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PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT DESCRIPTION The M61016F is a semiconductor integrated circuit designed to detect quantity of light and used for cameras and illuminometers. Because a high-sensitivity SPD sensor is built in this IC, it is possible not only to reduce the space and expenses to mount it but also to conduct wide-ranging detection of light volume. 1 PIN CONFIGURATION (TOP VIEW) GND CS1 CS2 4 VCC N.C. N.C. VOUT 8 FEATURES * A 2-channel SPD sensor is built in.(1-channel for spot and one for average) * Wide-ranging detection of light volume. * One output pin (thermometer output and photometry output) * Small-sized transparent molded plastic package. SEL 5 5mm APPLICATION Automatic exposure control for cameras,illuminometers. RECOMMENDED OPERATING CONDITION Supply voltage range * * * * * * * * * * * * * * * * * * 4.0 to 6.5V Rated supply voltage * * * * * * * * * * * * * * * * * * * * * * 5V * Light input range * * * * * * * * * * * SPOT 2 to 100000 lux AVE 0.125 to 12500 lux * Decide after confirmation of real power BLOCK DIAGRAM CS1 VCC GND AVE SPD SW2 SPOT SPD SW1 TEMPERATURE COMPENSATION SW3 GAIN x7 VOUT 500nA CONSTANT CURRENT CS2 THERMOMETER CIRCUIT SW4 1.1 V (T-PROPORTIONAL VOLTAGE) SEL MITSUBISHI ( 1/8) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT (Ta=25C, unless otherwise noted) Conditions Ratings -0.3 to 7.0 150 Pin VOUT -0.3 to VCC+0.3 0.2 -10 to 50 -30 to 85 -2.5 ABSOLUTE MAXIMUM RATINGS Symbol VCC Pd VIN IO(max) Topr Tstg K Parameter Supply voltage Power dissipation Input voltage Output current Operating temperature Storage temperature Thermal derating Unit V mW V mA C C mW/C RECOMMENDED OPERATING CONDITION Symbol VCC Lopr1 * * Lopr2 Parameter Supply voltage Operating illuminance " SP " Operating illuminance " AVE " (Ta=25C, unless otherwise noted) Test Conditions Min 4.0 2 to 100000 Limits Typ 5.0 Max 6.5 Unit V lux lux 0.125 to 12500 * Decide after confirmation of real power THERMAL DERATING (MAXIMUM RATING) 200 SENSOR FORM Unit : m POWER DISSIPATION Pd (mW) 180 150 - 2.5 mW/C 450 200 140 50 50 6 50 280 280 78 200 140 6 50 78 78 6 SPOT 200 AVE 50 200 750 1500 25 50 60 75 85 100 AMBIENT TEMPERATURE Ta (C) Area ratio SPOT : AVE = 1 : 16 MITSUBISHI (2/8) 78 100 900 6 PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT ELECTRICAL CHARACTERISTICS Block Symbol ICC (Ta=25C, light source 4500K, illuminance: measured after transmitting products through CM 500 filter, unless otherwise noted) Parameter Circuit current Test Conditions illuminance: 200 lux Limits Min Typ 4 Max 6 Unit mA - VTHCS1 CS1I I/F VTHCS2 CS2I VHSEL SELI Threshold voltage 1 Ground current 1 Threshold voltage 2 Ground current 2 Threshold voltage 3 Ground current 3 CS1 input pin Current of between CS1pin to GND VCC = 5V CS2 input pin Current of between CS2pin to GND VCC = 5V SEL input pin Current of between SELpin to GND VCC = 5V VCC-2.2 VCC-1.5 VCC-0.8 -150 -50 -16 V A V A V A VCC-2.2 VCC-1.5 VCC-0.8 -150 -50 -16 VCC-2.2 VCC-1.5 VCC-0.8 -150 -50 -16 VTE Thermo -meter Absolute value of thermometer output 960 -45 -45 -20 -24.3 1200 1440 45 mV 45 20 -19.9 mV/C dVTE1 Thermometer supply voltage variance 1 Output voltage variance at VCC=5V+1V dVTE2 Thermometer supply voltage variance 2 Output voltage variance at VCC=5V-1V dVTE3 dVTE4 Thermometer output voltage load variance -22.1 Load current : - 0.2mA Variance of thermometer output VOS dVOS1 dVOS2 SPOT dEVS1 dEVS2 dEVS3 Absolute value of photometry output Photometry output supply voltage variance 1 Photometry output supply voltage variance 2 SP side , illuminance 8 lux 2120 -45 -45 -134 -0.3 -0.5 2440 2760 45 45 -116 0.3 EV 0.5 mV SP side ,Output voltage variance at VCC=5V+1V SP side ,Output voltage variance at VCC=5V-1V SP side ,Variance when illuminance changes from 8 to 32 -125 Variance per level (1EV) Photometry output linearity 1 Photometry output linearity 2 SP side ,illuminance 4 to * lux SP side ,illuminance 2 to 4 lux 1940 VOA dVOA1 dVOA2 AVE dEVA1 dEVA2 dEVA3 Absolute value of photometry output Photometry output supply voltage variance 1 Photometry output supply voltage variance 2 AVE side ,illuminance 8 lux 1680 -45 -45 -134 -0.3 -0.5 2200 45 mV 45 -116 0.3 0.5 EV AVE side ,Output voltage variance at VCC=5V+1V AVE side ,Output voltage variance at VCC=5V-1V AVE side ,Variance when illuminance changes from 8 to 32 -125 Variance per level (1EV) Photometry output linearity 1 Photometry output linearity 2 AVE side ,illuminance 0.25 to * lux AVE side ,illuminance 0.125 to 0.25 lux - trs Response tra trc1 trc2 Power supply response 1 Power supply response 2 Switching response 1 Switching response 2 SP side , illuminance AVE side , illuminance SP AVE AVE , illuminance SP , illuminance 2 lux 0.5 lux 0.125 to 12500 lux 2 to 100000 lux - 5 20 10 10 20 50 3000 3000 ms S * Decide after confirmation of real power MITSUBISHI (3/8) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT I/O SYSTEM 8 VCC 7 6 5 GND 1 2 3 4 EXAMPLE 1 GND Vcc 8 N.C. 7 H L H L H L 2 CS1 3 CS2 4 SEL N.C. 6 VOUT 5 To AD Light condition at electric characteristics IR cutoff filter : CM500S(Glass filter) Light source color temperature : 4500K LIGHT IR cutoff filter (CM500S) Luminance definition surface IC MITSUBISHI (4 / 8 ) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT PIN EXPLANATION Input Pin 2PIN : CS1pin 3PIN : CS2pin Photo sensor ,AVE and SPOT is switched by CS1,2. 