working on equipment within the enclosure, use the disconnect to shut off power to the rest of the system. Installing Your Controller Schematic (Using IEC Symbols) 230V AC Disconnect Fuse 230V AC Circuits Isolation Operation of either of these contacts will Transformer remove power from the external I/O Master Control Relay (MCR) circuits, stopping machine motion. 700-PK400A1 or 230V AC Emergency-Stop Suppressor. Installing Your Controller Schematic (Using ANSI/CSA Symbols) 230V AC Disconnect Fuse 230V AC Output Circuits Isolation Operation of either of these contacts will Transformer remove power from the external I/O Master Control Relay (MCR) circuits, stopping machine motion. 115V AC or Cat. Installing Your Controller 1. Remove the memory module port cover.

Installing a Memory Module 2. Align the connector on the memory module with the connector pins on the controller. Firmly seat the memory module into the controller. Publication 1763-UM001E-EN-P - June 2015. Installing Your Controller The MicroLogix 1100 controller is equipped with a replaceable battery. The Using the Battery Battery Low indicator on the LCD display of the controller shows the status of the replaceable battery.

When the battery is low, the indicator is set (displayed as a solid rectangle). Installing Your Controller Connecting the Battery Wire Connector Follow the procedure below to connect the battery wire connector to the battery connector. Insert the replaceable battery wire connector into the battery connector. Secure the battery connector wires along the wire guide as shown below. Replaceable Battery Pocket Replaceable Battery Wire Guide. Installing Your Controller Controller Mounting Dimensions 1763-L16AWA, 1763-L16BWA, 1763-L16BBB Controller Dimensions Dimension 1763-L16AWA 1763-L16BWA 1763-L16BBB 1763-L16DWD 90 mm (3.5 in.) 110 mm (4.33 in.) 87 mm (3.43 in.) The controller mounts horizontally, with the expansion I/O extending to the Controller and Expansion right of the controller.

Installing Your Controller MicroLogix 1100 controllers are suitable for use in an industrial environment Mounting the Controller when installed in accordance with these instructions. Specifically, this equipment is intended for use in clean, dry environments (Pollution degree ) and to circuits not exceeding Over Voltage Category II (IEC 60664-1). Installing Your Controller DIN Rail Mounting The maximum extension of the latch is 14 mm (0.55 in.) in the open position. A flat-blade screwdriver is required for removal of the controller. The controller can be mounted to EN50022-35x7.5 or EN50022-35x15 DIN rails. DIN rail mounting dimensions are shown below.

Mount to panel using #8 or M4 screws. To install your controller using mounting screws: 1. Remove the mounting template from inside the back cover of the MicroLogix 1100 Programmable Controllers Installation Instructions, publication 1763-IN001.

Secure the template to the mounting surface. (Make sure your controller is spaced properly. Installing Your Controller 1762 Expansion I/O Dimensions Dimension Expansion I/O Module 90 mm (3.5 in.) 40 mm (1.57 in.) 87 mm (3.43 in.) Mounting 1762 Expansion During panel or DIN rail mounting of all devices, be sure ATTENTION that all debris (metal chips, wire stands, etc.) is kept from falling into the module. Installing Your Controller Use DIN rail end anchors (Allen-Bradley part number 1492-EA35 or 1492-EAH35) for vibration or shock environments. The following illustration shows the location of the end anchors. End Anchor End Anchor 1762 expansion I/O must be mounted horizontally as illustrated. Installing Your Controller The expansion I/O module is attached to the controller or another I/O Connecting Expansion I/O module by means of a flat ribbon cable after mounting, as shown below.

Use the pull loop on the connector to disconnect modules. Do not pull on the ribbon cable. Installing Your Controller Notes: Publication 1763-UM001E-EN-P - June 2015. Chapter Wiring Your Controller This chapter describes how to wire your controller and expansion I/O. Topics include:. wire requirements. using surge suppressors.

grounding the controller. wiring diagrams.

sinking and sourcing wiring diagrams. controller I/O wiring. Wiring torque = 0.56 Nm (5.0 in-lb) rated Wiring the Terminal Block The MicroLogix 1100 controllers have screw-cage clamps on the input and output terminal blocks. With screw-cage clamp terminal blocks, there is no need to attach additional hardware such as a spade lug to the wire, or use a finger-safe cover. Wiring Your Controller Screw-cage clamp terminal block Because of the potentially high current surges that occur when switching Using Surge Suppressors inductive load devices, such as motor starters and solenoids, the use of some type of surge suppression to protect and extend the operating life of the controllers output contacts is required. Suitable surge suppression methods for inductive AC load devices include a varistor, an RC network, or an Allen-Bradley surge suppressor, all shown below.

