ADT7316ARQ Analog Devices Inc, ADT7316ARQ Datasheet - Page 22

IC DGTL TEMP SNSR QUAD DAC16QSOP

ADT7316ARQ

Manufacturer Part Number
ADT7316ARQ
Description
IC DGTL TEMP SNSR QUAD DAC16QSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADT7316ARQ

Rohs Status
RoHS non-compliant
Function
Temp Monitoring System (Sensor)
Topology
ADC, Comparator, Multiplexer, Register Bank
Sensor Type
External & Internal
Sensing Temperature
-40°C ~ 120°C, External Sensor
Output Type
I²C™, MICROWIRE™, QSPI™, SMBus™, SPI™
Output Alarm
No
Output Fan
No
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 120°C
Mounting Type
Surface Mount
Package / Case
16-QSOP
For Use With
EVAL-ADT7316EBZ - BOARD EVAL FOR ADT7316
Lead Free Status / RoHS Status
Not Compliant
ADT7316/ADT7317/ADT7318
Negative Temperatures
where D7 of Offset Register Code is set to 1 for negative
temperatures.
Example:
Because a negative temperature is input into the equation, DB7
(MSB) of the Offset Register Code is set to 1. Therefore, 0x58
becomes 0xD8:
Positive Temperatures
Example:
The following equation is used to work out the various
temperatures for the corresponding 8-bit DAC output:
For example, if the output is 1.5 V, V
has an LSB size = 2.25 V/256 = 8.79 × 10
−128°C, then the resultant temperature is
The following equation is used to work out the various
temperatures for the corresponding 10-bit DAC output
10-Bit Temp = ((DAC O/P ÷ 1 LSB) × 0.25) + (0 V Temp)
For example, if the output is 0.4991 V, V
DAC has an LSB size = 2.25 V/1024 = 2.197 × 10
is at −40°C, then the resulting temperature is
Table 6. Thermal Voltage Output (0 V to V
Output Voltage (V)
0
0.5
1
1.12
1.47
1.5
2
2.25
1
Upper dead band has been reached. DAC output is not capable of increasing
(see Figure 3).
8-Bit Temp = (DAC O/P ÷ 1 LSB) + (0 V Temp)
Offset
Offset
0
Offset
Offset
(
(
1
(
x
. 0
5 .
58
4991
÷
+
. 8
Register
Register
Register
Register
DB
79
÷
. 2
×
7
197
10
( )
1
Code
Code
Code
Code
=
3
×
)
0
10
+
xD
Default (°C)
−40
+17
+73
+87
+127
UDB
UDB
UDB
(
(
(
(
(
3
dec
dec
dec =
dec
8
)
128
×
1
1
1
)
)
)
)
. 0
=
=
=
)
25
=
10
(0
(
0
)
+
V
40
d
V
+
43
Temp
=
(
)
REF
Temp)
0x0A
o
+
C
40
-AB = 2.25 V, 8-bit DAC
128
REF
Max (°C)
−128
−71
−15
−1
+39
+42
+99
+127
–3
)
, and 0 V temp is at
=
-AB = 2.25 V, 10-bit
+
=
16
128
REF
88
-3
.
75
, and 0 V temp
d
-AB)
o
=
C
0
x58
Sample (°C)
0
+56
+113
+127
UDB
UDB
UDB
UDB
1
1
1
1
Rev. B | Page 22 of 44
Table 7. Thermal Voltage Output (0 V to 2 V
Output Voltage (V)
0
0.25
0.5
0.75
1
1.12
1.47
1.5
2
2.25
2.5
2.75
3
3.25
3.5
3.75
4
4.25
4.5
1
Figure 43 shows the DAC output vs. temperature for a
V
Upper dead band has been reached. DAC output is not capable of increasing
(see Figure 3).
REF
-AB = 2.25 V.
2.25
2.10
1.95
1.80
1.65
1.50
1.35
1.20
1.05
0.90
0.75
0.60
0.45
0.30
0.15
Figure 43. 10-Bit DAC Output vs. Temperature, V
–128 –110 –90 –70 –50 –30 –10 10
0
Default (°C)
−40
−26
+12
+3
+17
+23
+43
+45
+73
+88
+102
+116
UDB
UDB
UDB
UDB
UDB
UDB
UDB
TEMPERATURE (°C)
1
1
1
1
1
1
1
0V = –128°C
30
Max (°C)
−128
−114
−100
−85
−71
−65
−45
−43
−15
0
+14
+28
+42
+56
+70
+85
+99
+113
+127
50
0V = –40°C
70
REF
REF
0V = 0°C
-AB = 2.25 V
90 110 127
-AB)
Sample (°C)
0
+14
+28
+43
+57
+63
+83
+85
+113
+127
UDB
UDB
UDB
UDB
UDB
UDB
UDB
UDB
UDB
1
1
1
1
1
1
1
1
1

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