Jumat, 13 Mei 2011

OMRON PLC CJ1W-PH41U (High-resolution Unit) and CJ1W-AD04U (General-purpose Unit)

Fully Integrated Sequence and Loop Control New Built-in Loop Controller

  • Ultra-small size fits in most devices.
  • Backplane-free structure provides the functions you need in minimum space.
  • Low-cost solution for controlling multiple loops.
  • Function block programming for easy engineering.
  • HMI windows can be simply generated from function blocks automatically.
  • Effective maintenance functions.

 
New Products

CJ1W-PH41U Process Analog I/O Unit
(High-resolution Unit with Fully Universal Inputs)


CJ1W-AD04U
Process Analog I/O Unit
(General-purpose Unit with Fully Universal Inputs)

Process Analog I/O Units


A single Unit handles all types of inputs, including temperature sensor inputs (e.g., thermocouple or platinum resistance thermometer), analog signal inputs (e.g., 4 to 20 mA or 1 to 5 V), and potentiometer inputs.
  • Fully Universal Inputs, Including Thermocouple Inputs, Platinum Resistance Thermometer Inputs, and DC/Voltage Inputs
    The input type can be selected for each input channel, saving space and reducing costs for compact devices that use a mix of input types. And trouble-free selection of input types improves inventory control and maintenance.
  • General-purpose Models for Great Cost Performance and High-resolution Models for Applications Such as Semiconductor Production Equipment
    These compact CJ-series Units provide four insolated input channels per Unit. Depending on the application, choose either the high-resolution CJ1W-PH41U, which provides a selection of combinations of resolutions and conversion speeds in addition to a PLC-first 1/1,000°C range (0.000 to 50.000°C, 4-wire Pt100), or the general-purpose CJ1W-AD04U, which provides superior cost performance. (See note.)

    Note: According to OMRON investigation.
Resolutions and Sampling Speeds for High-resolution Models

Resolution: 1/256,000 Resolution: 1/64,000 Resolution: 1/16,000
60 ms/4 points 10 ms/4 points 5 ms/4 points


Advantages of Smart Process Control

Advanced controller functions integrated with the same CJ-series functionality and high-speed capabilities

Downsizing
  • Ultra-small size fits in most devices.
  • Backplane-free structure provides the functions you need in minimum space.
  • Low-cost solution for controlling multiple loops.
Easy Engineering
  • Function block programming for easy engineering.
  • Seamless integration of sequence control and loop control.
  • HMI windows can be simply generated from function blocks automatically.
High Reliability
  • Control functions have the added ability to control multiple loops.
  • Consolidating the proven CS-series loop-control technology.
  • Effective maintenance functions.

Features
 
Integrated Loop Control and Sequence Control
 
An engine for controlling analog quantities (e.g., temperature, pressure, flowrate) is built into the same CPU Unit as the engine for executing sequence control, delivering high-speed sequence control and high-speed, advanced analog quantity control in a single Unit.
 
Sequence Control Engine executes 20-kstep ladder program in 1 ms. Loop Control Engine executes PID control in 10 ms.
 
 
Small - Super compact: Only 90 mm High and 65 mm Deep, and Backplane-free structure enables flexible width design.

Compact PLC Aids Machine Downsizing by Fitting Just About Anywhere. Wide Array of I/O Units, Special I/O Units, and CPU Bus Units Are Available to Suit Your Application.
 
Greatly reduces space between ducts.
 
 
 
Fast - High-speed sequence control functions can be used directly for high-speed, advanced loop control.
  • Sequence control: Executes 20-Kstep ladder programs in 1 ms (with basic instructions only). PCMIX = 7.4 LD or OUT executed in 40 ns
  • Loop control: Executes PID operations for 20 loops in up to 10 ms. This is a guide for general applications.
High-speed processing where only one CPU unit needed.
 