These components must be appropriately rated to suppress the switching transient characteristic of the particular inductive device. See the table on 45 for recommended suppressors. Wiring Your Controller Recommended Surge Suppressors Use the Allen-Bradley surge suppressors shown in the following table for use with relays, contactors, and starters. Recommended Surge Suppressors Device Coil Voltage Suppressor Catalog Number Bulletin 509 Motor Starter 120V AC 599-K04 Bulletin 509 Motor Starter. Wiring Your Controller In solid-state control systems, grounding and wire routing helps limit the Grounding the Controller effects of noise due to electromagnetic interference (EMI).

Run the ground connection from the ground screw of the controller to the ground bus prior to connecting any devices. Wiring Your Controller The following illustrations show the wiring diagrams for the MicroLogix 1100 Wiring Diagrams controllers. Controllers with DC inputs can be wired as either sinking or sourcing inputs. (Sinking and sourcing does not apply to AC inputs.) Refer to Sinking and Sourcing Wiring Diagrams on page 3-50.

Wiring Your Controller 1763-L16BWA Group 0 Group 1 Group 2 DC OUT IV1(+) IV2(+) Input Terminal Block Output Terminal Block L2/N 100-240 VAC USED USED The 24V DC sensor supply of the 1763-L16BWA should ATTENTION not be used to power output circuits. It should only be used to power input devices (e.g. Wiring Your Controller Terminal Groupings Input Terminal Grouping Controller Inputs Input Group Common Terminal Input Terminal Group 0 AC COM 0 I/0 through I/3 1763-L16AWA Group 1 AC COM 1 I/4 through I/9 Group 2 IA COM IV1(+) and IV2(+) Group 0 DC COM 0 I/0 through I/3.

Micrologix 1200 Serial Cable

Wiring Your Controller Any of the MicroLogix 1100 DC embedded input groups can be configured as Sinking and Sourcing sinking or sourcing depending on how the DC COM is wired on the group. Wiring Diagrams Refer to pages 51 through 51 for sinking and sourcing wiring diagrams. Wiring Your Controller 1763-L16BWA Sinking Input Wiring Diagram +DCa +DCb 24V DC Sensor Power -DCa -DCb DC OUT + 24V IV1(+) IV2(+) 1763-L16BWA Sourcing Input Wiring Diagram -DCa -DCb 24V DC Sensor Power +DCa +DCb DC OUT + 24V IV1(+) IV2(+) 1763-L16BBB and 1763-L16DWD Sinking Input Wiring Diagram +DCa. Wiring Your Controller 1763-L16AWA and 1763-L16BWA Output Wiring Diagram +DCa -DCa L2/N 100-240 VAC USED USED 1763-L16BBB Output Wiring Diagram -DCc +DCa -DCa +DCb -DCb +DCc + 24V - DC IN USED USED USED 24V+ 24V- USED 1763-L16DWD Output Wiring Diagram +DCa -DCa 12/24V. To help reduce the effects of environmental noise, install the MicroLogix 1100 system in a properly rated (for example, NEMA) enclosure. Make sure that the MicroLogix 1100 system is properly grounded. Several specific steps can be taken to help reduce the effects of environmental noise on analog signals:.

install the MicroLogix 1100 system in a properly rated (i.e., NEMA) enclosure. Make sure that the MicroLogix 1100 system is properly grounded. Wiring Your Controller Grounding Your Analog Cable Use shielded communication cable (Belden #8761). The Belden cable has two signal wires (black and clear), one drain wire, and a foil shield.

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The drain wire and foil shield must be grounded at one end of the cable. Foil shield Black wire Insulation. Wiring Your Controller Expansion I/O Wiring Digital Wiring Diagrams The following illustrations show the digital expansion I/O wiring diagrams.

1762-IA8 Wiring Diagram IN 0 IN 1 IN 2 IN 3 100/120V ac IN 4 IN 5 IN 6 IN 7 Common connected internally. Wiring Your Controller 1762-IQ16 Wiring Diagram +DC (Sinking) -DC (Sourcing) IN 0 IN 1 IN 2 IN 3 24V dc IN 4 IN 5 IN 6 IN 7 -DC (Sinking) COM 0 +DC (Sourcing) +DC (Sinking) -DC (Sourcing) IN 8 IN 9 IN 10 IN 11.

