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STM32F103C8T6 开发手册 - ST Microelectronics(意法半导体)
制造商:
ST Microelectronics(意法半导体)
分类:
微控制器
封装:
LQFP-48
描述:
STM32F103 系列微处理器,STMicroelectronicsSTMicroelectronics 设备 **STM32F103** Cortex-M3 芯具有 72 MHz CPU 的速度和高达 1 MB 的闪存。 包含电动机控制外围设备以及 CAN 和 USB 全速接口。 STM32 系列 ARM Cortex-M3 32 位闪存微控制器工作时具有低功率、低电压,并结合了实时功能的极佳性能。 封装类型系列可用于您的嵌入式应用。 MCU 体系结构具有一个易于使用的 STM32 平台,可用于包括电动机驱动;PC 和游戏;HVAC 和工业应用在内的应用。 32 位 RISC 引脚到引脚软件兼容 SRAM 高达 96 Kb 闪存高达 1MB 电源:2 V 至 3.6 V 温度范围:-40 至 +85 °C 或 -40 至 +105 °C ### STM32F1 系列 32 位 ARM® Cortex®-M3 微控制器,STMicroelectronics32 位闪存微控制器的 STM32 系列基于 ARM Cortex™ M3 核心的突破 - 为嵌入式应用特别开发的核心。 STM32 系列得益于 Cortex-M3 体系结构增强功能,包括为传达改进性能而设置的 Thumb-2 指令,带更好的编码密度,对中断更快的反应,所有的均和领先的工业功耗相接合。出色的实时表现 卓越功效 卓越的和新型的外围设备 最大程度的集成 跨族引脚,外围设备和软件兼容性展开
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STM32F103C8T6数据手册
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November 2012 Doc ID 16555 Rev 3 1/55
AN3095
Application note
STEVAL-ISV002V1, STEVAL-ISV002V2 3 kW
grid-connected PV system, based on the STM32F103xx
Introduction
The STEVAL-ISV002V2 demonstration board is the same as the STEVAL-ISV002V1, but
assembled in a metal suitcase. In recent years, the interest in photovoltaic (PV) applications
has grown exponentially. As PV systems need an electronic interface to be connected to the
grid or standalone loads, the PV market has started appealing to many power electronics
manufacturers. Improvements in design, technology and manufacturing of PV inverters, as
well as cost reduction and high efficiency, are always the main objectives, [see References
1, 2].
This application note describes the development and evaluation of a conversion system for
PV applications with the target of achieving a significant reduction in production costs and
high efficiency. It consists of a high frequency isolated input power section performing DC-
DC conversion and an inverter section capable of delivering sinusoidal current of 50 Hz to
the grid. The system operates with input voltages in the range of 200 V to 400 V and is tied
to the grid at 230 Vrms, 50 Hz, through an LCL filter. Other peculiar characteristics of the
proposed converter are the integration level, decoupled active and reactive power control
and flexibility towards the source. A prototype has been realized and a fully digital control
algorithm, including power management for grid-connected operation and an MPPT
(maximum power point tracking) algorithm, has been implemented on a dedicated control
board, equipped with a latest generation 32-bit (STM32F103xx) microprocessor.
Figure 1. 3 kW PV system image
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