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DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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Optoisolators Triac Drive Output ( 400V Volts Peak ) Features 1. Pb free and RoHS compliant. 2. Opaque type,mini-flat package. 3. Subminiature type (The volume is smaller than that of our conventional DIP type by as far as 30%). 4. Isolation voltage between input and output (Viso :3750Vrms). 5. Safety Approval : UL approved:UL1577 , No.E169586 CUL approved:C22.2 No.1 & NTC No.5 , No.E169586 VDE approved:EN60747-5-2 , No.40009235 CQC approved:GB8898 / GB4943 CQC10001049555、CQC08001022986 For 115/240 Vac(rms) Application: 1. Solenoid/Valve Controls. 2. Lighting Controls. 3. Static Power Switches. 4. AC Motor Drives. 5. Temperature Controls. 6. E.M. Contactors. 7. AC Motor Starters. 8. Solid State Relays. 9. Programmable controllers.
DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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Outside dimension:Unit ( mm ) Tolerance:±0.2mm Schematic:Top View 1. Anode 2. Cathode 3. MAIN TERMINAL 4. MAIN TERMINAL 0.1±0.1 2.30 7.00±0.4 0.40 2.54 4.40 3.60 Date Code 0.50±0.3
DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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Absolute Maximum Ratings Parameter Symbol Rating Unit Input Forward current I F 50 mA Peak forward current (100us) I FP 1 A Reverse voltage V R 6 V Power dissipation P D 70 mW Output Off-State Output Terminal voltage V DRM 400 V On-State R.M.S. Current I T(RMS) 70 mA Peak Repetitive Surget Current (PW=10ms.DC 10%) ITSM 1 A Power dissipation P D 150 mW Total power dissipation Ptot 200 mW Isolation voltage 1 minute V iso 3750 V rms Operating temperature T opr -40 to +115 ℃ Storage temperature T stg -50 to +125 ℃ Soldering temperature 10 second T sol 260 ℃ Electro-optical Characteristics Parameter Symbol Conditions MIN. TYP. MAX. Unit Input Forward voltage V F I F = 10mA - 1.2 1.4 V Peak forward voltage V FM I FM = 0.5A - - 3.5 V Reverse current I R V R = 5V - - 10 μA Output Peak Blocking Current I DRM V DRM = 400V - - 1.0 μA On-State Voltage V TM I TM = 70mA - 1.6 2.8 V Transfer charac- teristics Holding Current I H - 1.0 mA Critical rate of rise of Off-state voltage dV/dt VDRM = (1/ 2 )‧Rated 100 - - V/ μs Isolation resistance R iso DC500V 5×10 10 10 11 - Ω Minimum trigger current I FT Main Terminal Voltage=3V - 5 10 mA Tunr-on time T on VD = 6V, RL=100 ohm, IF=20mA - - 100 μS
DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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Forward Current vs. Ambient Temperature Diode power dissipation P (mW) Diode Power Dissipation vs. Ambient Temperature Forward current IF ( mA ) -30 0 25 55 75 100 115 -30 02 5 100 50 75 100 115 Ambient Temperature Ta ( ℃ ) Ambient Temperature Ta ( ℃ ) On-State R.M.S. Current(mA) On-State R.M.S. Current vs. Ambient Temperature Total power dissipation Pc (mW) Total Power Dissipation vs. Ambient Temperature -30 25 55 75 100 115 100 -30 02 5 150 200 50 75 100 115 Ambient temperature Ta (℃) Ambient temperature Ta (℃) Trigger Current IFT ( mA ) Peak Forward Current vs. Duty Ratio Forward Current vs. Forward Voltage Pulse width <=100us 100 1000 10000 Ta=25°C Forward current IF (mA) Ta=75° 200 100 50° 500 -25° 25° Duty ratio Forward voltage VF (V)
DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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Leakage with LED off vs. Ambient Temperature On-State Current(mA) +100 +1 +2 +3-1-2-3 +200 +300 +400 -400 -200 -300 -100 IF=30mA,f=60Hz,Ta=25°C Output Pulse Width 80us Peak Blocking Current IDRM (nA) IF=0,VDRM=Rated -40 -20 2004 0 500 100 200 80 100115 On-State Voltage( V ) Ambient Temperature Ta ( ℃ ) IFT ,Normalized Trigger Current vs. Ambient Temperature 1000-40 20 40 80 60 Normalized To Ta=25°C 1.0 1.1 1.2 1.3 1.4 0.9 0.8 0.7 -20 0.6 1.5 0.5 0.4 0.3 1.6 115 Ambient Temperature Ta ( ℃ )
DATE:01/04/2013 cosmo ELECTRONICS CORPORATION Photocoupler: KTLP160G NO. 61P43002 REV.
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NOTICE The information contained in this document is intended to be a general product description and is subject to change without notice. Please contact cosmo in order to obtain the latest device data sheets before using any cosmo device. cosmo does not assume any responsibility for use of any circui try described. No circuit patent licenses are implied. This publicatio n is the property of cosmo. No part of this publication may be reproduced or copied in any form or by any means, or transferred to any th ird party without the prior written consent of cosmo Electronics Corporation. The devices listed in this document are designed for general applications only in electronic e quipment. No devices shall be deployed which require higher level of reliability such as: – Medical and other life support equipments. – Space application. – Telecommunication equipment ( trunk lines ). – Nuclear power control equipment. Unless it received prior written approval from cosmo. cosmo takes no responsibility for damages arise form the improper usage of our device. Pl ease contact cosmo for further information regarding the above notices.