Application Specific Integrated Circuits

Application Specific Integrated Circuits (ASICs) are customized chips designed for a specific application rather than general purpose use. Coursera's ASICs catalogue provides you with the knowledge to design, implement, and optimize these specialized circuits. You'll learn the essentials of ASIC design flow, including the process of specification, architecture, logic design, and physical design. Additionally, you'll understand the principles of ASIC verification and testing, as well as the implications of power, performance, and area optimizations on ASIC design. By comprehending these integral aspects, you can harness the power of ASICs to create efficient, application-driven solutions in fields like telecommunications, computing, and consumer electronics.
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Results for "application specific integrated circuits"

  • Status: Free Trial

    Skills you'll gain: Field-Programmable Gate Array (FPGA), Electronics, Hardware Design, Application Specific Integrated Circuits, Electronics Engineering, Serial Peripheral Interface, Computational Logic, Electrical Engineering, Computer Architecture, Schematic Diagrams, Semiconductors, Electronic Hardware, Electronic Components, Internet Of Things, Embedded Systems, Programmable Logic Controllers, Low Voltage, Electronic Systems, Control Systems, Computer Engineering

  • Status: Preview

    Universitat Autònoma de Barcelona

    Skills you'll gain: Computer Architecture, Hardware Architecture, System Design and Implementation, Embedded Systems, Application Specific Integrated Circuits, Digital Design, Design Software, Computer Hardware, Verification And Validation, Simulations

  • Status: Free Trial

    University of Colorado Boulder

    Skills you'll gain: Field-Programmable Gate Array (FPGA), Hardware Design, Electronic Systems, Embedded Systems, Electronics Engineering, Eclipse (Software), Application Specific Integrated Circuits, Electronic Hardware, Technical Design, Electronics, Electrical and Computer Engineering, Test Case, Program Development, Integrated Development Environments, System Design and Implementation, Computer Architecture, Hardware Architecture, Software Development, Verification And Validation, Embedded Software

  • Status: Preview

    University of Illinois Urbana-Champaign

    Skills you'll gain: Computational Logic, Application Specific Integrated Circuits, Theoretical Computer Science, Data Structures, Verification And Validation, Computer Architecture, Systems Design, Algorithms, Computer Engineering, Mathematical Software, Design Software, Computer Programming Tools, Debugging, Digital Design, Software Development Tools

  • Status: Free Trial

    Skills you'll gain: Field-Programmable Gate Array (FPGA), Application Specific Integrated Circuits, Computational Logic, Computer Architecture, Hardware Design, Electronics Engineering, Electronics, Programmable Logic Controllers, Electronic Systems, Semiconductors, Electronic Components, Data Storage, Data Storage Technologies

  • Status: Free Trial

    Skills you'll gain: Field-Programmable Gate Array (FPGA), Hardware Design, Electronic Systems, Embedded Systems, Electronics Engineering, Application Specific Integrated Circuits, Electronics, Schematic Diagrams, Technical Design, Hardware Architecture, Design Software, Verification And Validation, Simulation and Simulation Software, Digital Design

What brings you to Coursera today?

  • Status: Preview

    University of Illinois Urbana-Champaign

    Skills you'll gain: Application Specific Integrated Circuits, Hardware Design, Computer-Aided Design, Electronic Hardware, Systems Design, Electrical and Computer Engineering, Computer Engineering, Semiconductors, Network Routing, Computational Logic, Data Structures, Algorithms, Graph Theory, Linear Algebra, Applied Mathematics, Mathematical Modeling, Calculus

  • Status: Preview

    Skills you'll gain: Hardware Design, Application Specific Integrated Circuits, Electronics Engineering, Engineering Design Process, Electronic Hardware, Electronics, Design, Technical Design, Semiconductors, Computer-Aided Design, Electrical and Computer Engineering, Electronic Systems, Electronic Components, Verification And Validation, Simulation and Simulation Software, Open Source Technology, Schematic Diagrams

  • Skills you'll gain: Field-Programmable Gate Array (FPGA), Hardware Design, Application Specific Integrated Circuits, Systems Design, Computer Architecture, Cloud Infrastructure, Distributed Computing, Computer-Aided Design

  • Status: Preview

    Skills you'll gain: Application Specific Integrated Circuits, Computer Systems, System Configuration, System Design and Implementation, Computer Architecture, Hardware Architecture, Computer Hardware, Embedded Systems, Systems Design, Automation, Computational Logic, Configuration Management, Performance Tuning

  • Skills you'll gain: Application Specific Integrated Circuits, Computer Architecture, Microarchitecture, Hardware Architecture, Cloud Infrastructure, Systems Design, Technical Design, Embedded Systems, System Design and Implementation, Software Design, Cloud Computing

  • Status: New

    Skills you'll gain: Microarchitecture, Hardware Design, Computer Architecture, Embedded Software, Embedded Systems, Electronic Systems, Application Specific Integrated Circuits, Serial Peripheral Interface, Computer Hardware, Electronic Components, USB, Performance Tuning, Peripheral Devices, Real-Time Operating Systems, Debugging