1 de 1

Omron CJ1W-OD213 CJ Series 16-Point Sinking Transistor Output Module

Omron CJ1W-OD213 CJ Series 16-Point Sinking Transistor Output Module

Apenas 6 item(ns) restante(s) em estoque
  • Fabricante: Omron

  • Nº do Produto: CJ1W-OD213

  • País de origem:Japão

  • Tipo de Produto: PLC Output Modules

  • Pagamento: T/T, Western Union

  • Peso: 1200g

  • Porto de embarque: Xiamen

  • Garantia: 12 meses

Quantidade
Ver detalhes completos

Description

Executing high-speed switching operations across complex control networks, the Omron CJ1W-OD213 functions as a reliable sinking transistor output module within the CJ-series PLC architecture. This module provides 16 discrete sinking output points on a single common terminal circuit, engineered specifically to handle precision high-frequency switching tasks with an ultra-fast response envelope of 15 microseconds for ON transitions and 80 microseconds for OFF transitions. Its space-saving design integrates directly onto the standard CJ-series backplane and features a detachable terminal block to simplify field wiring and routine maintenance without disturbing system connections.

Features

  • High-Speed Switching: Outstanding transient response times (15 us ON max, 80 us OFF max) optimize its performance in fast-cycle machine control.
  • Efficient Channel Density: 16 sinking transistor outputs grouped into a single circuit to minimize module footprint on the chassis.
  • Robust Load Capacity: Supports individual loads of up to 0.5 A per point while maintaining a combined unit capacity of up to 5.0 A.
  • Detachable Terminal Block: Enables pre-wiring and swap-out of module electronics without disconnecting external field wires.
  • Clear Diagnostic Indicators: Front-facing LED status lights show the active operational status of each individual output point.

Applications

  • Solenoid Valve Control: Driving low-power pneumatic and hydraulic directional valves on automated production lines.
  • Packaging Machinery: Operating indexing mechanisms, pushers, and high-speed labeling heads.
  • Semiconductor Processing: Controlling auxiliary material handling, cleaning cycles, and transfer systems.
  • Discrete Assembly Systems: Managing light curtains, tower lights, small relays, and electronic actuators.

Technical Specifications

Parameter Value
Manufacturer Omron
Model Number CJ1W-OD213
Module Type Transistor Output Unit (Sinking Outputs)
Number of Output Points 16 points (16 points/common, 1 circuit)
Rated Load Voltage 24 VDC
Operating Load Voltage Range 20.4 to 26.4 VDC
Maximum Load Current 0.5 A per point, 5.0 A per unit
Maximum Inrush Current 4.0 A per point, 10 ms maximum
Leakage Current 0.1 mA maximum
Residual Voltage 1.5 V maximum
ON Response Time 15 microseconds maximum
OFF Response Time 80 microseconds maximum
Insulation Resistance 20 MOhm minimum between external terminals and GR terminal (at 100 VDC)
Dielectric Strength 1,000 VAC between external terminals and GR terminal for 1 minute (leakage current: 10 mA max)
Internal Current Consumption 150 mA maximum at 5 VDC
External Power Supply Requirements 20.4 to 26.4 VDC, 55 mA minimum
Fuses None (external fusing recommended)
Module Net Weight 110 g maximum
Shipping Weight (Calculated) 1.2 kg

Connections and Interfaces

This sinking output module relies on an external 24 VDC power source to switch the field loads. Ensure proper polarity is observed during terminal wiring to prevent circuit damage.

Terminal Point Signal Function Wiring Detail
0 to 15 Output Channels 00 to 15 Connect to individual load negative sides (sinking load path)
COM Sinking Output Common Connected to the 0 VDC side of the external load supply
+V External Power Supply Input (+V) Connect to +24 VDC side of the external load supply (required for internal drive logic)

Empirical Engineering Insights

Alternative Models & Compatibility

When updating legacy machinery, note that this module uses a detachable M3 screw terminal block for connection. It is often evaluated as a modular alternative to high-density models like the CJ1W-OD231, which uses a 40-pin connector layout. Moving from connector-style modules to terminal-block units requires verifying the physical enclosure wireways and spacing constraints.

Application Pitfalls & Engineering Notes

Because this module is designed without built-in internal fuses, any high-current short on an output channel will permanently destroy the associated output transistor. It is critical to incorporate fast-acting external fuses in series with the load supply line to safeguard the internal backplane circuitry. Furthermore, while individual channels support 0.5 A, the aggregate current limit of 5.0 A must not be exceeded under continuous operation across all active channels.

