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REF3130 数据表(PDF) 11 Page - Texas Instruments

部件名 REF3130
功能描述  REF31xx 15ppm/°C Maximum, 100-μA, SOT-23 Series Voltage Reference
PDF  26 Pages
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制造商  TI2 [Texas Instruments]
网页  https://www.ti.com
标志 TI2 - Texas Instruments

REF3130 数据表(HTML) 11 Page - Texas Instruments

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6
OUTMAX
OUTMIN
OUT
V
V
Drift
10 (ppm)
V
Temperature Range
æ
ö
-
=
×
ç
÷
×
è
ø
V
=
HYST
· 10 (ppm)
6
abs|V
V
|
PRE
POST
-
V
NOM
11
REF3112, REF3120, REF3125
REF3130, REF3133, REF3140
www.ti.com
SBVS046D – DECEMBER 2003 – REVISED MARCH 2016
Product Folder Links: REF3112 REF3120 REF3125 REF3130 REF3133 REF3140
Submit Documentation Feedback
Copyright © 2003–2016, Texas Instruments Incorporated
Feature Description (continued)
Supply voltages below the specified levels can cause the REF31xx to momentarily draw currents greater than
the typical quiescent current. This can be prevented by using a power supply with a fast rising edge and low
output impedance.
8.3.2 Thermal Hysteresis
Thermal hysteresis for the REF31xx is defined as the change in output voltage after operating the device at
25°C, cycling the device through the specified temperature range, and returning to 25°C. It can be expressed as:
Where:
VHYST = Thermal hysteresis.
VPRE = Output voltage measured at 25°C pretemperature cycling.
VPOST = Output voltage measured after the device has been cycled through the specified temperature
range of –40°C to +125°C and returned to +25°C.
(1)
8.3.3 Temperature Drift
The REF31xx is designed to exhibit minimal drift error, defined as the change in output voltage over varying
temperature. The drift is calculated using the box method, which is described in Equation 2:
(2)
The REF31xx features a typical drift coefficient of 5 ppm from 0°C to 70°C, the primary temperature range for
many applications. For the industrial temperature range of –40°C to +125°C, the REF31xx family drift increases
to a typical value of 10 ppm.
8.3.4 Noise Performance
Typical 0.1-Hz to 10-Hz voltage noise can be seen in Figure 21. The noise voltage of the REF31xx increases
with output voltage and operating temperature. Additional filtering may be used to improve output noise levels,
although take care to ensure the output impedance does not degrade the AC performance.
Figure 21. 0.1-Hz to 10-Hz Noise



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