AD7864ASZ-2 Analog Devices Inc, AD7864ASZ-2 Datasheet - Page 20

IC ADC 14BIT DUAL 4CHAN 44-MQFP

AD7864ASZ-2

Manufacturer Part Number
AD7864ASZ-2
Description
IC ADC 14BIT DUAL 4CHAN 44-MQFP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7864ASZ-2

Data Interface
Parallel
Number Of Bits
12
Sampling Rate (per Second)
520k
Number Of Converters
1
Power Dissipation (max)
120mW
Voltage Supply Source
Analog and Digital
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
44-MQFP, 44-PQFP
Resolution (bits)
12bit
Sampling Rate
500kSPS
Input Channel Type
Single Ended
Supply Voltage Range - Analog
4.75V To 5.25V
Supply Current
24mA
Digital Ic Case Style
QFP
Number Of Elements
1
Resolution
12Bit
Architecture
SAR
Sample Rate
520KSPS
Input Polarity
Unipolar
Input Type
Voltage
Rated Input Volt
2.5/5V
Differential Input
No
Power Supply Requirement
Analog and Digital
Single Supply Voltage (typ)
5V
Single Supply Voltage (min)
4.75V
Single Supply Voltage (max)
5.25V
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Power Dissipation
120mW
Differential Linearity Error
±0.9LSB
Integral Nonlinearity Error
±1LSB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
44
Package Type
MQFP
Input Signal Type
Single-Ended
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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AD7864
OFFSET AND FULL-SCALE ADJUSTMENT
In most digital signal processing (DSP) applications, offset and
full-scale errors have little or no effect on system performance.
Offset error can always be eliminated in the analog domain by
ac coupling. Full-scale error effect is linear and does not cause
problems as long as the input signal is within the full dynamic
range of the ADC. Invariably, some applications require that the
input signal spans the full analog input dynamic range. In such
applications, offset and full-scale error have to be adjusted to zero.
Figure 15 shows a circuit that can be used to adjust the offset
and full-scale errors on the AD7864 (V
version is shown for example purposes only). Where adjustment
is required, offset error must be adjusted before full-scale error.
This is achieved by trimming the offset of the op amp driving
the analog input of the AD7864 while the input voltage is 1/2
LSB below analog ground. The trim procedure is as follows:
apply a voltage of −2.44 mV (−1/2 LSB) at V
adjust the op amp offset voltage until the ADC output code
flickers between 1111 1111 1111 and 0000 0000 0000.
Adjust gain error at either the first code transition (ADC
negative full scale) or the last code transition (ADC positive full
scale). The trim procedures for both cases are as follows.
POSITIVE FULL-SCALE ADJUST
Apply a voltage of 9.9927 V (FS − 3/2 LSB) at V
until the ADC output code flickers between 0111 1111 1110 and
0111 1111 1111.
INxA
on the AD7864-1
1
in Figure 15 and
1
and adjust R2
Rev. D | Page 20 of 28
NEGATIVE FULL-SCALE ADJUST
Apply a voltage of −9.9976 V (−FS + 1/2 LSB) at V
R2 until the ADC output code flickers between 1000 0000 0000
and 1000 0000 0001.
An alternative scheme for adjusting full-scale error in systems
that use an external reference is to adjust the voltage at the V
pin until the full-scale error for any of the channels is adjusted
out. Good full-scale matching of the channels ensures small
full-scale errors on the other channels.
INPUT
RANGE = ±10V
*ADDITIONAL PINS OMITTED FOR CLARITY.
10kΩ
500Ω
10kΩ
R1
R2
R3
V
1
Figure 15. Full-Scale Adjust Circuit
R5
10kΩ
10kΩ
R4
V
AGND
AD7864-1*
INxA
1
and adjust
REF

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