 
 
Easy - Function blocks make loop-control programming easy. You can also create CX-Process Tool tuning windows to help adjust loops. Controller faceplates can be created automatically for touch panel displays.
  • Sequence control programs: Standardize and simplify programs using structured programming. Special I/O Unit and CPU Bus Unit settings are easy with function blocks (using ladder programming language or structured text).
  • Loop control programs: By combining function blocks, a wide array of control methods can be easily configured, from basic PID control used by Temperature Controllers to program, cascade, and feed-forward control.
 
 
 
Expandability - Lineup includes low-cost models that use up to 50 function blocks and models that allow up to 300 blocks designed for large-scale systems and complicated operations.
  • Loop control: Programming with function blocks to suit the application.
  • System configuration: Choose and combine functions from a broad selection of I/O Units.
System Configuration
 
 
 
Maintenance - Simply turn the DIP Switch ON/OFF to save or read the user program including function blocks using the Memory Card.
  • Simple backup function enables backup, recovery, and comparison of all PLC data including the function block programs for the Loop Control Board using the Memory Card.
  • Save tag settings, comments, annotations, and connection data created using the CX-Process Tool to the Memory Card.
Easy Maintenance Configuration
 
 
 
Result - Consolidating OMRON's expertise in temperature and process control
cultivated over many years to provide you with effortless solutions using proven algorithms.
  • Loop control: Proven functionality of Temperature Controllers and CS-series Loop Control Boards (see note 1) in a compact size.
Disturbance Overshoot Adjustment and Fine Tuning Features
 
 
 
Applications

The Loop-control CPU Unit Provides You with Solutions for the Complex and Advanced Functions Demanded by Control Devices in an Increasingly Diverse Range of Equipment.

Sterilization and Disinfection of Pharmaceuticals, Food and Beverage. Industrial Furnace Application.


Providing Solutions to Other Problems

Solutions for electrical parts equipment, fermentation equipment, diffusion furnaces, multipoint temperature control and testing devices.

Jumat, 21 Mei 2010

OMRON CX-Process Monitor Plus Software


CX-Process Monitor Plus Software

Monitors and controls operation of function blocks in loop control units

The CX-Process Monitor Plus is HMI (human-machine interface) software that can easily configure standard screens from the tag information created with the CX-Process Tool.

Minggu, 16 Mei 2010

OMRON CX-Programmer Software

CX-Programmer Software

Improve Productivity for SYSMAC PLCs from Ladder Program Development and Unit Setup to Debugging and Maintenance
  • Application software to create and debug programs for SYSMAC CS/CJ/CP/NSJ-series, C-series, and CVM1/C-series CPU Units.
  • Easily achieve position control with wading through user manuals.
  • Complete support for synchronous operation between units.
  • Easier connection to PLCs.
  • Batch backup/restore with a computer.
  • Comprehensive programming environment.
  • High program readability.
  • Time required for onsite startup and debugging has been significantly reduced.

Features

• Easily Achieve Position Control with Wading Through User Manuals.
• Complete Support for Synchronous Operation between Units.
• Easier Connection to PLCs.
• Batch Backup/Restore with a Computer.
• Comprehensive Programming Environment.
• High Program Readability.
• Time Required for Onsite Startup and Debugging Has Been Significantly Reduced.


