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Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 14

Technical content

Features

  • Compliance Halogen Free . (Br <900 ppm ,Cl <900 ppm , Br+Cl < 1500 ppm)
  • High speed 10Mbit/s
  • 10kV/ µs minimum commone mode transient immunity at VCM= 1KV (HCPL0611)
  • Guaranteed performance from -40 to 85
  • Wide operating temperature range of -40° C to 100° C
  • Logic gate output
  • High isolation voltage between input and output (Viso=3750 V rms )
  • Compliance with EU REACH
  • Pb free and RoHS compliant.
  • UL and cUL approved(No. E214129)
  • VDE approved (No. 40028116)
  • SEMKO approved
  • NEMKO approved
  • DEMKO approved
  • FIMKO approved

Description

The EL0600, EL0601 and EL0611 devices each consists of an infrared emitting diode optically coupled to a high speed integrated photo detector logic gate with a strobable output. The devices are packaged in an 8-pin small outline package which conforms to the standard SO8 footprint.

Applications

  • Ground loop elimination
  • LSTTL to TTL, LSTTL or 5 volt CMOS
  • Line receiver, data transmission
  • Data multiplexing
  • Switching power supplies
  • Pulse transformer replacement
  • Computer peripheral interface
  • High speed logic ground isolation Input Enable Output H H L L H H H L H L L H H NC L L NC H Schematic 8 1 Truth Table (Positive Logic) A 0.1 µF bypass capacitor must be connected between pins 8 and 5 *3 Pin Configuration 1, No Connection 2, Anode 3, Cathode 4. No Connection 5, Gnd 6, Vout 7, V E 8, V CC

8 PIN SOP HIGH SPEED 10MBit/s LOGIC GATE

Absolute Maximum Ratings (Ta=25 )℃℃℃℃ Parameter Symbol Rating Unit Input Forward current I F 20 mA Enable input voltage Not exceed V CC by more than 500mV VE 5.5 V Reverse voltage VR 5 V Power dissipation PD 40 mW Output Power dissipation PC 85 mW Enable input current IE 5 mA Output current IO 50 mA Output voltage VO 7.0 V Output Power Dissipation PO 100 mW Isolation voltage *1 V ISO 3750 V rms Operating temperature TOPR -40 ~ +100 ° C Storage temperature TSTG -55 ~ +125 ° C Soldering temperature *2 T SOL 260 ° C Notes: For 10 seconds.

Electrical Characteristics ( Ta= -40 to 85° C unless specified otherwise ) Input Parameter Symbol Min. Typ. Max. Unit Condition Forward voltage VF - 1.4 1.8 V IF = 10mA Reverse voltage VR 5.0 - - V IR = 1 0 µA Temperature coefficient of forward voltage ∆ V F/∆ TA - -1.8 - mV/° C IF =10mA Input capacitance CIN - 60 - pF VF=0, f=1MHz Output Parameter Symbol Min Typ. Max. Unit Condition High level supply current I CCH - - 10 mA IF=10mA, V E=0.5V, VCC =5.5V Low level supply current I CCL - - 13 mA IF=0mA, V E=0.5V, VCC =5.5V High level enable current I EH - - -1.6 mA VE=2.0V, V CC =5.5V Low level enable current I EL - - -1.6 mA VE=0.5V, V CC =5.5V High level enable voltage V EH 2.0 - - V IF=10mA, V CC =5.5V Low level enable voltage *4 VEL - - 0.8 V IF=10mA, V CC =5.5V Transfer Characteristics (Ta=-40 to 85° C unless specified otherwise) Parameter Symbol Min Typ. Max. Unit Condition HIGH Level Output Current I OH - - 100 uA VCC =5.5V, V O=5.5V, IF=250 µA, V E=2.0V LOW Level Output Current V OL - - 0.6 V VCC = 5.5V, I F=5mA, VE=2.0V,I CL =13mA Input Threshold Current I FT - - 5 mA VCC = 5.5V, V O=0.6V, VE =2.0V,I OL=13mA

Switching Characteristics (T a=-40 to 85° C, V CC =5V, I F=7.5mA unless specified otherwise) Parameter Symbol Min Typ. Max. Unit Condition Propagation delay time to output High level* 5 (Fig.12) TPHL - 35 75 ns CL = 15pF, R L=350 Ω, TA=25° C Propagation delay time to output Low level* 6 (Fig.12) TPLH - 45 75 ns CL = 15pF, R L=350 Ω, TA=25° C Pulse width distortion |Tphl – Tplh| - 10 35 ns CL = 15pF, R L=350 Ω Output rise time* 7 (Fig.12) tr - 30 40 ns CL = 15pF, R L=350 Ω Output fall time* 8 (Fig.12) tf - 10 20 ns CL = 15pF, R L=350 Ω Switching Characteristics (Ta=-40 to 85° C, V CC =5V, I F=7.5mA unless specified otherwise) Parameter Symbol Min Typ. Max. Unit Condition Enable Propagation Delay Time to Output High Level* (Fig.13) tELH - 30 40 ns IF = 7.5mA , V EH =3.5V, CL = 15pF, R L=350 Ω Enable Propagation Delay Time to Output Low Level* (Fig.13) tEHL - 20 30 ns IF = 7.5mA , V EH =3.5V, CL = 15pF, R L=350 Ω Common Mode Transient Immunity at Logic High *11 EL0600 CM H - - - V/µS IF = 7.5mA , V OH =2.0V, RL=350 Ω, TA=25° C VCM =10Vp-p (Fig.14) EL0601 5,000 - - IF = 7.5mA , V OH =2.0V, RL=350 Ω, TA=25° C VCM =50Vp-p (Fig.14) EL0611 10,000 - - IF = 7.5mA , V OH =2.0V, RL=350 Ω, TA=25° C VCM =400Vp-p (Fig.14) EL0611 15,000 - - IF = 7.5mA , V OH =2.0V, RL=350 Ω, TA=25° C VCM =400Vp-p (Fig.15) Common Mode Transient Immunity at Logic Low *12 EL0600 CM L - - - V/µS IF = 0mA , V OL =0.8V, RL=350 Ω, TA=25° C VCM =10Vp-p (Fig.14) EL0601 5,000 IF = 0mA , V OL =0.8V, RL=350 Ω, TA=25° C VCM =50Vp-p (Fig.14) EL0611 10,000 - - IF = 0mA , V OL =0.8V, RL=350 Ω, TA=25° C VCM =400Vp-p (Fig.14) EL0611 15,000 - - IF = 7.5mA , V OL =0.8V, RL=350 Ω, TA=25° C VCM =400Vp-p (Fig.15)

