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1. aH E Led ce ie SS BEE SCR ELS 4 i7 Figure 5 CD 100 240VAC 50 60Hz 4 ERETTE 5 2A DVP PLC 8 24VDC 500mA BA Ro BOR IARLA DEEE DC DC SINK amp SOURCE gt XE ai Bibl A ERE SCELERE RU SI SERES SES 5 Figure 6 Figure7
2. BAO E38 WO COM2 eg Run Stop VRO VR1 A nU ST 1O g D lt L TALI e 1 Figure 3 mm a mE 00D2 0002 oor oom2 oocz2 oor oom2 oom2 oon 100 240VAC 15 10 50 60Hz 5 2A 250VAC DC24v riii 500mA DC24V 1 500VAC Primary secondary 1 500VAC
3. 4 Figure 5 OD 100 240VAC 50 60Hz 2 6 2A DVP PLC 24VDC 500mA 4 DC DC 5 Figure 6 Figure7 16 e DVP32EH00M2 X0 X1 X4 X5 137g DC5 24V DC24V 200kHz LINE DRIVER e DVP32bEH00M2 50kHz DC5V DC24V
4. POLS u T DIN LF 35mm iA HR T n Hts m 3 DIN Sane Katte Ee E COM2 RS 485 Run Stop ws u a H7 I C4 d o VRO VR1 Lat 2 E KS SH A COM 1 RS 232 T VO dbi PLx lt bee SUE ER M al Kia EARN YS ted e ap Bae SCH 1 Figure 3 mm e sm 16EH 20EH 32EH 32EH 40EH 48EH 60EH 64EH 80EH 00L12 00D2 00D2 00M2 00D2 00D2 00D2 00D2 00D2 RE 100 240VAC 15 10 50 60Hz 5 FE RRMA 2A 250VAC 50VA 60VA 80VA DC24V 500mA Ha Crate DC24V Ei 1 500VAC Primary secondary 1 500VAC Primary PE 500VAC Secondary PE AEUREH DU SOOVDC ESD 8KV Air Discharge EFT
5. DVP PLC SH Zee ease Has rade DVP PLC MW ASSESS OPEN TYPE ES CO a Zoo eR VW Saar A RR T ESO IO a RE Qo H i nj Am
6. 1 e Ze A BOR DVP32EH00M2 X0 X1 X4 X5 15 DC5 24V 200kHz gt DRIVER eA ZR o E faye gt ETE EY ux AEBS CHARRIE DC24V JE BEE SERRI LINE DVP32EH00M 2 50kHz DC5V DC24V SINK SOURCE f 5 Figu
7. X VO 3 VO n 1 O Y DVP EH2 PLC 1 ES Io PLC 9 50 kg cm 8 25 in lbs 60 75 C PLA PLC Witt PLC
8. 5 Figure 9 Figure 10 4 e Y Ao NO A L4 8 4 G8 6 L7 CD 5 10A QD 1 DC 6 Figure 12 2 DC Zener On Off 6 Figure 13 5 ARIT 6 O Y3 5 YA fr PLC 8 AIT 9 6 Figure 14
9. 10kHz X0 X17 10 60ms P 7 RE 200kHz 10kHz 200kHz 2W 24VO0 1 dS i 2US 10ms 0 N A DVP32EHOOM2 YO0 Y3 DVP20 32EH2 Y0 Y2 DVP40EH2 YO Y3 Y4 Y6 DVP60EH2 YO0 Y3 EH2 Figure 4 15 PLC 3 PM RAT M4 82 DIN AA 22273 3N iC THE PRECII P a AA HJ J 35mm PLC fik DIN
10. 100 240VAC BINE F L N AC110V AC220V 24V PLC M 1 6mm 10ms PLC PH A E VO On Off PLC Off PLC PLC H 24V Ha li DEN H 4r 400mA 8 0 5A 5 7mA 16 100mA 24V 4 PLC
11. gt PLC lt gt Flash Flash ROM bl 1 J Flash ROM D 1 4 4 CIF CO SRAM 0 32 25 77 PLC 55 131
12. HETER 1 gt HU PLC Flash ROM D SRAM Fgh o ay zzz Shs on a Stewie AP BARE D 13 M DVP PLC DVP PLC M OPEN TYPE M e
13. BAT LOW BE Flash ROM SRAM f H WPLSoft D Flash ROM 15 8 Figure 22 7 Figure 19 7 Figure 20 HE ASDA A amp A ASDA A2 7 Figure 21 KJ d ASDA AB yl K Figure 23 SRAM j FEER 1 D e
14. 3 1 6mm DJ EZ EIRE lt 4 10ms PLC PLC Of PLC PLC He 5 24V 0 5A gt Sie FL Ha PROC REGIE BERE ICT H 6 7mA gt 16 KAIT 100MA gt 24V 400MA 4 PLC f i c LE
15. BAT LOW dBm BAT LOW PESEE REED UBER FD P SRAM gh gt PUR SRAM 1 SEL LIE H D AK ZU Bit PA Fik Flash ROM lt WPLSoft CRIT PLO Flash D Flash ROM SUH RIERA EHE ATERIAA Flash ROM RE zv gu 3d
