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S216S02 Dataheets PDF



Part Number S216S02
Manufacturers Sharp
Logo Sharp
Description SIP Type SSR
Datasheet S216S02 DatasheetS216S02 Datasheet (PDF)

S112S01 Series S116S01 Series s Features 1. Compact, high radiation resin mold package 2. RMS ON-state current S112S01 Series : 12Arms at TC <= 70˚C ( With heat sink) S116S01 Series : 16Arms at TC <= 60˚C ( With heat sink) 3. Built-in zero-cross circuit (S112S02 / S212S02 / S116S02 / S216S02 ) 4. High repetitive peak OFF-state voltage S112S01 / S112S02 / S116S01 / S116S02 VDRM : 400V S212S01 / S212S02 / S216S01 / S216S02 VDRM : 600V 5. Isolation voltage between input and output (Viso : 4 000Vrms.

  S216S02   S216S02



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S112S01 Series S116S01 Series s Features 1. Compact, high radiation resin mold package 2. RMS ON-state current S112S01 Series : 12Arms at TC <= 70˚C ( With heat sink) S116S01 Series : 16Arms at TC <= 60˚C ( With heat sink) 3. Built-in zero-cross circuit (S112S02 / S212S02 / S116S02 / S216S02 ) 4. High repetitive peak OFF-state voltage S112S01 / S112S02 / S116S01 / S116S02 VDRM : 400V S212S01 / S212S02 / S216S01 / S216S02 VDRM : 600V 5. Isolation voltage between input and output (Viso : 4 000Vrms ) 6. Recognized by UL, file No. E94758 S112S01 / S112S02 S116S01 / S116S02 7. Approved by CSA, No. 63705 S112S01 / S112S02 S116S01 / S116S02 s Applications 1. Copiers, laser beam printers 2. Automatic vending machines 3. FA equipment S112S01 Series/S116S01 Series SIP Type SSR for Medium Power Control s Outline Dimensions (Unit : mm ) * The metal parts marked* are common to terminal 1 . g Do not allow external connection. ( ) : Typical dimensions A (Model No.) B S112S01 12A125VAC S112S02 S116S01 16A125VAC S116S02 S212S01 S212S02 12A250VAC S216S01 16A250VAC S216S02 18.5 ± 0.2 16.4 ± 0.3 φ 3.2 ± 0.2 * 3.2 ± 0.2 5.0 ± 0.3 5.5 ± 0.2 A 19.6 ± 0.2 (36.0) g 0.2 MAX. 4.2MAX. 11.2MIN. 4 - 1.1 ± 0.2 4 - 1.25 ± 0.3 4 - 0.8 ± 0.2 B +- 1 23 4 (5.08) (7.62) Internal connection diagram S112S01/S116S01 S212S01/S216S01 (2.54) 0.6 ± 0.1 (1.4) S112S02/S116S02 S212S02/S216S02 Zero-cross circuit 1 2 34 1 Output (Triac T2) 2 Output (Triac T1) 3 Input ( + ) 4 Input ( - ) 1 2 34 1 Output (Triac T2) 2 Output (Triac T1) 3 Input ( + ) 4 Input ( - ) s Model line-ups For phase control No built-in zero-cross circuit Built-in zero-cross circuit For 100V lines S112S01 S116S01 S112S02 S116S02 For 200V lines S212S01 S216S01 S212S02 S216S02 “ 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.” S112S01 Series/S116S01 Series s Absolute Maximum Ratings Input Output Parameter Forward current Reverse voltage RMS ON-state current S112S01 Series S116S01 Series *1 Peak one cycle S112S01 Series surge current S116S01 Series Repetitive peak OFF-state voltage Non-repetitive peak OFF-state voltage S112S01 / S112S02 S116S01 / S116S02 S212S01 / S212S02 S216S01 / S216S02 S112S01 / S112S02 S116S01 / S116S02 S212S01 / S212S02 S216S01 / S216S02 Critical rate of rise of ON-state current Operating frequency *2 Isolation voltage Operating temperature Storage temperature *3Soldering temperature Symbol IF VR IT I surge VDRM VDSM dI/dt f Viso Topr Tstg Tsol (Ta = 25˚C ) Rating 50 6 *412 *516 120 160 400 600 400 600 50 45 to 65 4 000 - 25 to + 100 - 30 to + 125 260 Unit mA V A rms A rms A A V V V V A/µ s Hz V rms ˚C ˚C ˚C *1 AC 60Hz sine wave, Tj = 25˚C start *2 AC 60Hz for 1 minute, 40 to 60 % RH. Apply voltages between input and output by the dielectric withstand voltage tester with zero-cross circuit. ( Input and output shall be shorted respectively) . ( Note ) When the isolation voltage is necessary at using external heat sink, please use the insulation sheet. *3 For 10 seconds *4 TC<=70˚C *5 TC<=60˚C s Electrical Characteristics Parameter Input Forward voltage Reverse current Repetitive peak OFF-state current ON-state voltage S112S01 Series S116S01 Series Holding current Output Critical rate of rise of OFF-state voltage Transfer characteristics Critical rate of rise of commutating OFF-state voltage Zero-cross voltage Minimum trigger current S112S02 / S212S02 S116S02 / S216S02 S112S01 / S212S01 S116S01 / S216S01 S112S02 / S212S02 S116S02 / S216S02 Isolation resistance Turn-on time S112S01 / S212S01 S116S01 / S216S01 S112S02 / S212S02 S116S02 / S216S02 Turn-off time Thermal resistance (Between junction and case) S112S01 series S116S01 series Thermal resistance ( Between junction and ambience ) Symbol VF IR I DRM VT IH dV/dt ( dV/dt )C V OX I FT R ISO t on t off R th(j - c) R th(j - a) Conditions IF = 20mA VR = 3V V D = V DRM Resistance load IF = 20mA, IT = 12Arms Resistance load IF = 20mA, IT = 16Arms V D = 2/3 • V DRM T j = 125˚C, VD = 400V, *6 IF = 8mA VD = 12V, R L= 30 Ω VD = 6V, R L= 30 Ω DC500V, RH = 40 to 60 % AC 50Hz AC 50Hz - *6 S112S01 Series: dI T /dt = - 6A/ms S116S01 Series: dI T /dt = - 8A/ms MIN. 30 5 1010 - TYP. 1.2 - - 3.8 3.3 40 (Ta = 25˚C ) MAX. 1.4 10- 4 10- 4 1.5 1.5 50 - Unit V A A V rms V rms mA V/µ s - V/µ s 35 V 8 mA 8 mA -Ω 1 ms 10 ms 10 ms - ˚C/W - ˚C/W - ˚C/W RMS ON-state current IT ( Arms ) RMS On-state current I T ( Arms ) Fig. 1 RMS ON-state Current vs. Ambient Temperature ( S112S01Series) 12 (1) (4) (3) (2) 10 8 6 4 (5) 2 0 - 25 0 25 50 75 100 125 Ambient temperature T a (˚C) S112S01 Series/S116S01 Series Fig. 2 RMS ON-state Current vs. Ambient Temperature ( S116S01Series) 18 16 14 .


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