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X9241YS 参数 Datasheet PDF下载

X9241YS图片预览
型号: X9241YS
PDF下载: 下载PDF文件 查看货源
内容描述: 四E2POT⑩非易失性数字电位计 [Quad E2POT⑩ Nonvolatile Digital Potentiometer]
分类和应用: 数字电位计
文件页数/大小: 16 页 / 79 K
品牌: XICOR [ XICOR INC. ]
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X9241  
Instruction Structure  
action will be delayed t  
. A transfer from WCR  
STPWV  
current wiper position, to a data register is a write to  
nonvolatile memory and takes a minimum of t to  
The next byte sent to the X9241 contains the instruction  
and register pointer information. The four most signifi-  
cant bits are the instruction. The next four bits point to  
one of four pots and when applicable they point to one  
of four associated registers. The format is shown below  
in Figure 2.  
WR  
complete. The transfer can occur between one of the  
four potentiometers and one of its associated registers;  
or it may occur globally, wherein the transfer occurs  
between all four of the potentiometers and one of their  
associated registers.  
Figure 2. Instruction Byte Format  
Four instructions require a three-byte sequence to  
complete. These instructions transfer data between the  
host and the X9241; either between the host and one of  
the data registers or directly between the host and the  
WCR. These instructions are: Read WCR, read the  
current wiper position of the selected pot; Write WCR,  
change current wiper position of the selected pot; Read  
Data Register, read the contents of the selected non-  
volatile register; Write Data Register, write a new value  
to the selected data register. The sequence of opera-  
tions is shown in Figure 4.  
POTENTIOMETER  
SELECT  
I3  
I2  
I1  
I0  
P1  
P0  
R1  
R0  
INSTRUCTIONS  
REGISTER  
SELECT  
3864 ILL F09.1  
The Increment/Decrement command is different from  
the other commands. Once the command is issued and  
the X9241 has responded with an acknowledge, the  
master can clock the selected wiper up and/or down in  
one segment steps; thereby, providing a fine tuning  
The four high order bits define the instruction. The next  
two bits (P1 and P0) select which one of the four  
potentiometers is to be affected by the instruction. The  
last two bits (R1 and R0) select one of the four registers  
that is to be acted upon when a register oriented instruc-  
tion is issued.  
capability to the host. For each SCL clock pulse (t  
)
HIGH  
while SDA is HIGH, the selected wiper will move one  
Fourofthenineinstructionsendwiththetransmissionof  
the instruction byte. The basic sequence is illustrated in  
Figure 3. These two-byte instructions exchange data  
between the WCR and one of the data registers. A  
transfer from a data register to a WCR is essentially a  
write to a static RAM. The response of the wiper to this  
resistor segment towards the V terminal. Similarly, for  
each SCL clock pulse while SDA is LOW, the selected  
H
wiper will move one resistor segment towards the V  
L
terminal. A detailed illustration of the sequence and  
timing for this operation are shown in Figures 5 and 6  
respectively.  
Figure 3. Two-Byte Command Sequence  
SCL  
SDA  
S
T
A
R
T
0
1
0
1
A3 A2 A1 A0  
A
C
K
I3 I2  
I1 I0  
P1 P0 R1 R0  
A
C
K
S
T
O
P
3864 ILL F10  
4
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