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Master Laptop Motherboard Voltages and Signals Tracking | Charging Circuit Explained | Laptop repair

39:14EnglishTranscribed Jul 28, 2026
0:00

the AC okay exist in the pin

0:04

127 so we have 3 volt in the multimeter

0:08

so AC okay is good

0:11

19.1 volt this is the dcn let's check we

0:15

have 19 volt in the multimeter so we

0:19

have here PQ 52 these three pins are s

0:23

and this is to get let's check hi

0:25

everyone so welcome again to this video

0:28

where I'm going to teach you the charge

0:31

circuit from a to zed so please because

0:35

this is the first video where you see my

0:38

face I want more likes for this video

0:42

this video will be one of the top videos

0:45

in my channel so please guys why this

0:48

course is a very important course and is

0:51

one of the top course in my YouTube

0:53

channel because upon completion of this

0:56

curse you will be able to fix battery

0:59

not char charging issues battery not

1:02

detected battery works on adapter but

1:05

not on battery battery not recognized

1:09

laptop only powers on battery but not on

1:12

adapter laptop turns off when unplugged

1:16

battery drains too quickly adapter

1:19

connected not charging battery

1:21

percentage stuck laptop charging slowly

1:25

laptop charging but not increasing

1:28

percentage plugged in in not charging

1:31

issue inconsistent charging Behavior

1:34

laptop charging light blanking not

1:36

showing laptop doesn't recognize the

1:40

adapter and finally power adapter

1:43

overheating so please if you suffer from

1:46

any of these issues stay tuned this

1:49

video will help you a lot this is the

1:52

top samplified schematic that will help

1:56

you understand the Char circuit 100

2:00

person so this schematic is the same as

2:03

this here we going to see the

2:06

theoretical part here in the table where

2:10

I'm going to teach you how to follow

2:12

voltages and of course we going to see

2:14

all here in this motherboard using the

2:18

multimeter so please stay tuned let's

2:21

get started so first let's see an

2:24

overview about this schematic here we

2:27

have the DC jack as you see we have the

2:32

pgp1 so this is the DC jack in the

2:35

motherboard

2:38

pgp1 we have the

2:40

pl24 inductor the

2:43

pl24 inductor this one next to the DC

2:48

jack this is the input inductor and over

2:52

here we have two mosfets or switches

2:55

this is the first mosfit PQ 51 and the

2:59

second m moset PQ 52 so this mosfit is

3:04

PQ 51 and in the other side we will find

3:08

PQ 52 this is PQ 52 mosfet always next

3:14

to the D jar so basically this mosfit is

3:18

used for protection and this one we

3:21

called it a switch because it Le 19 volt

3:25

to pass from this side to this side we

3:29

have the current sens resistor PR

3:33

351 here we have the current sens

3:36

resistor PR

3:38

351 next to the battery connector the

3:42

purpose of the current sens resistor is

3:45

to calculate the current consumed by the

3:48

whole motherboard here we have the

3:51

charge IC pu 1 it's reference is I

3:58

6251 this is the charge IC we have pu 17

4:03

and for the reference as you can see we

4:05

have I

4:08

6251 we have the is iio this is the

4:12

circuit that is responsible for the

4:15

management of the whole power in the

4:17

motherboard this is the siio or the

4:21

super iio so here we have two voltage

4:24

Regulators that will generate the 12

4:28

volt to charge the battery battery then

4:30

here we have the mosfit or the switch

4:33

for the battery and also it's inductor

4:37

p45 but this channel will only work when

4:42

the adapter is removed so now let's see

4:46

how voltage travel into circuit step by

4:50

step from one point to other point first

4:53

of all we have the v in so VN equal to

4:58

19 volt the VN will pass through this

5:02

inductor and it will be present here in

5:06

the drain of this mosfit PQ 51 so let's

5:11

check PQ 51 so this is the mosfit as you

5:15

can see here we have PQ 51 okay this

5:19

reference PQ 56 is for this mosfit okay

5:23

here three pin mosfet but PQ 51 this is

5:28

it here we we have this do means this is

5:31

the SCE and over here we have the gate

5:35

and this is the drain we have to find 19

5:39

volt is in the drain so let's

5:43

