LTC1669-8IMS8#TR Linear Technology, LTC1669-8IMS8#TR Datasheet - Page 9

IC DAC 10-BIT V-OUT I2C 8-MSOP

LTC1669-8IMS8#TR

Manufacturer Part Number
LTC1669-8IMS8#TR
Description
IC DAC 10-BIT V-OUT I2C 8-MSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC1669-8IMS8#TR

Settling Time
30µs
Number Of Bits
10
Data Interface
I²C
Number Of Converters
1
Voltage Supply Source
Single Supply
Power Dissipation (max)
630µW
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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APPLICATIONS INFORMATION
Serial Digital Interface
The LTC1669 communicates with a host (master) using
the standard 2-wire interface. The Timing Diagram shows
the timing relationship of the signals on the bus. The two
bus lines, SDA and SCL, must be high when the bus is
not in use. External pull-up resistors or current sources,
such as the LTC1694 SMBus/I
on these lines.
The LTC1669 is a receive-only (slave) device. The master
can communicate with the LTC1669 using the Quick Com-
mand, Send Byte or Write Word protocols as explained
later.
The START and STOP Conditions
When the bus is not in use, both SCL and SDA must be
high. A bus master signals the beginning of a communica-
tion to a slave device by transmitting a START condition.
A START condition is generated by transitioning SDA
from high to low while SCL is high.
When the master has fi nished communicating with the
slave, it issues a STOP condition. A STOP condition is
generated by transitioning SDA from low to high while
SCL is high. The bus is then free for communication with
another I
Acknowledge
The Acknowledge signal is used for handshaking between
the master and the slave. An Acknowledge (active LOW)
generated by the slave lets the master know that the latest
byte of information was received. The Acknowledge related
clock pulse is generated by the master. The master releases
the SDA line (HIGH) during the Acknowledge clock pulse.
The slave-receiver must pull down the SDA line during the
Acknowledge clock pulse so that it remains a stable LOW
during the HIGH period of this clock pulse.
2
C device.
S = Start Condition, Wr = Write Bit = 0, A = Acknowledge, P = Stop Condition
S
1
Slave Address
2
C Accelerator, are required
7
Wr
1
Write Word Protocol Used by the LTC1669
A
1
Command Byte
8
1
A
Write Word Protocol
The master initiates communication with the LTC1669 with
a START condition and a 7-bit address followed by the Write
Bit (Wr) = 0. The LTC1669 acknowledges and the master
delivers the command byte. The LTC1669 acknowledges
and latches the command byte into the command byte
input register. The master then delivers the least signifi cant
data byte. Again the LTC1669 acknowledges and the data
is latched into the least signifi cant data byte input register.
The master then delivers the most signifi cant data byte.
The LTC1669 acknowledges once more and latches the
data into the most signifi cant data byte input register.
Lastly, the master terminates the communication with a
STOP condition. On the reception of the STOP condition,
the LTC1669 transfers the input register information to
output registers and the DAC output is updated.
Slave Address (MSOP Package Only)
The LTC1669 can respond to one of eight 7-bit addresses.
The fi rst 4 bits (MSBs) have been factory programmed to
0100. The fi rst 4 bits of the LTC1669-8 have been factory
programmed to 0011. The three address bits, AD2, AD1
and AD0 are programmed by the user and determine the
LSBs of the slave address, as shown in the table below:
LSData Byte
AD2
8
L
L
L
L
H
H
H
H
1
A
AD1
H
H
H
H
L
L
L
L
MSData Byte
8
AD0
H
H
H
H
L
L
L
L
1
A
1669 TA03
1
P
0100 000
0100 001
0100 010
0100 011
0100 100
0100 101
0100 110
0100 111
0100 xxx
LTC1669
LTC1669
LTC-1669-8
0011 000
0011 001
0011 010
0011 011
0011 100
0011 101
0011 110
0011 111
0011 xxx
1669fa
9

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