H11L1 CTMICRO | Alldatasheet

Document overview

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  • PDF pages: 11

Technical content

Features

  • • •• High isolation 5000 VRMS
  • • •• DC input with Schmitt Trigger output
  • • •• 1MHz(NRZ) data rate
  • • •• Temperature range - 55 ° C to 100 ° C

Applications

  • • •• Line Receiver
  • • •• Logic to Logic Isolator
  • • •• Microprocessor system interface
  • • •• AC to TTL conversion

Description

The H11L1, H11L2 and H11L3 series consist of a Schmitt Trigger optically coupled to a gallium arsenide Infrared-emitting diode in a 6-lead DIP package with different lead forming options.

Proprietary & Confidential Page 2 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Absolute Maximum Rating at 25 oC Symbol Parameters Ratings Units Notes VISO Isolation voltage 5000 V RMS TOPR Operating temperature -55 ~ +100 oC TSTG Storage temperature -55 ~ +150 oC TSOL Soldering temperature 260 oC Emitter IF Forward current 60 mA IF(TRANS) Peak transient current ( ≤1µs P.W,300pps) 1 A VR Reverse voltage 6 V PD Power dissipation 100 mW Detector PD Power dissipation 150 mW Vo Output Voltage 0 to 16 V Vcc Supply Voltage 3 to 16 V Io Output Current 50 mA

Proprietary & Confidential Page 3 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Electrical Characteristics TA = 25° C (unless otherwise specified) Emitter Characteristics Symbol Parameters Test Conditions Min Typ Max Units Notes VF Forward voltage I F=10mA 1.24 1.4 V IR Reverse Current V R = 6V - - 5 µA CIN Input Capacitance f= 1MHz - 45 - pF Detector Characteristics Symbol Parameters Test Conditions Min Typ Max Units Notes VCC Supply Voltage 3 - 15 V ICCH Logic High Supply Current I F= 0mA, V CC = 5V 1.5 5 mA IOH Logic High Output Current I F= 0mA, V CC =V O=15V 100 µA Transfer Characteristics Symbol Parameters Test Conditions Min Typ Max Units Notes ICCL Logic Low Supply Current I F= 10mA, V CC = 5V 1.5 5 mA IF(ON) Input Threshold Current H11L1 V CC = 5V, R L= 270 Ω 1.6 mA H11L2 10 mA H11L3 5 mA IF(OFF) Off Threshold Current V CC = 5V, R L= 270 Ω 0.3 1 mA IF(ON) / IF(OFF) Hysteresis Ratio 0.5 0.9 VOL Logic Low Output Voltage IF= I F(ON) Max, V CC = 5V, RL= 270 Ω 0.4 V RIO Isolation Resistance V IO = 500V DC 1x10 11 Ω CIO Isolation Capacitance f= 1MHz 0.25 pF Switching Characteristics Symbol Parameters Test Conditions Min Typ Max Units Notes tON Turn On Time IF= I F(ON) , V CC = 5V, R L= 270 Ω - - 3.8 µs tr Rise Time - 0.1 - tOFF Turn Off Time - - 3.8 tf Fall Time - 0.1 - Data Rate - 1 - MHz

Proprietary & Confidential Page 4 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Typical Characteristic Curves

Proprietary & Confidential Page 5 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Package Dimension Dimensions in mm unless otherwise stated Standard DIP – Through Hole Wide Lead Forming – Through Hole (M Type)

Proprietary & Confidential Page 6 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Surface Mount Forming (S Type) Surface Mount Forming (Low Profile) (SL Type)

Proprietary & Confidential Page 7 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Recommended Solder Mask Dimensions in mm unless otherwise stated Marking Information Note: CT : Denotes “CT Micro” H11L1 : Part Number Y : Fiscal Year WW : Work Week K : Manufacturing Code CT H11L1 YWWK

Proprietary & Confidential Page 8 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler

Ordering Information

H11LX(Y)(Z)-G X = Part No. (X=1,2,3) Y = Lead form option (S, SL, M or none) Z = Tape and reel option (T1, T2 or none) G= Material option (G: Green, None: Non-green) Option Description Quantity None Standard 6 Pin Dip 65Units/Tube M Gullwing (400mil) Lead Forming 65Units/Tube S(T1) Surface Mount Lead Forming – With Option 1 Taping 10 00 Units/Reel S(T2) Surface Mount Lead Forming – With Option 2 Taping 10 00 Units/Reel SL(T1) Surface Mount (Low Profile) Lead Forming– With Option 1 Taping 1000 Units/Reel SL(T2) Surface Mount (Low Profile) Lead Forming – With Optio n 2 Taping 1000 Units/Reel

Proprietary & Confidential Page 9 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Carrier Tape Specifications Dimensions in mm unless otherwise stated Option S(T1) & SL(T1) Option S(T2) & SL(T2)

Proprietary & Confidential Page 10 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler Reflow Profile Profile Feature Pb-Free Assembly Profile Temperature Min. (Tsmin) 150° C Temperature Max. (Tsmax) 200° C Time (ts) from (Tsmin to Tsmax) 60-120 seconds Ramp-up Rate (t L to t P) 3° C/second max. Liquidous Temperature (T L) 217° C Time (t L) Maintained Above (T L) 60 – 150 seconds Peak Body Package Temperature 260° C +0° C / -5° C Time (t P) within 5° C of 260° C 30 seconds Ramp-down Rate (T P to T L) 6° C/second max Time 25° C to Peak Temperature 8 minutes max.

Proprietary & Confidential Page 11 Mar, 2014 H11L1, H11L2, H11L3 Schmitt Trigger Output 6-Pin Optocoupler DISCLAIMER CT MICRO RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. CT MICRO DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. DISCOLORATION MIGHT OCCUR ON THE PACKAGE SURFACE AFTER SOLDERING, REFLOW OR LONG TERM USE. THIS DOES NOT IMPACT THE PRODUCT PERFORMANCE NOR THE PRODUCT RELIABILITY. CT MICRO ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT EXPRESS WRITTEN APPROVAL OF CT MICRO INTERNATIONAL CORPORATION. 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, or (c) whose failure to perform when properly used in accordance with instruction for use provided in the labelling, can be reasonably expected to result in significant injury to the user. 2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.