Wiring Your Controller 1762-IQ32T Wiring Diagram -OA8 Wiring Diagram OUT 0 OUT 1 OUT 2 OUT 3 OUT 4 OUT 5 OUT 6 OUT 7 Publication 1763-UM001E-EN-P - June 2015. Wiring Your Controller 1762-OB8 Wiring Diagram +VDC OUT 0 OUT 1 OUT 2 OUT 3 OUT 4 OUT 5 24V dc (source) OUT 6 OUT 7 DC COM 1762-OB16 Wiring Diagram VDC+ OUT 0 OUT 1 OUT 2 OUT 3 OUT 4 OUT 5 OUT 6. Wiring Your Controller 1762-OB32T Wiring Diagram -OV32T Wiring Diagram 44915 Publication 1763-UM001E-EN-P - June 2015. Wiring Your Controller 1762-OW8 Wiring Diagram L1 VAC1 + VAC-VDC 1 OUT 0 L2 DC1 COM OUT 1 OUT 2 OUT3 L1 VAC2 + VAC-VDC2 OUT 4 L2 DC2 COM OUT 5 OUT 6 OUT 7 1762-OW16 Wiring Diagram VAC-VDC OUT 0 OUT 1 OUT 2.

Wiring Your Controller 1762-OX6I Wiring Diagram L1-0 L1 OR +DC OUT0 N.C. L2 OR -DC OUT0 N.O.

L1 OR +DC L1-1 OUT1 N.C. L2 OR -DC L1-2 L1 OR +DC OUT2 N.C. L2 OR -DC OUT2 N.O. L1-3 L1 OR +DC OUT3 N.C. Wiring Your Controller 1762-IQ8OW6 Wiring Diagram +DC (Sinking) -DC (Sourcing) IN 0 IN 1 IN 2 IN 3 -DC (Sinking) +DC (Sourcing) COM 0 +DC (Sinking) IN 4 -DC (Sourcing) IN 5 IN 6 IN 7 -DC (Sinking) COM 1 +DC (Sourcing) Connected Internally L1 or +DC.

Select the input type, current or voltage, using the switches located on the module’s circuit board and the input type/range selection bits in the Configuration Data File. Refer to MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. You can access the switches through the ventilation slots on the top of the module. Wiring Your Controller 1762-IF2OF2 Wiring The following illustration shows the 1762-IF2OF2 analog expansion I/O terminal block. 1762-IF2OF2 Terminal Block Layout IN 0 (+) IN 0 (-) IN 1 (+) IN 1 (-) V Out 0 I Out 0 V Out 1 I Out 1 Common connected internally. Select the input type, current or voltage, using the switches located on the module’s circuit board and the input type/range selection bits in the Configuration Data File.

Refer to MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. You can access the switches through the ventilation slots on the top of the module.

Wiring Your Controller 1762-IF4 Terminal Block Layout IN 0 (+) IN 0 (-) IN 1 (+) IN 1 (-) IN 2 (+) IN 2 (-) IN 3 (+) IN 3 (-) Commons internally connected. Differential Sensor Transmitter Types IN 0 (+) Analog Sensor IN 0 (-) IN 1 (+). Wiring Your Controller Sensor/Transmitter Types 2-Wire Transmitter Transmitter Module Power IN + Supply IN - Transmitter 3-Wire Transmitter Module Supply Signal IN + Power IN - Supply Transmitter 4-Wire Transmitter Module Supply Signal IN + Power IN - Supply (1) All power supplies rated N.E.C. 1762-OF4 Output Type Selection The output type selection, current or voltage, is made by wiring to the appropriate terminals, Iout or Vout, and by the type/range selection bits in the. Wiring Your Controller 1762-OF4 Wiring I out 0 Current Load I out 1 I out 2 I out 3 V out 0 Voltage Load V out 1 V out 2 V out 3 Publication 1763-UM001E-EN-P - June 2015. Wiring Your Controller Notes: Publication 1763-UM001E-EN-P - June 2015. (message exchange).

MicroLogix 1100 controllers do not support Ethernet I/O master capability through CIP implicit messaging (real-time I/O messaging). For more information on MicroLogix 1100 communications, refer to the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. Communication Connections The MicroLogix 1100 communication Channel 0 has the following default Default Communication communication configuration.

Configuration For Channel 0, the default configuration is present when:. The controller is powered-up for the first time. The communications toggle functionality specifies default communications (specified using the LCD Display. Communication Connections indicator on the LCD display operates to show when the controller is in the default communications mode (settings shown on 72).

