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 ATS51
LOW-VOLTAGE SOT-23 TEMPERATURE SENSOR WITH HIGH OUTPUT DRIVE
New Release Specification
General Description
The ATS51 is a high-precision CMOS temperature sensor that provides a cost-effective solution for applications requiring high-accuracy low-power temperature monitoring. The ATS51 is ideally suited for applications requiring high drive current. The ATS51 output voltage ramp is extremely linear and has a slope of 10mV/C. With a supply voltage of 2.7V to 6V, the ATS51 is accurate to 1C over a temperature range of -40C to 125C and has a typical room temperature accuracy of 0.5C. Reducing the supply voltage to 2.7V does not change the negative and positive temperature extremes. As well, the ATS51 does not require external calibration. Calibration of each device is performed at the factory.
PRODUCT SPECIFICATION
Pin Configuration
SOT- 23 3-lead
VDD
1
ATS51 VOUT
2
3
GND
actual part marking below
Features
* * * * * * * * * * Precision Calibrated to 1C at 25C Low Output Impedance for 1mA Load Temperature Range: -40C to 125C Extremely Linear Output Ramp: 10mV/C Output Ramp is Calibrated to Degrees Celsius
Accuracy (C)
4 3 2 1 0 -1 -2 -3 -4 -50
-40
Accuracy vs Temperature
VDD =+5V
Low Operating Current: 130A Low Self Heating: 0.2C Typical in Still Air Operating Voltage Range: +2.7V to +6V Uses a Single Positive Supply Non-linearity: 0.8C
upper spec limit
lower spec limit 0
25
Applications
* * * * * * * * * * Mobile Phones Mobile Communications Terminals Computers Battery Management FAX Machines/Printers/Copiers Portable Medical Instruments HVAC Power Supply Modules Disk Drives Automotive Control Circuits
50
100
125
Temperature (C)
Ordering Information
Part Number ATS51S3
y - year, w - week
Package 3-Pin SOT-23
Temperature Range -40C to +125C
Part Marking AByw
How Supplied 3000 units on T&R
(c) Andigilog, Inc. 2003
www.andigilog.com
70A03203-003
ATS51
Absolute Maximum Ratings1
Parameter Supply Voltage Output Voltage Continuous Current, any terminal Storage Temperature Range ESD2 Human Body Model Machine Model Thermal Resistance - JA Lead Temp Vapor Phase (60 sec) Infrared (15 sec) Rating +7V VDD + 0.5V 15mA -60C to +150C 2000V 250V 336C/W 215C 220C 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 1.5k 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 VDD VOUT TA Parameter Supply Voltage Output Voltage Operating Temperature Range Min +2.7 0 -40 Max +6 VDD +125 Units V V C
Electrical Characteristics3
Limits apply for -40C T A +125C and V D D = + 5.0V unless otherwise noted.
Parameter Accuracy4
Symbol
Conditions TA=+25C TA=-40C (TMIN) TA=+125C (TMAX)
Min -1 -3 -3
Typ 0.5 1 1 0.8
Max +1 +3 +3 130
Units C C C C A mA mA mV/C mV C
Non-linearity
5
Supply Current - Output floating Output Sink Capability6 Output Source Capability6 Average Output Slope (Sensor Gain) Room Temperature Output Voltage Self Heating7
IDD IOL IOH AOUT VOUT25
TA=+25C +2.7V < VDD < +6V +2.7V < VDD < +6V 1 1 10 TA=+25C SOT-23 750 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 = JA x (VDD x IDD). Assumes a capacitive load.
(c) Andigilog, Inc. 2003
-2www.andigilog.com
70A03203-004
ATS51
VOUT (mV) 1750 1500
750 500
100 -50 -40 -25 0 25 50 75 100 125
Temperature (C) Temp (C) = (VOUT - 500mV) / 10mV/C
Figure 1. ATS51 Output Voltage vs. Temperature
Mounting
The ATS51 can be easily mounted by gluing or cementing it to a surface. In this case, its temperature will be within about 0.2C of the temperature of the surface it is attached to if the ambient air temperature is almost the same as the surface temperature. If the air temperature is much higher or lower than the surface temperature, the actual temperature of the ATS51 die will be at an intermediate temperature between the surface temperature and the air temperature. To ensure good thermal conductivity, the backside of the ATS51 die is directly attached to the GND pin. The lands and traces to the ATS51 will, of course, be part of the printed circuit board, which is the object whose temperature is being measured. These printed circuit board lands and traces will not cause the ATS51's temperature to deviate from the desired temperature. Alternatively, the ATS51 can be mounted inside a sealed-end metal tube, and can then be dipped into a bath or screwed into a threaded hole in a tank. As with any IC, the ATS51 and accompanying wiring and circuits must be kept insulated and dry to avoid leakage and corrosion. This is especially true if the circuit may operate at cold temperatures where condensation can occur. Printed-circuit coatings and varnishes such as Humiseal and epoxy paint or dips can be used to ensure that moisture cannot corrode the ATS51 or its connections.
