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DESCRIPTION AND OPERATION

OUTPUT CIRCUIT CONNECTIONS

I-E96-313A   

2 - 3

The default control logic block is a one bit latch register. It
sends a signal to the data selector block to select either the
default register data or the output register data during a

time-out

 (indicating a master module error). This signal is

dependent on the master module configuration (FC 83 specifi-
cation 2). The bus fault detector in the slave expander bus
interface checks for a

 time-out

 condition. During a

 time-out

, the

data selector block normally selects the default register data. If

hold

 option is selected in FC 83, the default control logic cir-

cuits send a logic 1 to override the data selector. It causes the
data selector to drive the outputs with the output register data
instead of default data to maintain the outputs at their current
values (

hold

).

Status Logic

The status buffer block provides module status information to
the master module. This information is output states, and
module identification and status. The master module reads
this data through the slave expander bus interface. Refer to

MODULE DATA

 in this section for an explanation of the data.

OUTPUT CIRCUIT CONNECTIONS

The output signals connect to the 30-pin card edge connector
P3 of the DSO using a termination cable from a TU/TM. Proper
polarity wiring of field signals is necessary for the output cir-
cuits to function properly.

SLAVE EXPANDER BUS

The Infi 90 slave expander bus is a high speed synchronous
parallel bus. It provides a communication path between master
modules and slave modules. The master module provides the
control functions and the slave module provides the I/O func-
tions. The P2 card edge connector of the slave and master mod-
ule connect to the bus.

The slave expander bus is twelve parallel signal lines located
on the Module Mounting Unit (MMU) backplane. A 12-position
dipshunt placed in a connection socket on the MMU backplane
connects the bus between the master and slave modules. Cable
assemblies can extend the bus to six MMUs.

A master module and its slaves form an individual subsystem
within a Process Control Unit (PCU). The slave expander bus
between master/slave subsystems must be separated. Leaving
a dipshunt socket empty or not connecting the MMUs with
cables separates them.

Содержание Infi 90 IMDSO04

Страница 1: ...Process Control and Automation Solutions from Elsag Bailey Group E96 313 Digital Slave Output Module IMDSO04...

Страница 2: ...UIPEMENTS LECTRONIQUES SONT SENSIBLES AUX PERTURBATIONS PAR FR QUENCE RADIO DES PR CAUTIONS DEVRONT TRE PRISES LORS DE L UTILISATION DU MAT RIEL DE COMMUNICATION PORTATIF LA PRUDENCE EXIGE QUE LES PR...

Страница 3: ...procedures to follow to set up and install a Digital Slave Output DSO module It explains troubleshooting maintenance and module replacement proce dures The system engineer or technician using the DSO...

Страница 4: ...l 5 1 through 5 4 Original 6 1 Original 7 1 Original 8 1 Original A 1 through A 3 Original B 1 Original When an update is received insert the latest changed pages and dispose of the super seded pages...

Страница 5: ...that contact with energized parts is avoided when servicing Special Handling This module uses Electrostatic Sensitive Devices ESD SPECIFIC WARNING Disconnect power before installing dipshunts for sla...

Страница 6: ...sours tension lors de l entretien Precautions de Manutention Ce module contient des composantes sensibles aux decharges electro statiques ADVERTISSEMENT D ORDRE SPECIFIQUE Couper l alimentation avant...

Страница 7: ...2 1 Output Control Logic 2 2 Status Logic 2 3 OUTPUT CIRCUIT CONNECTIONS 2 3 SLAVE EXPANDER BUS 2 3 UNIVERSAL SLAVE EXPANDER BUS INTERFACE 2 4 MODULE DATA 2 4 Status Data 2 4 Output Data 2 4 Default D...

Страница 8: ...LED 5 1 Master Module Errors 5 2 MODULE PIN CONNECTIONS 5 3 SECTION 6 MAINTENANCE 6 1 INTRODUCTION 6 1 MAINTENANCE SCHEDULE 6 1 SECTION 7 REPAIR REPLACEMENT PROCEDURES 7 1 INTRODUCTION 7 1 MODULE REPA...

Страница 9: ...ont Panel 4 1 Figure A 1 NTDI01 Dipshunt A 1 Figure A 2 NTDI01 Terminal Assignments A 3 Figure B 1 NIDI01 Terminal Assignments B 1 List of Tables No Title Page Table 3 1 Address Switch Settings S1 3 3...

Страница 10: ...USER System engineers and technicians should read this manual before installing and operating the DSO module A module SHOULD NOT be put into operation until this instruction is read and understood Yo...

Страница 11: ...outputs sixteen separate digital signals to the process Open collector transistors in the output circuits can sink up to 250 mA to a 24 VDC load The front panel LEDs provide a visual indication of th...

Страница 12: ...pport Services provides replacement part ordering information It explains other areas of support that Bailey Controls provides HOW TO USE THIS MANUAL Read this manual through in sequence It is importa...

Страница 13: ...ches onto a piece of data until instructed to move it elsewhere Master Module One of a series of controller modules designed to direct field processes through a slave module The multi function process...

Страница 14: ...and logic circuitry and output to output CSA approved for 300 V isolation Surge Withstanding Capability Meets ANSI IEEE C37 90A 1974 Guide for Surge Withstanding Capability Test Mounting Occupies one...

Страница 15: ...can be used with a DSO Nomenclature Hardware IMMFP01 02 Multi Function Processor Module IMLMM02 Logic Master Module NIDI01 Termination Module Digital Inputs NTDI02 Termination Unit Digital Inputs NKTM...

