
3.2V/3.7V Solar Lamp Controller Module Circuit Board Microwave Radar Induction with Switch for Solar Lawn Lights Garden Lights
Amazon Price as of 01/19/2025 10:51 GMT+00:00
-4%
$7.42
$7.77
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Product Description
Specification:
Item Type: Solar Lamp Controller Module
Model: YX-408
Induction Method: Microwave radar induction
Induction Distance: 6-10 meters
Induction Time: Highlight for 15 seconds, slightly bright
Lighting Mode: Automatic light off during the day, automatic radar sensor at night
Battery Input: 3.2V / 3.7V
Applicable Solar Panel Voltage: 5-6V
(Batteries need separate protective plates to prevent overcharging and overdischarging)
Applicable Lamp Board Voltage: 2.8V-3.2V
Output Power: <10W
Size: Approx. 26 x 84mm / 1 x 3.3in
This circuit board does not have over-charge and over-discharge protection. To connect the battery, the battery must have its own protection board
Package List:
1 x Module
1 x User Manual
Note:
New‑style and old‑style are shipped randomly
• Microwave Radar Human Body Induction: This solar lamp controller module utilizes the microwave radar human body induction method, ensuring high sensitivity and durability in its usage.
• Flexible Operation with Switch: Equipped with a switch, this module offers flexibility in operation. Users can easily control the on/off function according to their preferences or specific requirements.
• Smart Lighting Modes: When a strong human presence is detected, the module activates the highlight mode for 15 seconds. In the case of slight induction, the lighting remains constantly on. This intelligent control allows for efficient energy usage and ensures appropriate lighting levels.
• Automatic Day-Night Mode: The module is programmed to automatically turn off the lighting during daylight hours, conserving energy. At night, the built-in radar sensor activates, allowing the module to detect motion and trigger the lighting system accordingly.
• Battery Input: The module is designed to accept a battery input of either 3.2V or 3.7V. This range ensures compatibility with various battery configurations commonly used in solar-powered systems.
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