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LM26LVCISDX-080/NOPB 数据表(PDF) 17 Page - Texas Instruments

部件名 LM26LVCISDX-080/NOPB
功能描述  1.6 V, WSON-6 Factory Preset Temperature Switch and Temperature Sensor
PDF  33 Pages
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制造商  TI1 [Texas Instruments]
网页  http://www.ti.com
标志 TI1 - Texas Instruments

LM26LVCISDX-080/NOPB 数据表(HTML) 17 Page - Texas Instruments

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(-12.8 mV/°C) x
V =
(T-20°C) + 2396 mV
(-12.8 mV/°C) x
V - 2396 mV =
(T - 20°C)
2010 mV - 2396 mV
50°C - 20°C
x
¹
·
V - 2396 mV =
(T - 20°C)
V2 - V1
T2 - T1
u
¹
·
V - V1 =
(T - T1)
GAIN1: VTEMP = 1060 - 5.18 x TDIE
GAIN2: VTEMP = 1590 - 7.77 x TDIE
GAIN3: VTEMP = 2119 - 10.36 x TDIE
GAIN4: VTEMP = 2649 - 12.94 x TDIE
LM26LV
www.ti.com
SNIS144F – JULY 2007 – REVISED FEBRUARY 2013
The First-Order Approximation (Linear)
For a quicker approximation, although less accurate than the second-order, over the full operating temperature
range the linear formula below can be used. Using this formula, with the constant and slope in the following set
of equations, the best-fit VTEMP vs Die Temperature performance can be calculated with an approximation error
less than 18 mV. VTEMP is in mV.
(2)
First-Order Approximation (Linear) over Small Temperature Range
For a linear approximation, a line can easily be calculated over the desired temperature range from the
Conversion Table using the two-point equation:
(3)
Where V is in mV, T is in °C, T1 and V1 are the coordinates of the lowest temperature, T2 and V2 are the
coordinates of the highest temperature.
For example, if we want to determine the equation of a line with Gain 4, over a temperature range of 20°C to
50°C, we would proceed as follows:
(4)
(5)
(6)
Using this method of linear approximation, the transfer function can be approximated for one or more
temperature ranges of interest.
Copyright © 2007–2013, Texas Instruments Incorporated
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