AD9280ARS Analog Devices Inc, AD9280ARS Datasheet - Page 11

IC ADC CMOS 8BIT 32MSPS 28-SSOP

AD9280ARS

Manufacturer Part Number
AD9280ARS
Description
IC ADC CMOS 8BIT 32MSPS 28-SSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD9280ARS

Rohs Status
RoHS non-compliant
Number Of Bits
8
Sampling Rate (per Second)
32M
Data Interface
Parallel
Number Of Converters
9
Power Dissipation (max)
110mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SSOP (0.200", 5.30mm Width)
Number Of Elements
1
Resolution
8Bit
Architecture
Pipelined
Sample Rate
32MSPS
Input Polarity
Unipolar
Input Type
Voltage
Rated Input Volt
3V
Differential Input
Yes
Power Supply Requirement
Analog and Digital
Single Supply Voltage (typ)
3V
Single Supply Voltage (min)
2.7V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Power Dissipation
110mW
Differential Linearity Error
±1LSB
Integral Nonlinearity Error
±1.5LSB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
28
Package Type
SSOP
For Use With
AD9280-EB - BOARD EVAL FOR AD9280
Lead Free Status / RoHS Status
Not Compliant

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The actual reference voltages used by the internal circuitry of
the AD9280 appear on REFTF and REFBF. For proper opera-
tion, it is necessary to add a capacitor network to decouple these
pins. The REFTF and REFBF should be decoupled for all
internal and external configurations as shown in Figure 17.
Note: REFTF = reference top, force
INTERNAL REFERENCE OPERATION
Figures 18, 19 and 20 show sample connections of the AD9280
internal reference in its most common configurations. (Figures
18 and 19 illustrate top/bottom mode while Figure 20 illustrates
center span mode). Figure 29 shows how to connect the AD9280
for 1 V p-p differential operation. Shorting the VREF pin
directly to the REFSENSE pin places the internal reference
amplifier, A1, in unity-gain mode and the resultant reference
output is 1 V. In Figure 18 REFBS is grounded to give an input
range from 0 V to 1 V. These modes can be chosen when the
supply is either +3 V or +5 V. The VREF pin must be bypassed to
AVSS (analog ground) with a 1.0 F tantalum capacitor in
parallel with a low inductance, low ESR, 0.1 F ceramic capacitor.
1.0 F
REV. E
Figure 18. Internal Reference—1 V p-p Input Span
(Top/Bottom Mode)
REFBF = reference bottom, force
REFTS = reference top, sense
REFBS = reference bottom, sense
0.1 F
1V
0V
Figure 17. Reference Decoupling Network
0.1 F
SENSE
REFBS
REFTS
VREF
AIN
REF
0.1 F
10 F
10k
10k
0.1 F
A1
10k
10k
A2
1V
SHA
CORE
REFTF
REFBF
A/D
AD9280
AD9280
4.2k
TOTAL
REFTF
REFBF
MODE
0.1 F
AVDD
10 F
0.1 F
0.1 F
–11–
Figure 19 shows the single-ended configuration for 2 V p-p
operation. REFSENSE is connected to GND, resulting in a 2 V
reference output.
Figure 20 shows the single-ended configuration that gives the
good high frequency dynamic performance (SINAD, SFDR).
To optimize dynamic performance, center the common-mode
voltage of the analog input at approximately 1.5 V. Connect the
shorted REFTS and REFBS inputs to a low impedance 1.5 V
source. In this configuration, the MODE pin is driven to a volt-
age at midsupply (AVDD/2).
Maximum reference drive is 1 mA. An external buffer is re-
quired for heavier loads.
1.0 F
1.0 F
Figure 19. Internal Reference, 2 V p-p Input Span
(Top/Bottom Mode)
(Center Span Mode)
Figure 20. Internal Reference 1 V p-p Input Span
0.1 F
0.1 F
2V
1V
+1.5V
2V
0V
REFBS
REFTS
SENSE
REFBS
SENSE
REFTS
VREF
VREF
REF
AIN
AIN
REF
10k
10k
10k
10k
A1
A1
10k
10k
10k
10k
A2
A2
1V
1V
SHA
SHA
CORE
CORE
A/D
A/D
AD9280
AD9280
4.2k
TOTAL
4.2k
TOTAL
AD9280
0.1 F
REFTF
0.1 F
REFBF
REFTF
REFBF
MODE
MODE
AVDD
AVDD/2
10 F
0.1 F
10 F
0.1 F
0.1 F
0.1 F

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