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Dɔwɔnukuwo si wòaxɔ 40 ŋkeke me. Dɔwɔnuku si wòkpɔ mele anyi o. Dɔwɔnuku si wòaxɔ kaati mele anyi o.
Dɔwɔnuku Xɔse
Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku. Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.
Dɔwɔwɔ Kɔkɔe
Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.
1. Dɔwɔwɔ Kɔkɔe
Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku. Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.
2.Dɔwɔwɔ Kɔkɔe
Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.Wòe nànye Roymall, wò dɔwɔnuku si wòkpɔ. Mía ɖe dɔwɔnuku siwo katã wɔna na dzigbeŋkeke, srɔ̃ɖeŋku, dɔwɔwɔ dziɖuɖu kple bubuwo. Kpɔe mía dɔwɔnukuwo na nya yeye siwo katã wɔna kple Roymall Dɔwɔnuku.
Descriptions: Auto start voltage will be pulled down to 7V or less, and engine will at high speed when the voltage up to 15V or higher. It is hard to work for 12V electrical equipment, this automatic buck boost module can solve this problem, regardless of the input voltage is 5V or 12V or 32V, the output can be stabilized at 12V.
Built-in 4A efficient MOSFET switches enable efficiency up to 94%; (LM2577 current is 3A)
High switching frequency 400KHz, the ripple is smaller, dimension is smaller . (LM2577 frequency only 50KHz)
Applications:
Car regulator, solar photovoltaic, wind power and other applications of voltage instability .
Specifications:
Model Specification: DSN6000AUD Automatic Buck module
Module Properties: Non- isolated boost (BOOST)
Rectification: Non- Synchronous Rectification
Input Range: 3.8V - 32V
Output Range: 1.25V - 35V
Input Current: 3A ( max ) , no-load 18mA (5V input , 8V output , no-load is less than 18mA. Higher the voltage, the greater the load current. )
Conversion efficiency: <94% ( the greater the pressure , the lower the efficiency )
Switching frequency: 400KHz
Output Ripple: 50mV ( the higher the voltage, the greater the current, the greater the ripple )
Load Regulation: ± 0.5%
Voltage Regulation: ± 0.5%
Operating Temperature: -40°C to +85°C
Dimensions: 48 x 25 x 14mm ( L x W x H )
Package included: 1 x DC-DC Boost Buck Adjustable Step Up Step Down Automatic Converter XL6009 Module
I am happy with the units, all working, despite the small chances, based on the "law of total probability", they arrived without damage, small eggs and bricks in the same bag without protection is something very peculiar, the assembly of the components is not 100% aligned . The output voltage remained constant even with extreme variation in the input voltage, below 5v is too extreme, without load or with varying loads, in multimeters aneng and hikari the voltage remained stable, varying only at the voltage input, according to load # Estou feliz com as unidades, todas funcionando, apesar das pequenas chances, baseado na "lei da probabilidade total", chegaram sem danos, pequenos ovos e tijolos na mesma sacola sem proteção é algo muito peculiar, a montagem dos componentes não é 100% alinhada. A tensão de saída se manteve constante mesmo com variação extrema na tensão de entrada, abaixo de 5v é extremo demais, sem carga ou com cargas variadas, nos multimetros aneng e hikari a tensão permaneceu estável, variando apenas na entrada de tensão, de acordo com a carga.
I am happy with the units, all working, despite the small chances, based on the "law of total probability", they arrived without damage, small eggs and bricks in the same bag without protection is something very peculiar, the assembly of the components is not 100% aligned . The output voltage remained constant even with extreme variation in the input voltage, below 5v is too extreme, without load or with varying loads, in multimeters aneng and hikari the voltage remained stable, varying only at the voltage input, according to load # Estou feliz com as unidades, todas funcionando, apesar das pequenas chances, baseado na "lei da probabilidade total", chegaram sem danos, pequenos ovos e tijolos na mesma sacola sem proteção é algo muito peculiar, a montagem dos componentes não é 100% alinhada. A tensão de saída se manteve constante mesmo com variação extrema na tensão de entrada, abaixo de 5v é extremo demais, sem carga ou com cargas variadas, nos multimetros aneng e hikari a tensão permaneceu estável, variando apenas na entrada de tensão, de acordo com a carga.
