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KUUMIC OY

NETWORK CONTROL

MIMIC BOARD

RKU5 MIMIC BOARD

VERSION 1.0

INSTRUCTION MANUAL

KUUMIC OY

28.1.1997

Summary of Contents for RKU5

Page 1: ...KUUMIC OY NETWORK CONTROL MIMIC BOARD RKU5 MIMIC BOARD VERSION 1 0 INSTRUCTION MANUAL KUUMIC OY 28 1 1997 ...

Page 2: ...essing 5 3 2 Write LEDs LCM 10 3 3 Write Seven Segment Displays DCM 11 3 4 LED Test 13 4 INSTALLATION 14 APPENDIX APPENDIX A Component Layout and DIP switch settings of CPU 9416 Figure 6 APPENDIX B Component Layout and DIP switch settings of Display Bus Driver 9452 Figure 7 APPENDIX C Mimic Board and LED connection Figure 8 APPENDIX D Connection cases for connecting LEDs to LCM Figure 9 ...

Page 3: ...1 RKU5FIG1 DS4 Page 1 Figure 2 RKU5FIG1 DS4 Page 2 Figure 3 RKU5FIG1 DS4 Page 3 Figure 4 RKU5FIG1 DS4 Page 4 Figure 5 RKU5FIG1 DS4 Page 5 Figure 6 RKU5FIG1 DS4 Page 6 Figure 7 RKU5FIG1 DS4 Page 7 Figure 8 RKU5FIG1 DS4 Page 8 Figure 9 RKU5FIG1 DS4 Page 9 Directives for connecting KUUMIC2 DOC ...

Page 4: ... using ANSI X3 28 protocol 2 TECHNICAL DESCRIPTION 2 1 HARDWARE The RKU5 mimic system see Figure 1 consists of the following parts a Control Unit a communication cable between the Control Unit COM2 and Control Centre up to 16 IDC ribbon bus cables between the Control Unit and display modules In one cable can be connected either 14 LCMs LED Control Modules or 14 DCMs Display Control Modules up to 2...

Page 5: ...OM 1 9416 O M 2 1 C C O M BUS DRIVER DISPLAY 9452 BUS DRIVER DISPLAY 9452 A C R H E R G N C T O O L R DC SOURCE POWER STATUS B A 9423 DCM 1 DCM 2 DCM 3 DCM 14 DISPLAY CONTROL MODULES LCM 1 LCM 2 LCM 3 LCM 14 LED CONTROL MODULES MicroSCADA RKU5 CONTROL UNIT Figure 1 ANSI X3 28 ...

Page 6: ...compact single eurocard microprosessor board CPU 9416 maximum of 16 display bus driver boards 9452 for leds and seven segment displays a power supply unit DC DC 9423 a power supply unit AC DC RxD TxD RTS TxD RTS CPU COM2 RxD COM1 9416 O M 2 1 C C O M BUS DRIVER DISPLAY 9452 BUS DRIVER DISPLAY 9452 A C R H E R G N C T O O L R DC SOURCE POWER STATUS B A 9423 Figure 2 RKU5 CONTROL UNIT ...

Page 7: ...it connector COM 2 see Figure 3 Rx D TxD RTS TxD RTS CPU CO M2 Rx D CO M1 9416 O M 2 1 C C O M BUS DRIVER DISPLAY 9452 BUS DRIVER DISPLAY 9452 A C R H E R G N C T O O L R DCSOUR CE POWER STATU S B A 9423 RKU5 CONTROL UNIT MicroSCADA 1 2 3 4 5 7 6 8 20 PG TxD RxD RTS CTS GND DSR DCD DTR 2 3 5 GND TxD RxD D25S D9P Figure 3 The wiring diagram for connection a RKU5 control unit to MicroSCADA Length 5m...

Page 8: ...of the indicators one for seven segment displays and one for LED indicators The addresses for the LED indicators are formed using the formula write address of the LED indicator bus cable 1 x 14 x 34 card number 1 x34 pin 5000 where bus cable is the cable number to which the LCM driver of the LED indicator is connected bus cables are numbered from 1 to 16 card number is defined by the board number ...

Page 9: ... dec bus cable 1 card number 1 First address 1 1 14 34 1 1 34 1 5000 5001 dec Last address 1 1 14 34 1 1 34 34 5000 5034 dec 84th LCM addresses are from 7823 dec to 7856 dec bus cable 6 card number 14 First address 6 1 14 34 14 1 34 1 5000 7823 dec Last address 6 1 14 34 14 1 34 34 5000 7856 dec ...

Page 10: ...8 20 22 23 24 25 27 28 29 30 26 31 X2 D5 RN4 RN9 RN10 C2 D6 RN5 R6 S1 C3 34 33 32 D1 R4 R3 S16 X1 R2 R1 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 D3 RN2 D2 RN1 RN6 RN7 16 17 V2 R7 S17 V1 R5 X3 S1 closed card number 1 S2 closed card number 2 S14 closed card number 14 NOTE Only one switch closed S1 S14 at the same time S15 and S16 closed only on the last card of the cable otherwise they are open ...