The Communication Toggle Functionality only affects the communication configuration of Channel 0. Changing Communication Configuration Follow the procedure below to change from the user-defined communication configuration to the default communications mode and back. Communication Connections 2. Then, press the OK key on the LCD keypad. The Advanced Settings Menu screen is displayed, as shown below. Select DCOMM Cfg using the Up and Down keys, as shown below, and then press the OK key. Communication Connections If the communication configuration is set to the default communication mode, the DCOMM Configuration screen is displayed as shown below.

The DCOMM status indicator is displayed in solid rectangle. Use the up arrow to change the indicator position so that it is pointing to Enable.Press the OK key to change to the default communication mode. Communication Connections 6. Press the ESC key to return to the Advanced Settings Menu screen, as shown in step There are two ways to connect the MicroLogix™ 1100 programmable Connecting to the RS-232 controller to your personal computer using the DF1 protocol: using a Port point-to-point connection, or using a modem. The recommended protocol for this configuration is DF1 Full-Duplex.

You can connect a MicroLogix 1100 controller to your personal computer directly without using an external optical isolator, such as Advanced Interface Converter (AIC+), catalog number 1761-NET-AIC, as shown in the illustration below, because Channel 0 is isolated within the controller. (straight-through) (1) Series C or later cables are required for Class I Div 2 applications.

You can connect a MicroLogix 1100 controller to your modem directly without using an external optical isolator, such as AIC+, catalog number 1761-NET-AIC, as shown in the illustration below, because Channel 0 is isolated within the controller. Communication Connections MicroLogix 1100 Channel 0 to Modem Cable Pinout When connecting MicroLogix 1100 Channel 0 to a modem using an RS-232 cable, the maximum that the cable length may be extended is 15.24 m (50 ft). DTE Device DCE Device. Communication Connections Connecting to a DF1 Half-Duplex Network When a communication port is configured for DF1 Half-Duplex Slave, available parameters include the following: DF1 Half-Duplex Configuration Parameters Parameter Options Baud Rate 300, 600, 1200, 2400, 4800, 9600, 19.2 KBps, 38.4 KBps Parity none, even Node Address. Communication Connections DF1 Half-Duplex Master-Slave Network Use the following diagram for DF1 Half-Duplex Master-Slave protocol without hardware handshaking. SLC 5/03 MicroLogix 1100 processor Master 1761-CBL-AM00 or 1761-CBL-HM02 1761-CBL-AP00 or 1761-CBL-PM02 DF1 Slave radio modem or lease line AIC+ AIC+ straight 9-25 pin cable. Rockwell Software RSLinx 2.0 (or higher), SLC 5/03, SLC 5/04, DF1 Half-Duplex Protocol SLC 5/05, PLC-5, or MicroLogix Modem 1000, 1200, and 1500 processors configured for DF1Half-Duplex Master.

Rockwell Software RSLinx 2.5 required for MicroLogix 1100. TERM TERM TERM SHLD SHLD SHLD CHS GND. Connecting to a DH-485 MicroLogix 1100 controllers to the DH-485 network. Network You can connect a MicroLogix 1100 controller to your DH-485 network directly without using an external optical isolator, such as Advanced Interface Converter (AIC+), catalog number 1761-NET-AIC, as shown in the illustrations below, because Channel 0 is isolated within the controller. Communication Connections DH-485 Network with a MicroLogix 1100 Controller AIC+ AIC+ TERM TERM PanelView SHLD SHLD CHS GND CHS GND DC SOURCE DC SOURCE CABLE CABLE EXTERNAL EXTERNAL SLC 5/04 PanelView 550 DH-485 Network AIC+ AIC+ AIC+ AIC+ TERM TERM.

Communication Connections Typical 3-Node Network (Channel 0 Connection) PanelView 550 PanelView RJ45 port 1761-CBL-AS09 or 1761-CBL-AS03 MicroLogix 1100 TERM SHLD CHS GND 1761-CBL-AM00 or 1761-CBL-HM02 DC SOURCE CABLE EXTERNAL 1747-CP3 or 1761-CBL-AC00 Recommended Tools To connect a DH-485 network to additional devices, you need tools to strip the shielded cable and to attach the cable to the AIC+ Advanced Interface Converter. Use these instructions for wiring the Belden #3106A or #9842 cable. (See Cable Selection Guide on page 90 if you are using standard Allen-Bradley cables.) Connecting the Communication Cable to the DH-485 Connector A daisy-chained network is recommended. Communication Connections Multiple Cable Connection When connecting multiple cables to the DH-485 connector, use the following diagram. To Previous Device to Next Device Connections using Belden #3106A Cable For this Wire/Pair Connect this Wire To this Terminal Shield/Drain Non-jacketed Terminal 2 - Shield Blue Blue Terminal 3 - (Common).

