New Product News. y s. nt T. poi N P. n o u. t fr. Inpu m. Note: Do not use this document to operate the Unit. OMRON Corporation

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1 ew Product ews 0-2 ew nt T poi ype Sen P s sor, ters m n o u co t fr rs, tions e Inpu m ti uc any instr m y s a spla ce i Twi and d te: Do not use this document to operate the Unit. OMRO Corporation Regional Headquarters Industrial Automation Co mpany OMRO EUROPE B.V. Industrial Devices and Components Division H.Q. Industrial Control Components Department Shiokoji Horikawa, Shimogyo-ku, Kyoto, Japan Tel:(1) Fax: (1) Authorized Distributor: Wegalaan 7-9, JD Hoofddorp The etherlands Tel:(31) /Fax:(31) OMRO EECTROICS C 1 East Commerce Drive, Schaumburg, I 0173 U.S.A. Tel:(1) /Fax:(1)7-3-5 OMRO A SIA PIFIC PTE. TD. 3 Clemenceau Avenue, #11-01, UE Square, 2399 Singapore Tel:(5) /Fax:(5) OMRO CHIA CO., TD, BEIJIG OFFICE Room 2, Office Building, Beijing Capital Times Square,. West Chang'an Road, Beijing, 0031 China Tel: () /Fax: () te: subject to change without notice. Cat.. 2-E1-01 Printed in Japan M

2 C 0-0V 0AR-A C 0-0V 0AR-A C 0-0V 0AR-A C 0-0V 0AR-A C 0-0V 0AR-A Just a few examples of what the ZE can do: Enormous added value in automating everyday facilities Easier small-scale automatic control. That is what the ZE from OMRO provides. The ZE can be used almost as easily as wiring materials. The ZE enables quick automation of small machines or facilities. Add to this the CD screen and buttons on the front panel for easy ladder program input. You want a more compact control panel or reduced assembly or wiring? inputs, easier design, or multiple-timer control? The OMRO ZE gives you these, and more, to fill all your automation requirements. Increase system convenience and added value using the automation excellence provided by the ZE. Fan and Pump Control Factories (Jigs, Operator Error Prevention, Small Equipment) Coin-operated Car Wash Coin selector ZE Car wash operation The ZE can be used to change the operating time depending on the number of coins inserted. If a holding timer (#) is used with holding bits (H) in self-holding programming, the remaining time will not be reset even if there are unexpected power interruptions Application of Bit ogic and Timer Functions I 0 M 0 M 0 H 0 H 0 M 1 M 1 H 1 H 1 M 2 M 2 H 2 H 0 [ 1st coin 13 I 0 M3 [ H0 detected 1 15 I 0 H1 1 [ M1 2nd coin 17 I 0 M 1 [ H1 detected 19 I 0 H2 [ M2 3rd coin I 0 M5 [ H2 detected H 0 H 1 H 2 # 0 M 3 M M 5 The car wash operates for 3 minutes for one coin, minutes for two coins, and 9 minutes for 3 coins. H 0 H 1 H 1 H 2 H 2 [ T#0 Car washer drive output Holding timer starts [ M3 Hold for 1st coin cleared [ M Hold for 2nd coin cleared [ M5 Hold for 3rd coin cleared R#0 Holding timer reset Parameter s Holding Timer #0 Set to 3 min. Preventing Assembly Omissions and Other Mistakes Parts s Tool sensor Screw tool If the part required for assembly does not pass through the sensor, the screw tool will not be supplied with air to prevent mistakes Application of Bit ogic and Timer Functions Ex T 2 M 0 M 2 Parts sensor (I Tool sensor (I Tool cylinder (air) (Q Additional process switch (I Work bit (M Work bit (M upward differe er on M2 turns O for 1 scan after turns O. Greenhouse Air Circulator Control ZE Contactor Motor Fan The ZE can be used to circulate carbon dioxide or warm air. Two circulation fans can be operated at regular intervals. Startup current can also be reduced by staggering operation of the two fans. Research and Development Devices Application of Bit ogic and Timer Functions I 0 Operates I 1 Stops M 0 T 1 T 2 T 1 T 0 S R [ Fan 1 operates TT0 Startup time offset time [ Q1 Fan 2 operates TT1 Operation time TT2 Stop time When the operation switch is pressed, fan 1 starts and 30 seconds later fan 2 starts. The fans repeat a cycle