Applicable Models 

CS/CJ/CP-series
CS-series
  • CS1H-CPU63/64/65/66/67 (-V1)
  • CS1G-CPU42/43/44/45 (-V1)
  • CS1H-CPU63H/64H/65H/66H/67H
  • CS1G-CPU42H/43H/44H/45H
  • CS1D-CPU65H/67H
  • CS1D-CPU42S/44S/65S/67S
 CJ-series
  • CJ1G-CPU44/45
  • CJ1H-CPU65H/66H/67H/64H-R/65H-R/66H-R/67H-R
  • CJ1G-CPU42H/43H/44H/45H
  • CJ1M-CPU11/12/13/21/22/23
  • CJ2H-CPU64-EIP/65-EIP/66-EIP/67-EIP/68-EIP
  • CJ2H-CPU64/65/66/67/68
  • CJ2M-CPU11/12/13/14/15/31/32/33/34/35
 CP-series
  • CP1H-XA40DR-A/XA40DT-D/XA40DT1-D/X40DR-A/X40DT-D/X40DT1-D/Y20DT-D
  • CP1L-M60DR-A/M60DR-D/M60DT-A/M60DT-D/M60DT1-D/M40DR-A/M40DR-D/40DT-A/M40DT-D/M40DT1-D/M30DR-A/M30DR-D/M30DT-A/M30DT-D/M30DT1-D
  • CP1L-L20DR-A/L20DR-D/L20DT-A/L20DT-D/L20DT1-D/L14DR-A/L14DR-D/L14DT-A/14DT-D/L14DT1-D/L10DR-A/L10DR-D/L10DT-A/L10DT-D/L10DT1-D
  • CP1E-E40DR-A/E30DR-A/E20DR-A/E14DR-A/E10DR-A/E10DT-A/E10DT1-A/E10DR-D/10DT-D/E10DT1-D
  • CP1E-N60DR-A/N60DT-A/N60DT1-A/N60DR-D/N60DT-D/N60DT1-D/N40DR-A/N40DR-/N40DT-A/N40DT-D/N40DT1-A/N40DT1-D/N30DR-A/N30DR-D/N30DT-A/N30DT-D/30DT1-A/N30DT1-D/20DR-A/N20DR-T/N20DT-A/N20DT-D/N20DT1-A/N20DT1-D/N14DR-A/N14DT-A/N14DT1-A/N14DR-D/14DT-D/N14DT1-D
  • CP1E-NA20DR-A/NA20DT-D/NA20DT1-D
NSJ-series
NSJ Controller
  • NSJ5-_-G5D
  • NSJ8-_-G5D
  • NSJ10-_-G5D
  • NSJ12-_-G5D
  • NSJ5-_-M3D
  • NSJ8-_-M3D
C-series
C1000H
  • C1000H-CPU01
C2000H
  • C2000H-CPU01 Simplex system
C200H
  • C200H-CPU01/02/03/11/21/22/23/31
 α-series
  • C200HX-CPU34/44/54/64
  • C200HG-CPU33/43/53/63
  • C200HE-CPU11/32/42
  • C200HX-CPU34-Z/CPU44-Z/CPU54-Z/CPU64-Z/CPU65-Z/CPU85-Z
  • C200HG-CPU33-Z/CPU43-Z/CPU53-Z/CPU63-Z
  • C200HE-CPU11-Z/CPU32-Z/CPU42-Z
  • C200HS C200HS-CPU01/03/21/23/31/33
CPM1A-series
  • CPM1 (A)-10CDR/20CDR/30CDR/40CDR (-V1)
CPM2A-series
  • CPM2A-20CD/30CD/40CD/60CD
CPM2C-series
  • CPM2C-10CD/10C1D/20CD/20C1D
CPM2@-S@
  • CPM2C-S100C/110C
  • CPM2C-S110C-DRT
CQM1
  • CQM1-CPU11/21/41/42/43/44/45
CQM1H-series
  • CQM1H-CPU11/21/51/61
CVM1/CV-series
CV1000
  • CV1000-CPU01 (-V1)
CV2000
  • CV2000-CPU01 (-V1)
CV500
  • CV500-CPU01 (-V1)
CVM1
  • CVM1-CPU01/1 (-V1)
CVM1-V2
  • CVM1-CPU01-V2/CPU11-V2/CPU21-V2
FQM1 
  • FQM1-CM001/CM002 Coordinator module
  • FQM1-MMA21/MMA22/MMP21/MMP22 Motion control module
IDSC 
  • IDSC-C1DR-A/C1DT-A
SRM1 
  • SRM1-C01/C02 (-V1/-V2) 

Senin, 10 Mei 2010

OMRON CX-Simulator Software


OMRON CX-Simulator Software

Increase Development and Debugging Efficiency with Various Debugging Tools, Including Functions That Are Not Possible on the Actual PLC
  • Application software to simulate SYSMAC CS/CJ/CP/NSJ Series CPU Unit operation on the computer to debug PLC programs without a CPU Unit.
  • Apply virtual external inputs to a virtual CPU Unit to debug programming.
  • Execute programs by steps or with break point settings, or use any of the many other debugging functions.
  • Check the cycle time during simulation.
  • Debug network communications and serial communications as well.


