TIDA-00476
用於能源儲存及 DC Home 解決方案的高效率、多用途雙向電源轉換器
TIDA-00476
概覽
TIDA-00476 is comprised of a single DC-DC power stage, which can work as a synchronous buck converter or a synchronous boost converter, enabling bidirectional power flow between DC power source and energy storage system. Operating in synchronous buck mode, the system works as a MPPT controlled DC-DC converter which can charge a battery from a solar panel or DC Source. The same power stage can be operated as a synchronous boost to drive a DC load with configurable constant current and constant voltage limits (CC/CV), from an energy storage system such as lead acid battery. The power stage is digitally controlled by a MSP430 microcontroller, which implements the closed loop for controlling the power stage with required algorithms for MPPT, battery charge profiling and DC-Power conversion for load.
特點
- Single bidirectional power stage working as both synchronous buck battery charger and synchronous boost CC/CV converter.
- High efficiency of 95% as charger to store energy and 90% as CC/CV converter to power loads.
- Perturb & Observe (P&O) based MPPT tracking algorithm.
- Robust Power stage with built in protection for Overcurrent, Overvoltage and Reverse Polarity Connection.
- Fully tested and validated as a MPPT based lead acid battery charger and CC/CV converter with LED & resistive loads.
- Simple use PCB form factor of 85 x 50 mm. provides a ready platform for single stage bidirectional power conversion needs of energy storage, DC Home and low power UPS systems.
| 輸出電壓選項 | TIDA-00476.1 | TIDA-00476.2 |
|---|---|---|
| Vin (最小值) (V) | 14 | 10.5 |
| Vin (最大值) (V) | 44 | 14.4 |
| Vout (Nom) (V) | 14.4 | 45 |
| Iout (最大) (A) | 5 | .7 |
| 輸出功率 (W) | 72 | 31.5 |
| 隔離式/非隔離式 | Non-Isolated | Non-Isolated |
| 輸入類型 | DC | DC |
| 拓撲結構 | Boost- Synchronous | Buck- Synchronous |
已開發完全組裝的電路板,僅供測試與性能驗證,且為非賣品。
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產品
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MSP430F5132 — 具 8KB 快閃記憶體、1KB SRAM、10 位元 ADC、比較器、DMA 和 16 位元高解析度定時器的 25MHz MCU
開始開發
技術文件
| 類型 | 標題 | 下載最新的英文版本 | 日期 | |||
|---|---|---|---|---|---|---|
| * | 設計指南 | Highly-Efficient Versatile Bidirectional Power Converter Design Guide | 2015/9/18 |