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CoFounder and CTO at Gocious LLC | Product Roadmap Management Platform to speed up innovation and value delivery
5 Challenges of Cyber-Physical Product Development - Developing cyber-physical products requires a deep integration of hardware components with complex software programming & comes with these key challenges. #cyberphysical #productmanagement #productdevelopment https://hubs.ly/Q02g5T9r0
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The most popular debug probe is now available in a wireless version. It can be used when the targeted embedded device is moving or has to be shielded from the environment. https://bit.ly/3O6EDMp The J-Link WiFi consists of the J-Link with all software options, including an unlimited number of breakpoints in flash, RDI and J-Flash, which you can use to program external Flash EEPROM. J-Link debug probes are supported by all major IDEs such as Eclipse, GDB-based IDEs, SEGGER Embedded Studio and many others. . . . . . . #segger #seggerjlink #jtag #arm #armprocessor #wifi #softwareengineering #debugger #embeddedsoftware #embeddeddevelopment #engineeringprints #electronicengineering #electronicalengineering #coding #code #technology #electronics #programming #programmer #embeddedsystems #embeddedproductdevelopment #embedded #embeddedsystem #embeddedhardware #engineer #engineering #developer #developertool #microcontroller #programmingtools
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Dive into the digital wizardry world with Avench Systems– where we are not just coders; we are #CodeMasters and Firmware Geniuses crafting the future! #FirmwareGenius https://avench.com/ #CodeMasters #FirmwareGenius #avenchsystem #embeddedsystems #microcontrollers #embedded_system #IoTProjects #electronicdevices #electronicsmanufacturing #EmbeddedDevelopment #electronicsprojects
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With today’s rapid computing architectural evolution, code performance optimization is more important than ever. Discover how Intel’s LLVM-based compilers, such as the #oneAPI DPC++/C++ Compiler provide developers with an easy-to-use report, seamlessly integrating optimization directly into the coding workflow: https://intel.ly/4cjEC1B #LLVM #Cpp
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🚀 Excited to Share My Latest Project: BootLoader-AVR! 🚀 I'm thrilled to announce that I've just completed a significant project: BootLoader-AVR. 🔧 Project Overview: BootLoader-AVR is a bootloader for AVR microcontrollers, designed to simplify and enhance the firmware update process for embedded systems. It allows for seamless and efficient programming of AVR devices, ensuring a smoother development and deployment cycle. 💡 Key Features: User-Friendly Interface: Intuitive commands and straightforward setup. Robust Performance: Optimized for reliability and speed. Security: Implements safeguards to prevent unauthorized firmware updates. Flexibility: Supports a wide range of AVR microcontrollers. 🔍 Technologies Used: C Programming AVR-GCC AVRDUDE Microcontroller: AVR family 🎯 Purpose and Impact: This project aims to streamline the firmware update process, making it more accessible and less error-prone for developers working with AVR microcontrollers. It can significantly reduce the time and effort needed to maintain and update embedded systems, enhancing productivity and device performance. 👨💻 My Role: I spearheaded the development, from initial concept to final implementation. This involved designing the bootloader architecture, writing and optimizing the code, and rigorous testing to ensure reliability and security. 📈 Accomplishments: Successfully deployed the bootloader on multiple AVR devices. Achieved faster and more secure firmware updates compared to previous methods. Received positive feedback from early testers for its ease of use and robustness. Check out the project on GitHub: https://lnkd.in/dM5vPM7y I’d love to hear your thoughts and any suggestions for further improvements! #EmbeddedSystems #AVR #Microcontrollers #Bootloader #FirmwareUpdate #OpenSource #GitHub
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Here are a few topics a firmware or embedded software engineer might encounter over the course of a normal business day: makefiles and/or cmake compiler linker assembly C C++ RTOS Where is that interrupt handled? CPU architecture Cache SIMD unit testing framework sample rate theory modular code design OOP virtual methods undefined behavior ISR overhead open source licensing concerns data throughput Oh, and eventually, the specifics of the sensor in question. etc. What would you add to the list?
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Memory management in RISC-V refers to the methods and techniques used to plan and organize memory in the RISC-V system. It aims to enhance performance and maximize the efficiency of memory utilization in the system. Memory management in RISC-V is implemented at two main levels: the hardware level and the software level. At the hardware level, RISC-V incorporates technologies such as caches and Translation Lookaside Buffers (TLB), along with mechanisms to improve memory access. At the software level, the operating system and programs written in assembly language or high-level programming languages handle memory management. This includes physical memory allocation and management, protection settings, distribution of memory among different programs, page management, and access control. Overall, RISC-V memory management aims to achieve excellent system performance and high efficiency while providing mechanisms for memory protection and proper organization. This ensures stability and security for applications and data stored in memory. #riscv #computerarchitecture #chipdesign
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Hello LinkedIn Family 🔗 Exploring the realms of hardware and software: Verilog vs C. 🧠 Discover the distinctions between these languages—Verilog for hardware description 🛠️ and C for versatile software development. 🚀 Dive into the fascinating world where code meets circuits! 💻🔌 #Verilog #CProgramming #HardwareVsSoftware"
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FreeRTOS is an free and #opensource #RealTime Operating system developed by Real Time Engineers Ltd. Its design has been developed to fit on very small embedded systems and implements only a very minimalist set of functions: very basic handle of tasks and memory #management, just sufficient #API concerning synchronization, and absolutely nothing is provided for network communication, drivers for external hardware, or access to a #filesystem. However, among its features are the following characteristics: preemptive tasks, a support for 23 #microcontroller architectures by its developers, a small footprint (4.3Kbytes on an ARM7 after compilation), written in C and compiled with various C compiler (some ports are compiled with #gcc, others with openwatcom or borland c++). It also allows an unlimited number of tasks to run at the same time and no limitation about their priorities as long as used #hardware can afford it. Finally, it implements queues, binary and counting #semaphores and #mutexes. #embeddedsystems #embeddedsystem #embeddedc #rtos #freertos #arm #engineering
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📣 Q: What role does the firmware programming stage play in charger manufacturing? 🔔 A: Firmware programming involves installing and configuring the software that controls the charger’s operation. This stage ensures proper functionality, such as voltage regulation, overcharge protection, and communication with the device. #FirmwareProgramming #Functionality #Control
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