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Seminar / 2023 Workshop - NuMicro Training Courses - Level1 M258



SalesSupport@nuvoton.com 20 2023 Workshop - NuMicro Training Courses - Level1 M258 上海世贸商城27楼2701室 20 2023 Workshop - NuMicro Training Courses - Level1 M258 Nuvoton 上海 SalesSupport@nuvoton.com SalesSupport@nuvoton.com NCM258 GMT+8 本课程旨在让学员更快速掌握在新唐 NuMicro® 32 位微控制器开发项目,利用新唐开发平台与开发资源,包括使用新唐科技 NuMicro® M254/M256/M258 系列,并带 Nu-Link 除错刻录器的开发板、使用开发环境接口 (KEIL, IAR, NuEclipse),以及新唐科技丰富的软件工具。课程内容除了 GPIO、TIMER、PWM、ADC、UART、I2C、SPI 等应用实作,也包括 HTN-LCD 驱动、电容式触控等多项议题,让您体验便捷的开发流程。 立即报名 2023 Workshop - NuMicro Training Courses - Level1 M258 SalesSupport@nuvoton.com


NuMicro M33 Board Support Package



BSP List Content Version Date M3331 Series BSP github gitlab gitee M3331 series software package based on CMSIS version 5.9. It supports IAR, Keil, VS Code development environment with drivers and samples codes. For detailed, please download it and unzip it. V3.00.001 2025-08-27


N572F065



Der N572F065 ist der erste Cortex™-M0-basierte Prozessor für Sprachverarbeitungsapplikationen, der bei bis zu 48 MHz läuft und mit 64 kB Flash-Speicher und 8 kB SRAM zur Hochleistungsverarbeitung von Audio- und Sprachalgorithmen ausgestattet ist. Durch Integration reichhaltiger analoger Peripherie, wie Vorverstärker, ADC , DAC, Hardwaremixer und PA, spart dieser Chip viel Arbeit und Geld beim Systemdesign. USB-Gerät und Flash-Speicher arbeiten zur Bereitstellung aktualisierbarer Inhalte und Szenario-Downloads via PC aus dem Internet zusammen. Zur Nutzung des hochleistungsstarken M0 und der hohen Dichte des SRAM wurden im N572F065-Chip fortschrittliche Algorithmen konzipiert, optimiert und getestet. Diese Algorithmen beinhalten Wasserzeichen, Stimmverzerrer, NuSound, NuOne und Beat-Erkennung, weitere Inhalte sind in der Entwicklung. Neben den von uns entwickelten Algorithmen sucht Nuvoton auch bei Drittanbietern nach interessanter Software zur Bereicherung der Applikationen des


NuMaker-IMU-M487



This reference design is based on the NuMaker-IOT-M487 board with an IMU (inertial measurement unit) algorithm, which can be used to measure the angular velocity and acceleration of an object and obtain the attitude of the object. This IMU algorithm is a gyro navigation system developed by UNITEC based on NuMaker-IoT-M487. It is suitable for flat navigation. Users can obtain heading angle by calling API in the IMU algorithm. This solution had passed the test. The NuMaker-IMU-M487 is placed on the cover of the robot vacuum. The test site is kept level and greater than 6 square meters. After the robot vacuum is started for cleaning at least 30 minutes, the attitude of this solution is under an error of 10 degrees per hour. Nuvoton introduces the NuMaker-IoT-M487 development board for IoT applications. Embedded with the NuMicro M487 series microcontroller, NuMaker-IoT-M487 development board has built-in RJ45 Ethernet and Wi-Fi modules, which allows users to connect to cloud in a wired or


NuMaker-M256SD



The NuMaker-M256SD is an evaluation board for Nuvoton NuMicro M254MD2AE, M254SD2AE, M256SD2AE and M256MD2AE microcontrollers with COM/SEG LCD driver and capacitive touch key sensing function. The NuMaker-M256SD consists of two parts: an M256SD target board and an on-board Nu-Link2-Me debugger and programmer. The NuMaker-M256SD is designed for project evaluation, prototype development and validation with power consumption monitoring function. The M256SD target board is based on NuMicro M256SD2AE to evaluate the capacitive touch key sensing function on the touch key TK1 with messages displayed on a HTN-LCD panel for Human Machine Interface applications. For developing touch key system and fine tuning associated environment variables easily to adjust sensitivity of the touch key, Nuvoton provides NuTool – NuSenadj to set hardware and software parameters automatically. For the development flexibility, the M256SD target board provides the extension connectors, the Arduino UNO compatible


Produkte und Technologien / Nuvoton Technology launches a new high flexibility 125°C NuMicro® M0A21/M0A23 series microcontroller with multiple functions and rich-analog in compact packages



