H11V2 ETC1 | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 3

Technical content

Photon Coupled Isolator H11V1, H11V2, H11V3 THE 8] GaAlAs Infrared Emitting Diode & Silicon , Integrated Circuit Video Signal Amplifier Satna The GE Solid State HIIV series consists of a high speed Ga Al As a ren * infrared emitting diode coupled across a glass isolating medium to a AAA photosensitive, high frequency, linear integrated circuit amplifier. The T ni input and output are matched to optimize video linearity at minimum ® 6 5 quiescent power. These devices are mounted in dual-in-line packages, “ {tt ms ‘These devices are also available in Surface-Mount packaging. TATAY/ FEATURES 1 tev O Hie FH High gain, typical transimpedence, 10002 MQ { fr « Low input current requirement, typical 3.5mA at 1.6V | Lo an a #0 to 1OMHz operating bandwidth a i | # 100mA peak output drive capability ! { of ° Low eo Power Dissipation Somwe | | Storage Temperature: aetae 1 owt om Forward Current 30mA 40°C to +100°C Tan REF. “oo Ref Reverse Voltage 6V_| | Operating Temperature: To | lo | ‘*Derate 1,67mW/°C above 70°C ambient -25°C to +80°C a | #13) 3 Lead Solder Temperature: i | i | S| te [inegsted creuteecor | {Sides 20°C #| 3) as) 3 Integrated Circult Detector Serge Testaion Valet we] | |S Power Dissipation 1somwe* 4000 VRMS SY) gs | 8) ts Vs allowed range Oto 16V . im | 38 | as |B Vo allowed range Oto 16V Steady Sem se OVENS a Output Current SomA STALLED posmon Lean cenrens, **Derate 5.0mW per °C above 70°C lege Mek unehenes ane uaSe enon tne searIva

4 Founpucss

INDIVIDUAL ELECTRICAL CHARACTERISTICS (26°C) Infrared Emitting Diode [min [typ | Mex. [units | Forward voltage (p= 5mA) 20 Vv Dynamic Resistance (I, = SmA) = Q Reverse Current (Va = SV) 10 HA Bas oT Capacitance (Vg = OV, IMH2) = pF. Infrared Circult Detector [Min. [ Typ. | Max. | Units | fou Si 5 ‘Operating Voltage Range 3 10 Vv Lp--4 Vas ‘Supply Current (Voc = 10V, Ry =, Ip = 0) - 60 mA ww KR Output Voltage (Vc = 10V, Ry = 3900, I, = 0) 0.25 0.75 v > COUPLED ELECTRICAL CHARACTERISTICS (25°C) (Veo= 10V,R,=3900, BlasCkt) | Min. | Typ. | Max. | Units | D.C, Output Voltage (I, = 3.5 mA) 20 | 40 | 70 |V A.C, Output Voltage (I = 3.5 mA, p= ImA pk-pk, IKH2) Hitvi | 0.50 | 090 | 125 | Vpk-pk Huv2| 0.75 | 100 | — | vpi-pk| Huiv3 | 0.33 | 0.80 — | Vpk-pk] Dynamic Output Impedence (I, = 3.5 mA, ip = ImA pk-pk, IKHz) — |] - la . Supply Current (Ip = 10 mA) — | 9 | — |ma 6db Down High Frequency (I, = 3.5 mA, ip = ImA pk-pk) — | 0 | — | Maz Short Circuit Output Current (Ip = 10 mA) — | 10 | — | ma Isolation Capacitance (Vig = 0, f= IMH2) — | 08 | 20 | pF Isolation Resistance (Via = 500' to | — | — ca ‘Covered under U.L. Component Recognition Program File E51868 @D VDE approved to 0883/6.80 01106 266 2793 p-02

-- ss weereeco 1 mmHAY TYPICAL CHARACTERISTICS c ray g 5 ee a Se sad Es a] [7 | Li en See eaene ss sess PSS ie ated a Hop tL a Seana ~ a Ay Oe LU TTT ar) ‘7 1a 1s 16 Vou Vp fad 0 100 ‘000 H11V INPUT CHARACTERISTICS H11V OUTPUT VOLTAGE vs. LOAD RESISTOR Peo oo e o s PER rr TT ae sell ial 01 | Lees] ie Ht mM LETTING a 4 ee ee a es | vectomreenot_ru ne H11V SUPPLY CURRENT vs. SUPPLY VOLTAGE H11V GAIN ROLLOFF ~ bd [| [ek | Yee 9 *5¥ 9 Veo #1 et ee on if PS ‘S00 gan Fe a a uaa oie smaenae “LAS a a a ° meer H11V TRANSFER CHARACTERISTICS TYPICAL VIDEO COMPOSITE COUPLING CIRCUIT ng

2794 D~03

e Surface-Mount Optoisolators ‘Surface-mount packaging for theentire 6-pin DIP opto- Ag isolator line! i Add the “SMA"or“SMB" suffix to any 6-pin optoisolator 8 part number when ordering. 1 DIMENSIONAL OUTLINE NO. 298 ny All Surtace-Mount Types a re P ? k | 4 ca + é Foster mal SE ‘SMB (Standard) ‘SMA (Low Profile) ‘Surface-Mount Package ‘Surface-Mount Package ympoL|—_INCHES [MILLIMETERS [wores Pmt aa a are —|wores [ain [WAR [MINT WAX} [Min [MaX_| wine | MAK] B 0.330 REF 6.38 REF 8 0.390 REF 8.38 REF a O45 0.135 292 343 R 0115 0.195 2.92 343 s |o24 | 02 | cto | oss 8 oz | o27 | eto | 66 Coplan- Coptan- caine coro 1. Coplanarity the distance from a plane, defined by the end of 1. Coplanarity is the distance from a plane, defined by the end of the three longest legs to the end of the shortest leg. ‘the three longest legs to the end of the shortest leg. 413° 2920 F-03