Belden #3106A or #9842 Cable 1219 m (4000ft) Maximum Jumper MicroLogix 1100 Channel 0 to DH-485 Communication Cable Pinout When connecting MicroLogix 1100 Channel 0 to DH-485 communication cable pinout using an RS-232 cable, the maximum that the cable length may be extended is 15.24 m (50 ft). Communication Connections You can connect a MicroLogix 1100 controller to a DH-485 network via Connecting the AIC+ Channel 0 directly without using an optical isolator, such as AIC+, catalog number 1761-NET-AIC, because Channel 0 is isolated. However, you need to use an AIC+ to connect your PC or other MicroLogix Family products, such as MicroLogix 1200, to a DH-485 network. Communication Connections Cable Selection Guide 1761-CBL-PM02 1761-CBL-AP00 1761-CBL-PH02 Cable Length Connections from to AIC+ External Power Power Supply Selection Switch Required Setting 1761-CBL-AP00 45 cm (17.7 in.) SLC 5/03 or SLC 5/04 processors, ch 0 port 2 external 1761-CBL-PM02 2 m (6.5 ft) MicroLogix™. Communication Connections 1747-CP3 1761-CBL-AC00 Cable Length Connections from to AIC+ External Power Power Supply Selection Switch Required Setting 1747-CP3 3 m (9.8 ft) SLC 5/03 or SLC 5/04 processor, channel port 1 external 45 cm (17.7 in.) 1761-CBL-AC00 PC COM port port 1 external PanelView 550 through NULL modem. Communication Connections 1761-CBL-PM02 Series C (or equivalent) Cable Wiring Diagram 6 8 7 Programming Controller Device 9-Pin D-Shell 8-Pin Mini Din Publication 1763-UM001E-EN-P - June 2015. If you are making a cable to connect to port 2, you must configure your cable to connect to the Allen-Bradley cable shown above.

In the 1761-CBL-PM02 cable, pins 4 and 6 are jumpered together within the DB-9 connector. Communication Connections Safety Considerations This equipment is suitable for use in Class I, Division 2, Groups A, B, C, D or non-hazardous locations only. EXPLOSION HAZARD WARNING AIC+ must be operated from an external power source. This product must be installed in an enclosure. All cables connected to the product must remain in the enclosure or be protected by conduit or other means. 1761-NET-AIC, 1761-NET-ENI, and the 1761-NET-ENIW, these controllers provide the power for the interface converter modules.

The MicroLogix 1100 does not provide 24V DC communication power. Instead these pins are used to provide RS-485 communications directly.

Any AIC+, ENI, or ENIW not connected to a MicroLogix 1000, 1200, or 1500 controller requires a 24V DC power supply. Communication Connections Power Options Below are two options for powering the AIC+:. Use the 24V DC user power supply built into the MicroLogix™ 1000, 1200, or 1500 controller.

The AIC+ is powered through a hard-wired connection using a communication cable (1761-CBL-HM02, or equivalent) connected to port 2. Ethernet port (Channel 1). You do not need to use an Ethernet interface card, such as the Ethernet Interface (ENI) and (ENIW), catalog number 1761-NET-ENI and 1761-NET-ENIW, to connect your MicroLogix 1100 controller to an Ethernet network.

For additional information on connecting. Communication Connections When to use straight-through and cross-over cable:. MicroLogix 1100 Ethernet port to 10/100Base-T Ethernet switch cables utilize a straight-through pin-out (1-1, 2-2, 3-3, 6-6). Direct point-to-point 10/100 Base-T cables connecting the MicroLogix 1100 Ethernet port directly to another Ethernet port (or a computer 10/100Base-T port) require a cross-over pin-out (1-3, 2-6, 3-1, 6-2). Chapter Using the LCD This chapter describes how to use the LCD and keypad on the MicroLogix 1100 controller. Topics include:.

operating principles. I/O status display. monitoring bit file. monitoring integer file.

using the mode switch. Using the LCD Operating Principles MicroLogix 1100 LCD Menu Structure Tree Startup Screen User Defined? Main Menu I/O Status Monitoring Integer Mode Switch User Displ KeyIn Mode Advance Set DCOMM Cfg ENET Cfg TrimPot Set System Info Fault Code User Defined Menu LCD Instruction Interface The ESC key is hold down more than 3 sec. The screen shown below is an example of a customized Startup screen. For more information on how to create and use a customized Startup screen, refer to the LCD Function File described in the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. Using the LCD Main Menu and Default Screen The Main menu consists of five menu items: I/O Status, Monitoring, Mode Switch, User Displ, and Advance Set.

