1 of 1

Omron CS1G-CPU45H CS1 Series CPU Unit

Omron CS1G-CPU45H CS1 Series CPU Unit

Only 8 item(s) left in stock
  • Manufacturer: Omron

  • Product No.: CS1G-CPU45H

  • Country of origin:Japan

  • Product Type: PLC CPU Modules

  • Payment: T/T, Western Union

  • Weight: 500g

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantity
View full details

Description

Engineered for high-speed industrial control within the CS1 architecture, the Omron CS1G-CPU45H is a high-performance central processing unit designed to handle mid-to-large-scale automation applications. It delivers rapid instruction execution and robust memory capacity to manage complex motion, diagnostic, and data processing tasks. Built with integrated communications and expansion capability, this unit serves as a reliable core for demanding industrial machinery, process control systems, and manufacturing assembly lines.

Features

  • High-speed processing engine executing basic logical instructions (LD) in 0.04 microseconds.
  • Large memory capacity supporting 60 Ksteps of program execution memory and 128 Kwords of data memory.
  • Extensive I/O scaling supporting up to 5,120 local I/O bits across a maximum of 7 expansion racks.
  • Integrated physical communications ports including a dedicated peripheral port and an RS-232C serial interface.
  • Structured programming capabilities with support for task-oriented programming, function blocks, and structured text.

Applications

  • Multi-axis motion and synchronization control systems.
  • Automotive assembly lines and complex robotic cell integration.
  • Water and wastewater treatment processing facilities.
  • High-speed packaging, sorting, and material handling systems.

Technical Specifications

Parameter Specification
Manufacturer Omron
Model CS1G-CPU45H
Series CS1 Series (CS1G)
Program Capacity 60 Ksteps
Data Memory Capacity 128 Kwords (DM: 32 Kwords, EM: 32 Kwords x 3 banks)
LD Instruction Execution Time 0.04 microseconds
Maximum I/O Capacity 5,120 bits (Up to 7 Expansion Racks)
Built-in Communication Ports Peripheral port, RS-232C port
Current Consumption 0.78 A at 5 VDC
Country of Origin Japan
Shipping Weight (Calculated) 2.5 kg

Empirical Engineering Insights

Alternative Models & Compatibility

The CS1G-CPU45H is an upgraded, high-speed "H" version replacement for the legacy non-H CS1G-CPU45. Programs compiled for non-H processors can be downloaded directly to the CS1G-CPU45H via CX-Programmer by updating the PLC model type in the project settings. Note that while hardware form factors and memory allocations remain compatible, instruction execution times are significantly faster, which may require verification of timing-critical software loops or communication timeouts.

Application Pitfalls & Engineering Notes

When deploying the unit in highly populated backplanes, ensure that the total current consumption of all modules (CPU, I/O, and Special I/O units) does not exceed the capacity of the chosen Power Supply Unit (such as the C200HW-PA204 or PA209R). Additionally, ensure that a minimum of 50 mm of vertical clearance is maintained above and below the rack within the enclosure to facilitate adequate natural convection cooling, as excessive heat buildup can degrade internal capacitor lifespans.

Commissioning & Wiring Tips

When connecting the RS-232C port to an external HMI or third-party device, ensure the cable shielding is tied directly to the functional ground (GR) terminal on the CS1 backplane power supply. Do not loop ground wires back to signal common (SG) terminals on the port, as this introduces common-mode noise that can interrupt serial communications during inductive switching events nearby.

Installation Guidelines

CRITICAL WARNING: ELECTRICAL SHOCK & SYSTEM DAMAGE RISK

Disconnect all AC/DC power sources feeding the PLC rack, field devices, and adjacent machinery before mounting or removing the CPU unit. Inserting or removing the CPU module while the backplane is energized will cause permanent damage to the CPU's internal bus transceiver ICs and may lead to unpredictable system behavior.

1
Align the hook on the bottom rear of the CPU module with the designated slot slot on the Backplane rack.
2
Pivot the module smoothly toward the backplane until the interface connector is completely seated and the top latch snaps firmly into place.
3
Secure the CPU unit using the integrated mounting screws to prevent mechanical vibration from loosening the bus connectors over time.

What is the basic execution speed of the CS1G-CPU45H?

This processor executes basic logical instructions, such as LD, in 0.04 microseconds, making it suitable for high-speed motion and sequence control.

How many expansion racks does this CPU unit support?

It supports up to 7 expansion racks, enabling a maximum configuration of 5,120 local input/output bits.

Can I replace an older CS1G-CPU45 with the CS1G-CPU45H?

Yes. It is a fully compatible, high-speed replacement. You must update the PLC model settings in your CX-Programmer project file before downloading the program.

What software do I need to program this controller?

The module is programmed and configured using Omron CX-Programmer, which is included in the CX-One software suite.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Country of origin
Japan

Recently Viewed Products

Technical knowledge

Modernizing Bailey INFI 90 Symphony HMIs Running on OpenVMS Alpha

A practical guide to replacing aging Bailey Symphony operator stations running on OpenVMS Alpha. It compares Alpha emulation, OpenVMS x86 migration, OPC re-platforming, and phased ABB modernization.

Why Maintenance Data Is Essential for Industrial Reliability

Maintenance data connects work orders, sensor signals, asset history, costs, and technician knowledge. Used well, it improves planning, reliability, predictive maintenance, spare-parts control, and...

Сұйықтық қуат жүйелерін ауыстыруға арналған электрлік актуаторлар: Практикалық өнеркәсіптік автоматтандыру нұсқаулығы

Бұл мақала SMC компаниясының e-Actuator сериясы сияқты біріктірілген электрлік актюаторлардың дәстүрлі пневматикалық және гидравликалық жүйелерді ауыстыра отырып, өнеркәсіптік қозғалысты басқаруды...

Өнеркәсіптік автоматтандыру қолданбалары үшін OpenPLC көмегімен математикалық операциялар

Бұл мақалада PLC жүйелерінің өнеркәсіптік автоматтандыруда қосу, алу, көбейту, бөлу, модуль және дәрежелеу сияқты негізгі математикалық операцияларды қалай орындайтыны түсіндіріледі. Онда осы функция...

FBD PLC бағдарламалауындағы жетілдірілген булев логика: Негізгі логикадан тыс практикалық өнеркәсіптік қолданбалар

Мақалада PLC бағдарламалауында негізгі AND, OR және NOT операцияларынан тыс қолданылатын бірнеше күрделі Булев логика функциялары түсіндіріледі. Онда шындық кестелері, мультиплексорлар, импульс...

PLC бағдарламалаудағы логикалық операторлар: FBD логикалық қақпаларын түсіну

Булев логика әрбір ПЛК бағдарламасының негізі болып табылады. Қарапайым машина басқару жүйелерінен күрделі өнеркәсіптік автоматтандыру жүйелеріне дейін, логикалық қақпалар контроллерлердің өзгеретін...