The seasonality of wind energy and the periodicity of sunrise and sunset of solar energy must be overcome in order to make better use of new energy, and energy storage systems can play a big role here. A common energy storage station is equivalent to tens of thousands of batteries together. The system's requirements for performance, stability, and safety can be imagined, among which high-performance BMS plays an indispensable key role. ADI covers the entire process of energy generation, transmission, utilization and storage. It empowers the green energy cloud through system and chip technology including battery BMS, making the use of renewable energy more reasonable. Its latest high-precision 18-channel battery management chip ADBMS1818 can measure up to 18 series-connected battery cells and has a system design optimized for energy storage applications. Next, we will explore the hard-core technology behind energy storage applications with Littleshrimp, a senior netizen of the EEWorld forum!
The ADI technical article updated yesterday includes product recommendations, but the ideas and perspectives can be used as a reference.IntroductionNoise-sensitive applications in harsh automotive and
Hardware: Cyclone IV E EP4CE6E22C8
The underlying SOPC builder contains IP cores such as NIOS soft core + SDRAM + epcs_flash + jtag_uart + sysid + LED + SCL + SDA.
Can run as NIOS II hardware. Console
# EVB2601 Simple Unboxing## Introduction>RVB2601 is a development board based on the Pingtouge eco chip CH2601, with onboard JTAG debugger, WiFi&BLE chip W800, audio ADCES7210, audio DAC-ES8156, 128x6
TI Embedded Live Month: In-depth exploration of new applications of embedded products in industry and automobiles. The second session will be live at 14:00 today.Click here to enter the live broadcast
The embedded world we live in is developed by thousands of different MCUs and CPUs. To support the free flow of data and information, many are interconnected and often without communication. This data