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ADS8321 bảng dữ liệu(PDF) 10 Page - Burr-Brown (TI)

[Old version datasheet] Texas Instruments acquired Burr-Brown Corporation. Click here to check the latest version.
tên linh kiện ADS8321
Giải thích chi tiết về linh kiện  16-Bit, High Speed, MicroPower Sampling ANALOG-TO-DIGITAL CONVERTER
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nhà sản xuất  BURR-BROWN [Burr-Brown (TI)]
Trang chủ  http://www.burr-brown.com
Logo BURR-BROWN - Burr-Brown (TI)

ADS8321 bảng dữ liệu(HTML) 10 Page - Burr-Brown (TI)

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10
®
ADS8321
FIGURE 7. Timing Diagrams and Test Circuits for the Parameters in Table I.
DESCRIPTION
ANALOG VALUE
Full-Scale Range
2 • VREF
Least Significant
2 • VREF/65536
Bit (LSB)
BINARY CODE
HEX CODE
+Full Scale
+VREF – 1 LSB
0111 1111 1111 1111
7FFF
Midscale
0V
0000 0000 0000 0000
0000
Midscale – 1LSB
0V – 1 LSB
1111 1111 1111 1111
FFFF
–Full Scale
–VREF
1000 0000 0000 0000
8000
DIGITAL OUTPUT
BINARY TWO’S COMPLEMENT
TABLE II. Ideal Input Voltages and Output Codes.
DATA FORMAT
The output data from the ADS8321 is in Binary Two’s
Complement format as shown in Table II. This table repre-
sents the ideal output code for the given input voltage and
does not include the effects of offset, gain error, or noise.
POWER DISSIPATION
The architecture of the converter, the semiconductor fabrica-
tion process, and a careful design allow the ADS8321 to
convert at up to a 100kHz rate while requiring very little
power. Still, for the absolute lowest power dissipation, there
are several things to keep in mind.
The power dissipation of the ADS8321 scales directly with
conversion rate. Therefore, the first step to achieving the
lowest power dissipation is to find the lowest conversion rate
that will satisfy the requirements of the system.
In addition, the ADS8321 is in power-down mode under two
conditions: when the conversion is complete and whenever
CS is HIGH (see Figure 6). Ideally, each conversion should
occur as quickly as possible, preferably at a 2.4MHz clock
rate. This way, the converter spends the longest possible time
in the power-down mode. This is very important as the
converter not only uses power on each DCLOCK transition
(as is typical for digital CMOS components) but also uses
some current for the analog circuitry, such as the comparator.
The analog section dissipates power continuously, until the
power down mode is entered.
D
OUT
1.4V
Test Point
3k
100pF
C
LOAD
Load Circuit for t
dDO, tr, and tf
Voltage Waveforms for D
OUT Rise and Fall Times, tr, tf
Voltage Waveforms for D
OUT Delay Times, tdDO
Voltage Waveforms for t
dis
NOTES: (1) Waveform 1 is for an output with internal conditions such that the output
is HIGH unless disabled by the output control. (2) Waveform 2 is for an output with
internal conditions such that the output is LOW unless disabled by the output control.
Voltage Waveforms for t
en
Load Circuit for t
dis and ten
t
r
D
OUT
V
OH
V
OL
t
f
D
OUT
Test Point
t
dis Waveform 2, ten
V
CC
t
dis Waveform 1
100pF
C
LOAD
3k
t
dis
CS/SHDN
DOUT
Waveform 1(1)
DOUT
Waveform 2(2)
90%
10%
V
IH
1
B11
2
t
en
CS/SHDN
DCLOCK
V
OL
D
OUT
t
dDO
D
OUT
DCLOCK
V
OH
V
OL
V
IL
t
hDO


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