• -40%

Ultra-kicsi DC-DC 0,8–3,3 V–DC 3,3 V Step UP Boost PFM feszültségátalakító tápegység modul DC/DC 1,5 V 2 V 2,5 V 3 V

Ultra-kicsi DC-DC 0,8–3,3 V–DC 3,3 V Step UP Boost PFM feszültségátalakító tápegység modul DC/DC 1,5 V 2 V 2,5 V 3 V

139 Ft 40% megtakarítás
232 Ft
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Product Name: Ultra-small DC-DC 0.8-3.3V to DC 3.3V Step UP Boost PFM Voltage Converter Power Supply Module DC/DC 1.5V 2V 2.5V 3V for DUE FPGA
 
 
 
Packing list:
 
1 PCS 0.9V-3.3V TO 3.3V Step-UP  PFM Voltage Converter Module  
 
 
 
Description: 
Input voltage 0.8 ~ 3.3V,output 3.3V
Maximum output current: 500 MA,
 
Start Voltage 0.8V, Output Current 10MA
  
INPUT 1-1.5V,     OUTPUT 3.3V 50-110MA;
INPUT 1.5-2V,      OUTPUT 3.3V 110-160MA;
INPUT 2-3V,         OUTPUT 3.3V 160-400MA;
INPUT above 3V,  OUTPUT 3.3V 400-500MA;
 
DC-DC Boost module working frequency 150KHZ. efficiency <85% (Recommended high efficiency version)
Excluding Pin Size 11mm x 10.5mm x 7.5mm(Very small),2.54mm pin pitch
 
 
 Applications:
Battery powered equipment
Wirels Module,NRF24L01 CC1101 CC2500 etc.
Development Board,FPGA/CPLD  STM32 
Camera, Video camera
VCR
PDA
LED Lighting
Wireless communication equipment
MP3/MP4 player
Audio equipment
 
Attention :
 
This is a DC-DC voltage converter module,Must be noted when using:
1 Input voltage can not be greater than the maximum input range
2 Output power can not be greater than the maximum load for a long time
3 Input power must be greater than the output power, because the power consumption of the module itself
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Product Name: Ultra-small DC-DC 0.8-3.3V to DC 3.3V Step UP Boost PFM Voltage Converter Power Supply Module DC/DC 1.5V 2V 2.5V 3V for DUE FPGA
 
 
 
Packing list:
 
1 PCS 0.9V-3.3V TO 3.3V Step-UP  PFM Voltage Converter Module  
 
 
 
Description: 
Input voltage 0.8 ~ 3.3V,output 3.3V
Maximum output current: 500 MA,
 
Start Voltage 0.8V, Output Current 10MA
  
INPUT 1-1.5V,     OUTPUT 3.3V 50-110MA;
INPUT 1.5-2V,      OUTPUT 3.3V 110-160MA;
INPUT 2-3V,         OUTPUT 3.3V 160-400MA;
INPUT above 3V,  OUTPUT 3.3V 400-500MA;
 
DC-DC Boost module working frequency 150KHZ. efficiency <85% (Recommended high efficiency version)
Excluding Pin Size 11mm x 10.5mm x 7.5mm(Very small),2.54mm pin pitch
 
 
 Applications:
Battery powered equipment
Wirels Module,NRF24L01 CC1101 CC2500 etc.
Development Board,FPGA/CPLD  STM32 
Camera, Video camera
VCR
PDA
LED Lighting
Wireless communication equipment
MP3/MP4 player
Audio equipment
 
Attention :
 
This is a DC-DC voltage converter module,Must be noted when using:
1 Input voltage can not be greater than the maximum input range
2 Output power can not be greater than the maximum load for a long time
3 Input power must be greater than the output power, because the power consumption of the module itself
32253709053/2 - shop1525466
32253709053/2

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Ultra-kicsi DC-DC 0,8–3,3 V–DC 3,3 V Step UP Boost PFM feszültségátalakító tápegység modul DC/DC 1,5 V 2 V 2,5 V 3 V

Product Name: Ultra-small DC-DC 0.8-3.3V to DC 3.3V Step UP Boost PFM Voltage Converter Power Supply Module DC/DC 1.5V 2V 2.5V 3V for DUE FPGA
 
 
 
Packing list:
 
1 PCS 0.9V-3.3V TO 3.3V Step-UP  PFM Voltage Converter Module  
 
 
 
Description: 
Input voltage 0.8 ~ 3.3V,output 3.3V
Maximum output current: 500 MA,
 
Start Voltage 0.8V, Output Current 10MA
  
INPUT 1-1.5V,     OUTPUT 3.3V 50-110MA;
INPUT 1.5-2V,      OUTPUT 3.3V 110-160MA;
INPUT 2-3V,         OUTPUT 3.3V 160-400MA;
INPUT above 3V,  OUTPUT 3.3V 400-500MA;
 
DC-DC Boost module working frequency 150KHZ. efficiency <85% (Recommended high efficiency version)
Excluding Pin Size 11mm x 10.5mm x 7.5mm(Very small),2.54mm pin pitch
 
 
 Applications:
Battery powered equipment
Wirels Module,NRF24L01 CC1101 CC2500 etc.
Development Board,FPGA/CPLD  STM32 
Camera, Video camera
VCR
PDA
LED Lighting
Wireless communication equipment
MP3/MP4 player
Audio equipment
 
Attention :
 
This is a DC-DC voltage converter module,Must be noted when using:
1 Input voltage can not be greater than the maximum input range
2 Output power can not be greater than the maximum load for a long time
3 Input power must be greater than the output power, because the power consumption of the module itself

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