IR Receiver Modules for Remote Control Systems

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1 IR Receiver Modules for Remoe Conrol Sysems MECHANICAL DATA 2 Pinning for TSOP44.., TSOP48..: = OUT, 2 = GND, 3 = V S Pinning for TSOP22.., TSOP24..: = OUT, 2 = V S, 3 = GND Please see he documen Produc Transiion Schedule a for up-o-dae info, when his produc will be released. FEATURES Low supply curren Phoo deecor and preamplifier in one package Inernal filer for PCM frequency Improved shielding agains EMI Supply volage: 2.5 V o 5.5 V Improved immuniy agains ambien ligh Insensiive o supply volage ripple and noise Maerial caegorizaion: For definiions of compliance please see DESCRIPTION These producs are miniaurized receivers for infrared remoe conrol sysems. A PIN diode and a preamplifier are assembled on a lead frame, he epoxy package acs as an IR filer. The demodulaed oupu signal can be direcly decoded by a microprocessor. The TSOP22.., TSOP48.. are compaible wih all common IR remoe conrol daa formas. The TSOP24.., TSOP44.. are opimized o suppress almos all spurious pulses from energy saving fluorescen lamps bu will also suppress some daa signals. This componen has no been qualified according o auomoive specificaions. PARTS TABLE STANDARD APPLICATIONS (AGC2) VERY NOISY ENVIRONMENTS (AGC4) CARRIER FREQUENCY PINNING = OUT, 2 = GND, 3 = V S = OUT, 2 = V S, 3 = GND = OUT, 2 = GND, 3 = V S = OUT, 2 = V S, 3 = GND 3 khz TSOP483 TSOP223 TSOP443 TSOP khz TSOP4833 TSOP2233 TSOP4433 TSOP khz TSOP4836 TSOP2236 TSOP4436 TSOP khz TSOP4838 TSOP2238 TSOP4438 TSOP khz TSOP484 TSOP224 TSOP444 TSOP khz TSOP4856 TSOP2256 TSOP4456 TSOP2456 BLOCK DIAGRAM APPLICATION CIRCUIT 6833_4 Inpu AGC Demo- dulaor Band pass 33 kω Transmier wih TSALxxxx IR receiver Circui V S OUT GND R C V O µc + V S GND PIN Conrol circui 2 The exernal componens R and C are opional o improve he robusness agains elecrical oversress (ypical values are R = Ω, C =. µf). Rev.., 4-Sep-2 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

2 ABSOLUTE MAXIMUM RATINGS PARAMETER TEST CONDITION SYMBOL VALUE UNIT Supply volage V S -.3 o + 6 V Supply curren I S 5 ma Oupu volage V O -.3 o 5.5 V Volage a oupu o supply V S - V O -.3 o (V S +.3) V Oupu curren I O 5 ma Juncion emperaure T j 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 mw Soldering emperaure s, mm from case T sd 26 C 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 condions 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 =, V S = 5 V I SD ma Supply curren E v = 4 klx, sunligh I SH ma Supply volage V S V Transmission disance Oupu volage low Minimum irradiance Maximum irradiance Direciviy E v =, es signal see fig., IR diode TSAL62, I F = 2 ma I OSL =.5 ma, E e =.7 mw/m 2, es signal see fig. Pulse widh olerance: pi - 5/f o < po < pi + 6/f o, es signal see fig. pi - 5/f o < po < pi + 6/f o, es signal see fig. Angle of half ransmission disance d 45 m V OSL mv E e min..2 5 mw/m 2 E e max. 5 W/m 2 ϕ /2 ± 45 deg TYPICAL CHARACTERISTICS (T amb = 25 C, unless oherwise specified) E e V O V OH Opical Tes Signal (IR diode TSAL62, I F = A, 3 pulses, f = f, = ms) pi * T * pi /f is recommended for opimal funcion Oupu Signal 6 ) 7/f < d < 5/f. 2) pi - 5/f < po < pi + 6/f po - Oupu Pulse Widh (ms) Oupu pulse widh Inpu burs lengh λ = 95 nm, opical es signal, Fig. V OL d ) po 2). E e - Irradiance (mw/m 2 ) Fig. - Oupu Acive Low Fig. 2 - Pulse Lengh and Sensiiviy in Dark Ambien Rev.., 4-Sep-2 2 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

