IR Receiver Module for Light Barrier Systems

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IR Receiver Module for Ligh Barrier Sysems DESIGN SUPPORT TOOLS 19026 click logo o ge sared FEATURES Up o 2 m for presence sensing Uses modulaed burss a 38 khz 940 nm peak wavelengh PIN diode and sensor IC in one package Low supply curren Shielding agains EMI Visible ligh is suppressed by IR filer Insensiive o supply volage ripple and noise Supply volage: 2.5 V o 5.5 V Maerial caegorizaion: for definiions of compliance please see www.vishay.com/doc?99912 Models Available MECHANICAL DATA Pinning: 1 = OUT, 2 = GND, 3 = V S DESCRIPTION The is a compac infrared deecor module for presence sensing applicaions. I receives 38 khz modulaed signals and has a peak sensiiviy of 940 nm. This componen has no been qualified according o auomoive specificaions. APPLICATIONS Reflecive sensors for hand dryers, owel or soap dispensers, waer fauces, oile flush Vending machine fall deecion Securiy and pe gaes Person or objec viciniy acivaion PARTS TABLE Carrier frequency 38 khz Package Minicas Pinning 1 = OUT, 2 = GND, 3 = V S Dimensions (mm) 5.0 W x 6.95 H x 4.8 D Mouning Leaded Applicaion Presence sensors BLOCK DIAGRAM PRESENCE SENSING 16833_8 +3 V 3 IR emier Inpu AMP Band pass Demodulaor 33 kω V S 1 OUT Envelope signal 38 khz +3 V PIN 2 GND Ou o μc Rev. 1.5, 12-Apr-18 1 Documen Number: 82479

ABSOLUTE MAXIMUM RATINGS PARAMETER TEST CONDITION SYMBOL VALUE UNIT Supply volage V S -0.3 o +6 V Supply curren I S 5 ma Oupu volage V O -0.3 o (V S + 0.3) V Oupu curren I O 5 ma Juncion emperaure T j 100 C Sorage emperaure range T sg -25 o +85 C Operaing emperaure range T amb -25 o +85 C Power consumpion T amb 85 C P o 10 mw Noe Sresses beyond hose lised under Absolue Maximum Raings may cause permanen damage o he device. This is a sress raing only and funcional operaion of he device a hese or any oher condiions beyond hose indicaed in he operaional secions of his specificaion is no implied. Exposure o absolue maximum raing condiions for exended periods may affec he device reliabiliy ELECTRICAL AND OPTICAL CHARACTERISTICS (T amb = 25 C, unless oherwise specified) PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT E v = 0, V S = 5 V I SD 0.55 ma Supply curren (pin 3) E v = 40 klx, sunligh I SH - - ma Supply volage V S 2.5-5.5 V Transmission disance Oupu volage low (pin 1) Minimum irradiance Maximum irradiance Direciviy E v = 0, es signal see fig. 1, IR diode TSAL6200, I F = 400 ma I OSL = 0.5 ma, E e = 2 mw/m 2, es signal see fig. 1 Pulse widh olerance: pi - 5/f o < po < pi + 6/f o, es signal see fig. 1 pi - 5/f o < po < pi + 6/f o, es signal see fig. 1 Angle of half ransmission disance d - 25 - m V OSL - - 100 mv E e min. - mw/m 2 E e max. 50 - - W/m 2 ϕ 1/2 - ± 45 - deg Rev. 1.5, 12-Apr-18 2 Documen Number: 82479

TYPICAL CHARACTERISTICS (T amb = 25 C, unless oherwise specified) E e V O V OH V OL Opical Tes Signal (IR diode TSAL6200, I F = A, 30 pulses, f = f 0, = 10 ms) pi * T * pi 10/f 0 is recommended for opimal funcion Oupu Signal 1) 7/f 0 < d < 15/f 0 2) pi - 5/f 0 < po < pi + 6/f 0 d 1) po 2) 16110 on, off - Oupu Pulse Widh (ms) 0.5 0.3 on off 0.1 λ = 950 nm, opical es signal, Fig. 3 0 0.1 1 10 100 1000 10 000 E e - Irradiance (mw/m 2 ) Fig. 1 - Oupu Acive Low Fig. 4 - Oupu Pulse Diagram po - Oupu Pulse Widh (ms) 0.5 0.3 0.1 Oupu pulse widh Inpu burs lengh λ = 950 nm, opical es signal, Fig. 1 1 10 100 1000 10 000 100 000 E e - Irradiance (mw/m 2 ) E e min. /E e - Relaive Responsiviy f = f 0 ± 5 % Δf(3 db) = f 0 /10 0.0 1.1 1.3 16925 f/f 0 - Relaive Frequency Fig. 2 - Pulse Lengh and Sensiiviy in Dark Ambien Fig. 5 - Frequency Dependence of Responsiviy E e V O V OH V OL Opical Tes Signal 600 µs 600 µs = 60 ms Oupu Signal, (see Fig. 4) on off 94 8134 E e min. - Threshold Irradiance (mw/m 2 ) 2.0 1.8 1.6 1.4 0-30 -10 10 30 50 70 90 T amb - Ambien Temperaure ( C) Fig. 3 - Oupu Funcion Fig. 6 - Sensiiviy vs. Ambien Temperaure Rev. 1.5, 12-Apr-18 3 Documen Number: 82479

S (λ) rel - Relaive Specral Sensiiviy 94 8408 0 750 850 950 1050 λ - Wavelengh (nm) 1150 19259 0 10 20 0 d rel - Relaive Transmission Disance 30 40 50 60 70 80 Fig. 7 - Relaive Specral Sensiiviy vs. Wavelengh Fig. 9 - Verical Direciviy 0 10 20 0 19258 d rel - Relaive Transmission Disance 30 40 50 60 70 80 E e min. - Sensiiviy (mw/m 2 ) 2.0 1.8 1.6 1.4 2 3 4 5 V S - Supply Volage (V) Fig. 8 - Horizonal Direciviy The ypical applicaion of his device is a reflecive or beam break sensor wih acive low deec or no deec informaion conained in is oupu. Applicaions requiring up o 2 m beam break or 1 m reflecive range benefi from he lower gain of hese sensors because hey are less sensiive o sray signal from he emier, simplifying he mechanical design. Fig. 10 - Sensiiviy vs. Supply Volage Example for a sensor hardware: Emier TSAL6200 Separaion o avoid crossalk by sray ligh inside he housing IR Receiver TSSP6P38 There should be no common window in fron of he emier and deecor in order o avoid crossalk via guided ligh hrough he window. Rev. 1.5, 12-Apr-18 4 Documen Number: 82479

PACKAGE DIMENSIONS in millimeers 5 4.8 (4) 2.8 R 2 30.5 ± 0.5 8.25 ± 0.3 6.95 ± 0.3 (5.55) (1.54) 1.1 5 max. 2.54 nom. max. 0.5 max. 2.54 nom. ± Marking area echnical drawings according o DIN specificaions Drawing-No.: 6.550-5263.01-4 Issue: 12; 16.04.10 19009 R 2 No indicaed o lerances ± Rev. 1.5, 12-Apr-18 5 Documen Number: 82479

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