PC511 SHARP | Alldatasheet

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SHARP ELEK/ MELEC OIV 15 D J 8180798 GoOzeb4 3 notocoupier PC511 nd T-H-83 PC511 Long creepage Distance Type Photocounler @ Features Outline Dimensions (Unit : mm) 1. Long creepage distance (12.3mm) Internal connection 2. Current transfer ratio diagram CTR: MIN. 10% at Ip=20mA, Vce=5V a D 3. Low collector dark current + —«} PKL (ceo: MAX. 10-7A at Vce=20V) | sco _| 4. High isolation voltage between input and output (Viso : 5,000Vrms) 5. Easy mounting on PWB 6. UL recognized, file No. E64380 TUV approved, No. R20044 Fl

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@ Applications i 1. Switching power supplies FA H 4 2. Programmable controllers Sl pes "0.45. 3. Electronic sewing machines, copiers, auto- 127 254 matic vending machines ~ 4, Electric home appliances, audio equipment @ Anode @ Collector @ Cathode @ Emitter @ Absolute Maximum Ratings (Ta=25°C) Parameter Unit [Forward current [ip [50 | ma nt A | Reverse voltage | Vn [6 TV | Power dissipation | P| 75 | mW | Collector-emitter voltage | Veeo | 35 | V output | —Eiitter-collector voltage | Veco [6 | _V | Collector current |e | 20m : ‘ mW “Isolation voltage [Vio | 5,000 | Vrms Operating temperature c Storage temperature °c “Soldering temperature | Tw. | 260 ‘| c #1 Pulse widthS100us, Duty ratio=0.001 *2 RH=40~60%, AC for 1 minute #3 For 5 seconds SHARP 290

SHARP ELEK/ MELEC Div LSE og 6180798 G0026b6S sf Photocoupler PC511 TL 83 er ™ Electro-optical Characteristics (Ta=25°C) Parameter Conditions Unit Forward voltage [Ve | 1-=20mA [12 |i] Vv Input [Peak forward voltage Vew | Trx=0.5A [30 | 40 | V me Ie | Ve=3V. [= | — | wo [ xa Output | Collector dark current | Tero | Ves=20V, Ie=0 | = | = | 107 | a Tp=40mA, Le=1mA [= | oi | oa |v Transfer | Isolation resistance | Riso _| DCSOOV, RH=40~60% [10 | 10 | — | a _ charac | Floating capacitance | C_|V=0, =1MHz [ — [| os [| — | pF teristics [Cutoff frequency | fe | Vee=2V, Te= ama, R=1000 | 12 [80 [= | ke Response time (Rise) [te | Wee=2V, Te=2mA [= | 3 | 2 | us [Response time (Fall) [tr | R.=1000 pa 0 as Temperature Ambient Temperature 60 i) a 3” = a |W] | i, q °C TNT ‘a Es E po tt AL 8 = oo | [| 1A} I z 2 2 N . * Pott EAI A s -t 1 | | i =25 0 25 50 5 100 -% 0 2 50 75 100 Ambient temperature Ta (‘C) Ambient temperature Ta (‘C) Fig. 3 Peak Forward Current vs. Duty Ratio Fig. 4 Forward Current vs. Forward Voltage ETHIE mew Free EEE Zoo ST cs "|g a te aC ee | | eee 5 sof He So tC 5 a 5 a // . z oof TT SST 3 =H PCL . eA | Re A

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SHARP ELEK/ MELEC DIV 15E D | 8180798 OO028bb :? i Photocoupier PC511 en 1-41-83 —— Fig. 5 Current Transfer Ratio vs. Forward Fig. 6 Collector Current vs. Current Collector-emitter Voltage s ei Oo vee ur sa rel SS I g u esha sof ETI 2 5 ce

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Br cnZ — 2 of f+} sma ff ft E 10 FR Soe Ecce SSS oO oLeer Tir TTT TTT . 010205 1 2 +5 10 20 50 100 Collector-emitter voltage Vee (V) Forward current Ip (mA) Fig. 7 Relative Current Transfer Ratio vs. Fig. 8 Collector-emitter Saturation Voltage Ambient Temperature vs. Ambient Temperature ad a % 020 & Te=20mA sg Ip=40mA 2 =a A Pi | tent ee os ee go | 4 re ee ee a —] a a gs Pps FE a i a a a z a ee a g 30 a A ee a a | gi fr se fe a A 3 0 2% 50 75 100 —25 0 ry 50 cy 100 . Ambient temperature Ta (‘C) Ambient temperature Ta (‘C) Fig. 9 Collector Dark Current vs. Fig. 10 Response Time vs. Load Resistance _, Ambient Temperature oe 50 FEE Ea ee a a = 0 WU am ice aati 2 —— 3 es a a SERRE See Ee ’ ,

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SHARP ELEK/ MELEC DIV 4Se D Bf 8180798 co02867 4 I Pnotocoupre PC511 a T-41-83 ——— Test Circuit for Response Time Fig. 11 Frequency Response f Pt UATINT AI ee Ta=25'C Input RE Output Input. ge 0 < < Sa he 2 LLANE | 10% @ 5 iN ‘ Ne IN rom 4 tin TMI | tall) ell 8-10 IN IN te Le sg \\ |

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“CCTM NIMINTN . NWI NI 5 1° 2 5 2 5 2 § Frequency f (Hz) Fig. 12 Collector-emitter Saturation Test Circuit for Frequency Response Voltage vs. Forward Current Cah hat Ta=25c Vee § wl ty a fT 9 2 f-9 > eal a Bate a

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