OMRON CS1H-CPU63H CPU Unit - Contator,disjuntor,sensor,Codificador,CLP,Conversor

Conversamos: +86-13184948252 Whatsapp: 0086-13811255435 E-mail: kent@bestcontactor.com

Sobre Contato |

OMRON CS1H-CPU63H CPU Unit - Contator,disjuntor,sensor,Codificador,CLP,Conversor

CLP/

OMRON CS1H-CPU63H CPU Unit

Status: Descontinuado (End of Production). Only available in second-hand/spare parts market. The CS1H-CPU63H belongs to the SYSMAC CS1H high-performance rack-mounted PLC, equipped with a 32-bit RISC processor. Designed for medium-to-large machines, production lines and process control, it supports multiple expansion racks and a large number of special modules. ✅ Core Specifications Item Specification Model CS1H-CPU63H ...

  • Detalhes do produto

Status: Descontinuado (End of Production). Only available in second-hand/spare parts market.

The CS1H-CPU63H belongs to the SYSMAC CS1H high-performance rack-mounted CLP, equipped with a 32-bit RISC processor. Designed for medium-to-large machines, production lines and process control, it supports multiple expansion racks and a large number of special modules.

✅ Core Specifications

ItemEspecificação
ModeloCS1H-CPU63H
Max I/O Points5120 pontos (até 7 expansion backplanes)
User Program Capacity20K steps
Memória de dadosDM: 32K palavras; EM: 32K words 脳1 bank, total 64K words
LD Basic Instruction0.02s/inst (20ns)
Timers/Counters4096
5V Current Consumption0.23UM
Funções integradasRTC, battery backup (for DM/HR/EM retention), structured programming, FB function blocks (max.80 FBs)
Módulos CompatíveisCS-series modules, backward compatible with legacy C200H I/O / special units (reuse existing C200H hardware assets)

📌 Model Code Definition

CS1: CS-series PLC

H: High-performance CPU (CS1G = standard type)

CPU: Unidade CPU

63: Nota de desempenho, 63 = 20K steps; higher grades:64(30K)/65(60K)/66(120K)/67(250K)

Sufixo H: H-version hardware

🧩 Hardware Architecture & Aplicativos

  1. Rack installation: CS1W-BC series CPU backplane + expansion backplanes; CPU plugged into main backplane.
  2. Supported modules: E/S digitais, analog AD/DA, high-speed counter, positioning modules, communication units (Link do controlador, DeviceNet, serial units, etc.)
  3. Aplicações típicas: Moldagem por injeção, estampagem, linhas de montagem, large packaging machinery, AVAC, tratamento de água, legacy production line retrofits.
  4. Software de programação: Programador CX (CX-P); suporta Diagrama Ladder, ST structured text, function blocks.

🔁 Official Recommended Replacement Models

Two upgrade options from Omron:

  1. CJ2H-CPU64 (in-family replacement, minimum migration effort, preferido)
  2. NX102-9000 (new-generation NX series, Sysmac Studio software, full-platform upgrade)

Migration Notes: Memory addresses and instructions are mostly compatible between CS1 and CJ2H, but rack configuration, special unit parameters and communication unit settings need re-verification. NX series requires full program reconstruction.

⚠️ Common Failures & Notas de manutenção

  1. Battery alarm (A40204): Built-in lithium cell failure; DM/EM/HR data lost after power-off. Replace battery while PLC remains powered.
  2. ERC red fatal error: RAM fault, WDT watchdog timeout, I/O unit abnormality, poor backplane connector contact.
  3. Failed online connection: Check peripheral port cable, PLC mode switch, CX-P communication driver and CPU firmware version.
  4. Second-hand unit inspection checklist:

Power-on RUN/ERR LED status

Battery voltage and RTC clock accuracy

Memory read/write verification, program upload/download test

Backplane connector oxidation and corrosion check

📎 Common Spare Parts List

Painel traseiro: CS1W-BC053/BC083/BC103

Fonte de energia: CS1W-PA204/PA207

Expansion Cable: CS1W-CN series

Bateria: CS1W-BAT01

Communication Protocols Supported by OMRON CS1H-CPU63H

Distinção importante: Protocols on CPU native ports (no extra module required) and protocols via optional CS1W communication boards / unidades (add-on hardware required). All network messaging is based on FINS (Omron FA Information Service Protocol).