check we have 19 volt in the multimeter

5:47

so we find 19 volt 19 volt is present

5:52

then 19 volt will goes in this direction

5:56

as you can see and in this direction

6:01

to power this IC we have here the DC in

6:06

so the DC end signal is about 19 volts

6:11

it is the working voltage for this IC so

6:15

without without the DC in the IC will

6:18

not work means we will not get 12 volt

6:22

we will not get anything in the circuit

6:25

so let's check the dcn in the pin 25

6:30

we have to find 19 volt so this is the

6:33

charge I see this dot here means this is

6:37

the p number one so 1 2 3 4 5 6 7 8 9 10

6:43

11 12 so here we have 12 and over here

6:47

we have 12 so the pin 24 is this one

6:51

because the rting is like this

6:55

counterclockwise okay one we have here

6:58

one this is the PIN number 12 here we

7:01

have 13 14 15 until 24 so this pin is

7:07

the PIN

7:10

24 so let's check this pin we have to

7:13

find 19 Vol in the multimeter this is

7:16

the dcn let's check we have 190 volt in

7:21

the multimeter so the

7:24

dcn is correct good so once we find 19

7:29

volt let's see the next step so here we

7:33

have the first step so this is the

7:36

second step the third step is the 90

7:40

voltage will goes in this direction as

7:43

you can see of course it will pass

7:47

through this resistor PR

7:51

359 and it will be applied to pin number

7:56

three in charge I so because we have

7:59

have these two resistors about 100 kilm

8:04

we will not get 19 volt here like the

8:07

dcn we will get a voltage usually

8:11

between 1.2 volt and 3.3 volt so let's

8:16

check into I so this is always the

8:19

charge IC let's locate the pin number

8:23

three so this is the PIN number three

8:26

here so 1 2 3 this pin number three is

8:30

connected to this resistor do you see

8:33

this part here this small part means we

8:37

have connection so let's check here in

8:40

this resistor we have 1.3 volts we find

8:46

1.3 volt so this step is good and the

8:50

third step also is good next Once the

8:55

charge I get these two signals this is

8:59

is basically two input signals we called

9:02

it also enable signals once it get this

9:07

signals here this one and this one it

9:10

will then generate the EC drive so this

9:15

is do step number four the AC Drive will

9:21

activate these two gates then the 19

9:25

voltage will pass in this direction but

9:29

let let's first check AC drive so for e

9:33

Drive it's about 8 volt so let's check

9:36

the Gate of this mosfit PQ 51 and this

9:40

mosfit PQ 52 so let's check the AC Drive

9:45

in the motherboard we have to find 8

9:47

volt in the gate of PQ 51 and PQ 52 so

9:53

let's check first the Gate of this

9:55

mosfet so here we have this Dot this is

9:59

the PIN number one 2 three and four so

10:02

the gate always is in the pin number

10:05

four so let's check pin number four we

10:08

have to find 8

10:10

volt as you can see in the milimeter we

10:14

have 8 volt so the AC drive here is good

10:18

let's now check the other mosfit PQ 52

10:23

so the second mosfit is in the other

10:25

side of the

10:27

motherboard so we have here PQ 52 so

10:31

this is the gate because here we have

10:34

this dot means these three pins are Serv

10:37

and this is to get let's

10:40

check also we have eight Vol so the AC

10:44

Drive is good in both mosfets so I will

10:48

prove to you why generating the AC

10:52

detect or the ACN we call it sometimes

10:56

AC sit or also enable we can call this

11:00

signal enable so this signal is very

11:05

important without this signal the EC

11:08

Drive will not be generated let's see

11:11

the proof please pay attention this

11:14

functional diagram is apart from the

11:18

charge IC do you see here the gate

11:21

signals these two signals in order to be

11:24

generated this IC should receive this

11:28

enable signal so this enable signal will

11:31

activate this IC and then this IC will

11:36

generate an output to activate this IC

11:40

and then this IC will generate the

11:44

control signals as you can see for the

11:47

gates so in our case the enable here is

11:51

the AC in about 1.3 volt so once we find

11:58

8 volt in these two gates means these

12:01

two mosfets are activated so a 19 volt

12:05

will pass here we will get here 19 volt

12:10

