S11ME5 SHARP | Alldatasheet

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∗4 For 10 seconds S11ME5/S11ME6/S21ME5F S21ME5/S21ME6/S21ME6F Phototriac Coupler Conformable to European Safety Standard n Features n Applications 1. For triggering medium/high power triac 2. For detecting over voltage of switching power supply n Outline Dimensions (Unit : mm) (Ta = 25˚C)n Absolute Maximum Ratings Internal connection diagram Zero-cross circuit S11ME5/S21ME5/S21ME5F S11ME5/S11ME6 S21ME5/S21ME6 S11ME6/S21ME6/S21ME6F θ S21ME5F/S21ME6F 0.5 Cathode

1 Anode

2 Cathode

3 Anode/

4 Anode/

h Lead forming type (I type) of /S21ME5F /S21ME6F /S21ME5FI / Parameter Symbol Rating Unit Input Forward current I F 50 mA Reverse voltage V R 6V Output RMS ON-state current I T 100 mA rms ∗1 Peak one cycle surge current I surge 1.2 A Repetitive peak OFF-state voltage S11ME5 /S11ME6 ∗2 S21ME5 /S21ME6 V DRM

400 V600

∗3 Isolation voltage V iso V rms Operating temperature T opr - 30 to + 100 ˚C Storage temperature T stg - 55 to + 125 ˚C ∗4 Soldering temperature T sol 260 ˚C S21ME5F /S21ME6F 5. Built-in zero-cross circuit (S11ME6/S21ME6/S21ME6F ) S21ME5F , (Distance between lead pins : 10.16 mm) 7. High isolation voltage between input and output S21ME6FI ) 1. Internal isolation distance : 0.4mm or more 6. Wide forming type ( S21ME6F ) ∗1 50Hz sine wave∗2 Also 3. Clearance : 6.4mm or more 2. Creepage distance : 6.4mm or more Approved by BSI (BS415 : No.6690, BS7002 : No.7421) Approved by SEMKO (No.9202227) Approved by DEMKO (No.107968 ) Approved by EI (No.152029-02,03,04,0116) 5 000 ∗3 40 to 60% RH, AC for 1 minute, f = 60Hz 2.54±0.25 4.58± 0.5 1.2± 0.3 0.9± 0.3 2.54± 0.25 4.58± 0.5 1.2± 0.3 0.9± 0.3 2 3 S11ME5 S21ME5 Anode markAnode mark 2.7MIN data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.” “ 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, S11ME5/S11ME6/S21ME5/S21ME5F/S21ME6/S21ME6F are also available. ( h DIN-VDE0884 approved type is also available as an option. (Viso : 5 000Vrms ) 4. Recogized by UL file No. E64380 Approved by VDE (DIN-VDE0884 : No.76850 ) 2.7MIN 6.5± 0.5 6.5± 0.5 7.62± 0.3 0.26± 0.1 3.4± 0.5 0.5± 0.1 3.5± 0.5 0.26± 0.1 10.16± 0.5 4.58± 0.5 3.5± 0.5

n Electro-optical Characteristics (Ta = 25˚C) Parameter Symbol MIN. TYP. MAX. Unit Input Forward voltage V F - 1.2 1.4 V Reverse current I R -- 1 0 -5 A Repetitive peak OFF-state current IDRM -- 1 0 -6 A ON-state voltage V T - - 2.5 V Holding current I H 0.1 - 3.5 mA Critical rate of rise of OFF-state voltage 100 - - V/ µ s ∗5Zero-cross voltage V OX - - 35 V Transfer charac- teristics Minimum trigger current Isolation resistance Turn-on time I FT - - 10 mA R ISO 5x1 010 1011 - Ω ton - - 100 µ s 2V DRM = (1/ )• Rated Conditions IF = 20mA V R =3 V V DRM = Rated IT = 100mA V D =6 V F = 15mA R L = 100Ω , VD =6 V V D = 6V, RL = 100Ω , IF = 20mA -3 0 0 2 04 06 08 0 1 0 0 Fig. 1 RMS ON-state Current vs. Ambient Temperature Ambient temperature Ta (˚C) -30 0 25 75 100 125 Fig. 2 Forward Current vs. Ambient TemperatureForward current IF (mA ) Ambient temperature Ta (˚C) 0.9 100 0˚C - 25˚C 50˚C 25˚C Fig. 3 Forward Current vs. Forward Voltage 100806040200 0-30 S21ME5/5F S11ME5 S21ME6/6F S11ME6 Fig. 4 Minimum Trigger Current vs. Ambient Temperature T (mA rms ) ∗5 S11ME6 , S21ME6 , S21ME6F Forward voltage VF (V ) Forward current IF (mA ) FT (mA ) Ambient temperature Ta (˚C) Output 100 120 RMS ON-state current I Minimum trigger current I Resistance load, I DC = 500V, 40 to 60% RH T a = 75˚C R L = 100Ω V D =6 V S11ME5/S11ME6/S21ME5/S21ME5F/S21ME6/S21ME6F dV/dt