NOTE: When taking advantage of the high current drive capability of the ATS51 while driving resistive loads, it is necessary to apply the appropriate thermal mounting techniques as described above. Failure to do so will result in a loss of accuracy due to increased self heating.
(c) Andigilog, Inc. 2003
-3www.andigilog.com
70A03203-004
ATS51
Typical Performance Characteristics
VDD =+5V
4 3
Accuracy (C)
2 1 0 -1 -2 -3 -4 -50
-40
upper spec limit
lower spec limit 0
25
50
100
125
Temperature (C)
Figure 2. ATS51 Accuracy Range vs Temperature
130 120 110 100 90
VDD = +5V
IDD ( mA)
IDD (A)
80 70 60 50 40 30 20 10 0 -50 -25 0 25 50 75 100 125
Temperature (C)
Figure 3. ATS51 Current vs Temperature
(c) Andigilog, Inc. 2003
-4www.andigilog.com
70A03203-004
ATS51
Typical Applications
5V
3.9K VTemp U1 100K FB 1F 10K U2 ENABLE + Adjustable Shunt Voltage Reference IN Serial REF Analog-to-Digital Converter 1.75V U3 CLOCK
ATS51
SERIAL DATA OUT
Figure 4. Serial Output Temperature to Digital Converter (Full Scale = +125C)
5V
30K
ATS51
U1
VTemp
IN
8
PARALLEL DATA OUTPUT
_ U2 5K 1F 15K + 1.75V VREF
Parallel Output Analog-to-Digital Converter INTR
U3 CS RD WR
Figure 5. Parallel Output Temperature to Digital Converter (Full Scale = +125C)
(c) Andigilog, Inc. 2003 -5www.andigilog.com 70A03203-004
ATS51
Typical Applications (cont.)
V+
R3
R4 4.1V Shunt Voltage Reference R1 VT + U1 0.1F R2 - VOUT
U3
V+
ATS51
U2
VTemp
Figure 6. Thermostat/Fan Controller
(c) Andigilog, Inc. 2003
-6www.andigilog.com
70A03203-004
ATS51
SOT-23 Package Dimensions
0.370 mm (min) 0.510 mm (max)
2.100 mm (min) 2.640 mm (max)
1.200 mm (min) 1.400 mm (max)
0.450 mm (min) 0.600 mm (max) 2.800 mm (min) 3.040 mm (max)
0.890 mm (min) 1.120 mm (max) 0.013 mm (min) 0.100 mm (max)
0.085 mm (min) 0.180 mm (max) 1.780 mm (min) 2.050 mm (max) 0.55ref mm
Tape and Reel Data
W A0 BB0 K0 P0 P1 P2 T F
8.00 + 0.30 / -0.10 mm 3.15 0.10 mm 2.77 0.10 mm 1.22 0.10 mm 4.00 0.10 mm 4.00 0.10 mm 2.00 0.05 mm 0.29 0.13 mm 3.50 0.05 mm
-7www.andigilog.com
(c) Andigilog, Inc. 2003
70A03203-004
ATS51
Data Sheet Classifications
Preliminary Specification This classification is shown on the heading of each page of a specification for products that are either under development(design and qualification), or in the formative planning stages. Andigilog reserves the right to change or discontinue these products without notice. New Release Specification This classification is shown on the heading of the first page only of a specification for products that are either under the later stages of development(characterization and qualification), or in the early weeks of release to production. Andigilog reserves the right to change the specification and information for these products without notice.
Fully Released Specification Fully released datasheets do not contain any classification in the first page header. These documents contain specification on products that are in full production. Andigilog will not change any guaranteed limits without written notice to the customers. Obsolete datasheets that were written prior to January 1, 2001 without any header classification information should be considered as obsolete and non-active specifications, or in the best case as Preliminary Specifications.
Andigilog, Inc. 7404 W. Detroit St., Suite 100 Chandler, Arizona 85226-2422 Tel: (480) 940-6200 Fax: (480) 940-4255 (c) Andigilog, Inc. 2003 -8www.andigilog.com 70A03203-004
ATS51
Notes:
Andigilog, Inc. 7404 W. Detroit St., Suite 100 Chandler, Arizona 85226-2422 Tel: (480) 940-6200 Fax: (480) 940-4255 (c) Andigilog, Inc. 2003 -9www.andigilog.com 70A03203-004


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