3 E e V O V OH V OL Opical Tes Signal 6 µs 6 µs = 6 ms Oupu Signal, (see fig. 4) on off E e min. - Threshold Irradiance (mw/m 2 ) Correlaion wih ambien ligh sources: W/m 2 =.4 klx (Sd. ilum. A, T = 2855 K) W/m 2 = 8.2 klx (Dayligh, T = 59 K) Wavelengh of ambien illuminaion: λ = 95 nm.. E e - Ambien DC Irradiance (W/m 2 ) Fig. 3 - Oupu Funcion Fig. 6 - Sensiiviy in Brigh Ambien on, off - Oupu Pulse Widh (ms) on off. λ = 95 nm, opical es signal, Fig.. E e - Irradiance (mw/m 2 ) E e min. - Threshold Irradiance (mw/m 2 ) f = f f = khz f = khz ΔV S RMS - AC Volage on DC Supply Volage (mv) Fig. 4 - Oupu Pulse Diagram Fig. 7 - Sensiiviy vs. Supply Volage Disurbances.2 E e min. /E e - Rel. Responsiviy f = f ± 5 % Δ f(3 db) = f / f/f - Relaive Frequency Max. Envelope Duy Cycle f = 38 khz, E e = 2 mw/m² _3 TSOP24.. TSOP44.. TSOP22.. TSOP48.. Burs Lengh (Number of Cycles/Burs) Fig. 5 - Frequency Dependence of Responsiviy Fig. 8 - Max. Envelope Duy Cycle vs. Burs Lengh Rev.., 4-Sep-2 3 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

4 E e min. - Threshold Irradiance (mw/m 2 ) T amb - Ambien Temperaure ( C) Fig. 9 - Sensiiviy vs. Ambien Temperaure p2.6 d rel - Relaive Transmission Disance Fig. - Horizonal Direciviy S (λ) rel - Relaive Specral Sensiiviy λ- Wavelengh (nm) E e min. - Sensiiviy (mw/m 2 ) V S - Supply Volage (V) Fig. - Relaive Specral Sensiiviy vs. Wavelengh Fig. 2 - Sensiiviy vs. Supply Volage Rev.., 4-Sep-2 4 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

5 SUITABLE DATA FORMAT These producs are designed o suppress spurious oupu pulses due o noise or disurbance signals. Daa and disurbance signals can be disinguished by he devices according o carrier frequency, burs lengh and envelope duy cycle. The daa signal should be close o he band-pass cener frequency (e.g. 38 khz) and fulfill he condiions in he able below. When a daa signal is applied o he IR receiver in he presence of a disurbance signal, he sensiiviy of he receiver is reduced o insure ha no spurious pulses are presen a he oupu. Some examples of disurbance signals which are suppressed are: DC ligh (e.g. from ungsen bulb or sunligh) Coninuous signals a any frequency Modulaed IR signals from common fluorescen lamps (example of noise paern is shown in fig. 3 or fig. 4) IR Signal Time (ms) Fig. 3 - IR Signal from Fluorescen Lamp wih Low Modulaion IR Signal Time (ms) Fig. 4 - IR Signal from Fluorescen Lamp wih High Modulaion TSOP22.., TSOP48.. TSOP24.., TSOP44.. Minimum burs lengh cycles/burs cycles/burs Afer each burs of lengh a minimum gap ime is required of For burss greaer han a minimum gap ime in he daa sream is needed of o 7 cycles 2 cycles 7 cycles > 4 x burs lengh Noe For daa formas wih shor burss please see he daashee of TSOP23.., TSOP43.. o 35 cycles 2 cycles 35 cycles > x burs lengh Maximum number of coninuous shor burss/second 8 3 Recommended for NEC code yes yes Recommended for RC5/RC6 code yes yes Recommended for Sony code yes no Recommended for Thomson 56 khz code yes yes Recommended for Misubishi code (38 khz, preburs 8 ms, 6 bi) yes yes Recommended for Sharp code yes yes Suppression of inerference from fluorescen lamps Mos common disurbance signals are suppressed Even exreme disurbance signals are suppressed Rev.., 4-Sep-2 5 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

