參數(shù)資料
型號: AD7664ASTRL
廠商: ANALOG DEVICES INC
元件分類: ADC
英文描述: 16-Bit, 570 kSPS CMOS ADC
中文描述: 1-CH 16-BIT SUCCESSIVE APPROXIMATION ADC, SERIAL/PARALLEL ACCESS, PQFP48
封裝: MS-026BBC, LQFP-48
文件頁數(shù): 11/19頁
文件大?。?/td> 392K
代理商: AD7664ASTRL
REV. 0
AD7664
–11–
Table I. Output Codes and Ideal Input Voltages
Digital Output Code
Hexa
Straight
Binary
Analog
Input
Two’s
Complement
D
escription
FSR –1 LSB
FSR – 2 LSB
Midscale + 1 LSB
Midscale
Midscale – 1 LSB
–FSR + 1 LSB
–FSR
2.499962 V
2.499923 V
1.250038 V
1.25 V
1.249962 V
38
μ
V
0 V
FFFF
1
FFFE
8001
8000
7FFF
0001
0000
2
7FFF
1
7FFE
0001
0000
FFFF
8001
8000
2
NOTES
1
This is also the code for overrange analog input (V
IN
– V
INGND
above
V
– V
).
2
This is also the code for underrange analog input (V
IN
below V
INGND
)
TYPICAL CONNECTION DIAGRAM
Figure 5 shows a typical connection diagram for the AD7664.
Analog Input
Figure 6 shows an equivalent circuit of the input structure of
the AD7664.
C2
R1
D1
D2
C1
IN
OR INGND
AGND
AVDD
Figure 6. Equivalent Analog Input Circuit
The two diodes D1 and D2 provide ESD protection for the
analog inputs IN and INGND. Care must be taken to ensure
that the analog input signal never exceeds the supply rails by more
than 0.3 V. This will cause these diodes to become forward-
biased and start conducting current. These diodes can handle
a forward-biased current of 100 mA maximum. For instance,
these conditions could eventually occur when the input buffer’s
(U1) supplies are different from AVDD. In such case, an input
buffer with a short circuit current limitation can be used to
protect the part.
100nF
10 F
100nF
10 F
AVDD
10 F
100nF
AGND
DGND
DVDD
OVDD
OGND
WARP
IMPULSE
SER/
PAR
CNVST
BUSY
SDOUT
SCLK
RD
CS
RESET
PD
IN
INGND
REFGND
100nF
C
REF1
2.5V REF
1
REF
100
D
3
CLOCK
AD7664
ANALOG INPUT
(0V TO 2.5V)
C/ P/DSP
SERIAL
PORT
DIGITAL SUPPLY
(3.3V OR 5V)
ANALOG
SUPPLY
(5V)
NOTES:
1
THE AD780 IS RECOMMENDED WITH C
REF
= 47 F.
2
THE AD829 IS RECOMMENDED WITH A COMPENSATION CAPACITOR C
C
= 82 pF, TYPE CERAMIC NPO.
3
OPTIONAL LOW JITTER
CNVST
.
DVDD
C
C
OB/
2C
2.7nF
U1
2
15
Figure 5. Typical Connection Diagram
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