EVAL-AD976CB Analog Devices Inc, EVAL-AD976CB Datasheet - Page 2

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EVAL-AD976CB

Manufacturer Part Number
EVAL-AD976CB
Description
BOARD EVAL FOR AD976
Manufacturer
Analog Devices Inc
Datasheet

Specifications of EVAL-AD976CB

Rohs Status
RoHS non-compliant
Number Of Adc's
1
Number Of Bits
16
Sampling Rate (per Second)
100k
Data Interface
Parallel
Inputs Per Adc
1 Single Ended
Input Range
±10 V
Power (typ) @ Conditions
100mW @ 100kSPS
Voltage Supply Source
Analog and Digital
Operating Temperature
-40°C ~ 85°C
Utilized Ic / Part
AD976
AD976/AD976A
AD976A–SPECIFICATIONS
Parameter
RESOLUTION
ANALOG INPUT
THROUGHPUT SPEED
DC ACCURACY
AC ACCURACY
SAMPLING DYNAMICS
REFERENCE
DIGITAL INPUTS
NOTES
1
2
3
4
5
6
7
8
Specifications subject to change without notice.
LSB means least significant bit. With a 10 V input, one LSB is 305 V.
Typical rms noise at worst case transitions and temperatures.
Measured with fixed resistors as shown in Figure 5 (AD976) and Figure 6 (AD976A). Adjustable to zero as shown in Figure 7.
Full-scale error is expressed as the % difference between the actual full-scale code transition voltage and the ideal full-scale transition voltage and includes the effect
of offset error. The full-scale error is the worst case of either the –full-scale or +full-scale code transition voltage errors.
f
All specifications in dB are referred to a full scale 10 V input.
Full-power bandwidth is defined as full-scale input frequency at which signal-to-(noise + distortion) degrades to 60 dB or 10 bits of accuracy.
Recovers to specified performance after a 2
IN
Voltage Range
Impedance
Capacitance
Complete Cycle
Throughput Rate
Integral Linearity Error
Differential Linearity Error
No Missing Codes
Transition Noise
Full-Scale Error
Full-Scale Error Drift
Full-Scale Error, Ext. REF = 2.5 V
Full-Scale Error Drift, Ext. REF = 2.5 V
Bipolar Zero Error
Bipolar Zero Error Drift
Power Supply Sensitivity
Spurious Free Dynamic Range
Total Harmonic Distortion
Signal to (Noise + Distortion)
Signal to Noise
Full-Power Bandwidth
Input Bandwidth
Aperture Delay
Transient Response
Overvoltage Recovery
Internal Reference Voltage
Internal Reference Source Current
External Reference Voltage Range
External Reference Current Drain
Logic Levels
= 20 kHz (AD976) and f
V
–60 dB Input
Full-Scale Step
for Specified Linearity
Ext. REF = 2.5 V
V
V
I
I
IL
IH
ANA
IL
IH
= V
DIG
5
= V
3, 4
2
4
D
= 5 V
8
7
IN
= 45 kHz (AD976A), 0.5 dB down, unless otherwise noted.
5
5%
5
5
F
S
input overvoltage.
Min
16
200
–2
15
90
83
83
2.48
2.3
–0.3
+2.0
AD976AA
Typ
13
22
1.0
27
1
2.7
40
150
2.5
1
2.5
10
7
2
2
(–40 C to +85 C, F
otherwise noted)
Max
5
+3
–90
1
2.52
2.7
100
+0.8
V
3
0.5
0.5
10
8
DIG
10
10
+ 0.3
–2–
Min
16
16
96
85
85
–0.3
+2.0
200
–1
2.48
2.3
S
= 200 kHz, Ref = Internal Reference, V
AD976AB
Typ
13
22
1.0
28
1
2.7
40
150
2.5
1
2.5
10
7
2
2
Max
5
+1.75
–96
1
100
+0.8
V
2.52
2.7
2
0.25
0.25
10
8
10
10
DIG
+ 0.3
Min
16
200
90
83
83
2.48
2.3
–0.3
+2.0
AD976AC
DIG
Typ
13
22
15
1.0
27
1
2.7
40
150
2.5
1
2.5
10
3
2
7
2
2
= V
ANA
Max
5
–90
1
2.52
2.7
100
+0.8
V
0.5
0.5
15
8
DIG
10
10
= +5 V unless
+ 0.3
REV. C
Units
Bits
V
k
pF
kHz
LSB
LSB
Bit
LSB
%
ppm/ C
%
ppm/ C
mV
ppm/ C
LSB
dB
dB
dB
dB
dB
MHz
MHz
ns
ns
V
V
V
V
s
s
A
A
A
A
6
1

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