of 1 hour operating, 1 hour 30 minutes stopped. Parameter s Time Offset Startup Time T0 Set to 30 s. Time Offset Startup Time T1 Set to 1 h. Time Offset Startup Time T2 Set to 1 hour 30 min. Energy Conservation and Automation of Building Facilities Automatic Escalator Sensor ZE Escalator operates An escalator can operate continuously between specified days and times. It can also be set to conserve energy by operating outside those times only when a person approaches the escalator. Application of Bit ogic, Timer Functions, and Weekly Timers 00 I 1 Operates 01 I 2 Stops M 0 0 T 0 05 I 0 Person detected 0 S R [ Escalator operates TT0 OFF-delay timer starts Times for 3 minutes after detecting person. Two weekly timers are used to operate the escalator between 7:00 and :00 am and 5:00 and :00 pm on weekdays. Outside those times, the escalator uses the OFF-delay timer to operate for 3 minutes after a person has been detected. Parameter s Weekly (Mon to Fri: 7:00 to :00) Weekly (Mon to Fri: 17:00 to 22:00) OFF-delay Timer T0 Testing Equipment Application of Bit ogic, Timer Functions, and Counter Functions Parameter s T0, Output O Time ighting Pattern Control Application of Bit ogic Switch ZE Testing equipment T 1 OFF time S RC0 R TT0 TT1 CC0 Performing test Counter reset Performing test O time OFF time Counter Set to 2 minutes. T1, Output OFF Time Switch ZE ight I 0 All lights O I 1 Pattern 1 S SQ1 SQ2 SQ3 S RQ1 SQ2 RQ3 Group 1 lit Group 2 lit Group 3 lit Group lit Group 1 lit Group 2 not lit Group 3 lit Group not lit I 2 Pattern 2 I 3 All lights OFF S SQ1 RQ3 RQ3 R RQ1 RQ2 RQ3 Group 1 lit Group 2 lit Group 3 not lit Group not lit Group 1 not lit Group 2 not lit Group 3 not lit Group not lit O/OFF switching can be performed for durability and other tests in R&D. [ Output When the operation switch is pressed, the device repeats a sequence of 2-minutes-O, 3-minutes-OFF for a total of 0 times before automatically stopping. Set to 3 minutes. C0, umber of Times Output Turns O Set to 0 times. Set the required light patterns and change between patterns with the flick of a switch to save energy by improving lighting efficiency. Switch 1 () turned O, all lights turn O. Switch 2 (I1) turned O, light groups 1 and 3 turn O. Switch 3 (I2) turned O, light groups 1 and 2 turn O. Switch (I3) turned O, all lights turn OFF. 2 3

3 The Main Features of the ightweight and Easy-to-use ZE Zen Provides a Broad Selection of -point to -point Models Easy Programming* The CD screen comes with operation buttons on the front panel to enable programming in ladder view format. The CD screen also has a backlight, making it easier to see when the ZE is used in dark locations. Flexible Expansion The ZE can be used effectively for lighting and other applications requiring many output points. Expansion I/O Units can be added easily if there are not enough I/O points. The compact ZE takes up little space. s with I/O Points CD Type (with liquid crystal display) ED Type (without liquid crystal display) Expansion I/O Units * For CD-type s only. ZE-C1AR-A-V1 ( type, relay outputs) ZE-C1DR-D-V1 ( type, relay outputs) ZE-C1DT-D-V1 ( type, transistor outputs) ZE-C2AR-A-V1 ( type, relay outputs) ZE-C2DR-D-V1 ( type, relay outputs) ZE-C2DT-D-V1 ( type, transistor outputs) ZE-EAR ( inputs, relay outputs) ZE-EDR ( inputs, relay outputs) ZE-EDT ( inputs, transistor outputs) ZE-EA ( inputs) ZE-ED ( inputs) ZE-ER ( relay outputs) Hold Functions for Peace of Mind The ZE has holding timers and holding bits to give peace of mind against unexpected power failures. These functions hold the previous status so that operation can continue with the same status after power has been restored. You can also mount a Battery Unit (optional) to back up the calendar and clock functions for years or more. adder programs and parameter settings can be backed