Commissioning & Wiring Tips

Always implement inductive surge suppression diodes in parallel with inductive loads, such as relay coils or solenoid valves. Transistor outputs are highly sensitive to back-EMF spikes generated upon de-energizing inductive loads; failing to install snubber diodes close to the load can lead to pre-mature channel failure or intermittent backplane communication resets.

Installation Guidelines

CRITICAL WARNING

Isolate and lock out all power sources (both the main PLC system and external output load supplies) before mounting, dismounting, or servicing terminal connections. Failure to remove external power before working on the module can result in equipment damage, accidental actuator activation, or electrical shock.

1

Hook the top bracket of the module onto the slot of the CJ-series backplane and pivot the module securely into position until it snaps flush with the bus connection.

2

Tighten the upper and lower mounting screws to lock the physical module firmly to the backplane, ensuring proper chassis grounding and resistance to vibration.

3

Wire the field devices to the detached terminal block according to the sinking output electrical schematic, and secure the +24 VDC external drive voltage lines.

4

Align and press the completed terminal block firmly into the module until the locking tabs snap shut, verifying clear LED visualization pathways.

Loading product navigation…

Does this transistor output module have built-in short-circuit protection?

No, this module does not feature internal fusing. External fuses must be installed on the load circuits to protect the internal transistors from overcurrent conditions.

What is the aggregate current limit for this 16-point unit?

The module allows a maximum of 0.5 A per point, but the combined load current for all 16 channels must not exceed 5.0 A simultaneously.

How should inductive loads be handled with these sinking outputs?

When switching inductive loads like solenoids or relays, install an external flyback diode across each load to prevent high-voltage spikes from degrading the output transistors.

Envio Expresso Global

  • Entrega Padrão: 4-6 dias úteis via DHL, FedEx e UPS.
  • Despacho Expresso: Envio no mesmo dia para pedidos em estoque realizados antes das 14:00 (GMT+8).
  • Cobertura Mundial: Atendendo mais de 150 países, incluindo entrega rápida para Arábia Saudita e Emirados Árabes Unidos.

Devoluções e Garantia

  • Garantia de 30 Dias: Devoluções aceitas para produtos em estoque na embalagem original, lacrada de fábrica.
  • Garantia de 12 Meses: Cada componente industrial é coberto pela nossa garantia técnica profissional.

Os pedidos são processados e entregues de segunda a sexta-feira (exceto feriados).


Para elegibilidade completa, taxas de reposição e detalhes de devolução internacional, por favor, consulte nosso oficial Política de Reembolso e Devolução .

TECHNICAL SPECIFICATIONS

Country of origin
Japão

Produtos Visualizados Recentemente

Conhecimento técnico

Atuadores Elétricos Projetados para Substituir Sistemas Hidráulicos: Um Guia Prático de Automação Industrial

Este artigo explica como os atuadores elétricos integrados, como a série e-Actuator da SMC, estão transformando o controle de movimento industrial ao substituir os sistemas pneumáticos e hidráulicos...

Operações Matemáticas Usando OpenPLC para Aplicações de Automação Industrial

Este artigo explica como os sistemas PLC realizam operações matemáticas básicas, como adição, subtração, multiplicação, divisão, módulo e exponenciação dentro da automação industrial. Ele mostra como...

Lógica Booleana Avançada com Programação FBD em CLP: Aplicações Industriais Práticas Além da Lógica Básica

O artigo explica várias funções avançadas de lógica Booleana usadas na programação de CLPs além das operações básicas AND, OR e NOT. Ele aborda como ferramentas como tabelas verdade, multiplexadores,...

Lógica Booleana na Programação de CLP: Entendendo Portas Lógicas FBD

A lógica booleana é a base de todo programa PLC. Desde controles simples de máquinas até sistemas complexos de automação industrial, as portas lógicas determinam como os controladores respondem a...

Guia Completo sobre Firewalls Industriais e Segmentação de Redes OT

Firewalls industriais desempenham um papel crucial na cibersegurança OT, protegendo redes PLC, DCS e SCADA por meio de segmentação, controle de entrada/saída e integração IDS/IPS alinhada aos...

Guia de Garras Robóticas: Do Manuseio Delicado à Automação Pesada

As garras robóticas modernas estão evoluindo além das tradicionais mandíbulas mecânicas. De sistemas adesivos inspirados em lagartos-gecko e garras macias de grau alimentício a ferramentas de armazém...