Applicable Models 

PLC 
CS Series
  • CS1H-CPU63/64/65/66/67
  • CS1G-CPU42/43/44/45
  • CS1H-CPU63H/64H/65H/66H/67H
  • CS1G-CPU42H/43H/44H/45H
  • CS1D-CPU65H/67H
  • CS1D-CPU42S/44S/65S/67S
CJ Series
  • CJ1M-CPU11/12/13/21/22/23
  • CJ1G-CPU44/45
  • CJ1H-CPU65H/66H/67H/64H-R/65H-R/66H-R/67H-R
  • CJ1G-CPU42H/43H/44H/45H
  • CJ2H-CPU64-EIP/65-EIP/66-EIP/67-EIP/68-EIP
  • CJ2H-CPU64/65/66/67/68
  • CJ2M-CPU11/12/13/14/15/31/32/33/34/35 
CP Series
  • CP1H-XA40DR-A/XA40DT-D/XA40DT1-D/X40DR-A/X40DT-D/X40DT1-D/Y20DT-D
  • CP1L-M60DR-A/M60DR-D/M60DT-A/M60DT-D/M60DT1-D/M40DR-A/M40DR-D/40DT-A/M40DT-D/M40DT1-D/M30DR-A/M30DR-D/M30DT-A/M30DT-D/M30DT1-D
  • CP1L-L20DR-A/L20DR-D/L20DT-A/L20DT-D/L20DT1-D/L14DR-A/L14DR-D/L14DT-A/L14DT-D/L14DT1-D/L10DR-A/L10DR-D/L10DT-A/L10DT-D/L10DT1-D
  • CP1E-E40DR-A/E30DR-A/E20DR-A/E14DR-A/E10DR-A/E10DT-A/E10DT1-A/E10DR-D/E10DT-D/E10DT1-D
  • CP1E-N60DR-A/N60DT-A/N60DT1-A/N60DR-D/N60DT-D/N60DT1-D/N40DR-A/N40DR-D/N40DT-A/N40DT-D/N40DT1-A/N40DT1-D/N30DR-A/N30DR-D/N30DT-A/N30DT-D/30DT1-A/N30DT1-D/N20DR-A/N20DR-T/N20DT-A/N20DT-D/N20DT1-A/N20DT1-D/N14DR-A/N14DT-A/N14DT1-A/N14DR-D/N14DT-D/N14DT1-D
  • CP1E-NA20DR-A/NA20DT-D/NA20DT1-D
    NSJ Series
    • NSJ5-_-G5D
    • NSJ8-_-G5D
    • NSJ10-_-G5D
    • NSJ12-_-G5D
    • NSJ5-_-M3D
    • NSJ8-_-M3D 

      Kamis, 06 Mei 2010

      OMRON CX-Protocol Software

      CX-Protocol Software

      Reduce the Work Required to Create Data Communications Protocols for General-purpose Devices
      • Application software to create protocols (communications sequences) between SYSMAC CS/CJ/CP/NSJ-series or C200HX/HG/HE Serial Communications Boards/Units and general-purpose external devices.
      • Create protocols for general-purpose devices connected to PLC Boards or Units via RS-232C or RS-485A/422.
      • Transfer the protocols to PLC Boards and Units.
      • Repeat steps or branch/end steps according to response contents.

