參數(shù)資料
型號: AD7147AACBZ-500RL7
廠商: Analog Devices Inc
文件頁數(shù): 30/69頁
文件大?。?/td> 0K
描述: IC CDC 13CH SPI W/RAM 25WLCSP
產(chǎn)品變化通告: 8mm Carrier Tape Changes 28/Feb/2012
標(biāo)準(zhǔn)包裝: 1
系列: CapTouch™
類型: 電容數(shù)字轉(zhuǎn)換器
分辨率(位): 16 b
采樣率(每秒): 250k
數(shù)據(jù)接口: 串行,SPI?
電壓電源: 單電源
電源電壓: 2.6 V ~ 3.6 V
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 25-UFBGA,WLCSP
供應(yīng)商設(shè)備封裝: 25-WLCSP
包裝: 標(biāo)準(zhǔn)包裝
其它名稱: AD7147AACBZ-500RL7DKR
AD7147A
Rev. B | Page 35 of 68
SDA
DEV
A6
DEV
A5
DEV
A4
R/W
A7
A6
SCLK
DEV
A3
A1
A0
1
26
23
4
17
18
19
20
25
DEV
A2
DEV
A1
DEV
A0
ACK
A15
A14
11
16
5
678
910
START
AD7147A-1 DEVICE ADDRESS
A9
A8
REGISTER ADDRESS [A15:A8]
REGISTER ADDRESS [A7:A0]
ACK
D15
D14
D9
D8
35
27
28
29
34
37
36
43
38
44
D1
D0
D7
D6
ACK
45
46
ACK
STOP
DEV
A6
DEV
A5
DEV
A4
12
3
START
t8
t7
t6
t5
t4
t2
t1
t3
AD7147A-1 DEVICE ADDRESS
NOTES
1. A START CONDITION AT THE BEGINNING IS DEFINED AS A HIGH-TO-LOW TRANSITION ON SDA WHILE SCLK REMAINS HIGH.
2. A STOP CONDITION AT THE END IS DEFINED AS A LOW-TO-HIGH TRANSITION ON SDA WHILE SCLK REMAINS HIGH.
3. 7-BIT DEVICE ADDRESS [DEV A6:DEV A0] = [0 1 0 1 1 X X], WHERE X IS A DON’T CARE BIT.
4. 16-BIT REGISTER ADDRESS [A15:A0] = [X, X, X, X, X, X, A9, A8, A7, A6, A5, A4, A3, A2, A1, A0], WHERE X IS A DON’T CARE BIT.
5. REGISTER ADDRESS [A15:A8] AND REGISTER ADDRESS [A7:A0] ARE ALWAYS SEPARATED BY A LOW ACK BIT.
6. REGISTER DATA [D15:D8] AND REGISTER DATA [D7:D0] ARE ALWAYS SEPARATED BY A LOW ACK BIT.
REGISTER DATA [D15:D8]
REGISTER DATA [D7:D0]
0
77
27
-05
2
Figure 52. Example of I2C Timing for Single Register Write Operation
Writing Data over the I2C Bus
The process for writing to the AD7147A-1 over the I2C bus is
shown in Figure 52 and Figure 54. The device address is sent
over the bus, followed by the R/W bit being set to 0 and then
two bytes of data that contain the 10-bit address of the internal
data register to be written. The following bit map shows the
upper register address bytes. Note that Bit 7 to Bit 2 in the upper
address byte are don’t care bits. The address is contained in the
10 LSBs of the register address bytes.
MSB
LSB
7
6
5
4
3
2
1
0
X
Register
Address
Bit 9
Register
Address
Bit 8
The following bit map shows the lower register address bytes:
MSB
LSB
7
6
5
4
3
2
1
0
Reg
Add
Bit 7
Reg
Add
Bit 6
Reg
Add
Bit 5
Reg
Add
Bit 4
Reg
Add
Bit 3
Reg
Add
Bit 2
Reg
Add
Bit 1
Reg
Add
Bit 0
The third data byte contains the eight MSBs of the data to be
written to the internal register. The fourth data byte contains
the eight LSBs of data to be written to the internal register.
The AD7147A-1 address pointer register automatically incre-
ments after each write. This allows the master to sequentially
write to all registers on the AD7147A-1 in the same write
transaction. However, the address pointer register does not
wrap around after the last address. Therefore, any data written
to the AD7147A-1 after the address pointer has reached its
maximum value is discarded.
All registers on the AD7147A-1 are 16 bits. Two consecutive
8-bit data bytes are combined and written to the 16-bit registers.
To avoid errors, all writes to the device must contain an even
number of data bytes.
To finish the transaction, the master generates a stop condition
on SDO, or generates a repeat start condition if the master is to
maintain control of the bus.
Reading Data over the I2C Bus
To read from the AD7147A-1, the address pointer register must
first be set to the address of the required internal register. The
master performs a write transaction and then writes to the
AD7147A-1 to set the address pointer. Next, the master outputs
a repeat start condition to keep control of the bus, or if this is
not possible, ends the write transaction with a stop condition.
A read transaction is initiated, with the R/W bit set to 1.
The AD7147A-1 supplies the upper eight bits of data from the
addressed register in the first readback byte, followed by the
lower eight bits in the next byte. This is shown in Figure 53 and
Because the address pointer automatically increments after each
read, the AD7147A-1 continues to output readback data until
the master sends a no acknowledge and stop condition to the
bus. If the address pointer reaches its maximum value and the
master continues to read from the part, the AD7147A-1 repeatedly
sends data from the last register that was addressed.
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