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 MLX90247 family
Discrete Infrared Thermopile Detectors Features and Benefits
Solid state thermopile sensor On-chip thermistor for ambient temperature compensation High reliability and long-term stability Very high ESD protection - 7 kV on all pins (only for MLX90247BAA and MLX90247BAL) Low cost, small size
Ordering Information
Part No MLX90247 MLX90247 MLX90247 MLX90247 Ta Suffix Package code SF(TO-39) SF(TO-39) SF(TO-39) SF(TO-39) Type Description Large aperture (3.5mm) thermopile detector with on-chip PTC DSA thermistor, floating thermopile outputs. Small aperture (2.5mm) thermopile detector with on-chip PTC DSL thermistor, floating thermopile outputs. Large aperture (3.5mm) thermopile detector with on-chip PTC BAA thermistor, floating thermopile outputs. Excellent ESD Small aperture (2.5mm) thermopile detector with on-chip PTC BAL thermistor, floating thermopile outputs. Excellent ESD
E (-40C to +85C) E (-40C to +85C) E (-40C to +85C) E (-40C to +85C)
Notice: In case sensor is used in automotive applications, Melexis must be informed.
Applications
Automotive contactless temperature sensing. IR thermometers Gas analysis equipment Occupancy detection
1. Functional Diagram
2. Description
At the heart of the MLX90247 thermopile sensors is a silicon die with a central micromachined membrane surrounded by a bulk silicon edge. The hot junctions of the thermopile are positioned near the center of the membrane and the cold junctions are located above the bulk silicon edge. Infrared irradiation of the low thermal conductivity membrane creates a temperature difference between the membrane and the surrounding bulk silicon. The resulting thermopile voltage is a function of the temperature difference between the object and the sensor. Measurement of the absolute temperature of the object is possible by relating the thermopile signal to the temperature of the sensor. The exact temperature of the sensor is measured by a PTC thermistor integrated in the bulk silicon edge. No supply voltage is needed for the thermopile. The sensor and thermistor can be used independently of each other if desired, as the thermopile potential is floating. The MLX90247DSL (BAL) sensor IC is similar to MLX90247DSA (BAA) but with smaller aperture, thus resulting in narrower field of view (FOV).
60 kOhm 1 Out IR+ 40 uV/K
3 Out IRThermopile
2 Rsense
24 kOhm
PTC Socket
4
VSS
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors Table of contents
1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. FUNCTIONAL DIAGRAM ............................................................................................................. 1 DESCRIPTION............................................................................................................................... 1 GLOSSARY OF TERMS ............................................................................................................... 3 PIN DEFINITIONS AND DESCRIPTIONS .................................................................................... 3 MLX90247 SPECIFICATIONS ...................................................................................................... 3 UNIQUE FEATURES..................................................................................................................... 5 APPLICATIONS INFORMATION.................................................................................................. 6 RELIABILITY INFORMATION ...................................................................................................... 7 ESD PRECAUTIONS .................................................................................................................... 7 PACKAGE INFORMATION........................................................................................................... 8 DISCLAIMER............................................................................................................................... 10
3901090247 Rev. 003
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MLX90247 family
Discrete Infrared Thermopile Detectors
3. Glossary of Terms
IR: Infrared. Every object emits infrared radiation in relation to its temperature. This effect can be used to measure the temperature without the need for physical contact. PTC: On-chip thermistor which resistance increases with rising temperature (Positive Thermal Coefficient)
4. Pin Definitions and Descriptions
TO-39 package - connections
1
Pin 1
2 4
Symbol OutIr+ Rsens OutIrVss
Description Infrared Thermopile positive output Thermistor for sensor ambient temperature measurement Infrared Thermopile negative output Thermistor ground / case potential
2 3 4
3 Top view = pins down
5. MLX90247 Specifications
Operating temperature range: Ta = -40 to 125 C unless otherwise noted
Parameter Sensitive Area DC membrane responsitivity Sensitivity Window aperture size Field of view Spectral sensitivity Thermopile Resistance Noise 3901090247 Rev. 003
Type All All DSA and BAA DSL and BAL DSA and BAA DSL and BAL DSA and BAA DSL and BAL All All All
Typical 1.2 x 1.2 12 46 34
25% 25%
Units mm2 V/W V/C V/C mm mm deg deg % % k nV / Hz
Condition Tbb = 25C Full FOV Full FOV
3.5 2.5 100 85 > 70 <1 60 32
90% of energy 7.5m < < 13.5m 0 < < 5m Ta = 25C RMS, Ta = 25C Data Sheet Jun/04
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MLX90247 family
Discrete Infrared Thermopile Detectors
NEP Time constant Sensitivity TC Thermistor value Thermistor TC 1 Thermistor TC 2 Withstand ESD voltage All All All All All All DSA and DSL BAA and BAL 2.6 30 0.1 24 16 700 7000
30% 20%
nW / Hz ms % / C k ppm/C ppm/C2 V V
RMS, Ta = 25C
Ta = 25C typical
6500
NOTE: The thermistor resistance can be calculated using following expresion:
R(T ) = R(25o C ) 1 + TC1 (T - 25o C ) + TC2 (T - 25o C ) 2
[
]
Note: Due to the strong ESD protection BAA and BAL versions can only be used with CM (Common Mode) = 0V for IR outputs. When measuring resistances with an ohm meter, please take care that the internal protection diodes, as indicated in the functional diagram below, are always reverse biased (DSA and DSL versions).