Page 11: ... number to which the DCM is connected bus cables are numbered from 1 to 16 DCM number is defined by the board number select jumper inside the DCM Control Module 1 14 see Figure 5 The addresses for the DCM starts from 4701 dec and continues to 4924 dec Examples first DCM address bus cable 1 DCM number 1 address 1 1 14 1 4700 4701 dec 15th DCM address bus cable 2 DCM number 1 address 2 1 14 1 4700 4...

Page 12: ... 1 14 in same cable NOTE Only one switch closed at the same time S2 and S3 closed only on the last DCM otherwise they are open D1 RN3 RN4 X1 R1 RN2 V2 C1 RN1 V1 C6 R4 R3 R2 V3 C2 C3 R5 C5 C4 FIRST DISPLAY PULL UP S2 8 6 7 S3 9 DISPLAY SELECT 2 S1 1 4 5 3 14 12 11 10 13 30 40 X2 2 20 10 Front view Rear view Power supply max 24VDC ...

Page 13: ...e a second The RKU5 ingnores data bits 2 through 15 in write messages Multiple LED states can be written by one command The only limit is set by the ANSI X3 28 protocol which limits the length of the data field Example of write message address 6201 decimal data 0001 The address above selects the LCM which is connected to the bus cable number 3 bus cable connected to 3th Display Bus Driver board an...

Page 14: ... memory areas The addresses for the DCM s data starts from 4701 dec and continues to 4924 dec In addition to this DCM requires parameter area for the decimal points and minus sign The addresses for the DCM s parameters starts from 2219 dec and continues to 2442 dec D7 D6 D5 D4 D3 D2 D1 D0 D15 D8 reserved Decimal point position 00 no decimal point 01 888 8 10 88 88 11 8 888 Minus sign 0 not signed ...

Page 15: ...l display 1000 parameter address 2220 dec data 0001 dec data address 4702 dec data 100 dec The 2nd DCM will display 10 0 parameter address 2233 dec data 0007 dec data address 4715 dec data 32768 789 dec The 15th DCM will display 789 parameter address 2442 dec data 0008 dec data address 4924 dec data 10 dec The last 224th DCM will display 0010 ...

Page 16: ...ll LEDs blinking slow rate 3 all LEDs blinking high rate 4 every odd LEDs ON 5 every even LEDs ON 6 finish test 7 initialize nonvolatile ram memory When writing value 0 to the address 5000 dec all the LEDs turn off They are off appr one minute and after that they turn back to the state they were before the test When writing value 1 to the address 5000 dec all the LEDs turn on illuminate They illum...

Page 17: ...n the number of LCMs and DCMs All connectors are connected in parallel Set card number select jumpers Figure 4 and 5 Make sure that all LCMs and DCMs for the same bus cable are jumpered to a different number Install clock and data pull up jumpers S15 and S16 to the last LCM of the bus cable Note The LCMs and the DCMs can t be connected to the same bus cable Connect the RKU5 control unit and mimic ...

Page 18: ... 4 5 6 7 8 TRANSMIT DELAY 00 30 ms 10 60 ms 10 60 ms 01 100 ms 11 200 ms COMMUNICATION SPEED 000 110 BPS 100 300 BPS 010 600 BPS 110 1200 BPS 001 2400 BPS 101 4800 BPS 011 9600 BPS 111 19200 BPS COMMUNICATION 0 half duplex 1 full duplex LOCAL REMOTE OPERATION 0 remote 1 local CHK SUM DIP 2 on off 1 2 3 4 5 6 7 8 STATION ADDRESS default 12 hex 18 dec MSB LSB 0000 0001 80 hex 128 dec DIP 3 on off 1 ...

Page 19: ...00 16 pcs 2 crit digital inputs 1000 8 pcs 2 crit and 4 pcs 4 crit digital inputs 0100 8 pcs 4 crit digital inputs 1100 16 bit digital measurement 0010 16 pcs digital outputs 1010 8 pcs 2 crit inputs and 8 pcs digital outputs 0110 8 pcs 2 crit inputs and 8 pcs pulse counters 1110 16 pcs pulse counters 0001 16 pcs analog inputs 1001 8 pcs analog outputs 0101 reserved 1101 reserved 0011 reserved 101...

Page 20: ...32C MicroSCADA R xD T xD R TS T xD R TS CP U C O M 2 R xD C O M 1 9416 O M 2 1 C C O M BU S DR I V ER DIS PLAY 9452 BU S DR I V ER DIS PLAY 9452 A C R H E R G N C T O O L R D C S O U R C E PO WER S TA TU S B A 9423 RKU5 CONTROL UNIT Display Control module DCM IDC Ribbon Cable 2 3 34 LCM 1 2 3 34 LCM Figure 8 Led power DC supply ...

Page 21: ...ORMAL LED CONNECTION HIGH CURRENT BI COLOR LED CONNECTION V LCM LCM LCM V OUT 1 34 LCM V V Figure 9 TYPE 1 TYPE 2 TYPE 3 TYPE 4 Connection cases for connecting LEDs to LCM Internal resistor 1 kohm Internal resistor R1 1 kohm Internal resistor R2 47 ohm NPN transistor outputs External resistor is needed PNP transistor outputs External resistor is needed R2 OUT 2 ...

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