up to the 's internal EEPROM, ensuring no data will be lost even if a Battery Unit is not installed. Memory Cassettes Optional Memory Cassettes have a wide range of uses - programs can be easily saved or downloaded, or copied to other ZE. s with I/O Points CD Type (with liquid crystal display) ED Type (without liquid crystal display) Operations Determined after Wiring Hardware relays or timers can normally be selected only after operations have been decided. The ZE is different. You can wire the ZE first and then carefully consider operating details later. This makes programming and maintenance after wiring a simple matter. Many Other Functions Standard Functions on All s Two types of power supply specifications: 0 to V or 2 V Input filters to prevent noise-related malfunctions Analog inputs Outputs have a large switching capacity ( A at 250 V). Up to I/O points if Expansion I/O Units added. Password protection. Conforms to EC Directives. Scheduled for conformance to U/CSA in the future. Programming using ZE Support Software on Windows 95, 9, 00, ME, XP, or T.0 Service Pack 3 Functions Unique to CD-type s ZE-C1AR-A-V1 ( type, relay outputs) ZE-C1DR-D-V1 ( type, relay outputs) ZE-C1DT-D-V1 ( type, transistor outputs) Input from P- or PP-output Sensors ( power supply: V1 s) ZE-C2AR-A-V1 ( type, relay outputs) ZE-C2DR-D-V1 ( type, relay outputs) ZE-C2DT-D-V1 ( type, transistor outputs) Displays (D) points 1 points Displays in languages (Japanese, English, German, French, Spanish, and Italian) V1 Calendar and clock functions. Display user-set messages or converted values. 5 P output PP output C1DR-D-V1 Twice the Timers and Counters (V1 s Only) Timers (T) Holding timers (#) Counters (C) Weekly timers (@) Calendar timers ( ) Pre-V1 Units points points points points points V1 Units 1 points points 1 points 1 points 1 points

4 The More You Get to Know It, the Better It Is The Amazing ZE Programming Is Even Easier with ZE Support Software s and Expansion I/O Units ame CPU Units Type CD ED CD ED CD ED CD ED Model number ZE-C1AR-A-V1 ZE-C2AR-A-V1 ZE-C1DR-D-V1 ZE-C2DR-D-V1 ZE-C1DT-D-V1 ZE-C2DT-D-V1 ZE-C1AR-A-V1 ZE-C2AR-A-V1. of I/O points Power supply voltage 0 to V 2 V 2 V 0 to V Inputs 0 to V 2 V 2 V 0 to V Outputs s s s s CD and buttons Calendar and clock Analog input ZE Support Software Functions Creating adder Programs ZE ladder programs can be created with ease. Simulating adder Programs The simulation function makes it possible to check whether correct operation is performed without connecting to the ZE. CD ED ZE-C1DR-D-V1 ZE-C2DR-D-V1 2 V 2 V s CD ED ZE-C1DT-D-V1 ZE-C2DT-D-V1 2 V 2 V s Expansion I/O Units Optional Units ame Memory Cassette ZE-EAR ZE-EDR ZE-EDT ZE-EA ZE-ED ZE-ER Model number ZE-ME01 EEPROM 0 to V 2 V 2 V 0 to V 2 V s s s s Remarks Enables programs and parameter settings to be saved or copied to another ZE (See note.) Transfer from ZE to Memory Cassette Transfer from Memory Cassette to ZE CD Type Supported Supported ED Type t supported Supported (Automatic transfer when power turned O) te: The Edit Input Dialog Box is displayed when an input bit is inserted. Timer, counter, and other parameter settings are also set in the Edit Input Dialog Box. They cannot be set in the Edit Output Dialog Box. Monitoring adder Programs The operating status can be monitored from the Support Software by connecting to the ZE using a Connecting Cable (ZE-CIF01). te: The simulation function is supported by ZE-SOFT01-V2 and later versions. Printing adder Programs adder programs and I/O comments, as well as timer, counter and other parameter settings can be printed. Connecting Cable ZE-CIF01 2-m RS-232C (9-pin D-sub connector) Memory Cassette initialization Supported t supported Battery Unit ZE-BAT01 year min. battery life (at 25 C) The program and parameter settings are backed up in the 's