so this step also is good 19 volt also

12:14

will pass through this current sens

12:17

resistors and then we will get B+

12:22

19 volt let's check 19 volt in both

12:27

sides of this current sens resistor

12:31

p351 so we have the current sens

12:34

resistor

12:36

p351 let's check 19 volt in both sides

12:40

so here we have to find 19 volt this is

12:44

good let's check the other side we have

12:47

19 volt so once we find 19 volt in both

12:52

sides of this resistors why in both

12:55

sides because resistance is about 0 02

13:00

oh so the B+ is good so this step is

13:04

good we get the B+ from here the voltage

13:09

will be distributed to the whole Circuit

13:13

of the motherboard including the CPU

13:18

circuit the ram

13:22

circuit Etc so let's check if this B+ is

13:27

distributed to the the whole motherboard

13:30

or to the whole circuit in the

13:32

motherboard so now we got to check if

13:35

the 19 volt is distributed to all

13:38

circuit in the motherboard so let's

13:41

begin with this circuit here we have

13:45

this inductor we have to always locate

13:48

this inductor we have to find 19

13:51

volt we have 19 volt this is 3v 5 Vol

13:56

circuit here we have do not Bridge

13:59

circuit let's see if we have 19 Vol or

14:02

not we have 19 volt also here we have

14:06

the CPU circuit let's check this

14:09

inductor we have 19 volt let's go and

14:14

check do graphic card inductor we have

14:18

PL means this is inductor we have to

14:21

find 19 volt this is good let's go ahead

14:25

and check the ram circuit we have PL

14:28

indu here let's check we have 19 Vol why

14:33

I check 19 Vol in this kind of inductors

14:37

because those inductors are always in

14:40

every input for every circuit so the 90

14:45

volt is distributed to all circuits in

14:48

the motherboard good we find that the B+

14:53

is distributed to all circuit in the

14:55

motherboard means this STP also the St

14:59

number six is also good the distribution

15:02

of the main voltage is down 100% now the

15:07

19 volt will pass through this inductors

15:11

directly to source of this mosfit PQ 53

15:15

but it will stop here in the SE it will

15:19

not pass to other side because if it

15:22

pass to this side it will damage the

15:25

battery because the maximum voltage of

15:29

the battery is 12 volt why the voltage

15:32

will not pass to this side because this

15:35

mosfit contain inside it a protection

15:41

diode that will not let the voltage to

15:44

pass in the side so let's check this

15:47

mosfit we have to find 90 volt in h s

15:51

but the drain we should find Z volt so

15:54

let's check into motherboard so this is

15:58

PQ 53 as you can see here we have this

16:02

dot means this is s so we have to find

16:06

19 volt in the S as you can see in the

16:10

multimeter but in the drain we have to

16:13

find zero volt as you can see so here

16:17

it's a good mosfet the battery is

16:19

protected so the next step here is this

16:24

the 19 volt will travel in this

16:27

direction so we will get 19 volt hair in

16:31

the drain of PQ 62 so this is the step

16:37

number

16:38

seven let's check the drain of this

16:42

moset PQ 62 so we have here PQ 62 as you

16:48

can see so this is s you have to always

16:51

locate this point because the point

16:54

always refer to the pin number one so

16:57

three pin here for S this is the gate

17:01

and over here we have the drain so we

17:04

have to find 19 volt in the drain let's

17:08

check we have 19 volt in the multimeter

17:12

so the 19 volt is present means the the

17:15

last step about the main voltage is good

17:20

now let's move on to the next chapter so

17:24

once the Char I detect or receive the DC

17:28

in the AC in and also the B+ is here and

17:34

is distributed to all circuit in the

17:38

motherboard the charge circuit will

17:41

begin send the E key to this IC to the

17:46

super I about 3.3 volt so let's verify

17:50

the AC okay and the motherboard so this

17:53

is the siio as you can see near to the

17:57

charge I so the AC exist in the pin

18:03

127 as you can see in the schematic so

18:06

let's check the pin

18:08

127 so as you can see this Mark here

18:11

means this is the PIN number one over

18:14

here we have 32 the pin number 32 33

18:19

here we have 64 here 65 here we have 96

