Allen Bradley 1766 Series PLC I/O Module for Use with MicroLogix 1400 Series
- N° de stock RS:
- 714-0108
- Référence fabricant:
- 1766-L32BXB
- Fabricant:
- Allen Bradley
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- N° de stock RS:
- 714-0108
- Référence fabricant:
- 1766-L32BXB
- Fabricant:
- Allen Bradley
Spécifications
Documentation technique
Législations et de normes
Détails du produit
Recherchez des produits similaires en sélectionnant un ou plusieurs attributs.
Sélectionner tout | Attribut | Valeur |
|---|---|---|
| Marque | Allen Bradley | |
| Accessory Type | PLC I/O Module | |
| Product Type | PLC I/O Module | |
| Series | 1766 | |
| For Use With | MicroLogix 1400 Series | |
| Sélectionner tout | ||
|---|---|---|
Marque Allen Bradley | ||
Accessory Type PLC I/O Module | ||
Product Type PLC I/O Module | ||
Series 1766 | ||
For Use With MicroLogix 1400 Series | ||
Statut RoHS : Exempté
- Pays d'origine :
- SG
Allen Bradley PLC For Use With MicroLogix 1400 Series, 24V DC, 12 Outputs - 1766-L32BXB
Send commands to machinery and automate control processes with this Allen Bradley PLC (programmable logic controller) from Rockwell Automation. It has 20 digital inputs, 6 relay outputs and 6 digital outputs to provide you with versatile embedded input-output (I/O) functionality. The device can operate up to 7 expansion I/O modules so you can control multiple machines at once. It's commonly used in industrial automation applications in manufacturing lines for food, as well as robotics, pharmaceuticals and power utility control.
• DIN or panel mountable for versatility and secure installation• Backlit LCD screen makes it easy to read and operate in low-light areas• Operates in temperatures from -20°C to +60°C for use in harsh industrial environments• Programming can be modified while it's running for enhanced functionality
Standards and Certifications
• ANSI (American National Standards Institute)• EN (European Norm)• UL (Underwriters' Laboratories)• ACMA (Australian Communications and Media Authority)• CE (Conformité Européenne)
What communication protocols are available with this PLC?
Robotics
Pharmaceutical
Automobile industry
HVAC/Building
SCADA (oil and gas, water/waste water, electric power)
Commercial Machinery, such as vending, industrial washers and dryers
Industrial machinery, such as material handling, packing, and assembly
RS232, RS485 serial, MODBUS and Ethernet communication protocols are all available with this PLC.
Certifications:
ANSI/ESD S20.20:2014
BS EN 61340-5-1:2007
What is a PLC I/O Module?
- Programmable Logic Controller Input/Output Module
PLCs are complex computers which automate control processes by using programs to communicate electronic signals to machines and devices. In simplified terms, they are usually comprised of three components: A CPU (Central Processing Unit), which is the brain or processor of the system, Inputs, and Outputs. An input module detects signals from things like switches, sensors, and buttons. This is processed by the CPU, which leads to an output relaying the CPUs instructions to a machine or device. PLC system functions can be expanded by adding extra I/O modules. These devices are widely used in modern industrial automation for controlling machinery, in industries such as packaging, food and beverage production, pharmaceutical, and printing.
Rockwell Automation is a global leader in industrial automation and digital transformation, and brings smart manufacturing to life. With a long legacy of creating Allen-Bradley® integrated control and information solutions, we help make you as productive as possible. Our portfolio of sensing, safety and motor control products can support your move towards smart machine applications. Allen-Bradley® IO-Link sensors are data-enabled and communicate with all field buses, providing diagnostic and health information about the device before a machine stops, and enabling quick production changeovers through fast parameter downloads from PLCs into the device. This reduces machine downtime and increases manufacturing OEE. For safety components, products with built-in diagnostics simplify the set-up of the smart device, and reduce maintenance, leading to a more efficient, machine data-driven approach.
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