16. BAT LOW indicator will be on when the battery is in low voltage When this happens change the battery as soon as possible in case your program and data saved in the latched area will be lost After the power is switched off the data in the latched area are stored in SRAM memory and its power is supplied by the battery Therefore when the battery is in low voltage and the power off has been lasted for more than 1 minute the data in the latched area will be lost If you need to permanently save the data in the latched area in the program and device D refer to Flash ROM permanently saved and recover mechanism as stated below Permanently saved mechanism You can use WPLSoft Options gt PLC lt gt Flash to indicate whether to permanently store the data in the latched area in Flash ROM memory new indicated data will replace all data previously saved in the memory Recover mechanism If the battery is in low voltage before the power is switched off when the BAT LOW indicator is on and the power is off for more than 1 minute PLC will automatically restore the data in the latched area in the program and device D of Flash ROM into SRAM memory next time when it is re powered Battery Life Temperature C 0 50 70 biteve 9 8 6 5 2 Accuracy month second of RTC Temperature C F 0 32 25 77 55 131 Max inaccuracy second 132 MW
17. NPN 1 DVP16 20 32 48 64 80EH2 7 Figure 16 17 NPN 2 DVP40 60EH2 EIS eo 1 2 Zener On Off p PLC y CHUA NI Y10 e e DVP32EH00M2 e DVP32EH00 e DVP32EH00 Ez 15 M2 4 PREES M2 PRES HESE HESE us L Li LH Li pg o xc ED 7 z Figure 18 H Open Collector 7 YO Y1 EPH Ail Zh 0 1A TH 9 Y11 JFF ay rms ASDA B iJ 158 f BATLOW
18. Open Collector gt 4 YO Y1 BE FS Feds ESTE 0 1A 1 7 Figure 19 2 Zener KIR H On Off 7 Figure 20 Y10 88 Y11 PLC e Zeit 2 BOR e DVP32EHOOM2 ASDA A amp A gt ASDA A2 TAEBCAR hel as BBE SC ELS 7 Figure 21 e DVP32EH00M2 ASDA B at AOAC eR heli ABE CHAS 8 Figure 22 e DVP32EH00M2 ifii Ed ASDA AB YARIS es ars BBE Sh ELS 8 7 Figure 23 m
19. 16 5V Level lt 0 4mA 2V lt 15mA 8V lt 2 2mA 8V lt 1 5mA 8V The frequency of differential input points X0 X1 X4 and X5 on DVP32EHOOM2 is 200kHz The frequency of input points X0 X1 X4 and X5 is 200kHz The frequency of input points X10 X11 X14 and X15 on DVP40 60EH2 is 200kHz The bandwidth of input points X10 X11 X14 and X15 is 20kHz except for input points on DVP40 60EH2 The bandwidth of the input points other than the high speed input points listed above is 10kHz Input points XO X7and X10 X17 can conduct 10 60ms digital filter adjustment Output Point Two Single common port differential transistor output Single common port ipu T relay output Max frequency Load ON OFF control LED display light on ON light off OFF 2A sont EACONI ims Iam 2W 24VDC 20WDC 100WAC Max output response Off On 20hs Over current protection N A 1 DVP32EHO00M2 support two differential outputs YO Y3 2 DVP20 32EH2 support high speed output points YO Y2 DVP40EH2 supports high speed output points YO Y3 Y4 Y6 DVP60EH2 supports high speed output points YO Y3 Other DVP EH2 models support only low speed output 3 Life curves ae 120VAC Resistive Pd 75 30VDC Inductive t 7ms KL 240VAC Inductive cos j 0 4 x 120VAC Inductive cos 4 70 4 30VDC Inductive ae t 40ms 30 20 0 1 0 2 0 3 05 0 7 1 n Contact Current A Figure 4
20. 20kHz DVP40 60EH2 10kHz XO X17 10 60ms FE RA eee t ON OFF LED ON OFF anm A HEER KRAE ERER Oo wew 0 Oo we zowoonoowac s 0 2us 10ms N A 1 DVP32EHOOM2 Sie iil Y0 Y3 42 DVP20 32EH2 YO Y2 DVPAOEH2 YO Y3 Y4 Y6 DVP60EH2 seii HR YO Y3 EH2 3 ALATA HH BR IE BAe 5c fo Figure 4 10 a PLC PLC ik PSR 3 ERASATEN MA S