Страница 16: ...vide the switching functions Optocouplers isolate the module circuits from the process The DSO has two sets of circuits to control its sixteen outputs One controls group A outputs the other controls g...

Страница 17: ...default register is reset to logic zeros during power up to drive the outputs to a de energized state FC 128 in the master module configuration selects the output values used to drive the output circ...

Страница 18: ...a through the slave expander bus interface Refer to MODULE DATA in this section for an explanation of the data OUTPUT CIRCUIT CONNECTIONS The output signals connect to the 30 pin card edge connector P...

Страница 19: ...and group B outputs Each bit of this data corresponds to the digital output state ON or OFF The third byte is the module identification and module status Slave module identification is in the four mos...

Страница 20: ...he bus fault timer is a one shot timer that is reset by the slave expander bus clock the master module generates the bus clock If the clock stops indicating a master module error or failure the bus fa...

Страница 21: ...static discharge The Digital Slave Output DSO module uses electrostatic sen sitive devices Follow Steps 1 through 4 when handling 1 Keep the module in its special anti static bag until you are ready t...

Страница 22: ...have one of 64 addresses address 0 to 63 on the slave expander bus This address uniquely identifies the slave to the master module and must be the same as the address set in the master module configur...

Страница 23: ...1 0 1 1 12 0 0 1 1 0 0 44 1 0 1 1 0 0 13 0 0 1 1 0 1 45 1 0 1 1 0 1 14 0 0 1 1 1 0 46 1 0 1 1 1 0 15 0 0 1 1 1 1 47 1 0 1 1 1 1 16 0 1 0 0 0 0 48 1 1 0 0 0 0 17 0 1 0 0 0 1 49 1 1 0 0 0 1 18 0 1 0 0 1...

Страница 24: ...backplane between the slave and master module 3 Connect the hooded end of the termination cable from the TU TM to the MMU backplane To do this insert the connector into the backplane slot in the same...

Страница 25: ...odule in the MMU connects the slave module to the logic power 5 VDC necessary to drive the circuitry at P1 It also connects P2 to the slave expander bus for communi cation with the master module P1 an...

Страница 26: ...TMENTS 3 6 I E96 313A Figure 3 3 IMDSO04 Cable Connections and Termination TP27134A P1 P1 P3 P1 P3 P1 P2 P2 NKTM01 OR NKTU02 NIDI01 IMDSO04 NTDI01 IMDSO04 NKTU01 16 DIGITAL OUTPUTS 16 DIGITAL OUTPUTS...

Страница 27: ...The location of the indicators is shown in Figure 4 1 Module Status Indicator Table 4 1 explains the three states of the module status LED indicator refer to Section 5 to determine corrective actions...

Страница 28: ...figuration enables the DSO Specification 1 FC 83 is the slave module address It must be the same as the address set on the address dipswitch S1 The front panel LED solid green verifies that the module...

Страница 29: ...nditions Table 5 1 lists DSO status LED states error indications probable causes and corrective actions NOTE If the corrective actions in Table 5 1 do not correct a problem with the DSO module replace...

Страница 30: ...he same The master module gener ates a MISSING SLAVE MODULE error if they do not match Verify that the address set on S1 is the same as the address in FC 83 specification 1 If not 5 Remove the module...

Страница 31: ...faulty replace it with a new one Refer to Section 7 for procedures to replace a DSO module MODULE PIN CONNECTIONS The slave module has three connection points for external sig nals and power P1 P2 an...

Страница 32: ...Data 0 Data 3 Data 2 Data 5 Data 4 7 8 9 10 11 12 Data 7 Data 6 Clock Sync NC NC NC Not Connected Table 5 4 P3 Output Signal Pin Connections Group A Group B Digital Output Pin Pin Digital Output Pin...

Страница 33: ...erform the tasks in Table 6 1 at the specified intervals Table 6 1 Maintenance Schedule Task Interval Clean and tighten all power and grounding connections Every 6 months or during plant shut down whi...

Страница 34: ...ace away from the module 2 Gently slide the module out of the MMU 3 Configure the replacement module switch settings Ensure they are set the same as the original module 4 In the same slot assignment a...

Страница 35: ...s if applicable 3 Bailey instruction manual number page number and refer ence figure that identifies the part When you order standard parts from Bailey Controls use part numbers and descriptions from...

Страница 36: ...t without strapping and the digital signal path from the DSO module to the field device for a termination unit application Refer to Table A 1 to deter mine the dipshunt strapping to configure your app...

Страница 37: ...Configuration Application Signal Type Dipshunt Configuration Field powered contact System powered from E1 24 VDC System powered from E2 24 VDC 1 2 3 4 XU1 XU16 5 6 7 8 1 2 3 4 XU17 5 6 7 8 1 2 3 4 XU...

Страница 38: ...gure A 2 NTDI01 Terminal Assignments TERMINAL NUMBER TB4 TB2 TB1 TB3 DIPSHUNT USED XU13 XU14 XU15 XU16 TP27163A A1 A2 A3 A4 1 2 3 4 5 6 7 8 DIPSHUNT USED XU9 XU10 XU11 XU12 A5 A6 A7 A8 DIPSHUNT USED X...

Страница 39: ...ermine the jumper setting to configure your applica tion Figure B 1 shows the terminal assignments for the digital output signals Refer to this figure when connecting field wiring to the NIDI01 Table...

Страница 40: ...8756 ASIA PACIFIC 152 Beach Road Gateway East 20 04 Singapore 189721 Telephone 65 391 0800 Telefax 65 292 9011 EUROPE AFRICA MIDDLE EAST Via Puccini 2 16154 Genoa Italy Telephone 39 10 6582 943 Telefa...

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