1
00:00:00,400 --> 00:00:02,300
iPhone audio circuit repairing
2
00:00:03,033 --> 00:00:08,700
This video mainly explains how to find the microphone circuit and measurement points of the iPhone 12, 12 Pro
3
00:00:11,366 --> 00:00:17,100
Search method step 1, find the power connector or the earpiece connector in the component map
4
00:00:18,800 --> 00:00:23,966
Step 2, determine the position numbers of the connectors at the same position in the bitmap
5
00:00:27,333 --> 00:00:31,233
Step 3, search for the position numbers in the schematic diagram
6
00:00:34,966 --> 00:00:38,900
After finding the connectors, check the pin identifications of the connector
7
00:00:40,366 --> 00:00:43,933
The one marked with MIC means the signal of the microphone
8
00:00:44,933 --> 00:00:50,666
Step 4 Jump to the bitmap to view the connected components according to the pin identification
9
00:00:51,633 --> 00:00:56,166
The voltage and diode value can be measured at the position of the yellow point in the bitmap
10
00:00:57,566 --> 00:01:03,466
When checking the map, first open the iPhone12, 12Pro component map, circuit diagram, bitmap
11
00:01:06,500 --> 00:01:09,433
Let's look for the signal of microphone 2 first
12
00:01:09,833 --> 00:01:13,466
Microphone 2 is connected to the large audio by the flash connector
13
00:01:14,566 --> 00:01:16,733
Find the power connector in the component map,
14
00:01:17,233 --> 00:01:21,400
and determine the position number of the power connector at the same position in the bitmap
15
00:01:24,300 --> 00:01:27,366
Then search for the position number in the schematic diagram
16
00:01:29,366 --> 00:01:34,633
After finding the power connector, the pin marked MIC means the signal of the microphone
17
00:01:37,266 --> 00:01:42,400
2, 4, 6, 8 of the connector are the signal of microphone 2
18
00:01:43,066 --> 00:01:47,333
Pin 2 is the data negative of microphone 2, jump to the bitmap according to the name,
19
00:01:47,700 --> 00:01:50,533
the data negative is directly connected to the big audio
20
00:01:50,766 --> 00:01:55,333
Pin 4 of the connector is the data positive of microphone 2, jump to the bitmap,
21
00:01:56,066 --> 00:01:59,500
the data positive is also directly connected to the big audio
22
00:02:00,266 --> 00:02:05,100
Pin 6 of the connector is the detection signal of microphone 2, jump to the bitmap,
23
00:02:06,533 --> 00:02:09,933
the detection signal is also directly connected to the big audio
24
00:02:10,666 --> 00:02:14,900
Pin 8 of the connector is the power supply for the microphone 2, jump to the bitmap,
25
00:02:15,600 --> 00:02:18,933
the power supply is also directly connected to the big audio
26
00:02:20,533 --> 00:02:22,866
Let's find the microphone 3 signal
27
00:02:23,800 --> 00:02:27,566
Microphone 3 is connected to the large audio by the earpiece connector
28
00:02:28,533 --> 00:02:32,066
In the component map, first find the earpiece connector,
29
00:02:33,766 --> 00:02:37,033
and determine the position number of the earpiece connector in the bitmap
30
00:02:40,166 --> 00:02:43,066
Then search for the position number in the schematic diagram
31
00:02:44,333 --> 00:02:49,433
After finding the connector, the signal marked MIC3 is the signal of microphone 3
32
00:02:50,833 --> 00:02:55,333
Pins 7, 9, and 11 of the connector are the signals of microphone 3
33
00:02:56,533 --> 00:03:01,200
Pin 7 is the power supply for microphone 3, jump to the bitmap according to the name,
34
00:03:01,666 --> 00:03:04,733
the power supply pin is directly connected to the big audio
35
00:03:05,333 --> 00:03:10,000
Pin 9 of the connector is the data positive of the microphone 3, jump to the bitmap,
36
00:03:11,533 --> 00:03:15,000
the data positive is also directly connected to the big audio
37
00:03:15,533 --> 00:03:20,366
Pin 11 of the connector is the data negative of the microphone 3, jump to the bitmap,
38
00:03:21,000 --> 00:03:24,600
the data negative is also directly connected to the big audio
39
00:03:25,566 --> 00:03:30,566
In this way, we have searched for all the signals of microphone 2 and microphone 3
40
00:03:31,933 --> 00:03:34,233
If the corresponding function is not normal,
41
00:03:34,366 --> 00:03:37,200
it is necessary to measure the corresponding connector
42
00:03:38,533 --> 00:03:40,733
If the value of the connector is abnormal,
43
00:03:40,933 --> 00:03:45,166
check the components connected to the line according to the diagram to rule out damage
44
00:03:45,933 --> 00:03:47,700
That's all for this video