21. DC load Used when in smaller power Figure 12 2 Diode Zener suppression of DC load Used when in larger power and frequent On Off Figure 13 6 AC power supply Manually exclusive output For example Y3 and Y4 control the forward running and reverse running of the motor forming an interlock for the external circuit together with the PLC internal program to ensure safe protection in case of any unexpected errors Neon indicator 9 Absorber To reduce the interference on AC load Figure 14 Incandescent light resistive load Ce e Transistor T output circuit wiring NPN type1 DVP16 20 32 48 64 80EH2 TRANSISTOR OUTPUT Figure 15 Trigger circuit TRANSISTOR OUTPUT Q Figure 17 M E E EA Co Quo Pul Puce pact Figure 18 PLC Transistor output UP Smaller power C Larger power and frequent on off D 1N4001 diode or equivalent component D 1N4001 diode or equivalent component Figure 19 ZD 9V Zener 5W Figure 20 D DC power supply 2 Emergency stop 3 Circuit protection fuse 4 The output of the transistor model is open collector If YO Y1 is set to pulse output the output current has to be bigger than 0 1A to ensure normal operation of the model 1 Diode suppression Used when in smaller power Figure 19 2 Diode Zener suppression Used when in larger power and frequent On Off Figure 20 5 Manually exclusive outpu
22. Operation X10 m Installation Please install the PLC in an enclosure with sufficient space around it to allow heat dissipation as shown in the figure Nec a Direct Mounting Please use M4 screw according to the dimension of the product pe e DIN Rail Mounting When mounting the PLC to 35mm DIN S amp S rail be sure to use the retaining clip to stop any side to side movement pom of the PLC and reduce the chance of wires being loose The retaining f clip is at the bottom of the PLC To secure the PLC to DIN rail pull down the clip place it onto the rail and gently push it up To remove the PLC pull the retaining clip down with a flat screwdriver and gently remove the PLC from DIN rail as shown in the figure 2 Wiring 1 Use O type or Y type terminal See the figure in the Send 1 Cam T right hand side for its specification PLC terminal o suit M3 5 screws should be tightened to 9 50 kg cm 8 25 in Ibs Bel P D 9 gen gef Xm V and please use only 60 75 C copper conductor DO NOT wire empty terminal DO NOT place the input signal cable and output power cable in the same wiring circuit DO NOT drop tiny metallic conductor into the PLC while screwing and wiring Tear off the sticker on the heat dissipation hole for preventing alien substances from dropping in to ensure normal heat dissipation of the PLC Power Supply The power input type for DVP EH2 series is AC input When o
23. terminal cover Input indicator Communication port cover I O terminals 1 1 0 module connection port cover DIN rail 35mm I O terminal No TAT DIN rail clip Function card memory card cover Output indicator COM2 RS 485 Figure 1 Run Stop switch POWER RUN BAT LOW ERROR indicator VRO VR1 I O module COM 1 RS 232 connection port Battery socket 1 Mounting screw Function card Direct mounting hole mounting hole Memory card port Figure 2 i Ep js oO o ull co ls HE Unit mm i H Figure 3 Model 16EHOO 20EHOO 32EHOO 40EHOO 48EHOO jue 64EH00 80EH00 name R2 T2 R2 T2 R2 T2 M2 R2 T2 R2 T2 R2 T2 EH Pw m m wes we m ou ae E35 28 35 33 2RONS XP RA E 2 Electrical Specifications 16EH 20EH 32EH 32EH 40EH 48EH 60EH 64EH 80EH 0002 0002 00D2 00M2 ooD2 ooD2 O0C22 oon 00722 Power suppl MS PPY 400 240VAC 15 10 50 60Hz 5 Fuse Fuse capacity Fuse capacity 2A 250VAC Power 50VA 60VA 80VA DC24V current 500mA
