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Type TSOP1230XG1 TSOP1236XG1 TSOP1238XG1 TSOP1256XG1 Type TSOP1233XG1
Top Searches for this datasheetTSOP12.XG1 Type TSOP1230XG1 TSOP1236XG1 TSOP1238XG1 TSOP1256XG1 Type TSOP1233XG1 TSOP1237XG1 TSOP1240XG1 36.7 Description TSOP12.XG1 series miniaturized receivers infrared remote control systems. diode preamplifier assembled lead frame, epoxy package designed filter. demodulated output signal directly decoded microprocessor. main benefit reliable function even disturbed ambient protection against uncontrolled output pulses. 12595 Features Photo detector preamplifier package Internal filter frequency Improved shielding against electrical field disturbance CMOS compatibility Output active power consumption Suitable burst length cycles/burst Special Features Enhanced immunity against kinds disturbance light occurrence disturbance pulses output Block Diagram Input Control Circuit Band Pass Demodulator 8136 Document Number 82023 Rev. 07-Mar-00 www.vishay.de FaxBack +1-408-970-5600 TSOP12.XG1 Vishay Telefunken Absolute Maximum Ratings Tamb 25_C Parameter Supply Voltage Supply Current Output Voltage Output Current Junction Temperature Storage Temperature Range Operating Temperature Range Power Consumption Soldering Temperature Test Conditions (Pin (Pin (Pin (Pin Symbol Tstg Tamb Ptot Value -0.3.6.0 -0.3.6.0 -25.+85 -25.+85 Unit (Tamb Basic Characteristics Tamb 25_C Parameter Supply Current (Pin Supply Voltage (Pin Transmission Distance Output Voltage (Pin Irradiance kHz) Test Conditions klx, sunlight test signal fig.7, diode TSAL6200, IOSL mA,Ee mW/m2, tp/T Pulse width tolerance: 5/fo 6/fo, test signal fig.7 Pulse width tolerance: 5/fo 6/fo, test signal fig.7 5/fo 6/fo Angle half transmission distance Symbol VOSL 0.35 Unit mW/m2 Irradiance kHz) mW/m2 Irradiance Directivity W/m2 Application Circuit TSOP12. TSAL62. optional 12844 recommended suppress power supply disturbances www.vishay.de FaxBack +1-408-970-5600 Document Number 82023 Rev. 07-Mar-00 TSOP12.XG1 Vishay Telefunken Suitable Data Format circuit TSOP12.XG1 designed that that unexpected output pulses noise disturbance signals avoided. bandpassfilter, integrator stage automatic gain control used suppress such disturbances. distinguishing mark between data signal disturbance signal carrier frequency, burst length duty cycle. data signal should fullfill following condition: Carrier frequency should close center frequency bandpass (e.g. 38kHz). Burst length should cycles/burst longer. After each burst which between cycles cycles time least cycles neccessary. each burst which longer than 1.8ms corresponding time necessary some time data stream. This time should least times longer than burst. short bursts second received continuously. Some examples suitable data format are: Code (repetitive pulse), Code (repetitive data), Toshiba Micom Format, Sharp Code, Code, Code, R-2000 Code. When disturbance signal applied TSOP12.XG1 still receive data signal. However sensitivity reduced that level that unexpected pulses will occure. Some examples such disturbance signals which suppressed TSOP12.XG1 are: light (e.g. from tungsten bulb sunlight) Continuous signal 38kHz other frequency Signals from fluorescent lamps with electronic ballast with high modulation (see Figure Figure time [ms] Figure Signal from Fluorescent Lamp with Modulation time Figure Signal from Fluorescent Lamp with high Modulation Document Number 82023 Rev. 07-Mar-00 www.vishay.de FaxBack +1-408-970-5600 TSOP12.XG1 Vishay Telefunken Typical Characteristics (Tamb 25_C unless otherwise specified) Threshold Irradiance mW/m2 Rel. Responsitivity 8143 Relative Frequency 8147 Field Strength Disturbance Figure Frequency Dependence Responsivity Output Pulse Length (ms) 12841 Figure Sensitivity Electric Field Disturbances Input burst duration