LCD Main Menu Publication 1763-UM001E-EN-P - June 2015. Using the LCD Main Menu Items Menu Item Description For details, refer to I/O Status Displays the I/O Status screen, which shows the I/O status I/O Status on page 5-107 of the embedded digital I/O. Monitoring Allows you to view and change the data value of a bit and an Monitoring Bit File on page 5-109 integer file. Using the LCD Operating Buttons Button Function Cursor Move cursor Buttons Select menu item Choose file numbers, values, etc.

Next menu level, store your entry, apply the changes Previous menu level, cancel your entry Using Menus to Choose Values Press. Using the LCD Selecting Between Menu Items Cursor up or down Apply or Enter The symbol ' ' is used as the cursor. Cursor Display There are two different cursor types: Selection cursor (the symbol “ ”) is displayed left to the selected item. Using the LCD Setting Values Change value = up/down arrows Move cursor between digits = left/right arrows Stores Entries Retain previous value Left/right arrow moves the cursor between the digits of the value (+02714). Up/down arrow changes the value.

Up arrow = increment Down arrow = decrement Publication 1763-UM001E-EN-P - June 2015. Using the LCD The MicroLogix 1100 provides I/O status indicators on the LCD screen. You I/O Status can view the status of inputs and outputs on the I/O Status screen on the LCD, as shown below. The I/O status indicators on this screen are updated every 100 ms to reflect the current I/O status in real time, regardless of controller scan time. TO element in the LCD Function File. For more information, refer to the LCD Function File described in the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. If time out is disabled, i.e., the time out period is.

The only bit file that the LCD interfaces with is the file specified in the TBF element. Use your programming software to ensure that the IMPORTANT bit file you specify in the TBF element, as well as the appropriate number of elements, exist in the MicroLogix 1100 user program. Publication 1763-UM001E-EN-P - June 2015.

Using the LCD The example table below shows how the LCD uses the configuration information with bit file number 3 (LCD:0.TBF=3). Bit Number Data Address Protection Bit Bit Number Data Address Protection Bit Bit Number Data Address Protection Bit B3:0/0 B3:3/0 B3:1/0 B3:4/0.

Using the LCD Monitoring a Bit File For explanations in this section, we assume the followings in the application program:. A bit file B3, which is 7 elements long (7 words = 112 bits), is defined with the preset data, as shown in the screen capture below. Data bits (first 48 bits), which are monitored on the LCD and maskable by protection bits.

Using the LCD Follow these steps to view and change the data values of the bit file B3. On the Main Menu screen, select Monitoring by using the Up and Down keys on the LCD keypad. Then, press the OK key on the LCD keypad. The Bit/Integer File Select screen is displayed, as shown below. Using the LCD 5. We will change the data value of the B3:0/0 bit to OFF (0).

First, press OK to select the displayed address and move the cursor to the data value position. Then, “ON” will be flashing, which means the cursor is at the data value position. Using the LCD When the cursor is at the data value position, press the Down key to change the data value of a bit from ON (1) to OFF (0). Press the Up key to change from OFF (0) to ON (1). After changing the data value of a target bit, press the OK key to apply the changes or press the ESC key to discard the changes.

The only integer file that the LCD interfaces with is the file specified in the TIF element. Use your programming software to ensure that the IMPORTANT integer file you specify in the TIF element, as well as the appropriate number of elements, exist in the MicroLogix 1100 user program. Publication 1763-UM001E-EN-P - June 2015. Using the LCD The example table below shows how the LCD uses the configuration information with integer file number 7 (LCD:0.TIF=7). Element Data Address Protection Bit Element Data Address Protection Bit Element Data Address Protection Bit Number Number Number N7:0 N7:48/0 N7:16 N7:49/0.

Using the LCD Monitoring an Integer File For explanations in this section, we assume the followings in the application program:. An integer file N7, which is 53 elements long (53 words), is defined with the preset data, as shown in the screen capture below. Data words (first 48 words), which protection bits (second 48 bits = 3 words) data words (after the first 51 words), which. Using the LCD Follow these steps to view and change the data values of the integer file N7. On the Main Menu screen, select Monitoring by using the Up and Down keys on the LCD keypad. Then, press the OK key on the LCD keypad.

