參數(shù)資料
型號(hào): X9252US24I-2.7
廠商: INTERSIL CORP
元件分類: 數(shù)字電位計(jì)
英文描述: Low Power + Quad 256-Tap + 2-Wire Bus + Up/Down Interface
中文描述: QUAD 50K DIGITAL POTENTIOMETER, 2-WIRE SERIAL CONTROL INTERFACE, 256 POSITIONS, PDSO24
封裝: PLASTIC, SOIC-24
文件頁數(shù): 14/21頁
文件大?。?/td> 126K
代理商: X9252US24I-2.7
X9252
14 of 21
REV 1.4.1 7/29/03
www.xicor.com
Slave Address Byte
Following a START condition, the master must output a
Slave Address Byte (Refer to figure 4.). This byte
includes three parts:
– The four MSBs (SA7-SA4) are the Device Type
Identifier, which must always be set to 0101 in order
to select the X9252.
– The next three bits (SA3-SA1) are the Device
Address bits (AS2-AS0). To access any part of the
X9252’s memory, the value of bits AS2, AS1, and
AS0 must correspond to the logic levels at pins A2,
A1, and A0 respectively.
– The LSB (SA0) is the R/W bit. This bit defines the
operation to be performed on the device being
addressed. When the R/W bit is “1”, then a Read
operation is selected. A “0” selects a Write operation
.
Figure 4. Slave Address (SA) Format
Nonvolatile Write Acknowledge Polling
After a nonvolatile write command sequence is
correctly issued (including the final STOP condition),
the X9252 initiates an internal high voltage write cycle.
This cycle typically requires 5 ms. During this time, any
Read or Write command is ignored by the X9252.
Write Acknowledge Polling is used to determine
whether a high voltage write cycle is completed.
During acknowledge polling, the master first issues a
START condition followed by a Slave Address Byte.
The Slave Address Byte contains the X9252’s Device
Type Identifier and Device Address. The LSB of the
Slave Address (R/W) can be set to either 1 or 0 in this
case. If the device is busy within the high voltage cycle,
then no ACK is returned. If the high voltage cycle is
completed, an ACK is returned and the master can
then proceed with a new Read or Write operation.
(Refer to figure 5.)
Figure 5. Acknowledge Polling Sequence
2-WIRE SERIAL INTERFACE OPERATION
X9252 Digital Potentiometer Register Organization
Refer to the Functional Diagram on page 1. There are
four Digitally Controlled Potentiometers, referred to as
DCPi, i=0,1,2,3. Each potentiometer has one volatile
Wiper Control Register(WCR) with the corresponding
number, WCRi, i=0,1,2,3. Each potentiometer also has
four nonvolatile registers to store wiper position or
general data, these are numbered DRi0, DRi1, DRi2
and DRi3, i=0,1,2,3.
SA6
SA7
SA5
SA3
SA2
SA1
SA0
Device Type
Identifier
Read or
Write
SA4
Slave Address
Bit(s)
SA7–SA4
SA3–SA1
SA0
Description
Device Type Identifier
Device Address
Read or Write Operation Select
R/W
0
1
0
1
Address
Device
AS0
AS1
AS2
ACK returned
Issue Slave Address
Byte (Read or Write)
Byte load completed by issuing
STOP. Enter ACK Polling
Issue STOP
Issue START
NO
YES
NO
Continue normal Read or Write
command sequence
PROCEED
YES
complete. Continue command
sequence.
High Voltage
Issue STOP
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