Threshold Irradiance mW/m2 optical test signal, fig.7 10.0 100.0 1000.0 10000.0 mW/m2 9106 0.01 1000 Irradiance Voltage Supply Voltage Figure Sensitivity Dark Ambient 0.01 0.10 1.00 10.00 100.00 Ambient, Correlation with ambient light sources Disturbance effect 10W/m2 Stand.illum.A, 2855 Daylight, 5900 Figure Sensitivity Supply Voltage Disturbances Sensitivity dark ambient Threshold Irradiance (mW/m2 12111 Irradiance (W/m2) Threshold Irradiance (mW/m2 12112 Tamb Ambient Temperature Figure Sensitivity Bright Ambient www.vishay.de FaxBack +1-408-970-5600 Figure Sensitivity Ambient Temperature Document Number 82023 Rev. 07-Mar-00 TSOP12.XG1 Optical Test Signal diode TSAL6200, pulses, Output Pulse Length (ms) optical test signal, fig.8 10/fo recommended optimal function 16110 Toff Output Signal 7/f0 15/f0 6/f0 tpo2 10.0 100.0 1000.0 10000.0 12843 Irradiance (mW/m2) Figure Output Function Optical Test Signal Supply Current Figure Output Pulse Diagram 8134 Output Signal, Fig.10 Toff 12115 Tamb Ambient Temperature Figure Output Function Envelope Duty Cycle 16153 Figure Supply Current Ambient Temperature 8408 Relative Spectral Sensitivity 1050 1150 Burstlength [number cycles/burst] Wavelength Figure Max. Envelope Duty Cycle Burstlength Figure Relative Spectral Sensitivity Wavelength Document Number 82023 Rev. 07-Mar-00 www.vishay.de FaxBack +1-408-970-5600 TSOP12.XG1 11339p2 11340p2 drel Relative Transmission Distance drel Relative Transmission Distance Figure Vertical Directivity Figure Horizontal Directivity www.vishay.de FaxBack +1-408-970-5600 Document Number 82023 Rev. 07-Mar-00 TSOP12.XG1 Vishay Telefunken Dimensions 12224 Document Number 82023 Rev. 07-Mar-00 www.vishay.de FaxBack +1-408-970-5600 TSOP12.XG1 Vishay Telefunken Ozone Depleting Substances Policy Statement policy Vishay Semiconductor GmbH Meet present future national international statutory requirements. Regularly continuously improve performance products, processes, distribution operating systems with respect their impact health safety employees public, well their impact environment. particular concern control eliminate releases those substances into atmosphere which known ozone depleting substances ODSs Montreal Protocol 1987 London Amendments 1990 intend severely restrict ODSs forbid their within next years. Various national international initiatives pressing earlier these substances. Vishay Semiconductor GmbH been able policy continuous improvements eliminate ODSs listed following documents. Annex list transitional substances Montreal Protocol London Amendments respectively Class ozone depleting substances Clean Amendments 1990 Environmental Protection Agency Council Decision 88/540/EEC 91/690/EEC Annex transitional substances respectively. Vishay Semiconductor GmbH certify that semiconductors manufactured with ozone depleting substances contain such substances. reserve right make changes improve technical design without further notice. Parameters vary different applications. operating parameters must validated each customer application customer. Should buyer Vishay-Telefunken products unintended unauthorized application, buyer shall indemnify Vishay-Telefunken against claims, costs, damages, expenses, arising directly indirectly, claim personal damage, injury death associated with such unintended unauthorized use. Vishay Semiconductor GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany Telephone: 7131 2831, number: 7131 2423 www.vishay.de FaxBack +1-408-970-5600 Document Number 82023 Rev. 07-Mar-00 Other recent searchesRF3158 - RF3158 RF3158 Datasheet QSC133 - QSC133 QSC133 Datasheet MC145576EVK - MC145576EVK MC145576EVK Datasheet HI5905 - HI5905 HI5905 Datasheet FN4259 - FN4259 FN4259 Datasheet BT1657CS - BT1657CS BT1657CS Datasheet 7SB385 - 7SB385 7SB385 Datasheet
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