I am happy with the units, all working, despite the small chances, based on the "law of total probability", they arrived without damage, small eggs and bricks in the same bag without protection is something very peculiar, the assembly of the components is not 100% aligned . The output voltage remained constant even with extreme variation in the input voltage, below 5v is too extreme, without load or with varying loads, in multimeters aneng and hikari the voltage remained stable, varying only at the voltage input, according to load # Estou feliz com as unidades, todas funcionando, apesar das pequenas chances, baseado na "lei da probabilidade total", chegaram sem danos, pequenos ovos e tijolos na mesma sacola sem proteção é algo muito peculiar, a montagem dos componentes não é 100% alinhada. A tensão de saída se manteve constante mesmo com variação extrema na tensão de entrada, abaixo de 5v é extremo demais, sem carga ou com cargas variadas, nos multimetros aneng e hikari a tensão permaneceu estável, variando apenas na entrada de tensão, de acordo com a carga.
In general, it is good, but if the input voltage drops below 3.5V, the output voltage will be triggered up to the maximum output, around 30V.
Be careful with that "detail" !!!
In general, it is good, but if the input voltage drops below 3.5V, the output voltage will be triggered up to the maximum output, around 30V.
Be careful with that "detail" !!!
In general, it is good, but if the input voltage drops below 3.5V, the output voltage will be triggered up to the maximum output, around 30V.
Be careful with that "detail" !!!
Tips:For questions about your order, place of delivery, product discount, taxation, delivery time, warranty, shipping, payment, exchange rate, and other questions unrelated to the product, please contact customer service.
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A part of the QA has been auto-translated.
0
Q:
if I use 12v-7amp battery for input I want 21v - 7 to 9Amp at the output end I know voltage will step -up
but whats about current??
if I use 12v-7amp battery for input I want 21v - 7 to 9Amp at the output end I know voltage will step -up
but whats about current??
I like to think that things are simple, we complicate them to waste time.
Think of the simple, a converter with 100% efficiency (this does not exist) if entering 50 watts will leave 50 watts
Simply multiply the voltage and current in and subtract the losses and you will have the result of the output, without forgetting the limits of the circuit
I like to think that things are simple, we complicate them to waste time.
Think of the simple, a converter with 100% efficiency (this does not exist) if entering 50 watts will leave 50 watts
Simply multiply the voltage and current in and subtract the losses and you will have the result of the output, without forgetting the limits of the circuit
Answered by TonBG248126253 on 27/03/2021Helpful (0)
0
Q:
So this will regulate voltage? Say I have batteries that can go from 2.6-4.3, will it only boost it by say 150% or will it regulate it so it is always a constant 5v? Thank you and sorry if this sounds confusing!
So this will regulate voltage? Say I have batteries that can go from 2.6-4.3, will it only boost it by say 150% or will it regulate it so it is always a constant 5v? Thank you and sorry if this sounds confusing!
Itwill regulate the output to whatever you have it set to (using the potentiometer) regardless of the input. Let's say you set it to 5V out, no matter what voltage goes in it even very fluctuating (like solar pannels or your 2.6- 4.3v batteries) it will automatically regulate the output to a constant 5V. This board can also both buck or boost voltage depending on your needs.
Itwill regulate the output to whatever you have it set to (using the potentiometer) regardless of the input. Let's say you set it to 5V out, no matter what voltage goes in it even very fluctuating (like solar pannels or your 2.6- 4.3v batteries) it will automatically regulate the output to a constant 5V. This board can also both buck or boost voltage depending on your needs.