18:24

97 and over here we have 128 so the pin

18:29

127 should be this pin so we have three

18:34

volt in the multimeter so AC okay is

18:38

good so we find the AC okay means the

18:43

number eight is good the EC okay is good

18:47

so the E okay that the charge circuit

18:50

sent to the S iio is the same as power

18:53

good the charge I see here in form the

18:57

is iio because this is the boss here we

19:01

have

19:03

boss so this is the big boss in the Char

19:06

circuit always the charge IC refer to

19:10

its boss that's why this IC is the IC

19:14

that manage the whole power in the

19:17

motherboard so the charge IC will inform

19:21

this boss that the ACN is detected the

19:25

dcn is detected and also the main

19:28

voltage is distributed correctly so then

19:32

the siio will send another signal here

19:36

basically this

19:39

ISB data okay and also MB clock the same

19:45

as do but those signals will be sent to

19:50

the battery okay we going to discuss the

19:53

signals after so after receiving the AC

19:56

okay the isio will will send the acmb

20:00

data and acmb clock signal to this IC to

20:04

generate the uper gate here we have 10

20:08

okay here also we have 10 okay to

20:11

generate the upper gate to these two

20:14

mosfets we have PQ 62 and PQ 64 these

20:19

two mosfit will then generate the 12

20:22

volt to do battery here guys I have a

20:26

question why we all always speak about

20:30

12 volt not 19 Volt or 18 volt why so

20:34

let me explain to you and teach to how

20:37

to battery works in order to understand

20:40

why 12 volt and not 19 volt let's go

20:44

started so do you see here basically the

20:47

battery for the laptop composed of of

20:51

six CS okay we have these three CS are

20:55

connected in series okay and for each

20:58

still we have 3.7 Volt 2 amps 3.7 2 amps

21:03

3.7 to amps so when we connect the sees

21:07

in series means the the voltage will be

21:11

added will be increased but the current

21:14

will remain the same so means we have

21:18

3.7 here 3.7 3.7 so 3.7 + 3.7 + 3.7

21:27

equal

21:29

19.1

21:31

volt

21:32

means 12 volt okay we have another arow

21:36

here where we have three other CES okay

21:40

so this three other CES also is in

21:42

series means we have here 12 volt 2 amps

21:48

okay and here we have 12 Vol 2 amps

21:52

because those in series and those in

21:55

series now the two arrows is in parallel

21:59

means what when we have two blocks of

22:02

cells in parallel means what means the

22:05

current will be added means 2 Amp plus 2

22:08

Amp will be 4 amps okay we have here 4

22:13

amps but in parallel the voltage will

22:16

not be added will remain the same

22:19

voltage means we have here 12 volt 12

22:23

Vol it will be 12 Vol to within the

22:26

battery we have 12 volt for amps that's

22:29

why these two voltage Regulators

22:32

generate 12 volt not 19 volt not 18 volt

22:37

because the maximum voltage that the

22:40

battery can support is 12 volt based on

22:44

it configuration six seals with the

22:47

characteristics of 3.7 Volt 2 amps so

22:51

the next step guys this is a very

22:54

important step please pay attention the

22:56

next step is to generate

22:59

this signals this is a very important

23:02

signals that I want you to understand

23:05

very important signals here we have the

23:08

bat temperature or battery temperature

23:11

we have the acmb data and ASB clock so

23:16

right now I will explain to you what ISB

23:19

data ASB clock andb temperature and why

23:24

we use this kind of signals and what is

23:27

the purpose of the signals so before

23:31

explain these three signals let's first

23:34

take the measurement in the motherboard

23:36

so for ASB temperature we going to find

23:39

it in the p number four of the battery

23:41

connector ASB data in p number five

23:45

clock in pain number six we going to

23:47

find 3.3 Vol so let's check the

23:50

motherboard and then come back and

23:53

explain these three signals so in the

23:55

motherboard this is the battery connect

23:58

conector here and we have this Mark here

24:01

do you see this triangle means this is

24:04

the PIN number one pin number two three

24:08

4 so p number four is

24:10

forb temperature we have to find 3.3 Vol

24:14

let's check we have 3.3 volt so pin

24:18

