Apollo IMY instruction manual General Description, Communication Format

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20 mA CURRENT LOOP SERIAL COMMUNICATIONS (Optional)

GENERAL DESCRIPTION

The serial communication option is a half-duplex, two-way, 20 mA loop that can connect to a variety of printers, computers, terminals and controllers to suit many data-polling or automatic operation applications. The indicator responds to a host of commands, including change alarm value, reset totalizer and transmit input value. Two loops are required for all hook-ups; a transmit (out-going data) loop and a receive (in-coming data) loop. Since the indicator monitors the receive loop for a busy signal (current interrupted) while transmitting, the receive loop must be connected even if the indicator is transmitting only, such as to a printer. A built-in 20 mA source can be used in the transmit loop (only) by connecting the current return wire to -20 mA SRC., instead of SO+. To bypass the built-in current source, make transmit loop connections to SO+ and SO-. Additionally, multiple units and other Red Lion Controls instruments can be serially addressed, up to a maximum of 99 units. (The actual number in a single loop is limited by the serial hardware specifications.) To eliminate problems with ground loops, the serial circuitry is isolated from both signal common and output common. Optional 20 mA to RS232C and 20 mA to RS422 converter modules expand the unit’s flexibility.

Note: When operating the unit with a printer, the receive loop of the indicator must have current flowing into it before transmission can take place.

COMMUNICATION FORMAT

Data is sent by switching current on and off in the loop and is received by monitoring the switching action and interpreting the codes that are transmitted. In order for data to be correctly interpreted, there must be identical formats and baud rates among the communicating equipment. The only format available with this indicator is 1 start bit, 7 data bits, 1 odd parity bit and 1 stop bit. The baud rates are programmable and the choices are: 300, 600, 1200 and 2400.

DATA FORMAT-10 BIT FRAME [300, 600, 1200, 2400 Baud]

Before serial communication can take place, the indicator must be programmed to the same baud rate as the connected equipment. In addition, the loop address number, print options and full or abbreviated transmission must be programmed. If only one indicator is to be used, then a loop address number of “0” may by used, to eliminate the requirement for the address specifier when sending a command. If more than one indicator is on the loop, assignment of unique addresses, other than zero, for each indicator is recommended. Valid addresses of 0 to 99 may be assigned, but the built-in current source, if used, is capable of driving up to 7 units. Additional drive capability may be afforded by an external current source with a higher compliance voltage. Refer to programming section “Pro 7” to program the serial option.

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Contents Apollo Intelligent Meter Series Introduction Table of Contents Page Definition of Terms Safety InformationSafety Summary Theory of Operation General DescriptionBlock Diagram Programming the IMY Programming and Operating the IMYDisplay Module #2 Program Temperature Display Offset and Slope Enter Alarm Values Display Alarm ValuesReset Latched Alarms Reset PEAK/VALLEY Memory BufferEnter Offset Value Temperature Offset ValueProgram Digital Filtering Module #4 Program Digital Filter and Remote InputProgram Function of E1-CON and Optional E2-CON Cont’d Program INTEGRATOR/TOTALIZER Time Base Module #5 Program INTEGRATOR/TOTALIZERProgram Decimal Point Position for the INTEGRATOR/TOTALIZER Module #6 Program ALARM/SETPOINT Alarm #2 High or LOW Acting Alarm #2 Assignment to Input or INTEGRATOR/ TotalizerProgram Value for Alarm #2 Unit Address Number Baud RatePrint Request Function Full or Abbreviated TransmissionAnalog Output Source Module #8 Program RE-TRANSMITTED Analog OutputAnalog Output LO Display Value Analog Output HI Display ValueEnter Access Code Module #9 Service OperationsEnter Zero Reference Apply Precision ResistanceQuick Programming Operating the IMYSlope Factory ConfigurationProgramming Example Temperature Monitoring Example PEAK/VALLEY Offset and Slope Display TemperatureINTEGRATOR/TOTALIZER INTEGRATOR/TOTALIZER SET-UP INTEGRATOR/TOTALIZER ExampleBasic SET-UP 125 x 827 Alarm Timing Diagrams Alarms OptionalCommunication Format General DescriptionCommand String Examples Sending Commands to the IMYTiming Diagrams Wiring Connections Current Loop InstallationReceiving Data from the IMY Serial Terminal DescriptionsSerial Communications Examples Connecting to AN RLC PrinterProcess Controlling System RE-TRANSMITTED Analog Output Optional To 20 mA Calibration Analog Output CalibrationSelect AC Power 115/230 VAC Appendix a Installation & ConnectionsInstallation Environment EMC Installation Guidelines Power Wiring Wiring ConnectionsOpen Thermistor Detection Display Ululul Appendix B Specifications and DimensionsTo 20 mA Certifications and Compliances Safety Problem Possible Cause Remedies Appendix C Troubleshooting GuideDecimal Point Positon Appendix D Programmable FunctionsAppendix D Programmable Functions Cont’d E2-CON Appendix E Ordering InformationLimited Warranty IMY/IM-A 3/02 Drawing NO. LP0311