Typical Electro -Optical Characteristics Curves

Fig. 12 Test circuit and wavef orms for tPHL, tPLH, tr, and tf Ω Ω Fig. 13 Test circuit and waveform for t EHL and t ELH Ω 10% 90% Output (Vo) Output (Vo) Input (I F) IF=7.5mA IF=3.75mA 1.5V tr tf tPLH tPHL Output (Vo) Input (VE) 3.0V 1.5V 1.5V tELH tEHL

Fig. 14 Test circuit Common mode Transient Immunity Ω Fig. 15 Recommended drive circuit for EL0611 families for high-CMR μ Ω Switching Pos. (B), I F=7.5mA Switching Pos. (A), I F=0 CM L CM H VO(Min) VO(Max) Peak VCM Vo VCM 0.5V

*3 The VCC supply must be bypassed by a 0.1 µF capacitor or larger. This can be either a ceramic or solid tantalum capacitor with good high frequency characteristic and should be connected as close as possible to the package VCC and GND pins *4. Enable Input – No pull up resistor required as the device has an internal pull up resistor. *5. tPLH – Propagation delay is measured from the 3.75mA leve l on the HIGH to LOW transition of the input current pulse to the 1.5 V level on the LOW to HIGH transition of the output voltage pulse. *6. tPHL – Propagation delay is measured from the 3.75mA leve l on the LOW to HIGH transition of the input current pulse to the 1.5 V level on the HIGH to LOW transition of the output voltage pulse. *7. tr – Rise time is measured from the 90% to the 10% leve ls on the LOW to HIGH transition of the output pulse. *8. tf – Fall time is measured from the 10% to the 90% leve ls on the HIGH to LOW transition of the output pulse. *9. tELH – Enable input propagation delay is measured from th e 1.5V level on the HIGH to LOW transition of the input voltage pulse to the 1.5V level on the LOW to HIGH transition of the output voltage pulse. *10. tEHL – Enable input propagation delay is measured from th e 1.5V level on the LOW to HIGH transition of the input voltage pulse to the 1.5V level on the HIGH to LOW transition of the output voltage pulse. *11 CMH– The maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the HIGH state (i.e., VOUT > 2.0V). *12 CML– The maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the LOW output state (i.e., VOUT < 0.8V). Order Information Part Number EL06XX(Z)-V Note X = Part no. ( X = 00, 01 or 11) Z = Tape and reel option (TA, TB or none). V = VDE (optional) Option Description Packing quantity None Standard 100 units per tube -V Standard + VDE 100 units per tube (TA) TA tape & reel option 2000 units per reel (TB) TB tape & reel option 2000 units per reel (TA)-V TA tape & reel option + VDE 2000 units per reel (TB)-V TB tape & reel option + VDE 2000 units per reel

(Dimensions in mm) Recommended pad layout for surface mount leadform

0600 denotes Device Number Y denotes 1 digit Year code WW denotes 2 digit Week code V denotes VDE (optional) EL 0600 YWW V

Tape & Reel Packing Specifications Tape dimension Dimension No. A0 A1 B0 D0 D1 E F Dimension No. Po P1 P2 t W K0 K1 Option TA Option TB Direction of feed from reel Direction of feed from reel

  1. Soldering Condition 1.1 (A) Maximum Body Case Temperature Profile for evaluation of Reflow Profile Note: Reference: IPC/JEDEC J -STD-020D Preheat Temperature min (T smin ) 150 ° C Temperature max (T smax ) 200° C Time (T smin to T smax ) (t s) 60 -120 seconds Average ramp -up rate (T smax to T p) 3 ° C/second max Other Liquidus Temperature (T L) 217 ° C Time above Liquidus Temperature (t L) 60 -100 sec Peak Temperature (T P) 260° C Time within 5 ° C of Actual Peak Temperat ure: T P - 5° C 30 s Ramp - Down Rate from Peak Temperature 6° C /second max. Time 25° C to peak temperature 8 minutes max. Reflow times 3 times
  1. Above specification may be changed without notic e. EVERLIGHT will reserve authority on material cha nge for above specification. 2. When using this product, please observe the abso lute maximum ratings and the instructions for using outlined in these specification sheets. EVERLIGHT assumes no responsi bility for any damage resulting from use of the pro duct which does not comply with the absolute maximum ratings and the instructions included in these specification sheets. 3. These specification sheets include materials pro tected under copyright of EVERLIGHT corporation. Pl ease don’t reproduce or cause anyone to reproduce them without EVERLIGHT’s consent.