
Master Allen Bradley micrologix plc programming through practical, hands-on lessons in industrial automation and scada integration, covering core plc concepts for manufacturing, process control, and career-ready skills.
Trace the history of industrial automation from television-based controllers to PC-based control, highlighting timing, memory, and program downloads that shape outputs and the growing need for autonomy in larger processes.
Explore the plc block diagram to see how inputs, sensors, analog and digital signals, and outputs connect with a dc power supply and pc-based programming via a communication cable.
Learn how the PLC cycle uses three important steps to read inputs, store data in memory, and execute your program one instruction at a time to control outputs.
Learn how to wire a MicroLogix plc to a 24-volt dc supply, connect inputs and normally open outputs, and upload or download programs from a PC using the vendor software.
Explore Allen Bradley MicroLogix PLC programming, highlighting sink and source concepts, input/output configurations, and how the PC-to-PLC transfer works, with emphasis on power supply and circuit behavior.
Navigate the software interface for Allen Bradley Micrologix PLC programming by using the Start Menu and Logi simulator 500 to download or upload programs to the PC.
Learn to build a simple Micrologix PLC program in a simulator by dragging and dropping instructions, configuring input/output addresses, and downloading the project to the controller.
Assignment based on Inter-Locking & Holding (Live Industrial Questions)
Allen Bradley Micrologix PLC programming presents an example-based look at holding and interlocking, showing how inputs 0, 1, and 2 govern outputs and sequencing with SIAC instructions.
Solve problem 1 by mapping input conditions to outputs 3, 4, and 2, turning them on or off with pushbuttons and hardware switches.
Demonstrate ton, tof, and rto timers in Micrologix PLC, including on-delay and off-delay behavior. Explain how inputs and sensors start timing and how outputs respond after elapsed time.
Explore a ton timer example in Allen-Bradley Micrologix plc programming, showing an output on for five seconds, then turning off and resetting for reuse.
Solve problem 2 using siac and saac addressing, manage output and accumulator, and sequence timing with five-second intervals to illustrate plc programming concepts in micrologix.
Learn the tof timer concept in Allen Bradley Micrologix PLC programming, focusing on off-delay timing, preset values, and controlling the output coil.
This example demonstrates configuring a TOF timer in a micrologix plc, showing a five-second off time and sequential output actions, with simulator validation of timer-driven on/off cycles.
Solve the off time problem in Allen Bradley Micrologix PLC programming by detailing the output sequence, timing, and instructions used to start, run, and stop the process.
Configure an rto timer in Allen-Bradley Micrologix PLC programming, triggered by a push button input, and complete after a five-second interval with reset in the programming software.
Solve problem 4 in Allen Bradley Micrologix PLC programming by demonstrating timer-based control, addressing of first and subsequent instructions, and the role of an emergency switch in timed outputs.
Explore the basic concept of a counter in Allen Bradley Micrologix PLC programming, detailing two counter types, high speed counters, and their input ranges.
Learn the concept of an up counter in Allen Bradley Micrologix PLC programming, counting pulses from inputs, handling 16-bit counts, and monitoring overflow with the counter and related instructions.
Explore a counter up example in Allen Bradley Micrologix PLC programming, showing how inputs drive a counter, set the size instruction address, and verify outputs after download.
Discover an example based on counter down in Micrologix PLC programming, showing how a push button pulse updates the accumulator and outputs via SHC instruction.
Explore theory of the compare block in Allen Bradley Micrologix PLC programming, using equal, not equal, less than, and greater than laws to control outputs via source and destination addresses.
Explore less than, less than or equal, and greater than or equal comparison blocks in Allen Bradley Micrologix PLC programming, using source A and source B values to drive outputs.
Explore multiplication and division blocks in Micrologix PLC programming, and learn how to use the square root block to compute roots, with hands-on examples showing source and destination.
Move block transfers a value from source to destination when the condition is true, enabling the value's use elsewhere; if false, the value does not move.
Learn to latch and unlatch an output in an Allen Bradley Micrologix plc by using start and stop push buttons with the siac instruction and binary addressing.
Learn how the jump label and jump instruction control program flow in Micrologix PLC programming, using level and job concepts to skip sections, address labels, and manage inputs and outputs.
Learn how to jump to a subroutine and return within a Micrologix ladder program, linking the main program to subroutines and ensuring supply flow to output coils across steps.
Master control reset software in Allen Bradley Micrologix PLC programming demonstrates how emergency switches, normally closed paths, and input-output logic energize or cut power to output coils.
Industrial Automation Technology (PLC/SCADA) :
To survive in the modern competitive business era, it is mandatory to use latest technology and understand modern industrial requirement to improve quality and quantity of product that we are manufacturing. Now a day’s automation technology provides an integrated, flexible and low-cost system platform, it contains various elements that perform a wide variety of functions like controlling, monitoring, and supervising to the industrial processes.
Automation is composed of two Greek words Auto means self, Motos meansmoving, hence if a process of moving (any devices/machineries) is self directed is called as Automation. Industrial automation includes use of various self controlling devices (PLCs/PACs/PC etc.) to operate industrial process and machineries. The automation technology has become back bone of modern industries, because by using Automation technology not only the quality and quantity of products have been maximized, but also it reduces the labor cost, risk factor and manufacturing time.
Examples of Companies Using Automation Technology (PLC/SCADA):
Oil and Gas, Water/Waste Water Treatment, food & Beverages, Power Plants, Manufacturing Process, Chemicals and Pharmaceutical Industries, Power Generation, Automotive, Fabricated Metals, Packaging Process, Metals and Mining’s Aerospace, etc.
Industrial Automation Training by Corporate Trainer:
This Course is designed and developed by core industrial professionals having decades of experience in Industrial Automation, This course is not only ‘Hands-On’ practical based, but also includes project works to understand actual Industrial requirements, and work culture. So enjoy the course.