24. the figure below AC 100 240V 50 60Hz N Guard Limit 4 24V ACIDC DI DO Module D AC power supply 100 240VAC 50 60Hz 2 Breaker Figure 5 3 Emergency stop This button cuts off the system power supply when accidental emergency takes place 4 Power indicator 5 AC power supply load 6 Power supply circuit protection fuse 2A 7 DVP PLC main processing unit DC power supply output 24VDC 500mA 4 Input Point Wiring There are 2 types of DC inputs SINK and SOURCE See the example below For detailed point configuration please refer to the specification of each model e DC Signal IN SINK mode Input point loop equivalent circuit 24V 246 i E 1 S S e i X0 a Figure 6 e DC Signal IN SOURCE mode Input point loop equivalent circuit 1 24V EC 24G YT o d S S AN Tone L i AL T X0 WN x4 Figure 7 Wiring of Differential Input XO X1 and X4 X5 of DVP32EHO00M2 are all high speed input circuit and others are DC24V input The working frequency of high speed input circuit can reach up to 200kHz and is mainly for connecting to differential double wire LINE DRIVER output circuit e Wiring in a hi
25. 09 06 15 Aseo NI DELTA ELECTRONICS INC WA AV VW A VW V A SIUE INSTRUCTION SHEET zc dE de gi xc Fe Wu HH High Speed Multi Functional Programmable Logic Controller A EXE A gt AN http www delta com tw industrialautomation MN DVP 1070030 02 TT Re a ENGLISH nD X This Instruction Sheet only provides descriptions for electrical specifications general specifications installation amp wiring Other detail infromation about programming and intructions please see DVP PLC Application Manual Programming For more information about the optional peripherals please see individual product instuction sheet or DVP PLC Application Manual Special I O Modules A DVP EH2 is an OPEN TYPE device and therefore should be installed in an enclosure free of airborne dust humidity electric shock and vibration The enclosure should prevent non maintenance staff from operating the device e g key or specific tools are required for operating the enclosure in case danger and damage on the device may occur M Do NOT connect the AC main circuit power supply to any of the input output terminals or it may damage the PLC Check all the wiring prior to power up To prevent any electromagnetic noise make sure the PLC is properly grounded Do NOT touch terminals when power on Product Profile amp Dimension I O
26. Power Line 2KV Digital I O 1KV Analog amp Communication I O 250V Damped Oscillatory Wave Power Line 1KV Digital I O 1KV RS 26MHz 1GHz 10V m UAR HIC NARE L N ZAR SA PLC D BEM ett 0 C 55 C 50 95 2 ig 25 C 70 C 5 95 IEC61131 2 IEC 68 2 6 TEST Fc IEC61131 2 amp IEC 68 2 27 TEST Ea 16EH 20EH 32EH 32EH 40EH 48EH 60EH 64EH 80EH 00D2 00L12 00 2 00M2 00 2 00LI2 0OLI2 002 0002 E i i mie tsp A 24VDC Bait dd A 200kHz 200kHz 20kHz 10kHz dp A Bees T VERA S S SHAPES SINK SOURCE TEFEN ES ON gt paR A OFF t10 5 24VDC 24VDC 4 7K Ohm 4 7K Ohm 3 3K Ohm 4 7K Ohm orson gt 1mA 5V gt 4mA 16 5V gt 6mA 18 5V gt 4mA 16 5V LOff2On 5V 16 5V 18 5V 16 5V lt 0 4mA 2V 15mA 8V 22mA 8V lt 1 5mA 8V cms mami DVP32EH00M2 XO X1 X4 X5 200kHz XO X1 X4 X5 200kHz DVP40 60EH2 X10 X11 X14 X15 200kHz X10 X11 X14 X15