The Bit/Integer File Select screen is displayed, as shown below. Using the LCD 5. We will change the data value of the N7:0 word to the negative decimal value -1300. First, press OK to move the cursor to the data value position. Then, the last digit of “+00000” will be flashing, which means the cursor is at the data value position. Using the LCD 9. Press OK to apply the changes.

Then, the new value -1300 is applied. Note that the target word “0”, which is right to “N7:”, is flashing.

The cursor is moved automatically to the target word position. You can identify this change of data value is reflected to your RSLogix 500 programming software, as shown below. Using the LCD 13. Hold down the Up key until the target word becomes “47”, as shown below. Press the Up key again, and you will find the target word does not change to “48”. It is because the maximum range of words you can monitor with the LCD is the first 48 words of the specified target integer file. Using the LCD The MicroLogix 1100 provides the controller mode switch on the LCD.

The Using the Mode Switch possible positions of the mode switch are PROGRAM, REMOTE, and RUN. You can change mode switch position using the Mode Switch screen on the LCD, as shown below. Using the LCD Possible Controller Modes by Mode Switch Position When the Mode Switch Possible Controller Modes are Positions at PROGRAM download in progress program mode suspend mode (operation halted by execution of the SUS instruction) REMOTE remote download in progress remote program mode remote suspend mode (operation halted by execution of the SUS instruction). Using the LCD. How to forcibly set Mode Switch to PROG when the controller is powered up Press ESC key for 5 seconds when the controller is powered up. The following LCD screen appears if it’s successfully done. Note that I/O output status may be changed for some programs.

Publication 1763-UM001E-EN-P - June 2015. Using the LCD While the controller is powered on, follow these steps to change the position of the Mode Switch. On the Main Menu screen, select Mode Switch by using the Up and Down keys on the LCD keypad. Using the LCD The MicroLogix 1100 controller allows you to use user defined LCD screens Using a User Defined LCD instead of the default built-in screens. Screen To use a user defined screen, you need to create a group of appropriate instructions using the LCD instruction in your application program.

Using the LCD If no user defined screen is used in your application program, the screen is displayed, as shown below. Note that the U-MSG indicator on the top of the LCD is displayed in solid rectangle. It means the LCD is in User Defined LCD mode. If a user defined screen is used in your application program, the LCD screen is displayed, as shown below, according to the specific instructions used in your program. Using the LCD With the Advanced Settings menu, which is a sub-menu under the main menu Configuring Advanced of the LCD, you can use the following features: Settings. changing Key In mode.

using communications toggle functionality. viewing Ethernet port configuration. Using the LCD By using the Key In Mode screen, as shown below, you can change the Key In mode to use.

Changing Key In Mode Follow these steps to change the current Key In mode. On the Main Menu screen, select Advance Set by using the Up and Down keys on the LCD keypad, as shown below.

Using the LCD 3. Select KeyIn Mode using the Up and Down keys, and then press the OK key. The Key In Mode screen is displayed, as shown below. The current mode, Continuous in this example, is selected marked up with the symbol “.

Using the LCD The MicroLogix 1100 provides the Communications Toggle Functionality, Using Communications which allows you to change from the user-defined communication Toggle Functionality configuration to the default communications mode and back to the user defined communication configuration on Channel 0. Using the LCD When an IP address is not yet assigned to your controller, only the MAC address assigned to your controller, which is represented as XXXXXXXXXXXX below, is displayed. A MAC address is a 12-digit hexadecimal number. Your controller ships with a unique MAC address assigned in factory.

Using Trim Pots Trim Pot Operation The MicroLogix 1100 controller provides two trimming potentiometers (trim pots, POT0 and POT1) which allow modification of integer data within the controller. The data value of each trim pot can be used throughout the control program for timers, counters, analog presets, etc. For more information on how to change Trim Pot configuration including TMIN and TMAX, refer to the LCD Function File described in the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. Publication 1763-UM001E-EN-P - June 2015. Trim Pot Configuration in LCD Function File The configuration for Trim Pots in the LCD Function File, including trim pot low and high values for data value range, is described in the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001. Using the LCD The System Information screen of the LCD allows you to identify the system Viewing System information for your controller.