internal EEPROM and will not be lost. Use the Battery Unit to prevent loss of calendar/clock, holding bits, holding timer present values, counter present values, and other data when the power is turned OFF for an extended time (for 2 days or more at 25 C). This data is otherwise backed up using RAM and a super-capacitor. ZE Support Software ZE-SOFT01-V3 Runs on Windows 95, 9, 00, ME, XP, or T.0. Specifically designed for the ZE (CD-ROM). System Configuration Battery Unit C 0-0V 0AR-A-V1 Expansion I/O Unit The Support Software can also be used to save files and edit comments. ZE Support Software and Versions Connecting Cable Memory Cassette Support Software Up to 3 Expansion I/O Units can be connected, regardless of the I/O he Connecting Cable and Memory assette cannot be connected to the ZE at the same time. Programs cannot be written to ED-type s without the ZE Support Software or a Memory Cassette. Use ZE-SOFT01-V3 ZE Support Software Ver. 3.0 or later when using s with I/O points. ZE Support Software Pre-V1 Unit I/O points V1 Unit I/O points SOFT01 (Ver. 1.0) SOFT01-V2 (Ver. 2.0) SOFT01-V3 (Ver. 3.0) ZE-SOFT01 and ZE-SOFT-V2 ZE Support Software (versions 1.0 and 2.0) can be used with ZE-C -V1 s (V1 Units with I/O points) but only half of each of the timer, holding timer, counter, weekly timer, calendar timer, and display function areas can be used (i.e., the Pre-V1 bit range). te: Memory Cassettes created using the can be read to the, regardless of which model is used, however the following points must be taken into consideration. When using a Memory Cassette created with a V1 for a Pre-V1, use the Memory Cassette within the ranges for the Pre-V1 's timers, holding timers, counters, weekly timers, calendar timers, and displays. When using a Memory Cassette created with a with I/O points for a with I/O points, use only up to inputs and outputs for the I/O bit area. 7

5 Flexible Control with a Wide Variety of Instructions Programs can consist of up to 9 lines with 3 program inputs and 1 output per line. Bits Additional Bit Output Functions ame Input bits Expansion input bits Output bits Expansion output bits Work bits Holding bits Timers Holding timers Counters Weekly timers Calendar timers Display bits Analog comparator bits Timer/counter comparator bits Button input bits [ : rmal Symbol I X Bit addresses to Ib* X0 to Xb [ Q 0 will turn O or OFF depending on the O/OFF status of the execution condition. Q Y M H T # D A P B to Q7* Y0 to Yb to Mf H0 to Hf T0 to Tf #0 to #7 C0 to 0 to f D0 to Df A0 to A3 P0 to Pf B0 to B7. of points I1 Q I1 S: Set SQ 1 Q1 will stay O once the execution condition I1 has turned O once. A reset is used to turn Q1 OFF. I2 Q1 I2 Operation Reflect the O/OFF status of the input devices connected to the input terminals on the. Reflect the O/OFF status of the input devices connected to the input terminals on the Expansion I/O Units. The O/OFF status of these output bits is used to control the output devices connected to the output terminals on the. The O/OFF status of these output bits is used to control the output devices connected to the output terminals on the Expansion I/O Units. Work bits can be used only within the ZE program. I/Os for external devices cannot be made (i.e., all I/O is internal). X: O-delay timer : (box) OFF-delay timer O: One-shot pulse timer F: Flashing pulse timer * s with I/O points have input bits ( to I5) and output bits ( to Q3). Used the same as the work bits. However, if the power to the ZE is turned OFF, these bits also maintain the previous O/OFF status. Functions are selected from the screen when parameter settings are made. Hold the present value being counted even if the trigger input or power supply is turned OFF and continue timing when the trigger input or power is restored. Reversible counters that can be incremented