ADR03 AD [Analog Devices], ADR03 Datasheet - Page 30

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ADR03

Manufacturer Part Number
ADR03
Description
Ultralow Noise, High Accuracy
Manufacturer
AD [Analog Devices]
Datasheet

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THEORY OF OPERATION
The
ADR4550
extremely high accuracy, stability, and noise performance.
Three parameters contribute to the accuracy of the dc output of
a voltage reference: initial accuracy, temperature coefficient, and
long-term drift. With an outstanding guaranteed initial error of
0.02% and a low temperature coefficient of 2 ppm/°C maximum,
this series of voltage references is perfect for high precision
applications. The industry-leading long-term stability of the
devices means that systems need less frequent field calibration
and that there is a reduction in the costly preshipment system
burn-in time.
LONG-TERM DRIFT
One of the key parameters of the
ADR4533/ADR4540/ADR4550
stability—the output drift over time that the device is powered
up. Regardless of output voltage, internal testing during
development showed a typical drift of approximately 25 ppm
after 1000 hours of continuous, nonloaded operation in a 60°C
extremely stable temperature controlled environment.
Note that the majority of the long-term drift typically occurs in
the first 200 hours to 300 hours of operation. For systems that
require highly stable output voltages over long periods of time,
the designer should consider burning in the devices prior to use
to minimize the amount of output drift exhibited by the
reference over time. See the
ADR4520/ADR4525/ADR4530/ADR4533/ADR4540/ADR4550
ADR4520/ADR4525/ADR4530/ADR4533/ADR4540/
series of references uses a unique core topology for
AN-713 Application
ADR4520/ADR4525/ADR4530/
references is long-term
Note, The
Rev. 0 | Page 30 of 32
Effect of Long-Term Drift on Voltage References, at
for more information regarding the effects of long-term drift
and how it can be minimized.
POWER DISSIPATION
The
ADR4550
up to 10 mA of load current at room temperature across the rated
input voltage range. However, when used in applications subject
to high ambient temperatures, the input voltage and load current
should be carefully monitored to ensure that the device does not
exceeded its maximum power dissipation rating. The maximum
power dissipation of the device can be calculated via the
following equation:
where:
P
T
T
θ
Due to this relationship, acceptable load current in high
temperature conditions may be less than the maximum current
sourcing capability of the device. In no case should the part be
operated outside of its maximum power rating because doing so
may result in premature failure or permanent damage to the device.
JA
D
J
A
is the device junction temperature.
is the device power dissipation.
is the ambient temperature.
is the package (junction-to-air) thermal resistance.
ADR4520/ADR4525/ADR4530/ADR4533/ADR4540/
P
D
=
T
voltage references are capable of sourcing and sinking
J
θ
JA
T
A
Data Sheet
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