Information Follow these steps to view the system information for your controller. On the Main Menu screen, select Advance Set by using the Up and Down keys on the LCD keypad, as shown below. Using the LCD 4. The System Information screen is displayed. You can identify the catalog number, operating system firmware revision number, and boot firmware revision number of your controller.

Press the ESC key to return to the Advanced Settings Menu screen, as shown in step The Fault Code screen of the LCD displays the fault code when a fault occurs. Using the LCD 2. Then, press the OK key on the LCD keypad. The Advanced Settings Menu screen is displayed, as shown below. If Fault Code is selected, press the OK key. If not, select Fault Code using the Up and Down keys, and then press the OK key. For more information on “Real-Time Clock Function File” and “Memory Module Information File”, refer to the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, publication 1763-RM001.

One type of memory module is available for use with the MicroLogix 1100 controller. Catalog Number Function Memory Size.

Using Real-Time Clock and Memory Modules Writing Data to the Real-Time Clock When valid data is sent to the real-time clock from the programming device or another controller, the new values take effect immediately. The real-time clock does not allow you to load or store invalid date or time data. (run or test) mode. To enable this feature, set the S:2/9 bit in the system status file. See “Status System File” in the MicroLogix 1100 Programmable Controllers Instruction Set Reference Manual, Publication 1763-RM001 for more information.

If a memory module is not attached, zeros are written to the MMI file. Refer to the MicroLogix 1100 Instruction Set Reference Manual, publication 1763-RM001, for more information. Using Real-Time Clock and Memory Modules Program /Data Download To download the program and data from a memory module to the controller’s memory, on the “Comms” menu in your RSLogix 500 programming software, point “EEPROM” and then click “Load from EEPROM”.

For more information on program/data download, refere to your RSLogix 500 programming software documentation. Using Real-Time Clock and Memory Modules Notes: Publication 1763-UM001E-EN-P - June 2015. Chapter Online Editing The online editing function lets you monitor and modify your ladder program when your programming terminal is connected to a MicroLogix 1100 proces- sor. Online editing of ladder programs is available when using MicroLogix 1100 Overview of Online Editing processors. Online Editing The following table summarizes the differences between offline and online editing.

Hairspray piano conductor score pdf. Offline Online Data table file resizing is not permitted. Program file creation and deletion are not permitted. No restrictions exist. Alteration of file protection is not permitted. Full editing capabilities are Alteration of static and constant data file values is not permitted.

Online Editing. modify rung — when an existing rung is modified two edit zones are created.

The original rung is indicated by replace zone markers on the power rail. A copy of the original rung is made so you can insert, delete, or modify instructions. Edit User Change the RSLinx 'Configure CIP Option' to prevent ownership fault when MicroLogix 1100 is connected using RSLinx classic Ethernet/IP driver. Several RSLogix 500 Online operations require obtaining the processor Edit Resource/Processor Ownership in order to ensure that one programming terminal has exclusive capability of performing any of these operations at a time. A Download Before Starting Online Edit At least one download is required before starting online edit.

Micrologix 1200 Serial Port

If you are using a MicroLogix 1100 from out-of-box state or after clear processor memory or firmware upgrade, at least one download is required before starting online edits. Online Editing This problem happens only in out-of-box state or after clear processor memory. PTO and PWM instructions may not be deleted ATTENTION during runtime online edit.

Micrologix 1200 Serial Cable

This is because if the PTO or PWM instructions were deleted during runtime online edit, outputs could stop in an unpredictable state, causing unexpected equipment operation. LCD screen in the RUN mode. This prevents the use of the online editing feature. The type of online editing is dependent on the MicroLogix 1100 processor’s Types of Online Editing mode switch position in LCD display and the processor’s mode. There are two types of online editing:.

1200

Online Editing Online editing is not available when the mode switch IMPORTANT in LCD screen is in the RUN position. Use the online editing function while in the RUN ATTENTION mode to make minor changes to the ladder program. We recommend developing your program offline since ladder rung logic changes take effect immediately after testing your edits. 240V AC: 40 A for 4 ms Maximum power 46 VA 52 VA 35 W consumption See MicroLogix 1100 DC Input Power Requirements for 1763-L16BBB Unit on page 155. 24V DC sensor power None 250 mA at 24V DC None AC Ripple 25 Ω will reduce accuracy.) Cable impedance, max.

Power supply distance rating 6 (The module may not be more than 6 modules away from the system power supply.) Channel to channel isolation ±10V DC (1) Accuracy is dependent upon the Analog/Digital converter filter rate selection, excitation current selection, data format, and input noise.