and decremented. Turn O and OFF during specified times on specified days. Turn O and OFF between specified dates. Display any character string, time, or analog-converted display of timer or counter present values. Used as program input conditions to output analog comparator comparison results. These bits can be used only for 2-V input s. Compare the present values of timers (T), holding timers (#), and counters (C). Comparison can be made between the same two counters or timers, or with constants. Used as program input conditions and turn O when operation keys are pressed in RU Mode. These input bits can be used only with CD-type s. R: Reset RQ 1 Q1 is forced OFF when the execution condition I2 is turned O. Time units can be selected from the following: 0.01-s unit: 0.01 to s min/s unit: 00 min 01 s to 99 min 59 s h/s unit: 00 h 01 min to 99 h 59 min I3 Q2 I3 A: Alternate AQ 2 Details Q2 alternates between turning O and OFF when the execution condition I3 turns O. Weekly Timer Operation Date setting Mon Tues Wed Thurs Fri Sat Sun 2:00 Stop time 17:30 Time setting Start time :15 00:00 Weekly input condition Input turns O between :15 and 17:30, Tuesday to Friday every week. Calendar Timer Operation Dec 31 Start date Sep 1 Stop date Apr 1 Jan 1 Calendar timer *0 bit A0 bit min 00 s min s Timer present value P0 bit Bit *0 turns O between April 1 and August 31. Analog Comparator Operation Example a. When input V b. When input 1 input 2 Input 1 (I converted display) V A1 bit Timer/Counter Comparator Operations P1 bit Input 1 (I converted display) Input 2 (I5 converted display) Time a. When Timer 0 (T0) min s b. When Counter 1 (C1) is Counter 2 (C2). Counter 1 (C1) Counter 2 (C2) Display s Backlight Terminal mode switching Display start position Display object Monitoring 0: Backlight does not turn O (ignored if already O). 1: Backlight turns O 2: Terminal mode switching (backlight not O) 3: Terminal mode switching (backlight O) X00 X11 X (digit): 00 to 11 Y0 to Y3 Y (line): 0 to 3 CHR DAT CK I to I5 T0 to Tf #0 to #7 C0 to Cf Characters (up to characters - English, numerals, symbols) Month/day (5 digits ) Hour/minute (5 digits ) Analog-converted value ( digits ) Timer present value (5 digits ) Holding timer present value (5 digits ) Counter present value ( digits ) A: Can read settings during operation. D: Cannot read settings during operation. for Button Input Bits AT Button input 7 (B7) DE Button input (B) Button input 5 (B5) Button input (B) Button input 3 (B3) Button input 2 (B2) OK Button input 1 (B1) ESC Button input 0 (B0) Using Timers and Holding Timers Available timers Holding timers (#0 to #7) Timer type Operation X O-delay timer only O-delay timer OFF-delay timer Turns O after set delay after the trigger input turns O. X Turns O after set delay after the trigger input turns O. Stays O while the trigger input is O and turns OFF after a set delay after the trigger input has turned OFF. Timers (T0 to Tf) O One-shot pulse timer Turns O for a set period after the trigger input turns O and regardless of how long the trigger input remains O. F Flashing pulse timer Repeatedly turns O and OFF in a set cycle while the switch is O. Trigger input Reset input Present value Timer input condition Main applications To continue operation after momentary power loss or power interruptions. When delayed operation or a time lag is required. Useful for OFF delay s for lights or fans. Useful for set operations where operation is always required during a regular period only. Useful for flashing emergency lights or sounding buzzers as the output for an alarm. Counter Operation The counter bit turns O when the counter value (present value) reaches the set value (present value set value). The count returns to 0 and the counter bit turns OFF when the reset input turns O. Count inputs are not accepted while the reset input is turned O. The counter present value and counter bit (O/OFF) are held even if the operating mode is changed or the power supply is interrupted. (DIR) I1(CT) I2(RES) Present value 0000 Counter C0 bit 9

