ADR5041ARTZ Analog Devices Inc, ADR5041ARTZ Datasheet - Page 10

ADR5041ARTZ

Manufacturer Part Number
ADR5041ARTZ
Description
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADR5041ARTZ

Fixed / Adjust / Prog
Precision
Output Voltage (max)
2.5V
Temperature Coefficient
100ppm/°C
Reference Voltage Accuracy (max)
0.2
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
3
Package Type
SOT-23
Lead Free Status / Rohs Status
Compliant

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ADR5040/ADR5041/ADR5043/ADR5044/ADR5045
TERMINOLOGY
Temperature Coefficient
The change in output voltage with respect to operating temperature
changes. It is normalized by an output voltage of 25°C. This
parameter is expressed in ppm/°C and is determined by the
following equation:
where:
V
V
V
OUT
OUT
OUT
(25°C) = V
(T
(T
TCV
1
2
) = V
) = V
OUT
OUT
OUT
⎢ ⎣
ppm
OUT
°
at Temperature 1.
at Temperature 2.
C
at 25°C.
⎥ ⎦
=
V
V
O
OUT
UT
(
25
( )
T
2
°
C
)
V
×
OUT
(
T
2
( )
T
T
1
1
)
×
10
6
(1)
Rev. A | Page 10 of 16
Thermal Hysteresis
The change in output voltage after the device is cycled through
temperatures ranging from +25°C to −40°C, then to +125°C, and
back to +25°C. This is common in precision reference and is
caused by thermal-mechanical package stress. Changes in envi-
ronmental storage temperature, board mounting temperature, and
the operating temperature are some of the factors that can
contribute to thermal hysteresis. The following equation
expresses a typical value from a sample of parts put through
such a cycle:
where:
V
V
−40°C, then to +125°C, and back to +25°C.
OUT
OUT_TC
(25°C) = V
V
V
OUT
OUT
= V
_
_
HYS
HYS
OUT
[
at 25°C after a temperature cycle from +25°C to
=
ppm
OUT
V
OUT
at 25°C.
]
=
(
25
V
OUT
°
C
(
V
)
25
OUT
V
°
OUT
C
(
25
)
_
°
V
TC
C
OUT
)
_
TC
×
10
6
(2)

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