number five this is as MB data we have

24:22

to find 3.3 Vol as you can see in the

24:25

multimeter and the pin number six is for

24:29

the clock 3.3 volt so we have the 3.3

24:34

volt in these three pins so good once we

24:38

check the three signals we find 3.3 volt

24:41

let's now explain it what is the signals

24:44

so for battery temperature based on this

24:47

signal the siio will make sure that the

24:51

heat of the battery is within normal is

24:55

good it's not overhead because if the

24:58

battery is overhead it the siio will

25:01

shut down the charge I see working for

25:04

thep data of course the siio will know

25:08

about the state of the battery for

25:11

example what is the level of the battery

25:14

is it 50% 40% 90% Etc once the battery

25:19

for example reach 100% the siio will

25:23

know that the battery reach 100% so the

25:27

siio will send another signal called ASP

25:31

data for the charge IC to stop the

25:34

control signal so it will stop

25:36

generating the control signal to G of

25:38

this moset then the 12 VT will stop be

25:42

generating and for as clock we call it

25:46

clock or timing okay

25:50

timing this signal basically is the

25:53

clock signal because all component in

25:56

the motherboard need the clock you know

25:58

for synchronization in order to work

26:01

properly so we find that those signals

26:05

are good so here we have the step number

26:09

11 is good so guys right now let's

26:12

summarize what we have seen before so we

26:15

have seen that this is the DC jack okay

26:18

once the adapter is plugged the 19 volt

26:21

will pass here to drain off this mosfet

26:25

but it will not pass to this side so

26:28

until these two mosfets or switches

26:31

receive the E drive from the charge

26:34

circuit but before generating the AC

26:37

Drive the charge IC should receive some

26:41

inputs including the dcn 19 volt and

26:45

also the ACN about 1.2 Vol to 3.3 volt

26:50

for our example we find 1.3 volt so once

26:55

the charge IC receive the signal it then

26:58

then generate the E drive to the gate of

27:01

these two mosfets then the 19 volt will

27:05

pass to this side so we can get here the

27:09

B+ the B+ is the main voltage for the

27:12

whole motherboard it will be distributed

27:15

to all circuit in the motherboard and of

27:18

course we will get here 19 volt in the

27:20

drain of this mosfit these two mosfets

27:23

of course will generate the voltage to

27:26

charge the battery so once these two

27:29

signals and the AC Drive is generated

27:32

and the main voltage here is good the

27:34

charge IC will then generate the E okay

27:38

to the boss or the super iio so the

27:42

super iio we know that the voltage here

27:45

is managed 100% good so the siio will

27:51

generate a signal teing the charge I go

27:54

ahead and generate the low gate and the

27:58

uppergate for this two mosfets in order

28:01

to generate 12 volt for the battery in

28:04

order to charge the battery basically

28:07

and the B way we have here another

28:10

current sense resistor exactly like this

28:12

one but this one here its purpose is to

28:16

measure and to calculate the current

28:19

consument by the battery I have here

28:22

another tip why as you can see here we

28:25

have the part here the 12 volt will be

28:28

generate to charge the battery and we

28:30

have also here another feedback to this

28:34

IC this is basically we call it the

28:36

phase the phase here will let the IC to

28:40

know whether the 12vt is generated or

28:44

not if for example the 12 VT is not

28:47

exact for example let's assume we get

28:50

here 13 volt so this IC will readjust

28:55

this signal for Lower Gate and upper

28:57

gate in order to get the 12 volt the

29:00

exact voltage so after generating this

29:03

voltage we have also this three signals

29:07

that will be generated about the same

29:10

time we have the battery temperature in

29:13

order to know all about the the

29:16

temperature for the battery if the

29:18

battery is overheated this IC will shut

29:21

off this charge circuit we have thep

29:24

data to know about about the state and

29:27

the level of the battery andb clock for

29:31

timing or synchronization so guys now we

29:34

reach the most important chapter in this

29:37