  1. Native CPU Ports (Peripheral Port + Built-in RS232C)
  2. Link do anfitrião: Traditional Omron serial protocol, used for CX-P and HMI/SCADA to read/write PLC and online programming. Supported on both RS232C and peripheral port.
  3. Ligação NT: Dedicated serial protocol for legacy Omron NT HMIs, suporta 1:1 /1:N multi-panel connection.
  4. No-Protocol Communication (TXD/RXD): Free serial transmission of raw ASCII data, for instruments, leitores de código de barras, weighing transmitters.
  5. Serial FINS: Run FINS commands over serial ports for PLC-to-PLC serial interconnection.

Physical interfaces: Mini-DIN peripheral port, D-Sub9 RS-232C. Sem porta Ethernet integrada.

  1. Optional Communication Boards (Front CPU slot: CS1W-SCB21/SCB41)

RS232C / RS422A/485

Link do anfitrião, Ligação NT, No-Protocol, Protocol Macro (PMCR). Predefined third-party device protocols (Modbus RTU, custom instrument protocols) configured in CX-Protocol.

Serial FINS

  1. Optional Rack-mounted Communication Units (CS1W modules plugged onto backplane)

3.1 Ethernet Unit CS1W-ETN21 (standard Ethernet, NOT EtherNet/IP)

FINS/TCP, FINS/UDP

TCP/IP, UDP/IP Socket (custom socket communication)

FTP service (file upload/download), SMTP email, SNTP time synchronization, Servidor web

3.2 EtherNet/IP Unit CS1W-EIP21

Ethernet/IP (CIP protocol, multi-vendor industrial Ethernet)

Also supports FINS/TCP, FINS/UDP, SNMP, FTP, SNTP

3.3 Controller Link CS1W-CLK23/CLK53 (Omron factory LAN)

Controller Link token bus network, N:N data link + FINS messaging for large-volume PLC-to-PLC data sharing and FinsGateway SCADA access.

3.4 DeviceNet CS1W-DRM21

DeviceNet (CIP-based fieldbus, remote I/O, third-party sensors and inverters)

3.5 CompoNet CS1W-CRM21

CompoNet, Omron bit-level high-speed fieldbus for sensors and actuators

3.6 SYSMAC LINK / SYSMAC NET (legacy Omron fiber network, obsolete)

3.7 Serial Unit CS1W-SCU21/SCU41

RS232/485, Link do anfitrião, Protocol Macro, No-Protocol, Modbus RTU (implemented via Protocol Macro)

3.8 PROFIBUS-DP Master Unit CS1W-PRM21

PROFIBUS-DP, connect to DP slave instruments and variable frequency drives

  1. Third-party Protocols Realized via Protocol Macro PMCR (Serial)

Not hard-coded native CPU protocol; parsed inside the communication board/unit.

Modbus RTU (Mestre / Escravo)

Custom ASCII protocols for weighing, barcode, inverter and instrument devices

❗Importante: CS1H-CPU63H does NOT natively support Modbus. Modbus RTU requires SCB/SCU serial board plus Protocol Macro. Modbus TCP requires ETN/EIP unit plus custom Socket programming.

  1. Protocol Selection Quick Reference

PC programming / old HMI: Link do anfitrião / Ligação NT (use native serial port)

Serial instruments: No-protocol TXD/RXD or Protocol Macro (SCB board)

Large data exchange between PLCs: Link do controlador

Ethernet Industrial / SCADA: ETN21(Barbatanas) or EIP21(Ethernet/IP)

E/S remota, sensor bus: DeviceNet / CompoNet

Siemens DP devices: CS1W-PRM21 PROFIBUS-DP unit

CS1H-CPU63H|Modbus RTU Configuration via Protocol Macro

Hardware Prerequisite: CS1W-SCB21/SCB41 (CPU front serial board) OR CS1W-SCU21/SCU41 (rack serial module).

CPU native serial port cannot run Protocol Macro for Modbus RTU. SCB/SCU hardware is mandatory.

Programas: Protocolo CX (included in CX-One suite) + Programador CX

  1. Princípio Operacional

Protocol Macro (PMCR) executes communication sequences inside the SCB/SCU module. The CPU invokes pre-downloaded communication sequences with `PMCR(260)`. The module automatically handles packet assembly, transmission, response waiting, CRC16 checksum and parsing, then stores received data into PLC DM memory.

