LMP91000SDE National Semiconductor, LMP91000SDE Datasheet - Page 12

AFE, SENSOR, 14LLP

LMP91000SDE

Manufacturer Part Number
LMP91000SDE
Description
AFE, SENSOR, 14LLP
Manufacturer
National Semiconductor
Datasheet

Specifications of LMP91000SDE

Brief Features
Programmable Cell Bias Voltage, Low Bias Voltage Drift, I2C Compatible Digital Interface
Supply Voltage Range
2.7V To 5.25V
Operating Temperature Range
-40°C To +85°C
Digital Ic Case Style
LLP
Ic Function
Programmable Analogue Front End (AFE)
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LMP91000SDE
Manufacturer:
TI
Quantity:
1
Part Number:
LMP91000SDE/NOPB
Manufacturer:
TI/德州仪器
Quantity:
20 000
Part Number:
LMP91000SDE/NOPB
0
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The Internal zero is provided through an internal voltage di-
vider (Vref divider box in
through the I
Temperature sensor
The embedded temperature sensor can be switched off dur-
ing gas concentration measurement to save power. The tem-
perature measurement is triggered through the I
The temperature output is available at the VOUT pin until the
configuration bit is reset. The output signal of the temperature
sensor is a voltage, referred to the ground of the LMP91000
(AGND).
Temperature
-40
-39
-38
-37
-36
-35
-34
-33
-32
-31
-30
-29
-28
-27
-26
-25
-24
-23
-22
-21
-20
-19
-18
-17
-16
-15
-14
-13
-12
-11
-10
-9
-8
-7
-6
-5
-4
-3
(°C)
Temperature Sensor Transfer Table
2
C interface.
1875
1867
1860
1852
1844
1836
1828
1821
1813
1805
1797
1789
1782
1774
1766
1758
1750
1742
1734
1727
1719
1711
1703
1695
1687
1679
1671
1663
1656
1648
1640
1632
1624
1616
1608
1600
1592
1584
Voltage
Output
(mV)
Figure
Temperature
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
2). The divider is programmed
(°C)
1375
1367
1359
1351
1342
1334
1326
1318
1310
1302
1293
1285
1277
1269
1261
1253
1244
1236
1228
1220
1212
1203
1195
1187
1179
1170
1162
1154
1146
1137
1129
1121
1112
1104
1096
1087
1079
1071
2
C interface.
Voltage
Output
(mV)
12
Although the temperature sensor is very linear, its response
does have a slight downward parabolic shape. This shape is
very accurately reflected in the temperature sensor Transfer
Table. For a linear approximation, a line can easily be calcu-
lated over the desired temperature range from the Table using
the two-point equation:
V-V
Where V is in mV, T is in °C, T
the lowest temperature, T
highest temperature.
For example, if we want to determine the equation of a line
over a temperature range of 20°C to 50°C, we would proceed
as follows:
V-1399mV=((1154mV - 1399mV)/(50°C -20°C))*(T-20°C)
V-1399mV= -8.16mV/°C*(T-20°C)
V=(-8.16mV/°C)*T+1562.2mV
Using this method of linear approximation, the transfer func-
tion can be approximated for one or more temperature ranges
of interest.
I
The I
(100kHz). Pull-up resistors or current sources are required on
the SCL and SDA pins to pull them high when they are not
being driven low. A logic zero is transmitted by driving the
output low. A logic high is transmitted by releasing the output
and allowing it to be pulled-up externally. The appropriate
pull-up resistor values will depend upon the total bus capac-
itance and operating speed. The LMP91000 comes with a 7
bit bus fixed address: 1001 000.
-2
-1
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
2
C INTERFACE
1
=((V
2
C compatible interface operates in Standard mode
2
–V
1
)/(T
1576
1568
1560
1552
1544
1536
1528
1520
1512
1504
1496
1488
1480
1472
1464
1456
1448
1440
1432
1424
1415
1407
1399
1391
1383
2
–T
1
))*(T-T
2
and V
1
)
1
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
and V
2
are the coordinates of the
1
are the coordinates of
1063
1054
1046
1038
1029
1021
1012
1004
996
987
979
971
962
954
945
937
929
920
912
903
895
886
878
870
861

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