參數資料
型號: EVAL-AD5933EBZ
廠商: Analog Devices Inc
文件頁數: 21/40頁
文件大小: 0K
描述: BOARD EVALUATION FOR AD5933
產品培訓模塊: AD5933 Impedance to Digital Converter
ADP2102 DSP Battery Life Applications
Direct Digital Synthesis Tutorial Series (1 of 7): Introduction
Direct Digital Synthesizer Tutorial Series (7 of 7): DDS in Action
Direct Digital Synthesis Tutorial Series (3 of 7): Angle to Amplitude Converter
Direct Digital Synthesis Tutorial Series (6 of 7): SINC Envelope Correction
Direct Digital Synthesis Tutorial Series (4 of 7): Digital-to-Analog Converter
Direct Digital Synthesis Tutorial Series (2 of 7): The Accumulator
標準包裝: 1
主要目的: 計時,直接數字合成(DDS)
嵌入式:
已用 IC / 零件: AD5933
主要屬性: 12 位數模轉換器,24 位調節(jié)字寬
次要屬性: 16MHz 2.7 V ~ 5.5 V 圖形用戶界面
已供物品: 板,纜線,CD
產品目錄頁面: 797 (CN2011-ZH PDF)
相關產品: AD5933YRSZ-REEL7-ND - NETWORK ANALYZER 12B 1MSP 16SSOP
AD5933YRSZ-ND - IC NTWK ANALYZER 12B 1MSP 16SSOP
AD5933
Data Sheet
Rev. E | Page 28 of 40
WRITING/READING TO THE AD5933
The interface specification defines several different protocols
for different types of read and write operations. This section
describes the protocols used in the AD5933. The figures in this
section use the abbreviations shown in Table 15.
Table 15. I2C Abbreviation Table
Abbreviation
Condition
S
Start
P
Stop
R
Read
W
Write
A
Acknowledge
A
No acknowledge write byte/command byte
User Command Codes
The command codes in Table 16 are used for reading/writing to
the interface. They are further explained in this section, but are
grouped here for easy reference.
Table 16. Command Codes
Command
Code
Name
Code Description
1010 0000
Block
write
This command is used when writing
multiple bytes to the RAM; see the
Block Write section.
1010 0001
Block
read
This command is used when reading
multiple bytes from RAM/memory;
see the Block Read section.
1011 0000
Address
pointer
This command enables the user to set
the address pointer to any location in
the memory. The data contains the
address of the register to which the
pointer should be pointing reworded
Write Byte/Command Byte
In this operation, the master device sends a byte of data to the
slave device. The write byte can either be a data byte write to a
register address or can be a command operation. To write data
to a register, the command sequence is as follows (see Figure 30):
1. The master device asserts a start condition on SDA.
2. The master sends the 7-bit slave address followed by the
write bit (low).
3. The addressed slave device asserts an acknowledge on SDA.
4. The master sends a register address.
5. The slave asserts an acknowledge on SDA.
6. The master sends a data byte.
7. The slave asserts an acknowledge on SDA.
8. The master asserts a stop condition on SDA to end the
transaction.
S
SLAVE
ADDRESS
REGISTER
ADDRESS
REGISTER
DATA
A
W
A
P
05324-
036
Figure 30. Writing Register Data to Register Address
The write byte protocol is also used to set a pointer to an
address (see Figure 31). This is used for a subsequent single-
byte read from the same address or block read or block write
starting at that address.
To set a register pointer, the following sequence is applied:
1. The master device asserts a start condition on SDA.
2. The master sends the 7-bit slave address followed by the
write bit (low).
3. The addressed slave device asserts an acknowledge on
SDA.
4. The master sends a pointer command code (see Table 16;
a pointer command = 1011 0000).
5. The slave asserts an acknowledge on SDA.
6. The master sends a data byte (a register address to where
the pointer is to point).
7. The slave asserts an acknowledge on SDA.
8. The master asserts a stop condition on SDA to end the
transaction.
S
A
W
A
P
POINTER
COMMAND
1011 0000
SLAVE
ADDRESS
REGISTER
ADDRESS
TO POINT TO
05324-
037
Figure 31. Setting Address Pointer to Register Address
BLOCK WRITE
In this operation, the master device writes a block of data to a
slave device (see Figure 32). The start address for a block write
must previously have been set. In the case of the AD5933 this is
done by setting a pointer to set the register address.
1. The master device asserts a start condition on SDA.
2. The master sends the 7-bit slave address followed by the
write bit (low).
3. The addressed slave device asserts an acknowledge on SDA.
4. The master sends an 8-bit command code (1010 0000) that
tells the slave device to expect a block write.
5. The slave asserts an acknowledge on SDA.
6. The master sends a data byte that tells the slave device the
number of data bytes to be sent to it.
7. The slave asserts an acknowledge on SDA.
8. The master sends the data bytes.
9. The slave asserts an acknowledge on SDA after each
data byte.
10. The master asserts a stop condition on SDA to end the
transaction.
A
S
W
A
P
SLAVE
ADDRESS
BLOCK
WRITE
NUMBER
BYTES WRITE
BYTE 0
BYTE 1
BYTE 2
05324-
038
Figure 32. Writing a Block Write
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