6 Units with Power Supply s with I/O Points (V1 and Pre-V1 Units) 0 to V, 50/0 Hz, 30 VA Circuit protector Units with Power Supply s with I/O Points For connections to negative ( ) common (V1 Units) Circuit protector 1 2/ C I1 I2 I3 I I5 C I I7 I I9 Ia Ib Circuit protector 2 V,.5 W 2 V,.5 W 2 V,.5 W power supply For connections to negative ( ) common Expansion I/O Units Expansion I/O Units ( input type) te: Provide power to the and power supply terminals at the same time. s with I/O points Input terminal I/I5 analog input device connections (input range: 0 to V) Input terminal Ia/Ib analog input device connections (input range: 0 to V) 2 V,.5 W 2 V,.5 W power supply 2 V,.5 W 2 V,.5 W Input devices For connections to positive (+) common (V1 Units) For connections to positive (+) common I1 I2 I3 I I5 I C I7 I I9 Ia Ib I5 I C I7 I I9 Ia Ib I1 I2 I3 I I1 I2 I3 I I5 I C I7 I I9 Ia Ib te: Provide power to the and power supply terminals at the same time. s with I/O Points te: Always connect analog input devices to the negative ( ) terminal. te: Always connect analog input devices to the negative ( ) terminal. Expansion I/O Units te: I/I5 cannot be used as analog input terminals with a positive (+) common terminal connection. te 1. Ia/Ib cannot be used as analog input terminals with a positive (+) common terminal connection. 2. Provide power to the and power supply terminals at the same time. Input Inputs (t Isolated) O voltage Circuit drawing te: Can be selected using the input filter settings. 0 to V +%, 15%, 50/0 Hz 0 kω 0.15 ma/0 V, 0.35 ma/ V 0 V min. 25 V max. 50 ms or 70 ms at 0 V (See note.) 0 ms or 0 ms at V (See note.) Inputs to I3 ( to I9 for Units with I/O points), V1 Units (Photocoupler Isolated) O voltage te: Can be selected using the input filter settings. Inputs I1 and I15 (Ia and Ib for Units with I/O points), V1 Units (t Isolated) inputs Analog inputs O voltage Input range External input impedance Resolution Overall accuracy ( AD conversion data C) te: Can be selected using the input filter settings. 2 V +%, 15% 5 kω 5 ma (typ.) 1.0 V min. 5.0 V max. 15 ms or 50 ms (See note.) 5 kω 5 ma (typ.) 1.0 V min..5 V max. 15% 15 ms or 50 ms (See note.) 0 to V 150 kω min. 0.1 V (1/0 FS) % FS 0 to.5 V (in increments of 0.1 V) 0 to V Analog voltage output device 2 V I Ω 0.1 µf 20PF 2 V I kω kω 330 kω 51 kω Circuit drawing 750 kω Circuit drawing I kω 0 kω 27 kω 27 kω 150 k Ω 0.01 F 2. Ω 150 kω 27 kω 27 kω When connecting analog I/O devices, always connect the negative ( ) side to the terminal. Expansion I/O Unit Inputs (Photocoupler Isolated) Circuit drawing te: Expansion I/O Units can be connected to either the positive (+) or negative ( ) common terminal. Output Circuit Wiring Units with Outputs All four relay output s in both s with I/O points and Expansion I/O Units have independent contacts. s with I/O points have independent contacts ( to Q3) and the remaining four (Q to Q7) have 2 points/common. There are no restrictions for polarity. O voltage 0 to V +%, 15%, 50/0 Hz 3 kω 1.2 ma/0 V, 2.9 ma/ V 0 V min. 25 V max. 50 ms or 70 ms at 0 V (See note.) 0 ms or 0 ms at V (See note.) 0 to V s with I/O points s with I/O points Expansion I/O Units te: Can be selected using the input filter settings. Inputs (Photocoupler Isolated) Q1 Q2 Q3 Q1 Q2 Q3 Q Q5 Q Q7 OUT0 OUT1 OUT2 OUT3 Switching capacity 250 V, A (cos = 1) 2 V, 5 A 2 V +%, 15%.7 kω Circuit drawing Output Type All four transistor output s in both s with I/O points and Expansion I/O Units have independent contacts. s with I/O points have independent contacts ( to Q3) and the remaining four (Q to Q7) have 2 points/common. The terminals have polarity, but the power supply and load connections can be swapped. O voltage te: Can be selected using the input filter settings. 5 ma (typ.) 1.0 V min. 5.0 V max. 15 ms or 50 ms (See note.) 2 V 2,0 pf 750Ω s with I/O points s with I/O points Expansion I/O Units Q1 Q2 Q Q1 Q2 Q3 Q Q5 Q Q7 OUT0 OUT1 OUT2 OUT3 Switching capacity 2 V, 0.5 A 11