27. Primary PE ADOLESC 500VAC Secondary PE 5MQ 500VDC ESD 8KV Air Discharge EFT Power Line 2KV Digital I O 1KV Analog amp Communication I O 250V Damped Oscillatory Wave Power Line 1KV Digital I O 1KV RS 26MHz 1GHz 10V m 14 16EH 20EH 32EH 32EH 40EH 48EH 60EH 64EH 80EH 00D2 0002 0002 00M2 0002 0002 0002 0002 0002 LN PLC X 0 C 55 C 50 95 2 6 S zhh IEC61131 2 IEC 68 2 6 TEST Fc IEC61131 2 amp IEC ee 68 2 27 TEST Ea ff 25 C 70 C 5 95 T 480 T 500 T 612 T 675 T 688 T 756 T 848 ee ie 200K S S LED ON OFF AAIE UK G0 RA T RS Tisi e DVP32EHOOM2 X0 X1 X4 X5 200kHz XO X1 X4 X5 200kHz DVP40 60EH2 X10 X11 X14 X15 200kHz X10 X11 X14 X15 20kHz DVP40 60EH2
28. RR DIN HILARIE 35mm DIN 1O 3 VO FASEB AY gt XE Pe UCD ES SHI o BOR 1 HEE A Fons A O Y 92mm Qm 7R PLC fni T SARH 9 50 kg cm 8 25 in lbs m t IQ M3 5 60 75 C 6 2 mm 5e 00 E 2 3 SAGA Re ORRIRERES AE oe oy IB PSSA PLC REZ PLC LARGATLATE HS Bite DURGA 4 Smin DVP EH2 PLC 1 100 240VAC L N AC110V AC220V 24V PLC 2 VO On Of
29. gh speed high noise environment Encoder output DVP32EHOOM2 high speed input ee el C ET A XOF He lt A A X0 i Differential output Twisted pair cable M y WE B gt 0000000000000000 sry KS Zor Be X1 Joo DC Figure8 In an environment with low noise and frequency less than 50kHz use DC5V DC24V single ended SINK SOURCE input PNP X0 SENSOR SINK 4 oem UL X0 we 5V 24V tet OP gt AI SOURCE X0 i NPN SENSOR Figure 9 Figure 10 1 The resistance is for 24V wiring only 2K Ohm 0 5W 5 Output Point Wiring e Relay R output circuit wiring PCIE A A CE IE A CI d h oft a PLC Relay output Smaller power D 1N4001 diode or equivalent component Figure 12 E CNMc2 Me Figure 11 PLC Relay output Larger power and frequent on off D 1N4001 diode or equivalent component ZD 9V Zener 5W Figure 13 PLC Relay output R 100 1200 C 0 1 0 24uF Figure 14 DC power supply Emergency stop Uses external switch o Fuse Uses 5 10A fuse at the shared terminal of output contacts to protect the output circuit 4 Transient voltage suppressor To extend the life span of contact 1 Diode suppression of
30. output posco DC24V output short circuit protection protection Voltage 1 500VAC Primary secondary 1 500VAC Primary PE withstand 500VAC Secondary PE gt 5MO at 500VDC between all I O points and ground resistance ESD 8KV Air Discharge EFT Power Line 2KV Digital I O 1KV Analog amp Communication I O 250V Damped Oscillatory Wave Power Line 1KV Digital I O 1KV RS 26MHz 1GHz 10V m The diameter of grounding wire shall not be less than that of L N terminal of Grounding the power supply When many PLCs are in use at the same time please make sure every PLC is properly grounded Noise immunity Operation Operation 0 C 55 C temperature 50 9596 humidity pollution degree 2 storage Storage 25 C 70 C temperature 5 95 humidity Vibration shock International standards IEC61131 2 IEC 68 2 6 TEST Fc IEC61131 2 amp resistance IEC 68 2 27 TEST Ea Weight R 500 R 520 R 652 R 710 R 748 R 836 R 948 ght 9 T 480 T 500 T 612 T 675 T 688 T 756 T 848 Input Point Two Differential 24VDC single common port input inputs 200kHz 200kHz 20kHz 10kHz Input wiring type ern E Change wiring from S S to SINK or SOURCE Input indicator LED display light on ON light off OFF Input voltage 10 5 24VDC 24VDC Input point 1 2 3 4 configuration Input impedance 4 7K Ohm 4 7K Ohm 3 3K Ohm 4 7K Ohm AE gt 1mA 5V gt 4mA 16 5V gt 6mA 18 5V gt 4mA