Hsinchu, Taiwan - 2021/04/22 - NuMicro® M0A21/M0A23 series is a 32-bit Arm® Cortex®-M0 high-performance microcontroller for automotive and industrial applications. NuMicro M0A21/M0A23 series provides rich analog and digital peripherals in SSOP20, TSSOP28 packages, especially suitable for small form factor applications. M0A21/M0A23 series offers up to 18 IO pins in SSOP20 and up to 26 IO pins in TSSOP28 with optimized pin functions. NuMicro M0A21/M0A23 runs up to 48 MHz at up to 125°C operating temperature, under 2.4V to 5.5V wide operating voltage with high immunity capability. NuMicro M0A21/M0A23 series IO pins can be assigned to multiple digital functions, including CAN 2.0B interface, UART, I2C, SPI, Timer, LIN, PWM. Additionally, it provides up to 17 channels of 12-bit ADC, 2 set comparators, and 5-bit DAC to reduce components and the PCB size of end products. NuMicro M0A21/M0A23 could be suitable for the battery management system (BMS), automotive ultrasonic radar control,


M433 CAN/USB FS OTG Series



The NuMicro® M433 CAN/USB FS series is a high performance, low power microcontroller powered by the Arm® Cortex®-M4F core with DSP instruction and single-precision floating-point unit (FPU) extension. The NuMicro® M433 CAN/USB FS series runs at speeds up to 144 MHz, and the power consumption in the deep power-down mode drops to 350 nA, offering excellent energy efficiency tailored for IoT, industrial, and consumer applications. The NuMicro® M433 CAN/USB FS series supports operating voltage from 1.8V to 3.6V, and temperature from - 40℃ to 105℃. It provides up to 128 KB Flash memory for code storage and 64 KB SRAM for run time operation. In order to reduce the data access overhead of CPU core to peripherals, 1 set of 9-channel peripheral direct memory access (PDMA) is provided. The M433 CAN/USB FS series supports plenty of peripherals, including 2 sets of CAN, USB FS OTG, up to 18 channels of 16-bit PWM, 4 sets of UART, 2 sets of SPI/I²S, 1 set of Quad-SPI, 2 sets of I²C, 1 set QEI and


M433SE8AE



The NuMicro® M433SE8AE is a high performance, low power microcontroller powered by the Arm® Cortex®-M4F core with DSP instruction and single-precision floating-point unit (FPU) extension. The M433SE8AE runs at speeds up to 144 MHz, and the power consumption in the deep power-down mode drops to 350 nA, offering excellent energy efficiency tailored for IoT, industrial, and consumer applications. The NuMicro® M433SE8AE supports operating voltage from 1.8V to 3.6V, and temperature from - 40℃ to 105℃. It provides up to 128 KB Flash memory for code storage and 64 KB SRAM for run time operation. In order to reduce the data access overhead of CPU core to peripherals, 1 set of 9-channel peripheral direct memory access (PDMA) is provided. The M433SE8AE supports plenty of peripherals, including 2 sets of CAN, USB FS OTG, up to 18 channels of 16-bit PWM, 4 sets of UART, 2 sets of SPI/I²S, 1 set of Quad-SPI, 2 sets of I²C, 1 set QEI and 1 set capture.


M433LE8AE



The NuMicro® M433LE8AE is a high performance, low power microcontroller powered by the Arm® Cortex®-M4F core with DSP instruction and single-precision floating-point unit (FPU) extension. The M433LE8AE runs at speeds up to 144 MHz, and the power consumption in the deep power-down mode drops to 350 nA, offering excellent energy efficiency tailored for IoT, industrial, and consumer applications. The NuMicro® M433LE8AE supports operating voltage from 1.8V to 3.6V, and temperature from - 40℃ to 105℃. It provides up to 128 KB Flash memory for code storage and 64 KB SRAM for run time operation. In order to reduce the data access overhead of CPU core to peripherals, 1 set of 9-channel peripheral direct memory access (PDMA) is provided. The M433LE8AE supports plenty of peripherals, including 2 sets of CAN, USB FS OTG, up to 18 channels of 16-bit PWM, 4 sets of UART, 2 sets of SPI/I²S, 1 set of Quad-SPI, 2 sets of I²C, 1 set QEI and 1 set capture.


Produkte und Technologien / Nuvoton Technology's Arm® Cortex®-M23 Core M2003 Series Helps Upgrade from 8-bit to 32-bit, Balancing Performance and System Cost



Nuvoton Technology's Arm® Cortex®-M23 Core M2003 Series Helps Upgrade from 8-bit to 32-bit, Balancing Performance and System Cost The 5V operating voltage and high interference immunity, along with the 20-pin small package design, optimize system cost. Taiwan Hsinchu-2024/8/21-With continuous advancements in semiconductor technology, the performance of 32-bit microcontrollers has been steadily improving while costs have been decreasing, making them the mainstream choice in the market. The rapid growth in applications such as AIoT, industrial automation, smart homes, energy storage, and automotive electronics has placed higher demands on microcontroller performance. Traditional 8-bit microcontrollers often fall short in various applications, driving the widespread adoption of 32-bit microcontrollers. To address these market challenges, Nuvoton Technology has launched the new M2003 series of 32-bit microcontrollers based on the Arm® Cortex®-M23 core.