H11J1X ETC | Alldatasheet
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Unit 25B, Park View Road West, Park View Industrial Estate, Brenda Road Hartlepool, Cleveland, TS25 1YD Tel: (01429) 863609 Fax :(01429) 863581 8/8/01 DB92166m-AAS/A3 OPTICALLY COUPLED BILATERAL SWITCH NON-ZERO CROSSING TRIAC H11J1X, H11J2X, H11J3X, H11J4X, H11J5X H11J1, H11J2, H11J3, H11J4, H11J5 APPROVALS l UL recognised, File No. E91231 'X' SPECIFICATION APPROVALS ll VDE 0884 in 2 available lead forms : - - STD - G form
DESCRIPTION
The H11J_ series are optically coupled isolators consisting of a Gallium Arsenide infrared emitting diode coupled with a light activated silicon bilateral switch performing the functions of a triac mounted in a standard 6 pin dual-in-line package. FEATURE l Options :- 10mm lead spread - add G after part no. Surface mount - add SM after part no. Tape&reel - add SMT&R after part no. l High Isolation Voltage (5.3kV RMS ,7.5kV PK ) l 250V Peak Blocking Voltage l All electrical parameters 100% tested l Custom electrical selections available
APPLICATIONS
(25 °C unless otherwise noted) Storage Temperature -40 0 C - +150 0 C Operating Temperature -40 0 C - +100 0 C Lead Soldering Temperature 260 0 C (1.6mm from case for 10 seconds) Input-to-output Isolation Voltage (Pk) 7500 Vac (60 Hz , 1sec. duration) INPUT DIODE Forward Current 50mA Reverse Voltage 6V Power Dissipation 70mW (derate linearly 0.93mW/ 0 C above 25 0 C) OUTPUT PHOTO TRIAC Off-State Output Terminal Voltage 250V RMS Forward Current 100mA Forward Current (Peak) 1A Power Dissipation 300mW (derate linearly 4.0mW/ 0 C above 25 0 C) POWER DISSIPATION Total Power Dissipation 330mW (derate linearly 4.4mW/ 0 C above 25 0 C) ISOCOM INC 1024 S. Greenville Ave, Suite 240, Allen, TX 75002 USA Tel: (214) 495-0755 Fax: (214) 495-0901 e-mail info@isocom.com http://www.isocom.com OPTION G 7.62SURFACE MOUNT OPTION SM 10.16 0.26 10.46 9.86 0.6 0.1 1.25 0.75 2 5 0.26 0.5 Dimensions in mm 7.0 6.0 1.2 7.62 3.0 13° Max 3.35 4.0 3.0 2.54 7.62 6.62 0.5
PARAMETER MIN TYP MAX UNITS TEST CONDITION ELECTRICAL CHARACTERISTICS ( T A = 25°C Unless otherwise noted ) Input Forward Voltage (V F ) 1.2 1.5 V I F = 10mA Reverse Current (I R ) 100 µA V R = 6V Output Peak Off-state Current ( I DRM ) 100 nA V DRM = 250V (note 1 ) Peak Blocking Voltage ( V DRM ) 250 V I DRM = 100nA On-state Voltage ( V TM ) 1.5 3.0 V I TM = 100mA ( peak ) Critical rate of rise of off-state Voltage ( dv/dt ) ( note 1 ) 10 V/ µs Critical rate of rise of commutating Voltage ( dv/dt ) ( note 1 ) 0.1 0.2 V/ µs I load = 15mA, V IN = 30V ( fig 1. ) Coupled Input Current to Trigger ( I FT )(note 2 ) H11J1, H11J3 10 mA V D = 3V ( note 2 ) H11J2, H11J4 15 mA H11J5 25 mA Holding Current , either direction ( I H ) 100 µA Input to Output Isolation Voltage V ISO 5300 V RMS See note 3
7500 V PK See note 3
Note 1. Test voltage must be applied within dv/dt rating. Note 2. Guaranteed to trigger at an I F value less than or equal to max. I FT , recommended I F lies between Rated I FT and absolute max. I FT . Note 3. Measured with input leads shorted together and output leads shorted together. R IN 1 V CC 2k Ω V IN ~STATIC dv/dt COMMUTATING dv/dt +5v V CC 120 Ω FIGURE 1 R L
0.05 -30 0 25 50 75 100 125 Ambient temperature T A ( °C ) RMS on-state current I T (Arms) RMS On-state Current vs. Ambient Temperature -30 0 25 50 75 100 Ambient temperature T A ( °C ) Normalised input trigger current ( I FT ) Normalised Input Trigger Current vs. Ambient Temperature 0.1 0.2 0.4 0.6 0.8 1.0 1.2 1.4 Normalised Repetitive Peak Off-state Voltage vs. Ambient Temperature Normalised repetitive peak off-state voltage -30 0 25 50 75 100 Ambient temperature T A ( °C ) 0.2 0.4 0.6 0.8 1.0 1.2 1.4 On-state Voltage vs. Ambient Temperature On-state voltage V TM (V) -30 0 25 50 75 100 Ambient temperature T A ( °C ) 0.4 0.8 1.2 1.6 2.0 2.4 2.8 Normalised to T A = 25°C On-state Current vs. On-state Voltage On-state current I TM (mA) On-state voltage V TM (V) 100 Normalised to T A = 25°C I F = 20mA T A = 25°C Ambient temperature T A ( °C ) -30 0 25 50 75 100 125 Forward Current vs. Ambient Temperature Forward current I F (mA)