Features:
The XL6009 module is a non-isolated step-up voltage converter featuring adjustable output voltage and new generation(XL6009E1 core chip) high-frequency(400KHZ) switching technique, the performance is much better than LM2577. XL6009 DC-DC adjustable boost power converter module, boost circuit board is an efficient non-isolated boost module. Simple operation:
Ultra-compact power module with simple operation. Using a mini screwdriver to step up / down output voltage by turning slotted screw on the blue trimpot, and monitor voltage with multimeter to achieve the expected voltage, clockwise to reduce voltage and counterclockwise to increase voltage. (1 circle means +/- 1V) Note:
1. Please check whether the negative and positive terminals are accessed correctly before operating.
2. The conversion efficiency of this module is higher than that of the LM2577 triode drive mode. This module is an adjustable boost module, and the output voltage can be changed through the precision multi-turn adjustable potentiometer on the adjustment module. The peak output voltage is 45V . Turn clockwise to buck, counterclockwise to boost.
3. Working temperature: Industrial grade -45°C ~85°C, if the ambient temperature exceeds 40°C, please reduce the power usage or strengthen the heat dissipation.Product parameters:
Model specification: XL6009 boost module
Module properties: non-isolated boost (BOOST)
Rectification method: non-synchronous rectification
Input range: 3V~32V
Output range: 5V~35V
Input current: 4A (peak value), no-load 18mA (5A input, 8V output, no-load less than 18mA. The higher the voltage, the greater the no-load current.)
Conversion efficiency: Switching frequency: 400KHz
Output wave: 50mV (the higher the voltage, the greater the current, the greater the ripple)
Load regulation: ±0.5%
Voltage adjustment rate: soil 0.5%
Working temperature: -40°C~85°C
Dimensions: 43* 21*14mm (L*W*H)IN+ input positive IN- input negative
OUT+ output positive OUT- output negativeTest comparison sample reference:
Input 5V Output 12V 0.8A 9.6W
Input 7.4V Output 12V 1A 18W
Input 12V Output 15V 2A 30W
Input 12V Output 16V 2A 32W
Input 12V Output 18V 1.6A 28.8W
Input 12V Output 19V 1. 28.5W
Input 12V Output 24V 1A 24W
Input 3V Output 12V 0.4A 4.8WVin*Iin*efficiency = Vout*IoutVin: input voltage
Iin: input current
Vout: output voltage
Iout: output currentfor example:
Input 5V, 1A
Output 10V, 0.4
Efficiency 90%
5 * 1 * 90% = 10 * 0.4