Internal schematics
BAA and BAL
Thermopile 30 kOhm 1 220 Ohm 20 uV/K Not connected 220 Ohm 20 uV/K Not connected 220 Ohm 20 uV/K 1 220 Ohm 20 uV/K
DSA and DSL
Thermopile 30 kOhm
3 220 Ohm 30 kOhm
3 220 Ohm 30 kOhm
2 480 Ohm 24 kOhm
2 480 Ohm 24 kOhm
4 CASE
4 CASE
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors Absolute Maximum Ratings
Parameter Storage Temperature Range Applied DC voltage Applied DC voltage Version All BAA and BAL DSA and DSL BAA and BAL DSA and DSL -55 /150 -0.5 / 0.5 -0.5 / 12 -0.5 / 12 -0.5 / 12 Units C V V Pins 1 and 3 to ground (pin4) Pin 2 to ground (pin4) Exposure to absoluteRemark
Exceeding the absolute maximum ratings may cause permanent damage. maximum-rated conditions for extended periods may affect device reliability.
6. Unique features
Fully CMOS compatible process High reliability Suitable for automotive applications Extremely high ESD resistance: 7 kV Thermistor integrated in silicon edge of the sensor: closest possible following of sensor temperature
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors
7. Applications information
As shown in the internal schematics drawings in paragraph 5, the MLX90247BAA and BAL use a die with additional protection diodes for very high ESD performance. The configuration of the protection diodes is such that the MLX90247BAA and BAL can only be biased around ground potential. The output voltage of the thermopile is positive when the object is at higher temperature than the sensor; it is negative when the object is at lower temperature than the sensor. As the output voltage can become positive as well as negative, the sensor has to be connected to a differential amplifier that can accept both positive and negative common mode input signals. The figure below shows a solution using the MLX90313 infrared sensor interface chip, which accepts common mode input voltages in the range [-0.1V;Vdd-3V]
IR+ IRRsens VSS VDD IRINP IRINN TEMPOUT TINP TINN IROUT IROUT TEMPOUT C3 5V
MLX90247
MLX90313
CS SCLK SDI SDO REL1 CREF VSS VREFP CS SCLK DIN DOUT REL VREF VSS/GND R3
MLX90601KZA-CKA MLX90601KZA-CKD MLX90601KZA-CLA
R3 = 100k C3 = 10F
Using the MLX90247DSA or DSL, the ESD performance is lower, but there is the possibility to apply a non-zero bias voltage Vref to the thermopile. The figure below shows a typical application with the AD8628 low-offset low-drift differential opamp of Analog Devices. The AD8628 has single voltage supply, and can only accept positive common mode input signals. This application is not possible with the M:X90247BAA or BAL, as the BAA and BAL cannot be biased with Vref.
100 100k 5V
MLX90247DSA
AD8628
+
Vref 60k Vthermopile
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors 8. Reliability Information
Melexis Infrared sensors are sealed to withstand a fine and gross leak test according MIL883 Method 1014 (Seal) / JESD22-A109 (Hermeticity). Please contact Melexis for specific information using MLX90247 sensors in automotive applications.
9. ESD Precautions
Electronic semiconductor products are sensitive to Electro Static Discharge (ESD). Always observe Electro Static Discharge control procedures whenever handling semiconductor products.
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors
10.
Package information
Housing specifications (TO39) Metal cap TO39 header Filling gas Welded Au plating Nitrogen
Marking Part No MLX90247 MLX90247 MLX90247 MLX90247 Type DSA DSL BAA BAL Package Code SF(TO-39), 3,5mm SF(TO-39), 2,5mm SF(TO-39), 3,5mm SF(TO-39), 2,5mm MLX90247B PTC FO XXXZZ MLX90247H PTC FO XXXZZ MLX90247BAA YYWW MLX90247BAL YYWW Marking
XXX- last digits of lot number ZZ - wafer number YYWW - date code with YY- year, WW- week of assembly
Position of membrane in housing
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors
Package Outline
DSL and BAL
DSA and BAA
3901090247 Rev. 003
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Data Sheet Jun/04
MLX90247 family
Discrete Infrared Thermopile Detectors
11.
Disclaimer
Devices sold by Melexis are covered by the warranty and patent indemnification provisions appearing in its Term of Sale. Melexis makes no warranty, express, statutory, implied, or by description regarding the information set forth herein or regarding the freedom of the described devices from patent infringement. Melexis reserves the right to change specifications and prices at any time and without notice. Therefore, prior to designing this product into a system, it is necessary to check with Melexis for current information. This product is intended for use in normal commercial applications. Applications requiring extended temperature range, unusual environmental requirements, or high reliability applications, such as military, medical life-support or life-sustaining equipment are specifically not recommended without additional processing by Melexis for each application. The information furnished by Melexis is believed to be correct and accurate. However, Melexis shall not be liable to recipient or any third party for any damages, including but not limited to personal injury, property damage, loss of profits, loss of use, interrupt of business or indirect, special incidental or consequential damages, of any kind, in connection with or arising out of the furnishing, performance or use of the technical data herein. No obligation or liability to recipient or any third party shall arise or flow out of Melexis' rendering of technical or other services. (c) 2002 Melexis NV. All rights reserved.
For the latest version of this document, go to our website at:
www.melexis.com
Or for additional information contact Melexis Direct:
Europe and Japan:
Phone: +32 13 67 04 95 E-mail: sales_europe@melexis.com
All other locations:
Phone: +1 603 223 2362 E-mail: sales_usa@melexis.com
ISO/TS16949 and ISO14001 Certified
3901090247 Rev. 003
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Data Sheet Jun/04


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