✅ Capability: Modbus RTU Master (read/write holding registers, input registers, bobinas, entradas discretas)

⚠️ Limitação: No native Modbus ASCII support. Máx. 20 protocol sets; máx. 60 sequences per protocol.

  1. Hardware & DIP Switch Setup
  2. Unit Number for SCU: Set via DIP switch (0~F), must match hardware configuration inside CX-P. SCB boards have no unit number and use fixed port addressing.
  3. Port Mode: Set port to Protocol Macro, NOT Host Link or No-Protocol.
  4. Serial Parameters (Padrão Modbus RTU)

8pedaço, 1 pare um pouco, sem paridade (8,N,1). Odd/even parity is also available.

Taxa de transmissão: 1200~115200bps, must match Modbus slave exactly.

  1. RS485 Wiring: Habilite resistores de terminação em ambas as extremidades do barramento; shield grounded at single point; do not reverse A/B wires, connect A to A and B to B.
  2. CX‑Protocol Project Creation Steps
  3. Create new protocol project, select CS-series SCB/SCU, create new Sequence.
  4. Create Message frames to define Modbus RTU packets:

Frame structure: Slave Address(1B)+Código de Função(1B)+Data Field+CRC16(2B)

Enable automatic CRC calculation in CX-Protocol; manual CRC entry is unnecessary.

Common function codes: 01 Read Coils, 02 Read Discrete Inputs, 03 Read Holding Registers, 04 Read Input Registers, 05 Write Single Coil, 06 Write Single Register, 10H Write Multiple Registers

  1. Timing parameter configuration (crítico)

Send&Receive: transmit then wait for response

Response timeout: normally 200~500ms (increase for long-distance / low baud rate instruments)

Contagem de novas tentativas: 0~3; definido como 1 retry for noisy field environments

Frame interval: Modbus RTU requires 3.5 character silent interval. CX-Protocol wait time must satisfy this timing requirement.

  1. Compile protocol macro and download it into SCB/SCU module (NOT download to CPU program).

Observação: Protocol macro is stored inside serial board/module, not CPU. The CPU only calls sequences. Older modules lose protocol macro after power cycle, re-download required after power up, or use flash-version modules.

  1. Programação CLP: PMCR Instruction Call

Instruction format: `PMCR(260) S1 S2 D`

S1: Protocol number + Sequence number (defined in CX-Protocol)

S2: Start address of transmit data (DM area, stores variable parameters: endereço escravo, register start index, comprimento)

D: Start address for received data storage (DM area, slave response saved here)

Associated Status Word

After PMCR execution, status code is written right after D channel:

0000: Completed normally

0001: Timeout

0002: Receive frame error

0003: CRC check error

0004: Sequence not found

Programming Tip: Trigger PMCR with rising edge, do NOT keep PMCR ON continuously. Wait for completion flag OFF before triggering next poll to avoid bus collision.

  1. Armadilhas Comuns & Solução de problemas
  2. A/B reversed wiring: No response, PMCR reports timeout (most frequent field issue).
  3. Protocol macro not downloaded into SCB/SCU: PMCR returns error. Many users only download ladder program and skip protocol macro download in CX-Protocol.
  4. Timing fails 3.5 character gap: Intermittent packet loss and CRC errors, more likely at low baud rates.
  5. Multi-slave polling without interlock: Simultaneous transmission causes bus conflict.
  6. Wrong port mode selected: Port set as Host Link, PMCR will not execute.
  7. Mismatched unit number: SCU unit number in CX-P hardware configuration inconsistent with physical DIP setting.
  8. Alternative Solutions for CS1H
  9. Protocol Macro PMCR: Modbus RTU master, supports complex polling. Desvantagem: requires CX-Protocol, protocol stored on module and lost on power cycle (older hardware).
  10. No-Protocol TXD/RXD: Manually build packets and calculate CRC inside ladder code. Large programming workload; suitable only for single simple device, hard to maintain with multiple slaves.
  11. Add ETN21 Ethernet unit: Socket programming to implement Modbus TCP, no RTU support.
  12. Reference Manuals

W340 CS1W-SCB21/SCB41 Serial Communication Board Manual

W341 CS1W-SCU21/SCU41 Serial Communication Unit Manual

CX-Protocol Operation Manual W342

 

Anterior:

Próximo:

Deixe uma resposta

Deixe um recado