6 PACKAGE DIMENSIONS in millimeers (5.55) ±.5 5 max. 9.5 max..7 max nom nom marking area No indicaed olerances ± Drawing-No.: Issue: 9; R 2.5 echnical drawings according o DIN specificaions Rev.., 4-Sep-2 6 Documen Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

7 Legal Disclaimer Noice Vishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Inerechnology, Inc., is affiliaes, agens, and employees, and all persons acing on is or heir behalf (collecively, Vishay ), disclaim any and all liabiliy for any errors, inaccuracies or incompleeness conained in any daashee or in any oher disclosure relaing o any produc. Vishay makes no warrany, represenaion or guaranee regarding he suiabiliy of he producs for any paricular purpose or he coninuing producion of any produc. To he maximum exen permied by applicable law, Vishay disclaims (i) any and all liabiliy arising ou of he applicaion or use of any produc, (ii) any and all liabiliy, including wihou limiaion special, consequenial or incidenal damages, and (iii) any and all implied warranies, including warranies of finess for paricular purpose, non-infringemen and merchanabiliy. Saemens regarding he suiabiliy of producs for cerain ypes of applicaions are based on Vishay s knowledge of ypical requiremens ha are ofen placed on Vishay producs in generic applicaions. Such saemens are no binding saemens abou he suiabiliy of producs for a paricular applicaion. I is he cusomer s responsibiliy o validae ha a paricular produc wih he properies described in he produc specificaion is suiable for use in a paricular applicaion. Parameers provided in daashees and/or specificaions may vary in differen applicaions and performance may vary over ime. All operaing parameers, including ypical parameers, mus be validaed for each cusomer applicaion by he cusomer s echnical expers. Produc specificaions do no expand or oherwise modify Vishay s erms and condiions of purchase, including bu no limied o he warrany expressed herein. Excep as expressly indicaed in wriing, Vishay producs are no designed for use in medical, life-saving, or life-susaining applicaions or for any oher applicaion in which he failure of he Vishay produc could resul in personal injury or deah. Cusomers using or selling Vishay producs no expressly indicaed for use in such applicaions do so a heir own risk. Please conac auhorized Vishay personnel o obain wrien erms and condiions regarding producs designed for such applicaions. No license, express or implied, by esoppel or oherwise, o any inellecual propery righs is graned by his documen or by any conduc of Vishay. Produc names and markings noed herein may be rademarks of heir respecive owners. Maerial Caegory Policy Vishay Inerechnology, Inc. hereby cerifies ha all is producs ha are idenified as RoHS-Complian fulfill he definiions and resricions defined under Direcive 2/65/EU of The European Parliamen and of he Council of June 8, 2 on he resricion of he use of cerain hazardous subsances in elecrical and elecronic equipmen (EEE) - recas, unless oherwise specified as non-complian. Please noe ha some Vishay documenaion may sill make reference o RoHS Direcive 22/95/EC. We confirm ha all he producs idenified as being complian o Direcive 22/95/EC conform o Direcive 2/65/EU. Vishay Inerechnology, Inc. hereby cerifies ha all is producs ha are idenified as Halogen-Free follow Halogen-Free requiremens as per JEDEC JS79A sandards. Please noe ha some Vishay documenaion may sill make reference o he IEC definiion. We confirm ha all he producs idenified as being complian o IEC conform o JEDEC JS79A sandards. Revision: 2-Oc-2 Documen Number: 9

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