31. perating the PLC please note the following points 1 The input voltage should be current and its range should be 100 240VAC The power should be connected to L and N terminals Wiring AC110V or AC220V to 24V terminal or input terminal will result in serious damage on the PLC The AC power input for PLC MPU and I O modules should be ON or OFF at the same time Use wires of 1 6mm or longer for the grounding of PLC MPU The power shutdown of less than 10 ms will not affect the operation of the PLC However power shutdown time that is too long or the drop of power voltage will stop the operation of the PLC and all outputs will go OFF When the power returns to normal status the PLC will automatically resume operation Care should be taken on the latched auxiliary relays and registers inside the PLC when programming The 24V output is rated at 0 5A from MPU DO NOT connect other external power supplies to this terminal Every input terminal requires 6 7mA to be driven e g the 16 point input will require approximately 100mA Therefore 24V terminal cannot give output to the external load that is more than 400mA Safety Wiring In PLC control system many devices are controlled at the same time and actions of any device could influence each other i e breakdown of any device may cause the breakdown of the entire auto control system and danger Therefore we suggest you wire a protection circuit at the power supply input terminal See
32. re 9 Figure 10 4 tL Fh BCR e ftre aH DOT CUR H GOO ALAA LOL CD EHEHE Q G Reik 5 10A FRIAR THESE FEI GREE O 1 DC 6 Figure 12 2 DC AREZ i Zener On Off 6 Figure 13 ARE HAE 6 C Y3 E YA BO PLC 8 ftm x 9 ull zc tud LARA SHE ACHES 6 Figure 14 e Riso PE CR NPN 1 DVP16 20 32 48 64 80EH2 i AACR e aS bale A 7 Figure 16 12 NPN 2 DVP40 60EH2 PNAC ioe leis SF Bele SCHL HG 7 Figure 18 CD 3 0
33. t For example Y10 and Y11 control the forward running and reverse running of the motor forming an interlock for the external circuit together with the PLC internal program to ensure safe protection in case of any unexpected errors Wiring of Differential Output e DVP32EH00M2 differential output with ASDA A amp A ASDA A2 series driver DVP32bEH00M2 differential output Driver YO0 api id ES IPES 143 Ys Circuit for p V Photocouple PLS 41 SIGN36 Y1 SS i Circuit for amp rd ly SIGN 37 Ww Photocouple I Figure 21 e DVP32bEH00M2 differential output with ASDA B series driver DVP32bEH00M2 differential output Driver lt amp WW n pu Circuit for T A L L A PLS Suis dee Photocouple ds J Twisted pair cable Y1 5 3 4 w Y e Circuit for E E LISIGN 20 Ww Photocouple LL Figure 22 e DVP32EHOOM2 differential output with ASDA AB series driver DVP32bEH00M2 differential output Driver c i ee VW y s Circuit for cyt A LUPLS TH ww Photocouple Twisted pair SP cable ar Y LSIGN 36 v ee Y1 gt _T 9 00990000009 oy Sue ee YA pO SIGN 37 Photocouple i Figure 23 BAT LOW indicator
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