Faculty Development

Faculty Development

Techlabs training division has been successfully enabling innovative technology in engineering institutes through its training programmes for faculty members for more than a decade. With a motto to empower trainers who are sculpting the engineers of tomorrow, Techlabs’ Faculty Development Programs are strategically designed as workshops giving the educators an exposure to the latest advancements in different areas of technology driving the engineering industry. We cover niche technical domains like Embedded Systems, Virtual Instrumentation, VLSI technology amongst others. Keeping in view the professional commitments of educators, Techlabs provides alternatives for procurement of training such as In-House Training (at University/Institute campus) and Specialized Training (at Techlabs Bengaluru and Delhi offices).

  • ARM-based Embedded System Platforms
  • Architecture and Programming of Stellaris Microcontrollers
  • Introduction to LM3WS8962 Evaluation Board
  • PWM Generation & OLED introduction
  • NVIC & interrupts
  • Systick Timer & SystickHandler
  • Robotics Experiments using  Stellaris  EVALBOT
  • Applications of Ethernet Connectivity Interface  & CAN in Stellaris

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  • Introduction to Hardware
  • Graphical System Design Concept
  • Working with loops & Case structure
  • Arrays, cluster & Type Definition Concept
  • Data Logging & Communication Protocol
  • Accessing Variables & Race Conditions

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  • ASIC Design Flow
  • Semi-Custom & Full custom design
  • Logic, inverter, complex transmission gates & Delay Calculation
  • CMOS Fundamental & Circuit Design
  • Transistor sizing
  • Logic threshold-static behavior
  • Threshold & timing character
  • Transistor Sizing compound gates & timing path
  • Layout Design
  • CMOS Manufacturing Process
  • Fanout & Fanin
  • Stick diagram of CMOS devices
  • Static Timing analysis
  • Analog Design Flow
  • Digital Design Flow
  • Concept of Synthesis
  • Synthesis Flow
  • Process Design Kit (PDK)
  • BSIM

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  • FPGA Design Flow
  • History and Fundamentals of FPGA
  • FPGA Architecture
  • Develop FPGA designs
  • FPGA builds processes
  • GUI based coding & debugging along with simulation
  • RTL & Technology Schematics Viewing
  • Intelligent Simulation via support of ISIM/ModelSIM
  • Constraint Generator, Timing  & Power  Analyzer
  • Package and Library Creations
  • Overview of Synthesis, Integration, Verification & Simulator Engines
  • Implementation of design, Translate, Map, Place & Route
  • Report user environment
  • FSM Analysis
  • Missing constraints supported with Hands–On Demos

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  • Introduction
  • Simulation, Emulation and ICE
  • Dynamic and Static Verification
  • Types of Simulator
  • Why Simulation
  • Advantages with Simulation
  • Working with Simulation Environment
  • Working with Tool Debugging Environment
  • Simulation, Debugging and Verification
  • Module Level Simulation using various simulation engines
  • Trial and error engineering
  • Code Coverage Analysis
  • Assertion writing for ABV (Assertion Based Verification)
  • Log file Analysis
  • Area Timing, FSM, RTL, Technological constraints
  • User Environment Reporting
  • Overview of Synthesis, Integration, Verification & Simulator Engine

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  • History of UNIX
  • Unix/LINUX Architecture
  • Directories and Files
  • Understanding directory Structure
  • SHELLs – Like C shell, Broun Shell, K Shell etc.
  • Why .cshrc/.zshrc/ and its importance
  • Writing the common utility and adding to environment
  • Regularly used Commands and utilities
  • Permissions
  • Unix/Linux installation and network management
  • ftp and related utilities
  • scp and related utilities
  • CAD tool installation – at least two vendor/software on Linux
  • Mounting from a server – related commands
  • Configuring the tools
  • License Management and configuration
  • Installation and Initialisation
  • Package management & Process monitoring
  • Services, Utilities, Important Files and Directories
  • Server Configurations
  • System services
  • User Administration
  • File System Security and Management
  • Advanced File System Management

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  • The LabVIEW environment including windows, menus, and tools
  • Creating and using LabVIEW projects
  • The LabVIEW front panel and block diagram
  • Searching for controls, VIs, and functions
  • Understanding the dataflow programming model of LabVIEW
  • Recognizing different data types
  • Tools for developing, cleaning and organizing your Vis
  • Using Express VIs to build a basic VI
  • Correcting broken Vis
  • Using common debugging techniques
  • Addressing undefined or unexpected data
  • Implementing error checking and error handling
  • Using structures like the While Loop and For Loop
  • Adding software timing to your code
  • Sharing data between loop iterations
  • Plotting data to a waveform chart
  • Creating and using array controls and indicators
  • Creating and using cluster controls and indicators
  • Using type definitions to improve reuse of data structures in applications
  • Creating and using Case structures
  • Creating and using Event structures
  • Basics of modular programming
  • Creating an icon and connector pane
  • Using a VI as a subVI
  • Creating subVIs from an existing VI
  • High-level and low-level file I/O functions available in LabVIEW
  • Implementing File I/O functions to read and write data to files
  • Techniques for sequential programming
  • Using state programming
  • Implementing a state machine design pattern
  • Image processing
  • Signal Processing

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  • The LabVIEW environment including windows, menus, and tools
  • Creating and using LabVIEW projects
  • The LabVIEW front panel and block diagram
  • Searching for controls, VIs, and functions
  • Understanding the dataflow programming model of LabVIEW
  • Recognizing different data types
  • Tools for developing, cleaning and organizing your Vis
  • Using Express VIs to build a basic VI
  • Correcting broken Vis
  • Using common debugging techniques
  • Addressing undefined or unexpected data
  • Implementing error checking and error handling
  • Using structures like the While Loop and For Loop
  • Adding software timing to your code
  • Sharing data between loop iterations
  • Plotting data to a waveform chart
  • Creating and using array controls and indicators
  • Creating and using cluster controls and indicators
  • Using type definitions to improve reuse of data structures in applications
  • Creating and using Case structures
  • Creating and using Event structures
  • Basics of modular programming
  • Creating an icon and connector pane
  • Using a VI as a subVI
  • Creating subVIs from an existing VI
  • High-level and low-level file I/O functions available in LabVIEW
  • Implementing File I/O functions to read and write data to files
  • Techniques for sequential programming
  • Using state programming
  • Implementing a state machine design pattern
  • RF Communication
  • Embedded System

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  • Introduction – Reliability
  • Reliability Prediction
  • Bath Tub Curve – Reliability
  • Reliability Block Diagram (RBD)
  • Failure Mode & Effect Analysis (FMEA)
  • Safety Analysis – FTA
  • Failure Reporting Analysis & Corrective Action Systems (FRACAS)
  • Life Data Analysis
  • State Transition Diagram – Markov
  • Accelerated Life Testing
  • Mean Time to Repair – Maintainability
  • Best Practices
  • Market Requirment
  • Introduction to Reliability
  • Concept of Reliability
  • Concept of MTBF,MTTR,RBD,FMA and FTA
  • Working with Reliability Tool

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Techlabs Advantage
  • Hands on Experience with Latest Technology
  • Opportunity to learn from Industry Veterans
  • Interactive Training Sessions with Live Demos
  • Highly Sought-After Engineering Skills
  • Lucrative Job Prospects and Career Options
  • Expert Counselling and Focused Mentoring
  • State of the Art Techniques and Tools
  • Rich and Dynamic Multimedia Courseware
  • On-Site Training Programmes and Sessions

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