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High current occurs when iPhone starts up
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In this lesson we mainly explain the power supply IC output power supply search method
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When we repair mobile phones,
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we should first open the circuit diagram, bitmap
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and component map of the corresponding model,
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so that we can easily find it
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Let's take the iPhone 12 Promax as an example
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We first open the circuit diagram, bitmap
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and component map of iPhone 12Promax
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We first find the main power supply in the diagram
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In the circuit diagram, the main power supply is below the CPU
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View the position number of the power IC according to the component map or bitmap
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The main power supply is not marked with a position number in the component map,
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so we need to check it with the help of bitmap
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The power IC is located under the CPU,
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and its position number is U3300
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After finding the position number of the main power supply,
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we will search the position number of the power supply IC in the circuit diagram
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After searching, we can see that there are many search results in the list
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We need to identify
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As long as the position number is inside the box,
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it means that the box is mainly to introduce the power IC
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Something like this is just a marker,
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we don't have to consider it
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The power supply in the drawing will generally be represented by a thick line
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The name BUCK and LDO represent output,
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according to the terms we learned earlier
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On the current page, the right side of the page identifies BUCK0,
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and BUCK0 will have a separate area,
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It means that this block is all the output of BUCK0 power supply
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This set of power supply will be through five inductors,
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and then form a power supply,
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its name is PP_CPU_PCORE
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The diagram also indicates the voltage range of the supply,
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from 0.528V to 1.061V
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Then why do we call it high current?
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We can see that the total current of this circuit can reach 13.8A
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This is just one of the power supplies
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Power IC will output about 15 BUCK power supplies
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And then let's look at this BUCK1
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It is a power supply consisting of three inductors,
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the voltage is between 0.542V and 1.044V,
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and the power supply name is PP GPU
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The power supply is designed for a maximum current of 10A
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From this, we can see that the power supply has a total of 10 BUCKs in this module,
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ranging from 0 to 9
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Let's look at other search results
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Click on the second one, we see that BUCK10, BUCK11,
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BUCK12 and BUCK13 are identified,
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and there are four power supplies
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With the previous 10 power supplies,
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there will be a total of 14 BUCK power supplies with inductors
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The position to the left of this box identifies VDD_BUCK
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VDD_BUCK refers to the power supply input
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Let's keep looking
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The small ones we don't need to look at
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In this power supply module, the one on the left is the power input,
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and the label LDO on the right represents the output
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If you look at its internal logo, there's LDO1 and LDO13
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There is also LDO15, which has a total of 15 power supplies,
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and its sign position is irregular
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Why do we call it a small current supply?
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Because the current output supplied by LDO is relatively small
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We can see that the power supply of LDO1 is 200mA
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and that of LDO7 is 250mA
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That's why it's called a low current supply
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Let's move on
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You can see BUCK3 SWITCHES are powered,
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and this is powered by switches
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Its left side is the input of the power supply,
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the right side is the output of the power supply
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Without this power supply with inductors,
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its current is much smaller,
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generally 700mA, 300mA, or 200mA
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The iPhone 12Promax has a total of 40 power outputs,
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much more than earlier models
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This power supply, how do we measure if it is short-circuited
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We just need to double-click according to the power supply name,
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right-click, click Find bitmap signal
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Any yellow point on the bitmap,
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we can measure the diode value
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The measurement method of each power supply is the same,
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and the same for BUCK power supply
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Double-click the right button and click Find bitmap signal
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We can measure the location of these yellow dots
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In the list, these are just marks, not refers to the power supply,
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we do not need to look up
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In the list, this line is marked as a thin line,
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which belongs to the signal line,
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so there is no need to check this line
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So that's it for this lessons