      Applicable Models 

      PLC 
      CS Series
      • CS1H-CPU63/64/65/66/67 (-V1)
      • CS1G-CPU42/43/44/45 (-V1)
      • CS1H-CPU63H/64H/65H/66H/67H
      • CS1G-CPU42H/43H/44H/45H
      • CS1D-CPU65H/67H
      • CS1D-CPU42S/44S/65S/67S
      CJ Series
      • CJ1M-CPU11/12/13/21/22/23
      • CJ1G-CPU44/45
      • CJ1H-CPU65H/66H/67H/64H-R/65H-R/66H-R/67H-R
      • CJ1G-CPU42H/43H/44H/45H
      • CJ2H-CPU64-EIP/65-EIP/66-EIP/67-EIP/68-EIP
      • CJ2H-CPU64/65/66/67/68
      • CJ2M-CPU11/12/13/14/15/31/32/33/34/35 
      CP Series
      • CP1H-XA40DR-A/XA40DT-D/XA40DT1-D
      • /X40DR-A/X40DT-D/X40DT1-D
      • /Y20DT-D 
      NSJ Series
      • NSJ5-_-G5D
      • NSJ8-_-G5D
      • NSJ10-_-G5D
      • NSJ12-_-G5D
      • NSJ5-_-M3D
      • NSJ8-_-M3D 
      SYSMACα Series
      • C200HX-CPU34/44/54/64
      • C200HG-CPU33/43/53/63
      • C200HE-CPU32/42
      • C200HX-CPU34-Z/CPU44-Z/CPU54-Z/CPU64-Z/CPU65-Z/CPU85-Z
      • C200HG-CPU33-Z/CPU43-Z/CPU53-Z/CPU63-Z
      • C200HE-CPU32-Z/CPU42-Z 
      CQM1H Series
      • CQM1H-CPU11/21/51/61 
      Communication Boards/Units 
      CS Series
      • CS1W-SCU21(-V1)/SCU31-V1/SCB21(-V1)/SCB41(-V1) 
      CJ Series
      • CJ1W-SCU21(-V1)/SCU31-V1/SCU41(-V1) 
      SYSMACα Series
      • C200HW-COM04(-V1)/COM05(-V1)/COM06(-V1) 
      CQM1H Series
      • CQM1H-SCB41 

        Sabtu, 10 April 2010

        CV1M - OMRON PLC SYSMAC CV1M



        SYSMAC CVM1 Programmable Controller 

        High-speed Control for Large-scale Machinery with SYSMAC CVM1

        The SYSMAC CVM1 brings intelligence to large-scale machine control. A faster and more complete instruction set simplifies process control, data processing, and other control tasks. And there's plenty of I/O capacity to handle large-scale systems with CPU models that support up to 2,048 local I/O points. 

        You also get three-level network communications with SYSMAC LINK, Controller Link, and/or Ethernet networks to easily achieve high-speed system control. The SYSMAC CVM1 is the ideal Programmable Controller for machine control in systems requiring data processing.


        Features

        Better Functionality

        Simplify Complex Control Operation with New Instructions (125 Instructions with 204 Variations)

        Floating-point arithmetic, symbol math, PID, and many other new instructions have been added to simplify everything from data processing and process control through high-speed positioning and other complex operations. It all adds up to more efficient programming.

        Capacity to Handle Large-scale Control: New CPU with 2,048 I/O Point Capacity

        A 62K-word user memory and 24K-word data memory also provide the added capacity needed to handle complex operations for large-scale control.

        System Control through Advanced Units

        A Motion Control Unit provides 4-axis position control capability, while a Personal Computer Unit places DOS right on the PC Rack. And a Temperature Controller Data Link Unit manages data from multiple temperature controllers. These, and other CPU Bus Units achieve easy system control.

        SYSMAC C-Series Compatibility

        The SYSMAC Support Software allows you to program ladder diagrams that can be used both for the CVM1 and for C-series PCs.

