AD589JH Analog Devices Inc, AD589JH Datasheet - Page 4

IC V-REF 1.235V LP TO-51-2

AD589JH

Manufacturer Part Number
AD589JH
Description
IC V-REF 1.235V LP TO-51-2
Manufacturer
Analog Devices Inc
Type
Voltage Referencer
Datasheets

Specifications of AD589JH

Temperature Coefficient
100ppm/°C
Reference Type
Shunt
Voltage - Output
1.235V
Tolerance
±5mV
Number Of Channels
1
Current - Cathode
50µA
Current - Output
10mA
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
TO-51-2, Metal Can
Topology
Shunt
Reference Voltage
1.235V
Reference Voltage Tolerance
5mV
Voltage Reference Case Style
TO-51
No. Of Pins
2
Current, Output
10 mA
Current, Supply
50 μA to 5 mA
Package Type
TO-51
Power Dissipation
60 μW
Regulator Type
Shunt
Standards
MIL
Temperature, Operating, Maximum
+70 °C
Temperature, Operating, Minimum
0 °C
Temperature, Operating, Range
0 to +70 °C
Voltage, Noise
5 μV
Voltage, Output
1.235 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Input
-
Current - Quiescent
-
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device

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UNDERSTANDING THE SPECIFICATIONS
Voltage Variation Versus Temperature
Some confusion exists in the area of defining and specifying
reference voltage error over temperature. Historically, references
have been characterized using a maximum deviation per degree
Centigrade, i.e., 10 ppm/°C. However, because of nonlinearities
in temperature characteristics, which originated in standard Zener
references (such as S type characteristics), most manufacturers
have begun to use a maximum limit error band approach to specify
devices. This technique involves measurement of the output at
3, 5, or more different temperatures to guarantee that the output
voltage will fall within the given error band. The temperature
characteristics of the AD589 consistently follows the curve shown
in Figure 1. Three-point measurement guarantees the error band
over the specified temperature range. The temperature coefficients
specified in the Specifications section represent the slopes of the
diagonals of the error band from 25°C to T
AD589
Figure 1.Typical AD589Temperature Characteristics
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Figure 2. Noise Spectral Density
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and 25°C to T
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MAX
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Dynamic Performance
Many low power instrument manufacturers are becoming increas-
ingly concerned with the turn-on characteristics of the components
being used in their systems. Fast turn-on components often enable
the end user to keep power off when not needed and yet respond
quickly when the power is turned on for operation. Figure 3 dis-
plays the turn-on characteristics of the AD589. This characteristic
is generated from cold-start operation and represents the true turn-
on waveform after an extended period with the supplies off. The
figure shows both the coarse and fine transient characteristics of
the device; the total settling time to within ±1 mV is about 25 s,
and there is no long thermal tail appearing after that point.
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Figure 3. Output Settling Characteristics
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Figure 4. Schematic Diagram
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