-30 0.7 0 2 04 06 08 0 1 0 0 0.8 0.9 1.0 1.1 1.2 1.3 S11ME6 S11ME5 S21ME6/6F S21ME5/5F V DRM (T= T a)/V DRM (T = 25˚C) Fig. 5 Relative Repetitive Peak OFF-State Voltage vs. Ambient Temperature 1.0 1.2 -30 0 20 100 1.4 1.6 1.8 2.0 2.2 40 60 80 S11ME5 S11ME6 Fig. 6 ON-state Voltage vs. Ambient Temperature S21ME6/6F S21ME5/5F T (V ) Ambient temperature Ta (˚C) 100 0.1 0.2 0.5 806040200 S11ME5 S11ME6 S21ME6/6F S21ME5/5F Ambient temperature Ta (˚C) Fig. 7 Holding Current vs. Ambient TemperatureHolding current IH (mA ) 100 200 300 400 500 600 vs. OFF-state Voltage 10-9 10-10 10-11 100 200 300 400 500 600 vs. OFF-state Voltage D (V ) -30 0 100 20 40 60 80 S11ME5 Ambient temperature Ta (˚C) S21ME5/5F vs. Ambient Temperature DRM (A ) (A ) (A ) Ambient temperature Ta (˚C) (S21ME5/S21ME5F ) D (V ) (S21ME6/S21ME6F ) 10-6 10-7 10-11 10-7 10-8 10-9 10-10 10-11 10-12 Relative repetitive peak OFF-state voltage jj ON-state voltage VRepetitive peak OFF-state current IDRM OFF-state voltage V Fig. 9-a Repetitive Peak OFF-state Current Repetitive peak OFF-state current IDRM (S11ME5/S21ME5/S21ME5F ) Fig. 8-a Repetitive Peak OFF-state Current Fig. 8-b Repetitive Peak OFF-state Current Repetitive peak OFF-state current I OFF-state voltage V IT = 100mA V D =6 V T a = 25˚C T a = 25˚C V D = Rated S11ME5/S11ME6/S21ME5/S21ME5F/S21ME6/S21ME6F

-30 0 100 20 40 60 80 S11ME6 S21ME6/6F vs. Ambient Temperature 1001 S11ME5 S11ME6 100 100806040200-30 Zero-cross voltage VOX (V ) Fig11. Zero-cross Voltage vs. Ambient Temperature 100 S11ME6 S11ME5 T (mA ) IF = 15mA T a = 25˚C S21ME6/6F S21ME5/5F (A ) (S11ME6/S21ME6/S21ME6F ) Turn-on time ton (µ s) R load IF = 15mA (S11ME6/S21ME6/S21ME6F ) Fig.12 ON-state Current vs. ON-state Voltage 10-4 10-5 10-9 10-1 0 10-1 1 10-1 2 Fig.10 Turn-on Time vs. Forward Current Repetitive peak OFF-state current IDRM Fig. 9-b Repetitive Peak OFF-state Current S21ME5/5F ON-state current I V D = Rated IF = 20mA R L = 100Ω V D =6 V l Please refer to the chapter “ Precautions for Use.”(Page 78 to 93). S11ME5/S11ME6/S21ME5/S21ME5F/S21ME6/S21ME6F Ambient temperature Ta (˚C) Forward current IF (mA ) ON-state voltage VT (V )Ambient temperature Ta (˚C) S21ME6/6F