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ATS50 参数 Datasheet PDF下载

ATS50图片预览
型号: ATS50
PDF下载: 下载PDF文件 查看货源
内容描述: 低电压SOT- 23温度传感器 [LOW-VOLTAGE SOT-23 TEMPERATURE SENSOR]
分类和应用: 传感器温度传感器
文件页数/大小: 9 页 / 304 K
品牌: ETC [ ETC ]
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aTS50
Absolute Maximum Ratings
1
Parameter
Supply Voltage
Output Voltage
Continuous Current, any terminal
Storage Temperature Range
ESD
2
Human Body Model
Machine Model
Thermal Resistance -
θ
JA
Lead
Temp
Vapor Phase (60 sec)
Infrared (15 sec)
Rating
+7V
V
DD
+ 0.5V
10mA
-60°C to +150°C
2000V
250V
336°C/W
215°C
220°C
Notes:
1. Absolute maximum ratings are limits beyond
which operation may cause permanent damage to
the device. These are stress ratings only;
functional operation at or above these limits is not
implied.
2. Human Body Model: 100pF capacitor discharged
through a 1.5kΩ resistor into each pin. Machine
Model: 200pF capacitor discharged directly into
each pin.
3. These specifications are guaranteed only for the
test conditions listed.
Recommended Operating Ratings
Symbol
V
DD
V
OUT
T
A
Parameter
Supply Voltage
Output Voltage
Operating Temperature Range
Min
+2.7
0
-40
Max
+6
V
DD
+125
Units
V
V
°C
Electrical Characteristics
3
Limits apply for -40°C
T
A
+125°C and V
D D
= + 5.0V unless otherwise noted.
Parameter
Accuracy
4
Symbol
Conditions
T
A
=+25°C
T
A
=-40°C (T
MIN
)
T
A
=+125°C (T
MAX
)
Min
-1
-3
-3
Typ
±0.5
±1
±1
±0.8
Max
+1
+3
+3
130
Units
°C
°C
°C
°C
μA
μA
μA
mV/°C
mV
°C
Non-linearity
5
Supply Current – Output floating
Output Sink Capability
6
Output Source Capability
6
Average Output Slope
(Sensor Gain)
Room Temperature Output
Voltage
Self Heating
7
V
OUT25
T
A
=+25°C
SOT-23
I
DD
I
OL
I
OH
A
OUT
T
A
=+25°C
+2.7V < V
DD
< +6V
+2.7V < V
DD
< +6V
50
50
10
750
0.21840
Notes:
4. Accuracy (expressed in °C) = Difference between calculated output voltage and measured output voltage.
Calculated output voltage = 10mV/°C multiplied by device’s case temperature at specified conditions of
temperature, voltage and power supply.
5. Non-linearity is defined as the deviation of the output-voltage-versus-temperature curve from the best-fit straight
line, over the device’s rated temperature range.
6. Lowest output current should be targeted; higher currents result in more self-heating of the device.
7. Max Self Heating =
θ
JA
x (V
DD
x I
DD
). Assumes a capacitive load.
© Andigilog, Inc. 2003
-2-
www.andigilog.com
70A03202-004