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AD7380 Datasheet(PDF) 16 Page - Analog Devices

Part # AD7380
Description  Differential Input, Quad, Internal Reference Simultaneous Sampling, 16-Bit SAR ADC
PDF  31 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD7380 Datasheet(HTML) 16 Page - Analog Devices

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AD7389-4
Data Sheet
Rev. 0 | Page 16 of 31
APPLICATIONS INFORMATION
Figure 29 shows an example of a typical application circuit for
the AD7389-4. Decouple the VCC, VLOGIC, REGCAP, and
REFOUT pins with suitable decoupling capacitors as shown.
The exposed pad is a ground reference point for circuitry on
the device and must be connected to the board ground.
A differential RC filter must be placed on the analog inputs to
ensure optimal performance is achieved. In a typical
application, R = 33 Ω, C1 = 68 pF, and C2 = 68 pF are
recommended. These RC combinations must be the same for
all channels of the AD7389-4.
The four differential channels of the AD7389-4 can accept an
input voltage range from 0 V to VREF and have a wide common-
mode range to convert a variety of signals. These analog input
pins (AINx±) can easily be driven with an amplifier. Table 10
lists the recommended driver amplifiers that can best fit and
add value to the application.
The performance of the AD7389-4 device can be impacted by
noise on the digital interface. This impact is dependent on-board
layout and design. Keep a minimal distance of the digital line to
the digital interface or place a 100 Ω resistor in series and close
to the SDOA, SDOB, SDOC, and SDOD/ALERT pins to reduce
noise from the digital interface coupling of the AD7389-4.
The AD7389-4 uses an internal 2.5 V reference voltage. When
this reference voltage is used for other circuits externally, for
example as a common-mode voltage for the driver amplifier, it
is recommended to use an external buffer amplifier like the
ADA4807-2.
POWER SUPPLY
For a typical application, the AD7389-4 circuitry shown in
Figure 29 can be driven from a 5 V (V+) supply to power the
system. The 5 V (V+) can be supplied from the ADP7104. The
ADC driver can be supplied by a 5 V (V+) and a −2.5 V (V−)
derived from the inverting charge pump, the ADP5600, that
converts 5 V to −5 V, then to the ADP7182 for the low noise
voltage regulator to output −2.5 V. Two independent power
supply sources are derived from a low dropout (LDO) regulator
to power the VCC supply for the analog circuitry and the VLOGIC
supply for the digital interface of the AD7389-4. A very low
quiescent current LDO regulator like the ADP166 is a suitable
supply with a fixed output voltage range from 1.2 V to 3.3 V for
typical VCC and VLOGIC levels. The VCC supply and the VLOGIC
supply must be decoupled separately with a 1 µF capacitor.
Additionally, an internal LDO regulator supplies the AD7389-4.
The on-chip regulator provides a 1.9 V supply only for internal
use on the device. Decouple the REGCAP pin with a 1 µF
capacitor to GND.
Power-Up
The AD7389-4 is not easily damaged by power supply
sequencing. VCC and VLOGIC can be applied in any sequence. The
external reference must be applied after VCC and VLOGIC are
applied. Analog and digital signals must be applied after the
external reference is applied.
The AD7389-4 requires tPOWERUP from applying VCC and VLOGIC
until the ADC conversion results are stable. Interfacing with
the AD7389-4 prior to the setup time elapsing does not have a
negative impact on ADC operation. See Figure 4 for the
recommended signal condition during power-up. It is highly
recommended to issue a software reset after power-up (see the
Software Reset section for details).Conversion results are not
guaranteed to meet data sheet specifications during this time,
however.
Table 10. Signal Chain Components
Companion Devices
Part Name
Description
Typical Application
ADC Driver
ADA4896-2
1 nV/√Hz, rail-to-rail output amplifier
Precision, low noise, high frequency
ADA4940-2
Ultra low power, full differential, low distortion amplifier
Precision, low density, low power
ADA4807-2
1 mA, rail-to-rail output amplifier
Precision, low power, high frequency
LDO Regulator
ADP166
Very low quiescent, 150 mA, LDO regulator
3.0 V to 3.6 V supply for VCC and VLOGIC
ADP7104
500mA Low Noise, CMOS LDO regulator
5 V supply
ADP7182
Low noise line regulator
−2.5 V supply for ADC driver amplifier
ADP5600
Interleaved inverting charge pump with negative LDO
Voltage inverter for negative supply
Reference Buffer
ADA4807-2
1 mA, rail-to-rail output amplifier
Precision, low power, high frequency



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