Yes, negative input and output common to each other
Yes, negative input and output common to each other
Answered by TonBG248126253 on 15/04/2021Helpful (0)
0
Q:
i need it to make 13.2volts from a car battery which varies from 12.4-14.2volts depending on the car engine RPM/not running etc. can this switch fine than?
i need it to make 13.2volts from a car battery which varies from 12.4-14.2volts depending on the car engine RPM/not running etc. can this switch fine than?
Yes,by default, but it depends on the magnitude of the load current. You cannot exceed the specified maximum load current, as this will break the voltage and damage the device!
Yes,by default, but it depends on the magnitude of the load current. You cannot exceed the specified maximum load current, as this will break the voltage and damage the device!
Answered by Ellaberin on 06/01/2022Helpful (0)
0
Q:
very strange behavior if I want to set 5V output then if voltage input goes below 3.6V the output voltage suddenly goes up and very unstable ?! 3.5V input = variable not steady 5.5-7.5V output, 3.4V input = 10V output, with 3.3V input = 8.5V ouput, 3.2V input = 6.4V output, 3.1V input = 4.5V output, 3.0V input = 3.6V ouput, 2.9V input = 2.95V output, 2.8V input = only 0.5V output , all done with a load of only 200mA
very strange behavior if I want to set 5V output then if voltage input goes below 3.6V the output voltage suddenly goes up and very unstable ?! 3.5V input = variable not steady 5.5-7.5V output, 3.4V input = 10V output, with 3.3V input = 8.5V ouput, 3.2V input = 6.4V output, 3.1V input = 4.5V output, 3.0V input = 3.6V ouput, 2.9V input = 2.95V output, 2.8V input = only 0.5V output , all done with a load of only 200mA
Part of my review text with photos.
" The output voltage remained constant even with extreme variation in the input voltage, below 5v is too extreme, without load or with varying loads, in multimeters aneng and hikari the voltage remained stable, varying only at the voltage input, according to load. "
Part of my review text with photos.
" The output voltage remained constant even with extreme variation in the input voltage, below 5v is too extreme, without load or with varying loads, in multimeters aneng and hikari the voltage remained stable, varying only at the voltage input, according to load. "
Answered by TonBG248126253 on 15/04/2021Helpful (0)
0
Q:
Q: is this buck controller's negative input and output common to each other? looking at photo it is. can someone who has used this please confirm
Q: is this buck controller's negative input and output common to each other? looking at photo it is. can someone who has used this please confirm
Ok,I have no clue what the repies below have been smoking...
You can chose the output VOLTAGE to whatever you like from 1.25V - 35V as long as you have an input ANYWHERE BETWEEN 3.8V - 32V.
Example: IN-3.8v Out-35v IN-8.2v Out-16.3v IN-32v Out-1.25v.
It is a buck AND boost converter and it doesn't care if the input voltage is fluctuating, the output should remain stable in real time no matter what you set it to.
Ok,I have no clue what the repies below have been smoking...
You can chose the output VOLTAGE to whatever you like from 1.25V - 35V as long as you have an input ANYWHERE BETWEEN 3.8V - 32V.
Example: IN-3.8v Out-35v IN-8.2v Out-16.3v IN-32v Out-1.25v.
It is a buck AND boost converter and it doesn't care if the input voltage is fluctuating, the output should remain stable in real time no matter what you set it to.