7 Output (/Expansion I/O Unit) Output Type Minimum switching capacity life Circuit drawing Maximum switching capacity Electrical Mechanical 250 V/ A (Resistive load: cos = 1) 2 V/5 A (Resistive load) 5 V/ ma (Resistive load) Resistive load: 50,000 times (cos = 1) Inductive load: 50,000 times (cos = 0.) million times 15 ms max. 5 ms max. Q/Q Q5/Q7 s with I/O points only Dimensions (Unit: mm) s with I/O Points (CD/ED Types) With Battery Unit Mounted ZE-BAT01 5 The life, under the worst conditions, of the output contacts used in ZE relay outputs is given in the above table. Guidelines for the normal life of the relays are shown in the diagram on the right. 3 ) ife-test Curve (usage: 30 times/hour) 1, V resistive load 2-V resistive load/250-v inductive load 2-V inductive load (t=7 ms) Contact current (A) s with I/O Points (CD/ED Types) I I 7 I I 9 I a I b 5 Maximum switching capacity eakage current Residual voltage Circuit drawing 2 V +%, 15%, 500 ma 0.1 ma max. 1.5 V max. 1 ms max. 1 ms max. Each is composed of an independent common. to Q3/OUT0 to OUT3 2 V + Q/Q Units with I/O points only 90 0 C1AR-A-V1 Q Q5 Q Q7 5 Q5/Q7 General Performance With Battery Unit Mounted Specification Specification I I 7 I I 9 I a I b Power supply voltage Rated power supply voltage Power consumption Inrush current ZE- 0C AR-A-V1 0 to V 2 V 30 VA max. (With 3 Expansion Units connected) ZE- 0C D -D-V1 5 to 2 V. to 2. V 0 A max. A max..5 W max. (With 3 Expansion Units connected) Control method I/O control method Programming language Program capacity Max.. of control I/O points CD display Stored program control Cyclic scan adder diagram 9 lines (3 input conditions and 1 output per line) points : inputs and outputs Expansion I/O Units: inputs and outputs each, up to 3 Units. characters x lines, with backlight (CD-type only) ZE-BAT01 5 C1AR-A-V1 Insulation resistance Dielectric strength ise immunity Vibration resistance Shock resistance Ambient temperature Ambient humidity Ambient conditions Ambient storage temperature Between power supply external and input terminals, and relay output terminals: M min. (at 500 V) Between power supply external and input terminals, and relay output terminals: 2,300 V, 50/0 Hz for 1 minute with leakage current of 1 ma max. Conforms to IEC00--, 2 kv (power supply line) Conforms to JIS C000, to 57 Hz, amplitude mm, 57 to 1,500 Hz, acceleration: 9. m/s 2 0 minutes in X, Y, and Z directions (sweep time: min (. sweeps: = 0 min.)) Conforms to JIS C m/s 2, 3 times in X, Y, and Z directions. CD-type (operation panel and calendar/clock function): 0 to 55 C ED-type (no operation panel or calendar/clock function): 25 to 55 C % to 90% (with no condensation) corrosive gases CD-type (operation panel and calendar/clock function): to 75 C ED-type (no operation panel or calendar/clock function): 0 to 75 C Operation keys Memory backup Super-capacitor holding time Battery life (ZE-BAT01) Time function (RTC) Terminal block Power supply holding time Weight ( cursor keys and operation keys) (CD-type only) EEPROM (or optional Memory Cassette) User programs Parameter settings RAM, super-capacitor hold (or optional Battery Unit) Holding bits Holding timer and counter values Super capacitor hold (or optional Battery Unit) Calendar and clock 2 days min. (25 C) years min. (25 C) ZE- 0C1 - only, accuracy: 1 to 2 min/month (at 25 C) Solid-line terminal block (Use solid lines or fine wiring terminals.) ZE- 0C AR-A: ms min. ZE- 0C D -D: 2 ms min. 300 g max. Expansion I/O Units ( inputs, outputs, I/O) Q Q5 Q Q7 Unit Mounting Hole (Same for all Units)