video is to teach you every issue and

29:41

the probable component that can cause

29:43

this issue so let's begin with battery

29:47

not charging so battery not charging

29:50

means what exactly means the 12 V here

29:54

is not generated to this battery means

29:57

what EX exactly means it could be the

30:00

problem could be in this mosfit one of

30:03

these two mosfets it could be the short

30:05

circuit and of course when we talk about

30:08

short circuit this is the probable

30:11

component that could be shorted because

30:14

it is connected to the ground and also

30:16

this capacitor if this capacitor is

30:19

shorted the 12 volt will go to to the

30:22

ground directly to the ground not to the

30:24

battery or it could be the IC so if the

30:27

I is not generate the Lower Gate and the

30:30

upper gate so we cannot get 12 volt so

30:35

the battery will not be charged of

30:37

course we cannot see that the IC is bad

30:40

we should first check its input and the

30:43

most important input here is to check

30:46

the E okay is e okay present or not

30:50

because before generating the signal to

30:53

activate this to moset this IC should

30:56

first send the AC okay to the siio the

31:00

siio of course could could receive the

31:03

AC okay but if the siio is failed it

31:06

cannot send this signal so for this

31:09

problem about battery not charging it

31:12

could be this two mosfets it could be

31:15

this capacitor it could be the battery

31:18

itself if we have a bad battery it could

31:21

be the connector the battery connector

31:23

could be the charge circuit and it could

31:26

be the siio so so let's move on to the

31:29

next issue battery not detected so if

31:33

the battery is not detected

31:35

automatically it could be the problem

31:37

the battery itself or the motherboard

31:40

within the battery because the battery

31:42

contain a motherboard inside it it could

31:45

be this connector the battery connector

31:48

and it could be also the a iio or the

31:51

super iio why because battery not

31:54

connected this is the signal that tell

31:56

us if the battery is connected or not

31:59

asmp data so if we have a problem with

32:02

this signal means the problem could be

32:05

here in the isio so now let's move on to

32:08

the next issue laptop works on adapter

32:11

but not on the battery so when the

32:14

laptop works on adapter but not in the

32:17

battery means we have problem in the

32:20

side so it could be this m because this

32:24

is the switch for the battery of course

32:27

it could be the battery itself it could

32:29

be the battery connected but this is the

32:31

probable component that could be failing

32:34

you should always check this component

32:36

and also check this inductor because if

32:39

this component is failed the 12 volt

32:42

cannot pass to this side so the next

32:46

issue battery not recognized so for the

32:50

battery not recognize issue it could be

32:53

the battery of course it could be the

32:55

motherboard of the battery or the

32:57

connector try to clean the connector and

33:00

of course it could be the siio or

33:03

sometimes it could be out of Hardware

33:06

you can find a virus or a mware so you

33:09

can also check the software part so the

33:12

next issue the laptop power on just on

33:16

battery but not on adapter so in this

33:19

case we have problem here in this part

33:22

so when the laptop Powers using the

33:26

battery but not adap the problem could

33:29

be here especially this switch because

33:31

this one is for protection 19 volt can

33:34

pass to this side but this one is failed

33:37

so it will not pass here so we will not

33:40

get B+ but if the battery is good we

33:43

will get B+ so the problem could be this

33:47

one or could be also the charge I so

33:51

please for laptop only powers on with

33:54

battery check the switch and check the I

33:58

so the next failure laptop turn off we

34:01

unplugged easy so we laptop turn off we

34:05

unpluged go ahead and change the battery

34:08

or check this connector it could be

34:11

dirty the next issue battery drains too

34:15

quickly so when battery drains too

34:18

quickly means of course you have problem

34:20

with the battery or you have a short

34:23

circuit somewhere in the motherboard in

34:27