4PIN : SELpin Photometry output and thermometer output is switched. Switching Function Input Select output CS1 (2PIN) CS2 (3PIN) SEL (4PIN) VOUT (5PIN) H L H L H L H L H H L L H H L L H H H H L L L L SPOT Prohibition of inputting Photometry output Thermometer output AVE note : Prohibiting to select SPOT and AVE at once VOUTpin / output switching thermometer output and photometry output voltage. Thermometer output Photometry output Thermometer output voltage 1200mV (at 25CTYP) Variance of 1EV = - 125mVTYP (Variance when illuminance is two times and half times) VOUT=gain*{(VT*ln(Is cancel /ISPD) }+VK ****** (At photometry output mode) VOUT=gain*{Vin - (273+Ta) / 298 * VK } ****** (At thermometer output mode) VK=1100mV (VK amp.output voltage / Absolute temperature proportional) Vin = 1150mV ****** (Absolute temperature constant) VT=25.7mV at 25C ****** (Absolute temperature proportional) Is cancel=500nA gain= x 7 ISPD=Sensor current=55nA/mm2 at 100 lux (At equipping with IR filter) 1EV=-125mV Ta = Ambient temperature (C) MITSUBISHI (5 /8) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT OUTPUT CHARACTERISTICS THERMOMETER OUTPUT MODE 3.0 Characteristics of thermometer output -temperature 2.5 Thermometer output VOUT [V] 2.0 1.5 1.0 Absolute value Vout=1.2V (at Ta=25C) Slope -22 mV/C 0.5 0.0 -40 -30 -20 -10 0 10 20 30 40 50 60 70 AMBIENT TEMPERATURE Ta (C) PHOTOMETRY OUTPUT MODE 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0.0 0.01 0.1 1 10 100 1000 10000 1E+05 ILLUMINANCE (LX) AVE SPOT PHOTOMETRY OUTPUT VOLTAGE (V) ABSOLUTE VALUE OF OF ABSOLUTE VALUE PHOTOMETRY OUTPUT PHOTOMETRY OUTPUT PHOTOMETRY OUTPUT DEFLECTION (EV) 1.0 PHOTOMETRY OUTPUT DEFLECTION 0.5 0.0 AVE SPOT -0.5 -1.0 0.01 0.1 1 10 100 1000 10000 1E+05 ILLUMINANCE (LX) MITSUBISHI (6/8) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT PHOTOMETRY OUTPUT VOLTAGE * Photometry output voltage is proportioned to absolute temperature. * Photometry output voltage is converted into 25C. * Ambient temperature : Ta (K) Photometry output voltage at ambient temperature: set VO Conversion formula Vo Photometry output voltage of conversion at 25C = Ta Conversion error range x 298K + 0.4EV (-15 to 40C) MITSUBISHI (7/8) PRELIMINARY MITSUBISHI ICS M61016F BUILT-IN 2-CHANNEL SPD SENSOR DETECT AMOUNT OF LIGHT Note regarding these materials * These materials are intended as reference to assist our customers in the selection of the Mitsubishi semiconductor product best suited to the customer's application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Mitsubishi Electric Corporation or a third party. * Mitsubishi Electric Corporation assumes no responsibility for any damage, or infringement of any third-party's right,originating in the use of any product data, diagrams, charts of circuit application examples contained in these materials. * All information contained in these materials, including product data, diagrams and charts, represent information on products at the time of publication of these materials, and are subject to change by Mitsubishi Electric Corporation without notice due to product improvements or other reasons. It is therefore recommended that customers contact Mitsubishi Electric Corporation or an authorized Mitsubishi Semiconductor product distributor for the latest product information before purchasing a product listed herein. * Mitsubishi Electric Corporation semiconductors are not designed or manufactured for use in a device or system that is used under circumstances in which human life is potentially at stake. Please contact Mitsubishi Electric Corporation or an authorized Mitsubishi Semiconductor product distributor when considering the use of a product contained herein for special applications, such as apparatus or systems for transportation, vehicular, medical, aerospace, nuclear repeater use. * The prior written approval of Mitsubishi Electric Corporation is necessary to reprint or reproduce in whole or in part these materials. * If these products or technologies are subject to the Japanese export control restrictions, they must be exported under license from the Japanese government and cannot be imported into a country other than the approved destination. Any diversion or reexport contrary to the export control laws and regulations of Japan and/or the country of destination is prohibited. * Please contact Mitsubishi Electric Corporation or an authorized Mitsubishi Semiconductor product distributor for further details on these materials or the products contained therein. MITSUBISHI (8/8) |
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