K3010 COSMO | Alldatasheet
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cosmo High Reliability Photo Coupler K3010 UL 1577 (File No.E169586) VDE 0884 / 0860 / 0805 (File No.101347) Features Outside Dimension : Unit (mm 1. Current transfer ratio re - % at IF=: = q iW cosmo (CTR:MIN.60% at IF=#1mA Vce=5V) 3010 2. High isolation voltage between input and output A 814 | pete cae (Viso:5000Vrms). ° on ne oo 3. Compact dual-in-line package. uo 4. Ac input, = 5. Available package : DIP/ SMD/ H. Lf b | ‘| ° 5 Applications 3 / an a3 4, Programmable Controller Applications for Low Input L\\ a Photocouplers and High Vceo Photocouplers. ae 1.00" TOLERANCE :+ 0.2mm 2. Telephone sets, telephone exchangers. . . 3. System appliances, Limit Switches, Sensors Thermostats and Schematic : Top View Transdusers etc. 4. Signal transmission between circuits of different potentials and 1. Anode, Cathode impedances. 1 4 2. Anode, Cathode 3. Emitter 2 3 4. Collector Absolute Maximum Ratings crass) [Parameter Symbot |Rating it Input | Forward current Pe mm [Peak forward current Pew at | Powerdissipation PP Output | Collectoremittervottage | oro | |__Emittercollectorvottage | eco | | Gollectorcurrent Pte ma [Collector power dissipation Pet mv [| Total powerissipaton fot | [ sedation voltage tminute TVs | 5000 |e [Operating temperature Tor | S0toet0 [Soldering temperature 10 second [el | 80 Electro-optical Characteristics cm250) [Parameter | Symbol [Conditions | MIN, | TYP | MAX. | Unit] | Forwardvoltage |e |e a0ma te tae | Peakforward voltage | Vem | ew=t0ba | S| | 30 |v [Terminal capacitance | tea tek | 80 | = [Output | Collectordark current [toto [Vor =aovir=o | ot Tua | Transter | Curentiransferratio | CTR | rst tmAVce=sv || — | 600 | % | charac- | Collector-emitter saturation vottage | Vee (sat) | ir=#20mAtc=ima | — | ot | 03 | Vv | teristics [Isolation resistance | Riso | Dcsoov, | xt] 40" | — | ohm | | Floating capacitance | ce] Veo feimie | = | 6 | 10 | or | Cutofffrequency | fe | Veo BV, Io=2ma,Ru=1000hm | — | eo | — | kt | | _Responsetime (Rise) | tr L=2V, lo: = | = | 5 | 20 | us | enema eo oe] ‘A033 © 2005-2006 COSMO ELECTRONICS CORPORATION http:/www.cosmo-ic.com
Classification table of current transfer ratio is Fig.1 Current Transfer Ratio vs. Fig.2 Collector Power Dissipation vs. shown below. Forward Current Ambient Temperature [Wedel NO. [Rank mark [CTR (x) _| eM Soo g™ 60 10 600 Boel HEE LEH Em © ine EH FH SH ¢ SEE i } oo Li oy 6 to IH I Boo ao 0 CZ et Forward Current iF (mA) Ambient Temperature Ta (°C) Ambient Temperature ‘Temperature Voltage et . ° SS oo LR 2° 2 1m (Awe | 4 a Ew a ee Zo Fa ELV a a | ee ss ee | i oe a1} _f 0 2 Say ——— ° a ee wee » LH TTT 1.0 L2 14 1.6 1.8 20 22 24 Ambient Temperature Ta (°C) Ambient Temperature Ta (°C) Forward Voltage VF (V) Fig.6 Collector Current vs. Collector- Fig.7 Relative Current Transfer Ratio Fig.8 Collector-emitter Saturation emitter Voltage 150 vs, Ambient Temperature Voltage vs. Ambient Temperature a | on rr oe Coe = LTT TTT) “Oeete] fe Ree) | ps hem re
3 TY 3 = Co ee
€ | 7c lm TT TT] 10 (Sr aor y = yp _ Ait eel a es aos ert UOT TTT BEEPS gS Cee & WT few TT oo ee ca wo 4 a Pe Coe i MTT al [| ioe es Bon 8 peep mld | ae LTT) (ESE SS te PEC a a) es » UTI TT TT) oy WS 0 se ee wT Collector-emitter Voltage Vce (V) Ambient Temperature Ta (°C) Ambient Temperature Ta (°C) Voltage vs. Forward Current Resistance Resistance CAT TT tawes 0 ean SSS yoo fee sseiiiesezeiii| :° OTT » | Ea, ERREEG » | SS Seay
2 HI Teee5" CFE ead Tae25"C FRE
PURE TT 2 Gee) Ieee i TRH eae |] || i 5 FESS Ft i > SH 3 an & EEE 3 SSSR eet meet 3 to =) Ge eA 2 aes TT + CC + EEC er (UU of COO ToT ot CCITT 4 ol 3 5 7 9 12 16 0.03 0.10205 12 5 10 0.03 0.10205 12 5 10 re rat Loni Km Lon asta Reh © 2005-2006 COSMO ELECTRONICS CORPORATION A034 http:/www.cosmo-ic.com