8 Precautions when Selecting ZE Programmable s Differences between V1 and Pre-V1 s Data Area Comparisons input bits output bits Timers Holding timers Counters Weekly timers Calendar timers Display bits Work bits Holding bits Expansion I/O Unit input bits Expansion I/O Unit output bits Analog comparator bits Comparator bits V1 s ZE-C - -V1 to I5 ( points) to Q3 ( points) V1 s T0 to Tf (1 points) #0 to #7 ( points) C0 to Cf (1 (1 points) 0 to f (1 points) D0 to Df (1 points) ZE-C - -V1 to Ib ( points) to Q7 ( points) to Mf (1 points) H0 to Hf (1 points) X0 to Xb ( points) Y0 to Yb ( points) A0 to A3 ( points) P0 to Pf (1 points) Input Wiring (-type s Only) Pre-V1 s ZE-C - to 5b ( points) to Q3 ( points) T0 to T7 ( points) #0 to #3 ( points) C0 to C7 ( ( points) 0 to f ( points) D0 to D7 ( points) With V1 s, you can wire to either the negative ( ) common or positive (+) common terminal. egative ( ) Wiring Positive (+) Wiring Password Function (CD-type s Only) In addition to the password-protected items in existing models, password protection is also provided for the Program All Clear operation in the V1 s. s Protected by Password (0000 to 9999) V1 Units Editing ladder program Program all clear adder monitoring Changing/clearing password Changing backlight OFF time input filter node number Pre-V1 s Pre-V1 Units Editing ladder program adder monitoring Changing/clearing password Changing backlight OFF time input filter node number With Pre-V1 s, the input common terminal is connected internally to the negative ( ) side of the power supply. Models Model ZE-C1AR-A-V1 ZE-C2AR-A-V1 ZE-C1DR-D-V1 ZE-C2DR-D-V1 ZE-C1DT-D-V1 ZE-C2DT-D-V1 ZE-C1AR-A-V1 ZE-C2AR-A-V1 ZE-C1DR-D-V1 ZE-C2DR-D-V1 ZE-C1DT-D-V1 ZE-C2DT-D-V1 ZE-EAR ZE-EDR ZE-EDT ZE-EA ZE-ED ZE-ER ZE-ME01 ZE-CIF01 ZE-BAT01 ZE-SOFT01-V3 ZE-KIT01-EV3 ZE-KIT02-EV3 Unit name Expansion I/O Unit. of I/O points Power supply Inputs Outputs CD Memory Cassette Connecting Cable Battery Unit ZE Support Software (CD-ROM) Set containing (ZE-C1AR-A-V1), Support Software Connecting Cable, ZE Support Software, and manual. Set containing (ZE-C1DR-D-V1), Support Software Connecting Cable, ZE Support Software, and manual. Calendar/ clock 2 V,.5 W wiring required. 2 V,.5 W 2 V,.5 W wiring required. Analog inputs possible. Analog inputs possible. C Pre-V1 Units with I/O points with I/O points with I/O points te: I and I5 cannot be used as analog input terminals. Support Software and Combinations Support Software Version ZE-SOFT01 Ver ZE-SOFT01-V2 Ver ZE-SOFT01-V3 Ver I/O points Can be used, with restrictions (See note.) Can be used, with restrictions (See note.) V1 Units I/O points Cannot be used. Cannot be used. te: Only half of each of the timer, holding timer, counter, weekly timer, calendar timer, and display function areas can be used (i.e., the Pre-V1 bit range). Difference between ZE Programmable s and PC adder Program Execution ZE Programmable s OMRO SYSM PCs Bus bar I3 I T0 I1 I2 Executed sequentially from the bus bar. [ [ Q1 TT0 [ Q2 ZE executes the entire ladder program (up to 9 lines) from the first to last line at one time. Each row is executed in order from left to right starting from the left bus bar. The O/OFF status produced by an output contact will not be used as the input contact status in the same cycle, but it can be used in the next cycle cycle 1 cycle I3 I T0 I1 I2 [ [ Q1 TT0 [ Q2 ED PCs execute ladder programs one rung () at a time, starting with the top rung and executing it in order from the left. When the ED instruction is reached, the program is executed again from the first rung. When the following instructions are executed, turns O/OFF at the same time as the other bits. 1 15

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