Skip to content

What are you looking for?


You may also like

MicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic ControllerMicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic ControllerMicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic Controller
MicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic Controller
MicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic Controller
MicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic Controller

MicroLogix 1000 | Allen-Bradley 1761-L16BWB Programmable Logic Controller


Only 10 left - Selling fast

PRODUCT SKU : 1761-L16BWB

PRODUCT TYPE : Micro PLC

PRODUCT VENDOR : Allen-Bradley


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

Product Overview

The Allen-Bradley 1761-L16BWB functions as a self-contained, micro-scale controller within the MicroLogix 1000 family. This compact PLC manages discrete automation tasks by integrating 10 DC inputs and 6 relay outputs into a single high-density footprint. Although the manufacturer classifies this series as discontinued, we supply this unit as 100% Brand New original factory stock. It provides a drop-in solution for maintaining existing machine-level control systems without the high engineering costs associated with hardware migration or control program rewrites.

Technical Specifications

Feature Specification
Manufacturer Allen-Bradley / Rockwell Automation
Product Line MicroLogix 1000
I/O Count 16 Points Total
Digital Inputs Ten (10) 24V DC (Sinking or Sourcing)
Digital Outputs Six (6) Relay Contact Outputs
Power Supply 20.4–26.4V DC
Memory Type 1 K EEPROM (737 instruction words)
Communication RS-232 (DF1 Protocol)
Power Consumption 5 Watts
Inrush Current 30A for 4 ms
Vibration/Shock 10 G (Operating) / 20 G (Non-Operating)
Weight 0.50 lbs (0.23 kg)

Engineering Advantages

  • Hybrid Input Versatility: The 1761-L16BWB accepts both sinking and sourcing input configurations. This allows engineers to interface with a wide range of NPN or PNP sensors without adding external pull-up or pull-down resistors, simplifying field wiring in mixed-device environments.

  • Rugged Relay Output Switching: Six integrated relay outputs handle various load types, including AC and DC voltages. These dry contacts eliminate the need for interposing relays when switching small solenoid valves or motor starters, reducing total cabinet space and material costs.

  • Non-Volatile Logic Security: The 1K EEPROM stores the entire user program and data. This memory technology eliminates the need for backup batteries, ensuring the PLC retains its logic indefinitely during long-term power outages or equipment storage.

  • Hardened Industrial Design: Built to withstand 10 G of operating shock, the 1761-L16BWB excels in high-vibration applications such as sorting conveyors, packaging machines, and mobile industrial platforms.

  • Deterministic Logic Execution: The dedicated 1761 processor executes instructions with high repeatability. It processes approximately 737 instruction words with consistent scan times, ensuring precise timing for high-speed discrete manufacturing sequences.

FAQs

  • What software do I need to program the 1761-L16BWB?

    You must use RSLogix 500 or RSLogix Micro software. The controller communicates via the 8-pin mini-DIN RS-232 port using the DF1 protocol.

  • Can I replace a 1761-L16BWA with a 1761-L16BWB?

    Check your power source first. The "BWA" model requires 120/240V AC power, whereas the "BWB" model requires a 24V DC power supply. While the I/O count remains the same, the power wiring differs significantly.

  • Does this unit support I/O expansion modules?

    No. The MicroLogix 1000 series features a fixed I/O configuration. If your application requires more than 16 points, you should consider the MicroLogix 1100 or 1200 series, which support 1762 expansion modules.

  • How do I know this unit is truly brand new?

    We guarantee every 1761-L16BWB arrives in its Original Allen-Bradley Factory Packaging with intact serial numbers and seals. This ensures the 50,000-cycle minimum power cycle rating remains fully available for your application.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
Static UPS vs. Rotary UPS: Technical Evaluation for Industrial Automation

Static UPS vs. Rotary UPS: Technical Evaluation for Industrial Automation

UPS architecture dictates power reliability in process automation. Unplanned voltage sags cause immediate downtime, making robust power backup essential for PLC and DCS networks. This technical guide evaluates the operational principles, key architectures, and tradeoffs between Static and Dynamic Rotary UPS systems.
Read more
Comprehensive Guide to Noise Types in Industrial Automation and Electronics

Comprehensive Guide to Noise Types in Industrial Automation and Electronics

Signal integrity determines reliability in modern industrial automation. Unwanted electrical noise degrades sensor data, distorts 4-20 mA current loops, and drops fieldbus communications. Engineers working with PLC, DCS, and TSI systems must effectively mitigate these disturbances. This technical guide analyzes key internal and external noise sources affecting control systems.
Read more
Mitigating Emergency Stop Spurious Trips in Industrial Control Systems

Mitigating Emergency Stop Spurious Trips in Industrial Control Systems

Emergency stop (E-Stop) pushbuttons serve as vital safety devices in factory automation and process control plants. Functional safety standards mandate normally-closed (NC) contact blocks to ensure fail-safe operation during wiring breaks or power outages. However, mechanical degradation over time can trigger unexpected spurious trips, halting production lines without an actual emergency. Understanding the underlying causes of mechanical contact failure allows automation engineers to implement robust, fault-tolerant safety circuits.

Read more