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DAC8564IDPW 数据表(PDF) 27 Page - Texas Instruments

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部件名 DAC8564IDPW
功能描述  16-Bit, Quad Channel, Ultra-Low Glitch, Voltage Output DIGITAL-TO-ANALOG CONVERTER with 2.5V, 2ppm/째C Internal Reference
PDF  46 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

DAC8564IDPW 数据表(HTML) 27 Page - Texas Instruments

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SERIAL INTERFACE
IOVDD AND VOLTAGE TRANSLATORS
INPUT SHIFT REGISTER
DAC8564
SBAS403A – JUNE 2007 – REVISED NOVEMBER 2007
The DAC8564 has a 3-wire serial interface (SYNC,
The IOVDD pin powers the the digital input structures
SCLK, and DIN) compatible with SPI, QSPI, and
of the DAC8564. For single-supply operation, it can
Microwire interface standards, as well as most DSPs.
be tied to AVDD. For dual-supply operation, the IOVDD
See the Serial Write Operation timing diagram for an
pin provides interface flexibility with various CMOS
example of a typical write sequence.
logic families and should be connected to the logic
supply of the system. Analog circuits and internal
The write sequence begins by bringing the SYNC line
logic of the DAC8564 use AVDD as the supply
low. Data from the DIN line are clocked into the 24-bit
voltage. The external logic high inputs translate to
shift register on each falling edge of SCLK. The serial
AVDD by level shifters. These level shifters use the
clock frequency can be as high as 50MHz, making
IOVDD voltage as a reference to shift the incoming
the DAC8564 compatible with high-speed DSPs. On
logic HIGH levels to AVDD. IOVDD is ensured to
the 24th falling edge of the serial clock, the last data
operate from 2.7V to 5.5V regardless of the AVDD
bit is clocked into the shift register and the shift
voltage, assuring compatibility with various logic
register locks. Further clocking does not change the
families. Although specified down to 2.7V, IOVDD
shift register data. Once 24 bits are locked into the
operates at as low as 1.8V with degraded timing and
shift register, the eight MSBs are used as control bits
temperature
performance.
For
lowest
power
and the 16 LSBs are used as data. After receiving the
consumption, logic VIH levels should be as close as
24th falling clock edge, the DAC8564 decodes the
possible to IOVDD, and logic VIL levels should be as
eight control bits and 16 data bits to perform the
close as possible to GND voltages.
required function, without waiting for a SYNC rising
edge. A new write sequence starts at the next falling
edge of SYNC. A rising edge of SYNC before the
24-bit sequence is complete resets the SPI interface;
The input shift register (SR) of the DAC8564 is 24
no data transfer occurs. After the 24th falling edge of
bits wide, as shown in Table 4, and consists of eight
SCLK is received, the SYNC line may be kept LOW
control bits (DB23 and DB22) and 16 data bits (DB15
or brought HIGH. In either case, the minimum delay
to DB0). The first two control bits (DB23 and DB22)
time from the 24th falling SCLK edge to the next
are the address match bits. The DAC8564 offers
falling SYNC edge must be met in order to properly
hardware-enabled addressing capability, allowing a
begin the next cycle. To assure the lowest power
single host to talk to up to four DAC8564s through a
consumption of the device, care should be taken that
single SPI bus without any glue logic, enabling up to
the levels are as close to each rail as possible. (Refer
16-channel operation. The state of DB23 should
to the Typical Characteristics section for Figure 36,
match the state of pin A1; similarly, the state of DB22
Figure 57, and Figure 79 (Supply Current vs Logic
should match the state of pin A0. If there is no match,
Input Voltage).
the control command and the data (DB21...DB0) are
ignored by the DAC8564. That is, if there is no
match, the DAC8564 is not addressed. Address
matching can be overridden by the broadcast update.
Table 4. Data Input Register Format
DB23
DB12
A1
A0
LD1
LD0
0
DAC Select 1
DAC Select 0
PD0
D15
D14
D13
D12
DB11
DB0
D11
D10
D9
D8
D7
D6
D5
D4
D3
D2
D1
D0
Copyright © 2007, Texas Instruments Incorporated
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