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ADIS16485 Datasheet(PDF) 31 Page - Analog Devices

Part # ADIS16485
Description  Tactical Grade, Six Degrees of Freedom Inertial Sensor
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADIS16485 Datasheet(HTML) 31 Page - Analog Devices

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Data Sheet
ADIS16485
EVALUATION TOOLS
Breakout Board, ADIS16IMU/PCBZ
The ADIS16IMU1/PCBZ (sold separately) provides a breakout
board function for the ADIS16485, which means that it provides
access to the ADIS16485 through larger connectors that support
standard 1 mm ribbon cabling. It also provides four mounting
holes for attachment of the ADIS16485 to the breakout board.
For more information on the ADIS16IMU1/PCBZ, see
http://www.analog.com/en/evaluation/eval-adis16imu1/eb.html.
PC-Based Evaluation, EVAL-ADIS
The EVAL-ADIS system support PC-based evaluation of the
ADIS16485. For more information on the EVAL-ADIS system,
see http://www.analog.com/EVAL-ADIS.
POWER SUPPLY CONSIDERATIONS
The ADIS16485 has approximately ~24 µF of capacitance across
the VDD and GND pins. While this capacitor bank provides a
large amount of localized filtering, it also presents an opportunity
for excessive charging current when the VDD voltage ramps too
quickly. Use the following relationship to help determine the
appropriate VDD voltage profile, with respect to any current
limit functions that can cause the power supply to lose regulation
and potentially introduce unsafe conditions for the ADIS16485.
( )
dt
dV
C
t
i =
In addition to managing the initial voltage ramp, take note of the
transient current demand that the ADIS16485 requires during
its start-up/self-initialization process. Once VDD reaches 2.85 V,
the ADIS16485 begins its start-up process. Figure 29 offers a
broad connection that communicates when to expect the spikes
in current, and Figure 30 provides more detail on the current/time
behavior during the peak transient condition, which typically
occurs approximately 350 ms after VDD reaches 2.85 V. In
Figure 30 notice that the peak current approaches 600 mA and
the transient condition lasts for approximately 1.75 ms.
CH1 2.00V
CH4 100mA Ω
1M POINTS
1.00ms 1.00MS/s
CH1
2.72V
T 9.800%
1
4
T
VDD
CURRENT
Figure 29. Transient Current Demand, Start-Up
CH4 100mA Ω
1M POINTS
1.00ms 1.00MS/s
CH1
2.72V
T 9.800%
4
T
CURRENT
Figure 30. Transient Current Demand, Peak Demand
Rev. E | Page 31 of 32


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