AD7911ARMZ Analog Devices Inc, AD7911ARMZ Datasheet - Page 16

IC ADC 10BIT DUAL 2CH 8-MSOP

AD7911ARMZ

Manufacturer Part Number
AD7911ARMZ
Description
IC ADC 10BIT DUAL 2CH 8-MSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7911ARMZ

Data Interface
DSP, MICROWIRE™, QSPI™, Serial, SPI™
Operating Temperature
-40°C ~ 85°C
Number Of Bits
10
Sampling Rate (per Second)
250k
Number Of Converters
1
Power Dissipation (max)
20mW
Voltage Supply Source
Single Supply
Mounting Type
Surface Mount
Package / Case
8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
Resolution (bits)
10bit
Input Channel Type
Single Ended
Supply Voltage Range - Analogue
2.35V To 5.25V
Supply Current
4mA
No. Of Pins
8
Sampling Rate
250kSPS
Rohs Compliant
Yes
Number Of Elements
1
Resolution
10Bit
Architecture
SAR
Sample Rate
250KSPS
Input Polarity
Unipolar
Input Type
Voltage
Rated Input Volt
5.25V
Differential Input
No
Power Supply Requirement
Single
Single Supply Voltage (typ)
3/5V
Single Supply Voltage (min)
2.35V
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
20mW
Differential Linearity Error
±0.5LSB
Integral Nonlinearity Error
±0.5LSB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
8
Package Type
MSOP
Input Signal Type
Single-Ended
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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AD7911/AD7921
TYPICAL CONNECTION DIAGRAM
Figure 22 shows a typical connection diagram for the AD7911/
AD7921. V
should be well decoupled. This provides an analog input range
of 0 V to V
with two leading zeros, followed by the channel identifier bit
that identifies the channel converted, followed by an invalid bit
that matches up to the channel converted, followed by the MSB
of the 12-bit or 10-bit result. For the AD7911, the 10-bit result is
followed by two trailing zeros. See the Serial Interface section.
Alternatively, because the supply current required by the
AD7911/AD7921 is so low, a precision reference can be used as
the supply source to the AD7911/AD7921. A REF19x voltage
reference (REF195 for 5 V or REF193 for 3 V) can be used to
supply the required voltage to the ADC (see Figure 22). This
configuration is especially useful, if the power supply is quite
noisy or if the system supply voltages are at some value other
than 5 V or 3 V (for example, 15 V). The REF19x outputs a
steady voltage to the AD7911/AD7921. If the low dropout
REF193 is used, the current it needs to supply to the AD7911/
AD7921 is typically 1.5 mA. When the ADC is converting at a
rate of 250 kSPS, the REF193 needs to supply a maximum of
2 mA to the AD7911/AD7921. The load regulation of the
REF193 is typically 10 ppm/mA (REF193, V
results in an error of 20 ppm (60 µV) for the 2 mA drawn from
it. This corresponds to a 0.082 LSB error for the AD7921 with
V
AD7911.
For applications where power consumption is a concern, the
power-down mode of the ADC and the sleep mode of the
REF19x reference should be used to improve power perform-
ance. See the Modes of Operation section.
DD
0V TO V
680nF
= 3 V from the REF193 and a 0.061 LSB error for the
INPUT
1.5mA
DD
Figure 22. REF193 as Power Supply to AD7911/AD7921
DD
REF
. The conversion result is output in a 16-bit word
V
V
V
GND
is taken internally from V
DD
IN0
IN1
0.1
µ
AD7911/
AD7921
F
TANT
1
3V
µ
F
DOUT
SCLK
INTERFACE
DIN
CS
SERIAL
REF193
10
µ
DD
F
and as such V
S
µ
= 5 V), which
0.1
C/
µ
µ
P
F
5V
SUPPLY
DD
Rev. 0 | Page 16 of 28
Table 6 provides some typical performance data with various
references used as a V
the same setup conditions.
Table 6. AD7921 Performance for Various Voltage
References IC
Reference Tied to V
AD780 at 3 V
REF193
ADR433
AD780 at 2.5 V
REF192
ADR421
ANALOG INPUT
Figure 23 shows an equivalent circuit of the analog input
structure of the AD7911/AD7921. The two diodes, D1 and D2,
provide ESD protection for the analog input. Care must be
taken to ensure that the analog input signal never exceeds the
supply rails by more than 300 mV, because this would cause
these diodes to become forward biased and start conducting
current into the substrate. The maximum current these diodes
can conduct without causing irreversible damage to the part is
10 mA.
The capacitor C1 in Figure 23 is typically about 6 pF and can
primarily be attributed to pin capacitance. The resistor R1 is a
lumped component made up of the on resistance of a track-
and-hold switch and also includes the on resistance of the input
multiplexer. This resistor is typically about 100 Ω. The capacitor
C2 is the ADC sampling capacitor and has a capacitance of
20 pF typically.
For ac applications, removing high frequency components from
the analog input signal is recommended using a band-pass filter
on the relevant analog input pin. In applications where
harmonic distortion and signal-to-noise ratio are critical, the
analog input should be driven from a low impedance source.
Large source impedances can significantly affect the ac
performance of the ADC. This might necessitate the use of an
input buffer amplifier. The choice of the op amp is a function of
the particular application.
V
IN
Figure 23. Equivalent Analog Input Circuit
6pF
C1
DD
CONVERSION PHASE—SWITCH OPEN
TRACK PHASE—SWITCH CLOSED
DD
source and a 50 kHz input tone under
V
DD
D1
D2
AD7921 SNR Performance (dB)
−73
−72.42
−72.9
−72.86
−72.27
−72.75
R1
20pF
C2

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