        Complete Communications

        High-speed Communications

        Various networks provide communications designed for essentially every level of FA production: between PCs, between PCs and host computers, or between PCs and other system components. High-speed communications processed asynchronously with the PC's cycle time are also possible.

        Communications Across Three Hierarchies

        Connect Programming Devices to monitor and program the local node or go through Host Link, SYSMAC LINK, Controller Link, Ethernet, or SYSMAC BUS/2 networks to monitor and program other nodes. You can also connect Programming Devices to Remote I/O Racks or Expansion I/O Racks to enable monitoring and programming across networks.

        Ethernet

        The CVM1 communicates easily with computers via an Ethernet network using the TCP/IP or UDP/IP international protocols. The CVM1's Ethernet Unit also supports a File Transfer Protocol, which enables file transfers as well. FINS (Factory Interface Network Service), a message communications protocol developed by OMRON for its FA controllers, also enables easy reading and writing of PC memory.

        CPU Bus Units Let You Take Full Advantage of FA Networks


        Build a Large-scale FA Network with Complete Communications

        Selasa, 06 April 2010

        CVM1D - OMRON PLC SYSMAC CVM1D


        OMRON SYSMAC CVM1D Programmable Controller   

        Double Power Supply Units and CPU Units Offer High Reliability 

        CVM1D Programmable Controllers inherit the advantages from the CV/CVM1 Series and go a step further by incorporating double systems for higher reliability.

        These PCs are available as a simplex system with double Power Supply Units or as a duplex system with double Power Supply Units and CPU Units. Duplex systems offer even higher reliability than conventional CV/CVM1-series systems.


        Features of OMRON PLC SYSMAC CVM1D

        Duplex System 
        Hot Standby Method

         The hot standby method is a method where the two CPU units are simultaneously performing calculating functions. One CPU Unit performs control functions and the other is placed on standby while it is executing the calculating functions. 

         If the CPU Unit performing control functions detects an error and stops, then control functions switch immediately over to the CPU Unit that is on standby. The two CPU Units are synchronized to process program, data memory, timer, counter, and other data in order to ensure a smooth transition between them.

        Online I/O Unit Switching 

        I/O Units on CPU, CPU Expansion, and I/O Expansion Racks can be replaced from the Programming Console while the system is running unless a Special I/O Unit is mounted on the same Rack.

        Advanced Communications Functions

        Compatibility with information-based networks

        Data can be exchanged with a host computer through an Ethernet Unit via the TCP/IP, UDP/IP and FTP information-based network protocols.

        Communications between CVM1 and CV, CVM1 and C, as well as between CVM1 Units 

        Controller Link, SYSMAC LINK or other Link Units can be used to build networks that link Programmable Controllers for C, CV, and CVM1 Units.

        Building multi-vendor networks using CompoBus/D 

        CompoBus/D can be used to build a component bus capable of controlling a maximum of 63 Remote I/O Units, or a combines maximum of 2,048 I/O points. Since CompoBus/D conforms to DeviceNet standards, any DeviceNet slave units made it the world can be used on the network.

        Inherits Advantages from the CVM1 

        Able to use CVM1 I/O, Special I/O, and Communications Units

        The present system can use the wide array of available SYSMAC C-series Units as well as C and CVM1-series programs.

        Inherits vast array of functions from the CVM1 
        • Built-in-clock function
        • Built-in peripheral interface
        • Built-in host link
        • Vast array of instructions
        • Space-saving design
        • Excellent cost performance
        • High Speed and Large Capacity
        • High-speed Processing at 0.125 µs
        The present system is capable of processing basic instructions at less than 0.125 µs and special instructions at less then 0.5µs, thus ensuring higher machine productivity.

        Large 62K-word program capacity and 24-K word data memory capacity

        The present system offers large capacity with 2,048-I/O point capacity, 24-K word data memory capacity (Expansion Data Memory for up to 256K words) and 62K-word program capacity. No need to worry about running out of memory either, even when connected to a PT so that you can experience the full power of all PT Functions.

         
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