Answered by DVDplayerz on 15/03/2022Helpful (0)
0
Q:
Hi, I want to remake a 14.4v battery torch using Bangood :
3W High Power LED PCB Bulb Beads Chips Car Indoor Reading Lamp Aquarium Heat Sink and this buck boost converter
would this be a suitable combination? I think the V range seems to be as it will need to step down 14.4v to approx 3v but the LED spec for Ah is 700mah is that ok? Thanks
Hi, I want to remake a 14.4v battery torch using Bangood :
3W High Power LED PCB Bulb Beads Chips Car Indoor Reading Lamp Aquarium Heat Sink and this buck boost converter
would this be a suitable combination? I think the V range seems to be as it will need to step down 14.4v to approx 3v but the LED spec for Ah is 700mah is that ok? Thanks
Bonjour. Ce module convient il pour abaisser 26V à 12V ou 26V à 5V. Merci Hello. This module is suitable for lowering 26V to 12V or 26V to 5V. Thank you
Bonjour. Ce module convient il pour abaisser 26V à 12V ou 26V à 5V. Merci Hello. This module is suitable for lowering 26V to 12V or 26V to 5V. Thank you
InputCurrent: 3A ( max ) , no-load 18mA (5V input , 8V output , no-load is less than 18mA. Higher the voltage, the greater the load current. ) Outputcurrent = inputcurrent x inputvoltage divided by output voltage x 94%
InputCurrent: 3A ( max ) , no-load 18mA (5V input , 8V output , no-load is less than 18mA. Higher the voltage, the greater the load current. ) Outputcurrent = inputcurrent x inputvoltage divided by output voltage x 94%
Answered by sopo21 on 23/09/2021Helpful (0)
0
Q:
any one can tell me.. i wnt 12 volt 15amp converter 12 V 7Ah to 12 V 15 AH for this which ciruit is useful.
any one can tell me.. i wnt 12 volt 15amp converter 12 V 7Ah to 12 V 15 AH for this which ciruit is useful.
Yes,it can go to 35V. only less current, about 0.7amp with 21V output.
Yes,it can go to 35V. only less current, about 0.7amp with 21V output.
Answered by sopo21 on 01/08/2021Helpful (0)
0
Q:
Input Voltage: 6V- 7.5V, Input Current: 0.1- 0.15 A, Output Voltage- 1.5 V, Output Current- 0.4 A. Will this circuit meet these specifications? And how do we adjust the voltage and current we require? What provision is there?
Input Voltage: 6V- 7.5V, Input Current: 0.1- 0.15 A, Output Voltage- 1.5 V, Output Current- 0.4 A. Will this circuit meet these specifications? And how do we adjust the voltage and current we require? What provision is there?
It is possible to define this in 2 ways, converting the input power to watts, subtracting the percentage loss of the circuit and you will have the output power. watt = amp × volts. W = A × V. For example, if the current has 3 amps (3A) and a voltage of 110V, just multiply these two values to obtain the power of 330W (watts). Second option is to connect the wires and do experimentation. Using the calculations, I can say that the possibility of meeting your needs is plausible. PS.: This module does not regulate current, the only regulation that exists and the output voltage.
It is possible to define this in 2 ways, converting the input power to watts, subtracting the percentage loss of the circuit and you will have the output power. watt = amp × volts. W = A × V. For example, if the current has 3 amps (3A) and a voltage of 110V, just multiply these two values to obtain the power of 330W (watts). Second option is to connect the wires and do experimentation. Using the calculations, I can say that the possibility of meeting your needs is plausible. PS.: This module does not regulate current, the only regulation that exists and the output voltage.
Answered by TonBG248126253 on 15/04/2021Helpful (0)
0
Q:
what is the pad distance between out+, out- and in+, in-. can you post the board dimension including input, output pad position.
what is the pad distance between out+, out- and in+, in-. can you post the board dimension including input, output pad position.
Is there a version of this product that can handle high currents,(that's over 50Ah ) or something that operate between 10ah to 100ah, Inputoutput. I need something like this for my work, but am operating beyund 3Ah and will therefore need a boaster that can take in 10ah to 100ah and give out some thing higher or lower
Is there a version of this product that can handle high currents,(that's over 50Ah ) or something that operate between 10ah to 100ah, Inputoutput. I need something like this for my work, but am operating beyund 3Ah and will therefore need a boaster that can take in 10ah to 100ah and give out some thing higher or lower