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S11MS7 S11MS7 s Features 1. High speed ( t on : MAX. 15 s ) 2. High noise resistance ( dV /dt : MIN. 500V/ s ) 3. Low trigger current ( IFT : MAX. 5mA ) 4. Mini-flat package type 5. Recognized by UL, file No.E64380 High Speed/ High Noiseresistance Type Phototriac Coupler s Outline Dimensions 1.27 0.25 65 4 S11MS 7 1 Anode mark 3 0.4 0.1 ( Unit : mm ) Internal connection diagram 6 5 4 4.4 0.2 0.6MAX. s Applications 1. For triggering medium/high power triac 1 3 3.6 0.3 0.1 0.1 2.6 0.2 7.0+0.2 - 0.7 0.5+ 0.4 - 0.2 6 1 Anode 3 Cathode 4 Anode/ cathode 5 No external connection 6 Anode/ cathode s Absolute Maximum Ratings Input Parameter Forward current Reverse voltage 1 RMS ON-state current Peak one cycle surge current Repetitive peak OFF-state voltage *2 Isolation voltage Operating temperature Storage temperature 3 Soldering temperature Symbol IF VR IT I surge VDRM Viso Topr Tstg Tsol ( Ta = 25C ) Rating 50 6 0.05 0.6 ( 50Hz Sine Wave) 400 2 500 - 30 to +100 - 40 to +125 260 Unit mA V Arms A V Vrms C C C IT (A) 0 2 * IT 1, 2<= 90 2 180 0.20.05 90 1 360 Soldering area 0.2mm or more C0.4 Input side 5.3 0.3 Output 1 The definition of conduction angle of effective on current It should be as shown in the right drawing. 2 40 to 60% RH, AC for 1 minute, f = 60Hz 3 For 10 seconds " In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device." S11MS7 s Electro-optical Characteristics Input Parameter Forward voltage Reverse current Repetitive peak OFF-state current ON-state voltage Holding current Critical rate of rise of OFF-state voltage Minimum trigger current Isolation resistance Turn-on time Symbol VF IR I DRM VT IH dV/dt I FT R ISO t on Conditions IF = 20mA V R = 3V V DRM = Rated IT = 0.05A V D = 6V V DRM = ( 1/ 2 ) * Rated V D = 6V, R L = 100 DC = 500V, 40 to 60% RH V D = 6V, R L = 100 , IF = 20mA MIN. 500 5 x 1010 - TYP. 1.2 1.3 0.5 1011 10 ( Ta= 25C ) MAX. 1.4 10 1 2.5 3.5 5 15 Unit V A A V mA V/ s mA s Output Transfer characteristics Fig. 1 RMS ON-state Current vs. Ambient Temperature 60 RMS ON-state current I T ( mA rms ) Fig. 2 Forward Current vs. Ambient Temperature 70 60 Forward current I F ( mA ) 50 40 30 20 10 0 50 40 30 20 10 0 - 30 0 50 Ambient temperature T a ( C ) 100 - 30 0 25 50 75 100 Ambient temperature T a ( C ) 125 Fig. 3 Forward Current vs. Forward Voltage Fig. 4 Minimum Trigger Current vs. Ambient Temperature 12 V D = 6V R L = 100 100 Minimum trigger current I FT ( mA ) 1.5 10 Forward current I F ( mA ) 50 T a = 75C 50C 25C 0C - 25C 8 20 10 5 6 4 2 1 0.9 2 1.0 1.1 1.2 1.3 1.4 Forward voltage V F ( V ) 0 - 30 0 50 Ambient temperature T a ( C ) 100 S11MS7 Fig. 5 Relative Repetitive Peak OFF-state Voltage vs. Ambient Temperature 1.3 Relative repetitive peak OFF-state voltage V DRM ( Tj = T a ) /V DRM ( Tj = 25C) Fig. 6 ON-state Voltage vs. Ambient Temperature 2.0 I T = 50mA 1.2 ON-state voltage VT ( V ) 1.8 1.1 1.6 1.0 1.4 0.9 1.2 0.8 1.0 0.8 - 30 0.7 - 30 0 20 40 60 80 Ambient temperature T a ( C ) 100 0 20 40 60 80 Ambient temperature T a ( C ) 100 Fig. 7 Holding Current vs. Ambient Temperature 10 V D = 6V Fig. 8 Repetitive Peak OFF-state Current vs OFF-state Voltage 10 9 Repetitive peak OFF-state current I DRM ( A ) Ta = 25C Holding current I H ( mA ) 1 10 - 10 0.1 - 30 0 50 Ambient temperature T a ( C ) 100 10 - 11 100 200 300 400 500 600 OFF-state voltage V D ( V ) Fig. 9 Relative Repetitive Peak OFF-state Current vs. Ambient Temperature 10 2 Relative repetitive peak OFF-state current I DRM ( T J = T a ) /I DRM ( T J = 25C ) Fig.10 ON-state Current vs. ON-state Voltage 100 I F = 20mA T a = 25C ON-state current I T ( mA ) 10 1 50 10 - 1 10 - 2 - 30 q 0 50 0 Ambient temperature T a ( C ) 100 0 1.0 ON-state voltage V T ( V ) 2.0 Please refer to the chapter " Precautions for Use" ( Page 78 to 93 ) . |
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