this case based on my experience if you

34:30

try another battery but the problem stay

34:33

the same try to clean the whole

34:37

motherboard because it could be dirty

34:40

and there is a lack of current somewhere

34:43

in the motherboard so try another

34:45

battery and clean the whole motherboard

34:47

especially the charge circuit the next

34:51

issue adapter connected not charging so

34:54

when the adapter is connected but no

34:57

char

34:58

of course it could be the battery is a

35:00

bad battery it could be disconnector

35:03

also you should caim the connector make

35:06

sure the battery is inserted correctly

35:09

to the motherboard or to the connector

35:11

so check also the DC jack or the power

35:14

jack and of course it could be the

35:16

charge IC that doesn't generate the

35:19

Lower Gate and the upper gate could be

35:22

this twoos fet and could be also the AIO

35:25

the next issue battery per percentage

35:28

stuck so when the battery P percentage

35:31

stuck in this case the problem could be

35:35

here with this signal asmp data means

35:38

the battery state is not reported to

35:41

this to to the siio means the problem

35:44

could be Ed in the siio or in the

35:47

motherboard within the battery Next

35:50

Issue laptop charging slowly so in this

35:54

case when laptop charging slowly it

35:56

could be the current that is generated

36:00

here is not enough for the battery or it

36:03

could be the battery itself or it could

36:06

be a dirty connector so but in this case

36:10

always try to check this mosfit you can

36:13

even replace this mosfit because this

36:16

mosfet has the purpose to increase the

36:19

current because it is connected to the

36:21

ground always the mosit that is

36:23

connected to the ground has the purpose

36:26

to adjust the voltage and the current so

36:28

try to check this mosit and also the

36:33

inductor could be the failed one and

36:35

also the current sensor resist so for

36:38

this kind of issue check the battery

36:41

motherboard the connector the current

36:43

sensor resistor the inductor and this

36:46

mosit so the next issue charging but not

36:50

increasing the percentage so here of

36:52

course always we have problem with this

36:55

signal because all about states of

36:58

motherboard this is the signal that is

37:01

connected to the motherboard in pin

37:02

number five here we have pin number five

37:05

so try to clean this connector and also

37:10

the isio could be the cause of this

37:12

failure so the next issue plugged in not

37:16

charging so for this issue plugged in

37:19

means the adapter is plugged in but not

37:21

charging it could be the adapter itself

37:25

it could be the D Jack it it could be

37:28

the charge IC it could be this thos fit

37:31

it could be the connector a dirty

37:33

connector or it could be the battery

37:35

itself the next issue inconsistent

37:38

charging Behavior inconsistent charging

37:41

Behavior always refer to this this is a

37:44

very important signal SMP data assess

37:48

the state of the battery so for this

37:51

problem inconsistent charging Behavior

37:54

it could be the Super iio or could be

37:57

the motherboard inside the battery means

37:59

the battery so the next issue laptop

38:03

charging light blanking not showing so

38:06

in this case it could be the siio the

38:09

isio is the first cause for this case

38:13

the next issue laptop doesn't recognize

38:17

the charger so for the laptop doesn't

38:20

recognize charger it could be the

38:22

charger itself this kind of issue is

38:26

usually happen in the deal laptops but

38:29

it could be the D Jack the charger it

38:32

could be the IC itself doesn't recognize

38:35

the charger also it could be the siio

38:39

the last issue power adapter overheating

38:43

so when you have we have the problem of

38:45

power adapter is overheating of course

38:49

we have to use another power adapter to

38:52

make sure if the power power adapter is

38:55

bad or not but it could be also the

38:58

charge I see so thank you very much guys

39:01

I hope that you enjoyed the video please

39:04

don't forget to subscribe and hit the

39:06

Bell icon like and share the video thank

39:09

you very much and see you in the next

39:11

video

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