Новое поступление
Магазина Esinou Store работает с 27.12.2011. его рейтинг составлет 90.1 баллов из 100. В избранное добавили 5740 покупателя. Средний рейтинг торваров продавца 4.6 в продаже представленно 2443 наименований товаров, успешно доставлено 22470 заказов. 6805 покупателей оставили отзывы о продавце.
Характеристики
*Текущая стоимость 451,20 уже могла изменится. Что бы узнать актуальную цену и проверить наличие товара, нажмите "Добавить в корзину"
| Месяц | Минимальная цена | Макс. стоимость | Цена |
|---|---|---|---|
| Feb-18-2026 | 573.88 руб. | 584.16 руб. | 578.5 руб. |
| Jan-18-2026 | 465.57 руб. | 474.93 руб. | 469.5 руб. |
| Dec-18-2025 | 564.87 руб. | 575.71 руб. | 569.5 руб. |
| Nov-18-2025 | 559.78 руб. | 570.20 руб. | 564.5 руб. |
| Oct-18-2025 | 446.30 руб. | 455.61 руб. | 450.5 руб. |
| Sep-18-2025 | 550.18 руб. | 561.11 руб. | 555.5 руб. |
| Aug-18-2025 | 546.31 руб. | 557.49 руб. | 551.5 руб. |
| Jul-18-2025 | 541.61 руб. | 552.78 руб. | 546.5 руб. |
Описание товара






Introduction to synchronous rectification technology: Synchronous rectification is a new technology that uses a dedicated power MOSFET with very low on-resistance to replace the rectifier diode to reduce rectification losses. It can greatly improve the efficiency of the DC/DC converter and there is no dead zone voltage caused by the Schottky barrier voltage. Power MOSFETs are voltage-controlled devices that have a linear relationship in volt-ampere characteristics during turn-on. When using a power MOSFET as a rectifier, it is required that the gate voltage must be synchronized with the phase of the rectified voltage to complete the rectification function, so it is called synchronous rectification. The synchronous rectification technology greatly reduces the rectification loss at the output end of the switching power supply, thereby improving the conversion efficiency and reducing the heating of the power supply itself. Module parameters: Module nature: non-isolated synchronous rectification automatic buck-boost module Input voltage: DC5-30V Input current: 8A (MAX) peak 10A (within 6A working for a long time) Static operating current: 4mA (error will occur when operating voltage is different) Output voltage: 1.25-30V continuously adjustable Output current: 10A (MAX) (for long-term natural heat dissipation within 5A, please derate when high voltage output) Module temperature exceeds 65 degrees, please add heat or derating Output constant current range: 0.2-10A Working temperature: -40~+85 degrees Working frequency: 150KHz Conversion efficiency: typically 91% up to 93% Overcurrent protection: Yes Short circuit protection: Yes (current limiting protection) Over temperature protection: Yes (automatically reduce output voltage after over temperature) Input reverse connection protection: none, (if necessary, please input the diode in the input) Output anti-backflow: Yes, there is no need to add anti-reverse diodes for charging. Wiring method: terminal output, (IN is input, OUT is output) Module size: 60mm*53mm*22mm (length, width and height) Application range: This module can be applied to areas where the input voltage is relatively large and the output requirements are relatively stable. Such as: 1. 12V battery (10-14V) regulated output 12V, power supply for 12V equipment, 24V battery regulated 24V; can be used as vehicle power supply 2. The solar panel is regulated, and the voltage fluctuation of the solar panel is relatively large. This module can regulate the output, supply power to the device or charge the battery. 3. Drive high-power LED lights, constant current drive, such as 12V battery drive 4 string LED lights, this time LED and battery voltage are not much difference. Output current regulation method: 1. Adjust the CV potentiometer and set the output voltage to the voltage you need according to your load requirements. 2. Set the CC potentiometer counterclockwise for about 30 turns (ie set the output current to the minimum), connect the LED, and adjust the CC potentiometer to the current you need. For battery charging, after the battery is discharged, it will be connected to the output and adjust CC to the current you need. (Be sure to use the battery after charging to charge, because the battery is left in the battery.) More, the charging current is smaller.) Please do not use short circuit to adjust the current, the circuit structure of the module can not be adjusted by short circuit. 




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